Document Z4wvwGoJr09bnrBnk4RBOgj9Y
f>e 5"2 -oz Philadelphia No. P-1
E. I . DU PONT' DE NEMOURS & CO!ANY
FABRICS AND FINISHES DEPARTMENT FINISHES DIVISION
AUGUST - 1952
Hreioia
p i m osu h o r
"47 PROCESS" DEVELOPMENT Process & Methods Study P-1
Prepared by
R. P. Balrnert Philadelphia Plant
ABSTRACT
l W y
LIBRARY
A study of fundamental relationships of variables in
volved in the "47 Process" resulted in the establishment of new principles of design and operation. The design of a
higher capacity, more efficient dispersion unit was developed* The facilities proposed will permit expansion of the process
to most codes currently manufactured in Ball and Pebble Mills at lower investment and operating costs.
(Distribution list at end of report)
TABLE OF GOUT ENTS
SUMMARY
A. Nature of Investigation B. Results and Conclusions C. Recommendations
Page
1 1 1
DISCUSSION
A. Origin of Investigation S. Acknowledgment
3 3
C. Present Operation
3
D. Course Pursued in Investigation
4
1. Investigation of "47 Process" Variables 2. Equipment Evaluation
fa) Vessel Design (b) Ancillary Equipment and Controls
4
6
6
7
3. Development of Proposed Design for New
, * Installations
7
4. Alterations to Present Production
Equipment
8
E. Results and Conclusions
1. Process Variables
fa) Power \b) Agitation cj Grinding Media d) Formulation e) Vessel Design ,f) Throughput Rate
2. Equipment Design
fa) Vessel fb) Feed System (c) Level Control
3. Other Results fa) Capacity Reports lb) New Testing Procedure (c) Potential Savings
8 8 8 8
10
12
13 14
14
14 15 15
16 16 16 16
F. Auxiliary Recommendations
17
*
t
DUP030001876
Philadelphia Plant August, 1952 Process & Methods Study - P-1
P-l "47 PROCESS" DEVELOPMENT
I - SUMMARY
A. Nature of Investigation
The purpose of this study was to investigate fully the principles of "47 Process" operation so that optimum design of equipment and operating conditions could be established. Phila delphia Process & Methods Protest No. p-l, "47 Process Develop ment Program", was approved and the study undertaken with the following objectives:-
1. Determine the variables affecting quality and through put rates and establish their limitations.
2. Establish optimum design and operating conditions to increase rates and/or improve quality,
3. Simplify design and specify standards of equipment to reduce installation, repair and operating costs.
4. Provide information for placing additional formulas on "47 Process" and the elimination of two-stage grinds on present products,
B, Results and Conclusions %
Investigation of "47 process" principles resulted in the establishment of the effect of each variable involved in the process. Based on these results, a new design -of equipment was developed and evaluated on a semi-works, 6-1/2 gallon, scale. Scale-up to production size was made and equipment standards specified. This design provides increased rates, higher quality of dispersion and eliminates several high cost items in the in stallation. Maintenance costs also should be substantially re duced.
Alterations to present production vessels were developed and evaluated. These modifications can be made at relatively low cost and provide improved operation.
It is estimated that the proposed installations will more than double the present average production rates and will enable many products now ground on Ball and Pebble Mills to be made by ''47 Process" at a substantial annual savings.
C, Recommendations
1, Install "47 Process" system of proposed design as a regular production unit. Provide close follow-up of ' operation of initial installation and report any de ficiency or improvement.
DUP030001877
aMnt Philadelphia Plant August., 1352 Process & Methods Study - P-1
-2 -
liil ill!!
o -
Establish
a
formal
A program of
study
of
formula
changes
for optimum dispersion on 7 Process". Included In
this study should be an Investigation of all formulas
now on Ball ; Pebble :iill production to determine re
visions necessar- for "^7 Process'1 grinding. Two-stage
H3 now on `'47 Process" should be evaluated for
e pass operation,.
\' "
''f
liiill
1||IP| ifiii
Make simple alterscions to present production units to toiiiiistfc
provide improved operation. The modified cions include
bofctcm -screen, now screen fierce, angle r.ab, fourth
agi :ator disc, and bias-cut 35-:r.23h screen.
As new ,,;47 Process" formulas become available, considei-a;Ion should bo plvcn sc she eventual repiaccent witn rkJ
Process" cf all ball ar.d pebble mills as tney wear out. Procedure should be such as to provide sufficient back
log of formulas so chat any type mill could be immedi ately replaced with a '!-'47 Process" unit.
.5. Auxiliary recommendations are proposed in Section II-P of shie report.
3rcpared By:
1 ki > i,r p (*?'&liw-auS?j> vf
>\ %
oh. *i,-- lphlo f-o^ it ^ "e hc.j f-rcup
Approved 3y:
J/y 3. .iarch i^7-iladelpnia "rococo 1 feoneds Zizzx
DUP030001878
* A XUUV aWgUdV)
IllilililSIlllBIlllll Process & Methods Study - P-1
II - DISCUSSION
r'' A. Origin of Investigation
During the years of 1946 and 19-r? a new dispersion technique was proposed by Dr. Seymore Hochbcrg of the Philadelphia Labo ratory's Physical Chemistry Group. The new process was developed
in the laboratory stage ur.der the Chemical Division Project, P-159, and the Industrial Engineering Division Study, MX-] 034. Further investigation on laboratory and semi-works scales was
continued under the I.3.D. Project, Mi:-1123, and Chemical Division Project, P-2024. As a result ox" these studies ar.d with the as sistance of the Philadelphia Process & Methods Group, ccis new
"47 Process'* was placed on a production ba3i3.
Utilisation of the process grew rapidly during the years 19^9 '
and 1950 as the advantages of the ne . process became firmly es
tablished. During the expansion period. n*, further dev^lrp'-ent
work was carried out and efforts wore concentrated or. Installa
tions as replacements for ether gxdrains equipment. While initial
work had indicated substantial quality improvexen: available, a
relatively small number of codes cf hard-to-diiperse colors could
be made on a producttiioon scaallee.. Ir. addition, grinding rates were
not as great as originally anticipated. Therefore, a special
Process & Methods Study was prepared to ?o tablisl. ere principles
of operation and determine she optima design of a production
unit'. This project was authorized in January, 1951, 3 Process &
Methods Study P-1, "47 Process " Development Program.
O
3. Acknowledgment
Since the potential of !li*7 Process 1 -mo beer, reccgni zed for some tine, all plants using this new diversion technique have been working toward improved operation. The progress reported by these plants both in design and operacl:, was used tc atv incam ,,a cnis cruel y ar.d It is nct.rul i.to. . e tnoss h';.:.1. in tni3 summary report of "4^ Process1 Development. Important w utribetlons were made by the Process j s Method.3 Groups ci all 71 nlchas Division Plants, the Marshall laboratory and tho PhiluceI chid'
Plants Operating and Maintenance Departments.
C, Present Operation
In six of the sever. 7ir.ich.ot Uivitlor. plants, the*. : <;.rt r.ow
21 production units on the "-*7 Presets' predating
1y
1S:':G0 gallons ex" "ill bs'=3 per
* *. i"
" 'W1-^
rate of 24 gallons per hour. Additional units arc in too for
prcct-sslng Cverspriy, fer aanufa.! rjcuaj -rail ..itcr-is a. 1 ftr
experimental wcr.: throughout the Di;is,,cn. fte s-prlaru tr:-
tuccicv. unit consists of a Ij-tallon ot :s y.ir--mg '=_-c.l .1".-
a SCC-yallon preri.; tank and u?3itssry foes r:yxlicir - controls
and auxiliary'equipment:. In August, 19L9, epecificacior.o for
all equipment used In the '47 ^ro:css ' ;_rs -tsuaJ so at _'1-
stallations made ac any plant wo-Id oe scirdarctistd. To r-vision
of these standards has been _03uec, _r.d, Jicn t-s -rt-pvIon of
several device memorandums core-ruing minor alcc^atior:, ore
specifications remain essentially the seme.
DUP030001879
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Philadelphia Plant August, 1952 Process & Methods Study - P-1,
Production by '"I7 Process" is now United to 14 .8# of all "Dulux" semi-alkyd and orthodox mill base production. "Dulux"
mill b3es account for 86.^ of "47 Process'' production, equlvalent to 22.3/ of the total Divisional "Dulux 1 nil! base production {See Exhibit H) . Although the advances of improved quality or
reduced operating costs have been established for the products now dispersed by ''47 Process'1, use of this new method has not been further expanded due to the limitations of the troce3S on difficult-
to-disperse codes and relatively poor rates on other more easily
dispersed products. Lack cf fundamental kr.culed,?? concerning variable Involved ur. she process has deterred one optimum formula tion for the dispersion of many producis.
Mechanical difficulties have be on enaounrered throughout the
Division */ith pump failure.., insufficient or-onixir.g, me tor "over
loads, so reon and disc wear, sempe.-a tu_*s
ecc., resulting
in lower capacities and expensive dcvn-ciuo. .'Specification re
visions were needed to provide improved operating equipment and
lower cost Installations.
D. Course Pursued in Invest! nut-.or
m
Experlnen;al work or. Process <1 Methods Study P-1 was oerfemed on a special seTi-i*.or::o " i'T Process ' installation in die "Dulu::" Cepe?Trent zi the Pluladcljnia ?ln..:. ' e urogram -/as
vessel design, auxiliary eqvigxor.C ird corf.nla; (3; Eeveiso;.ient of an improved, low ccsu design as a standard installation for
oho "I lie ccc Division. f-ivn zis cc.ra-- _ In tloat-c*'. Is :is found Jeiirrt'.e Ic p : . ~ c - fee4- ;r nl '*o;i. lcat"c".- -c *-cIctirg p`-`_v.es*.or. e'-'\.ip" n. nr. -pro'-o: -p ;___c* :o ill j o r-i-_s5i ac low cost.
1. Investigation of ``t'7 Process'' Variables
A semi-works 5-1/2 yallcr.
Fmeao'' u.*._t was iaatalleed
In the 11`+7 Process' production area of oho "Du.-ix 1 Dcpar*tr. e.wr.*V
(See Figure 1). 'fiu.c Installation cor-siscei of f.:e zollo-.'ir.g
eqc.IpTe.it: -
a. f 3:i_x I---- - 1-Cl-gallon Jin octteir .in.: 80 .I?'I mrcir.e agitator
= .-p.
b. Vessel Drive- 7-1/2 hp. motor uicn lee^ec variable
opeoi 'Jri're - -r0<. to ]?CC P?m outpu:
c. Fc3d ?urp - Foster ICC ??/., j CP.! pur.n with 1/2 up.
d. Standard floor drill press stma.
DUP030001880
Philadelphia Plant August, 1952 Process & Methods Study - P-1.
The 'above equipment wa3 selected to permit (a) Reasonably
large batches to be made so that raw material or batch-to-batch variations would not affect evaluations; (b) Wide range investi gation of variables without horsepower limitations; (c) Complete flexibility of arrangement for new equipment or codifications; (d) Availability cf raw materials, equipment and manpower neces
sary; and (e) Reasonable translation of operating conditions and results to plant seals operation.
Q
"Dulux'1 Kilori 31.e :.ill Base, 33-5:1. '.ca ir.ioiall*, selected because cf its *;ida range of gloss at various dispersion levels. Due to bodying action in che vessel and fast settling of
the prenix and feed, the physical difficulties encountered lad to che selection of a base currently manufactured by ':47 Process". A series of runs, in which 10,000 pounds of ' OuLu;:'' Shading Yellow
Mill Ease, 33-^97* were processed, *;ere made to evaluate some of the variables of the pro;esc. Operating charac*:eristics ar.d effects of sersen area, ves. tl doj'.gn, agitator cpsed ana control devices were cacersinad. T.-ic easily dispersed oace, howe'er, was
found insensitive to mhe quality-affecting variables involved, and iszt methods indicated sa;i3factory quality under nearl/ all conditions. 1 Tuiux ! Carbon Blade 3aie, 33-201, was chon selected to evaluate the dl3C3r3ion ebar-.s tor`.o sics cf :~3 rsra.ning vari ables. 'laaconc for c..o c rol^ j cf .. .o particular .ase Lc.clz.22z.:
(a) A r.cre oifficulc-.o-^icporae cuso ''hieh would -c sa.ulcivo to degree of dispersion >as nacieo. 3* is base _s difficult so disperse m tho con'-a:i;_o-.s.l svcol mill process, r:.-i_lng
cycles and could not be -.daptod to the improved "4i3 ' or c ' techniquej ; (b) ;io satisfactory "-!7 Procsss" formula vad beer* found; *(c) '-J-S01 plgaenc la representative of very fine ultimate
partible size pigments used in fast moving color bases; (d) Ex perience rich 33-2)1 uoi-ld :2 yploal fcr'cfcsr codec wh.'s.- ccrld not be ground by `*47 process'' cue ro hard settling and puffy dis
persion, ctnd should disc be typical of many bases no**: requiring two-stage grinds.
In order to evaluta adequately the variables with
Carbon Blade Baa, it was r.caocoary to overcome the car.3 C
culties experienced initially ifi^h 33-532, Milori Blue BitO, 1.3 prevent settling of nrenix and high bodying action during dis porsion. The settling and clogging difficul ;..ea ar.cour.:orci jiere c'ercct. ? by a now fc :z cyscoj incorporating '-c..re-cls oi0 1 of premix with c cor.:-rucuily over-',ed ytap. and m 1.--=co vi-r.t 1st el control system. To 000air. a saoiofacocr-y bu-.nts cf ycod disversion and bodying action, it was necessary to reformula;3 the base from time to time as design improvements wore mad.
The variables studied were: {el power, (b) Agitation, ,c) Grinding Media, !d) Tormulavlon. (&; Vessel Design i-.d **\ Throughput Pate. Evaluation of cac. variable consisted of belting
up the desired rel&tionsn-p of variables, sampling at required races and testing sample for quality. Fineness ar.d gloss tacts made on samples oaken during the firsu series of runs wloa sh_s
Carbon Black Base were found Inadequate for determining dispersion differences. In most cases the gloss was satisfactory although
DUP030001881
-o-
Philadelphia Plant August, 1S52 Process & Methods Study - P-1
the fineness of grind was too coarse to he read on the Hegram
gage- Standard tinging strength tests were not numerical and
so could not be correlated. A special test was devised whereby
the dispersion of the blade base could be numerically described.
The du Pont Differential Colorimeter uas used to measure the re
flectance of a 94-line enamel made from the dispersed base.
Since the absolute reflec s&nce of black enarals is very lo*r, re
sulting in a small range and a high proportionate error, the
sample was let-down wich a similar v/Iii
-OL43) in the ratio
of one part black to five of white. Cpecial standard and re Ter
ence panels were prepared and the colorimeter set to balance at
approximately half she Dcal-i rang?, reflectance readings, then,
were a measure of the re la tiro tinting strength of the various
samples obtained including standard bail till ground bass. \Ir*
this testing method., star-Jard 33-201, ground Si,000 cycles in a
SW mill, resulted in a Lightness Factor read on tne colorimeter
of 50*0- Higher numbers show poorer tinting strength.) A vide
range of reflectance readings, giving a numerical measure of dis
persion under various conditions, vac obtained. The readings indi
cated the hue and saturation of bases ground as well as tinting
strength. Details of tne testing methodc used are given in
2. Squicroent Evaluation
a, Yeisel DesignJ " s.,
'' x
\
^
Before embarking cn the er-.p iriccn ;-il proi:m ir -eo v.tcfcion
with this study, a nev vessel incorporating several i-r.ign
modifications of the standard `47 process'1 vessel, :Jas fabri
cated, '.See Figure ? - .'`edified let Feed Vessel) . This 6-1/2
gallon site '-zs 'q '
`e-ijrs*` :o c,>-o">cc*",e nors-en ehnr.gco^er
difficulties, reduce hole-up in dice.large Jacket and simplify
oj.-structicn. C:T"i.llor. zC V.i .j 'escol ->as found
facsory on many runs conducted during the early stages af
this study, but did not chow any great improvement over the
standard design.
The inherent ad/nrtagec of a bettor-feed, cop-diecharge
type vessel had been rsccgniard, ar.d die design of such i
vessel :-;as speaifieo sari/ in the Cz reloomsc.'z pro .ran. Bottom-
feed arrangements have -ho potential advantages of (l' Leas
screen ear; ,2j
:1j l .x a Ltrsen zrzi ging -i;rc,,t oc.-a re
moval; ,3* Lc*-or
-Jng :ert c; , T.eot _. ert-eircal;...g
of oaoe; <5 J Install" t-or. cf \oojel nearer Tl-cr l-r-e... fee a
a vessel .:as fabr-carcc (See figure 2 - Bettor.--sec T'erc?:j
and subsequent aval', a tier subs tan caa tec too nu--.n cages t,.,z-
During tne course of :"e o;tpari''3'-.4-al runs, it as fo-md that increasing ;no "=3sol raight-to-diameter rc,,io resulted in improved dispersion, .. now vessel >'ade up of four separate
sections to give a variable helcht-co-diameter ratio was
DUP0300Q1882
Philadelphia Plant August, 1552 Process & Ifethod3 Study - ?-l
-7 -
designed and fabricated bo evaluate fully a range of ratios-." (See Figure 2 - Variable Heignu to Diameter Vessel). Sub
stantial improvemenb in dispersion over conventional vessels was noted. This vessel was the final semi-works unit evalu
ated and was used as the basis for the proposed improved de
sign production vessel.
O'
Other designs including the current standard design were investigated either on paper or by experimental model3 during the course of this program. However, no cthsr* units were
found sufficiently satisfactory to warrant additional evalu ation on a ssai-v.crko seals.
b. Auxiliary Eouinrrsnt and Controls
In addition tc the aforementioned recirculation system developed for use in the serai-worlo installation, investiga tion was made c 7 clier .auxiliary equip re no aid eoncuols el: her necessa.'y or desirable to the operation of she ''^7 Process".
Methods of prsmircing ar.d pumping, investigated as necessary auxiliaries to the process, were studied to a large ex sent
by summarising the experience of the Division and determining che purposes of cheir utilisation. Svaiuaticn of screens was Investigate J in a similar ".amer except that actual ;est
CJruns >.re carried out -.rith plastic screening.
7eed control ;o ;ie vessel j u s studied as an imporzsr.z con
trol faacure of any '47 frees33installscion. Squipner.s evalu
ated included che standard ?lercoid electrical control, a per
centage timer ucec in conjunction :n sue _'esa pomp, a
Hcneys.er.1 Hi-1.1 Hn.-J "o-: rrl "d/Cj a colancif -1:2 - al**o
ara a eu; barfly *-alve lefr W/;uv. Ither srs-toc.- ci
ccr.trcl '"ere invest!-a-ed r.t uoc c/aluated, Zruiurer.c ':r
the central of ^Idcuarco ra.e
also s-ucisd.
Temperaturs variation throughout the vessel was determined
and nethods cf indicating and controlling the temperature investigated. Otner auxiliaries studied. such as agicaior.
drive and di3cc, and grinding media, will be discussed tore fully later in rtiis report.
3. Develcrre^t of Fropc-ad Dsirn fc-* "o.* Trctallaricps
Based cn tne results eccaincc. in :hz experimental pregrn, production scale correlations, ard rhe investigations co^.u-'H
at other Finishes Plante, design standards were established for future installations. Ths essena_.il paces of tne procosc-i dosigi ;,erc evaluated on a 5-1/2 yallor. 3sui-.ro."':3 installation. In ti.3 case of the recommenced vessel.and drive, the resulting, design was
an engineering compromise of optimum design and practical, low cost, production installation.
DUP030001883
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Philadelphia Plant August, 1S52 Process & Methods Study - P-1
4. Alterations to Present Production Equivalent
In the course of the experimental program, improved equipment
and methods of operation were developed. Several of these modifi cations could be adapted readily to present production equipment at a small investment. So that increased productivity could be realized immediately and experience developed on a production
scale these alterations uera made to several 23-3a!Ion production units at Philadelphia. I'oriificaticns thusly evaluated included increased screen area with cha use of a bottom screen and addi
tion of a fourth disc to the agitator shaft. An improved screen changing method, developed by one Fort I'aiison riant, was also
. incorporated in :ij@se modifications and found vary satisfactory. Batches manufactured on these units were followed and the data
obtained used in designing chc proposed no;; installations.
E. Reault3 ana Conclusions
(O
The results and conclusions tabulated in the Summary are
general in nature anc are designee far use by Divisional plants to
r -prove the operation o? prasarc
ri-crc-i' r'irj cit to aid -hose
plants *r.en new IiiStrllJ'-iona arc c^itc-.p: ' :cs. I', ircur to c.pple-
irent these results ana co pro-a-c
lyre .'d for f . c.-c in ciga-
tiom the following are findings aspLlcaola to specific -arts sf tne
'i-7 Process ": -
1. Process Variables
a ASW---4*>fSy-ti*1. s
Increasing the cower input to a '?^7 Process ' grins iias the
-rc-tcs* offtcc on Lrcrcving tre e ;-_l-t-' c' das"rtatn sf ail
tre iar.aol'*3 ir/ol^s- The; yo =" P^
r'.-* Is
decencer.c upon almost story ot.ifr "iraacl'- o tiie precsss so
that ;o Increase J:e v input -r: c.- .-.c-w -f c-* o . .or
variables must bs changed. 3cr.o factors affect cr.rer tc a
greater cagree than others, and vines power is nor the sole
determining factor of cispersion, a Judicious chcics of the
netted of putting p=*:sr into the grind =vs-s bo exercised.
Furthe more, a oraefcioal limit cf power ir.puc ;;us reached
unsr further Increase cf oewar did ro; produce r.ctijeaoie
quality improvement. Th,,e limit he i seen sec to tpr>?oni-
wacoly ; .C herso'o ;er per ,,r-loi cf case in "ctce 1, c- 1
iiorcepo cr* per ~-.lVsi
n.
tr.c effect of po;cr in> c cn cuisine ctrangl.. c Janet 31ac;
Base at various formula sicm. This ;ra?h is ccwpcser of _:any
rurs hclcinq cans ton: only the -'ecocl i*.'enc_er.3 end ci-o
'0
{l1! Agitator Speed
Power input increases aporoxiaatcly as t.is square of che agitator speed, the disc siae remaining constant. Increas ing soeed is one of the fastest methods of increasing power up to'the practical Unit. Exhibit D shows the effect of
DUP030001884
Philadelphia Plant August, 1952 Process 3s Methods Study - ?-l
agitator speed on dispersion and indicates a definite tapering-off of the advantage to be gained by increased speed . It would therefore be desirable to set speed at
a sufficiently high level ar.d obtain additional power by
methods other than further increases in speed. Agitator speed of 300 R?M (a standard motor speed noc requiring a reducer) would be the most desirable agitation speed.
o
Since car.d is heavier than rest rill bases, a certai* amount of centrifuging action is present in the "47 process" With conventional installations, -l'i3 aclon is generally unimportant. However, z.z high apotd.- cer.5rifuji1.g_ of - a.i'I will reduce maximum througnpuc obtainable especially for low viscosity bases. Thi3 factor then also inposes an upper limit on s^eed and points out the desirability of a
lighter weight grinding medium.
(2) Agitator 3l3c Diameter
It was found that peripheral speed alone does not <2e;ersjine
power 3-t tvj s actual cite .'ioreter produces an z'.'zz'.
In it3clf. At t.'s same petipr.srai :.:oed, iargsr -.so; oro-
7Id? slightly 1--' her -c.ocr c.J tl-c ^. r.a^ l-eic.si uloperslon. In aail tion smaller ducaeter aiscs prevent suf ficient mo cion of sar.d and 'case In t-.e screen area, re sulting in serious screen blinding. Experimental run-3
showed that for a 10-inch inside diameter vassal, 3-Ir.th
diameter discs were satisfactory *rhila 5-Inoh diameter
discs resulted In a build-up of a 1/2-inch layer of sur.d
and base on the screen preventing throughput. In an 3-inch
diameter vessel ooth 7- and 6-inc? dices we'e sa^isfacto-".
The optimum ciusiitei disc, `.a:: .'ere, uculd be su; : t? :c
be lamps enougn to pre/srt tlirVi ind :c provice uuequate
power for dispersion. cut nc: :c? large to pro'-ic*t farmer
power increases Vr ctrser -'orhefs. Tils ' ould lord tc '
design cf a vessel watn a relatival: still uis.re'.er uj-r..;
as large a disc as possible (up to 1/2-inch clearance be
tween vessel wall ar.d disc edge).
(3) Number of Agitator Siscs
Experimental ratal to s.-.owee sui irersas-ng -re n*.-:?r 0:
discs increase, oisporsicn rat? zz a "ory s-'all cnc, 3_oe *r.
power req4irerent3. A fourth i_se vas stood co s cS-It-il^-
product-on urit grinding 33-1-'-2 "allow ' i_i Sacco. ' sn-i/
batenes covering four cedes "ere followed. Test ref :s
showed improved fineness and tinting strength on three
codes and r.o change on feurtn formula. A power inor-tue of
5,j was required for tr.e fourth d'ic. A vc3C.a] long to provide room for a large rumacr of oisc3 would be -a-
0
DUP030001885
Philadelphia Plant August, 1952 Process & Methods Study - P-1
- 10 -
(*) Agitabor`Disc spacing
Space between discs '-.'as four.! satisfactory down 10 a 4inch clearance. uisfc a ooctom-fssd vessel location ef bcth uop and hooter, discs assures ivporsaace. tThe bo stoic disc (Clat) should be lo^vced at the *o? oC the inlet nipple. The level of the sand and base nixture above the ccVdloc was found critical in the operation of the 5-1/2 gallon unit. This level should bo juffIcletoly nigh to frozen:it soiasning fret; the arrle di 32 .ir.i yet low or0ugh co provide
Jihcient ci;r''0"3 o' u:.corla_ for effective notion a3 acre on and fo- level 3 r a , l operation, h'ith the 6-1/2
gallon /otael . heoptino.-a io/el was found to be fox? inches aoovo the up;:err.Ojo cart of the ar.-le dice. In larger di.ar.sher veiueliaad with heavier ba.ie^ the operating level
HO** lb U V u V Jt w t* >
The ''angle" disc developed at Toledo was evaluated 33 a
rjplace.unt fer c;:o Va y1 iuje. Joe of an angle cut hue
permits all dices to bo .tea3 flat ur.d interchangeable. In
addition; once ths ungle Lu j is cue, all replacement.*: can
ue nxde with flat discs. Various angles for this hub wore
* s-I'-acoJ oui-log t:-4
ni Trv-rar., a.v rerj*;s ir.oi-
-Z'ii tons
l^&u - 3-'`owrsii * c-o -"-,s'.^I-faohc. ,;
for oufficienc 5ur.ic\-*r cn : jr-or-Joed vessel ur. ll-dgreo
or.c,le hue ; es fo \-a s-'t^afn' ,cry. C.'cn.or an -las ere net
r>vaiu&tad' due to the'incrsith^'probabilltlw of splashing , '
and dice wear.
During the courts of ii"ss ilgscUn, considerable difficulty
vas expsrierese cn top-feed vessel with a very low viscosity
case cus tc corest clJr..:_^ . ft 'it: fr r.d titt
:
rnues. could be tcurlci 1 ' ,,a..n t 'o^ucowa * dice zrrnnreneac
opposite the screen, Two opscuito. "..-degree, ar.gl3 dascs
_t.t a l-,,rcr
r.ce t, ,.13 uL._ ..
It " 1 _~cec2-
u.n;" ecsior t- t.^cta- T ^
. c''>il ;:z
were abnormally .h:.gh md la ;or d?*>3icpa3nt3 elicirabcJ one
~ec3csity for such ~.r. a X-, - * 1 *0 -
Ltd in; K-sdlur *fTa-'Tr--1 'a** -* # W-W U-*?--fa* *,r .
During the courts of experimental worn .i3h Carbon Dl^cic
lase at low viscosity, a centrifuging action was noten "3-
tulriir; in scree.: Jl-r.d
an t-for: ~z e_i::anat: .t_a
action, ir.veati:*:; *on o'1 -'eraa ofar thrn cans uas url.r-
taKeii. Various -ypea of media including 'Dacron", nyltn,
--lica gel, ccroorl -iur a.:i c'-c?_ >'oc,
evaluated ir
laboratory equipment "o determine the effect of particle,
h-ss ard sneo f_c 0ra.-.cv on J3V '5:on ^ces Sxmcit A .'
1.13 results as ohc* n -r. Zxnifcit D irdicats that particle
3isa h&3 a marked effact or. fr.e dispersion of this fine
carbon blac c pi^owt wh-ls the influence of specific gravity
is not as effective. Aitnough no satisfactory economical
small particle 3ice nylon has been found to date, indica
tions are that this medium would be more suitable for fine
DUP030001886
Philadelphia Plant August, 1352 Process & Methods Study - P-1
lllSi!SI!ISI|lj|lll(i!S(!lllS!llilSl#iiilllliili|lilBil|llllill|lillSillli|#l^llSlil^iillllllll#15111iBfi!fflSll|l|j
dispersion on "47 Process" than sand. The nylon would perai&A use of lower viscosity bases, require less power, reduce Vy screen and disc wear, and eliminate centrifuging.
Various fcyoes Arid sizes of grinding tr.?dia wore evaluated in
the grinding of hard extenders by "47 Process". Previous
uoric^at Flint iFlint "47 Process ' Progress Report -
December, 1949) showed that sand iras unsatisfactory in grind
ing down bt3es for A .iterative nrirers but that steal shot
gave the required fineness. This finding indicated Ait.fc a
large sire, tough grinding nsdivT. \:~z required to grind down
the large size, bird extender oigrents. Laboratory runs
rfii.h 10 '3'j ra 3 sh sunU, 10-20 tic eh sand, 3/lo 1 ytaei shot,
1/4 1 rabble.;, 3 ar.-l 5 a?n. glas3 halls vers ^ade. Results
/ath 33 "903 (9C,CC3 cycle PI-j ^rlnd) using *.-31 ex to,icier
yl.gnent showed that the" steel croft
g'-'rjn 'lallr g^r*
satisfactory fineness. The steel discoloration wioh the
s;aei shot, however, was excessive triJ.3 the color with glass
K-lls '-as hocter :rs.r ":f.ida"d ' hi; .-..c .'biedly icr.t.-iincd a
largo ar.oonc of pesol: ciscolornjiin.
(2) Sand-io-Sasg Ratio
".no offset o'* sand-u-has'* m'li t-i '`'ntsrci'j'i is c-a'-t-dcnc
upon ;-_c re_c;iv3 sa.:i if '.ri.-. --i
; i, rrcjuct _n s .3s-icn.
On fine particle size pi greata the S/3 ratio assumes iis-
,x.rt.nc.e -a-d " *rv - ; 1 zry:z - eff o>?: c m.s ratio or trio
, '3Bf a1o'. ft1 ^-O'l
;
' - -' j 3 * r -^.-i
high ^?rd-tc-hsso rar'.ot gcair.:!?.'; 't the r.ir.Lour ihroogh-
put rUvio o;taina'jle. fie currsn.* s ;a:idaro ratio of 3f/Li0 us
a good ccraprornise ar.d should be us a 3 as a starting point for
all.forsulas;. ?
x 4 v<
// y -1i
/
V; pro sonc, a ec ."n prac-I;* in ` -7 7.re icis" :ra it is
,>s ytriod-c sdju-t c' 3..-.- _c~.t :o * cori'-o d3t;rjion.
-1.-'3rate -oZr.t-.-rg, -or.jii A v.'_- n;s- c 5 :o .v j v o 'i ;.-r-
'-aci'.g o'* -gi'-ator
.1
o'* ;.:is nr*-'I ci"
s--ily go-
of .-a. . -5o .v_ g .r. in ur.v-.o ?n an;*:*: of :
la tie vesssl Indio tiens ire tunc ohw opciEvn snnu load
i3 250 pounds (23-gallon uri'i' nr.d this amount siould retain
constant fir ail grfn.1Q. If ir.proved dispersion is raqv.lreci
W -> lUv-C . fc~l- --
ths snr.d-co-oase ratio oar. 1 ? ir :r i isid
o; a i-tols
:'o/' of :.'; ' _ "o 1 :zr.,z>. .<L^clo ( /*:
:o*lf jn*-.iy ca ca__m.o .-..
*.,o preo.ic-l o:o-'.t..-g
lirits
*'5^ c: to*" =~r-c ;-:-c ic;--*r?r.o *o*l. : >o r:r-;
g,reat. If, or tie o'- ,e- -and siff-.^l;/ is 3r;o.r.tr,d -. i;r.
to cor vrrloani ^ .nil rv ': -a. r1-6.!", rlgi tiiroog*'';
rate, the sar.d-oo-cre ratio co-id be reioesd withe*.; -*,rrc"~
ir3 cand. (Tnls Ref'-d of ud`.*3c_rg oa.-d-to-base -c ,..o J
analogous to ball mill operation w.re volooa loading if ;se
case is ad ustod fror forrrula .o '''r-.la rrltwr "an :io
addition or su3crac--cn of balls to `-ho mail.)
m
w\*>sJ!sBSiiiiiPis
DUP030001887
- 12 -
Philadelphia Plant August, 1952 Process & Methods Study - P-1
In general, low sand-to-baso ratios (45/55) result in higher throughput rates and lower power* requirements and are desir able for easily dispersed products. Low viscosity, light
bases where centrifuging becor.es a factor, will have a higher possible rats at higher sar.c- ;o ~j e s ratios (55/45). Ths higher ratios will reduce splashing and improve dispersion and are desirable on difficul"-to-dis?erse bases.
d. Formulation
Formulation work was centered or. revisions to the two-stags steel nil! formula for 33-2C1, Carbon 31nck Ease. Laboratory "runs mads to determine the optimum ccr.centration3 of pigment, resin and solvent indicated that the higher the pigment concen tration and the lower the solvent percentage sh#'easier nhs initial di3?ersior. {See Exhibit C j . The upper linic of pigment concentration to maintain flow lr. tnese runs was 1Z$. however, in every case, it was necessary to grind-in the second portion to bring to overall formula with satisfactory fineness.
The viscosr.oy Oi cm "remL: cf -11 one Carron Black cuss
forelations ..t /. :s ..?nt_d ss:
.'ono-o.no a: arpronlr.^'ely
z -j -j coo, I'.e irccuioy cf z:~ ;t o .cao-; ;iu foird rrcfcrciooal
to the percent pi-yrentatien and the degree of disperoior. and
ranged from 500* t . 5CO) epe. (TioRcsiciss w=re * ensures oy de
termining the Erobs Humber on one s termor 7i3CCSireoer. Since
base is thitiotropic, the viaoccity is not constant ever tr.s
entire virge of leading!!.} T'-c 1 ini ting practical ''isccsity of
;ho dispersed bate was feun.o to to uboao if Cl cps. at uhath ?c~nt
she chroughp'ac rates obtainable ore toed -Jus to the puffy, buttery
consistency"ofs the ground base. Since1 throughput rgines* .are i$-\
;ersely prc.?nrtic'*al "o -'ito oc.lt*; -.*e li:al formula tit- .;culd to
it a lev vioccui " cm t-s :o.a*.-1 .--1. t la
_j o.-aor.
rax-isram
For carbon slack ana similar bases
containing very -trail ultimto tits partaclea. the resulting
viscosity of the ground base is a good iadieu-or of iegrm cf
Since high viscosities genorallv limit t-hreughput rates and
since a grind -in of the second -ttmte it a necessity, the optimum
femulation of this carbon blar.'. hate would bo the overall
formula disponed in one ptc:, F.ani* with this ororr.ll Imaila
In the conventional 2/1 he!gat at * *ecor ra;io *,s^zsli *ssalted
in very poor quality out vi;:i :no 5/1 leight to diorossr restel
firoress of 3.0 coulo lo
Z.'ic _r.prc-er.cnt ,rl:n z~a
ne** vessel ccoign Tr-.sa fsac-Jij ;ao fc-.-w.ia:lew of a o.*3-j o s s
oystsm for produces cirrenr-i g~t rc _n . :wo-ct<.g3 cp;-*:io<:.
Although lower operating cetera surea increase power input
(by increasing viscosity), tiiro ur :p*t rates obtairafe* are not 03 zreat 33 a: rigicr -e-p ra u-c. . ft -3 rore c^u-rtcle 'ro formulate ruavitr oar.ee end cb-i. n ti c save vioccci**/ b * oper ating at higher temperatures. Temperatures of 140 to 150 F at the screen area should be satisfactory. Since tre terperature of grind was founa to increase runic1y as tho base approaches
DUP030001888
Philadelphia Plant August, 1952 Process & Methods Study - P-1
iiiiaigiBM
the discharge point, the area near the screen should he used as the control point if temperature control devices are if<;ad. If an automatic controller is r.ot uasd. a temperature indicator
should he placed near the screen area* The W of an automatic
controller is a desirable Scut not necessary feature to the op-
'.ihlle prosenc coding facilities are satisfactory for oper ating a; temper-azures above ISC?, use of a greater height~tc-- ciaoecer ratio vessel Indicated t.ie reed for greater coolly capacity. At 5/1 height-to- Jia-te ;er ratio or. the experirsnfcal vessel, ampere.cures of 170 to l3cr mere reached in lore ".ban 1/2 r.cur operation. It uat necessary, therefore, to provide
greater race of flew of cooling vracer in ;he design of higher
height-to-diar.ter ratio vessels.
V. esseinlBi.^mDiwSsi,,.smmiiainji>ni?>iwu. \ ; \ \
> -7 <
^ s -
Three eziperixtr.zal vesoc^o of tic 5-1,3 gallon sice .ere '"abricatod sr.d evaluated in t^s ?3n-;i:r a ins tails tier. Cl3e figure 2), Qzi'.i? laboratory tire wi-icn. .nc_ud,,::g - e rc-vting cylinder n-j faorlcs-c . o* cno I'.oro.- 71s.r.z. .3-0 :Lo
Ths ' vs-Its of th-j3'. ir; j ^ -rat ' i i.. -vJ ^ `u ..lec-
ticr. of :r.a fcllouinv 7ox:ur3s for i*'oaI iedgr.:
na
snail Ilnmoto- /ess:! fc" ` .3; pr'-jr 5''fLs.-rn-'
=.4} Large aumcor o7 clic:
5^ Large acreon area `5) Boscor-fsod, ccp-dl,3 3harg: r7' Scre*'^ reriovaJ. ,ii:ho:o a_cuirt.Ir.- unft or sn't
Test of the abo"'o mentioned itc.oe '*er included m *.he
lotion cf ;':e variao'o :i :c'-3-.r *a..,o 3,c;l "."J
during uta latter part of the experimental program, and one
design of the proposed "e: 3 >1 fi-' a: procue ;ion Ins J'r nations
is based on this features. *rith this typo vessel nr. a satis
factory forcr,.!, It should possible to diapers "oral
ca: -to-cr-.-- sitea a- : ,:; ,f ICC yr-1 ;ra nor .av .-.u
an overall av-rage production ""7 ?roc-os 1 of a; .ease icvclo
-c proper.*,
.--vage of . -_lo..u ,.er Lor.
funs nuae In ^".3 c.zpcrirer .ul revl-:or z cr.lv Jn^ic-cec
thus on urcc.'.crolla: cnrougacuc, : -a,,:.ir*n raze co
j'.e
was proportional to the screen area <deo Inhibit P). T;o -So
l-alien prcducilor. ;c*.col {crc cac.c ,,n r?a.it sno 'Julox Jj -
partroents of she Philatelpnia Plant) wars fittd with a bottom
screen toprevid approxiaataiy 533 additional screen area,
ilatlcod cf me cal la cion _e or.vn r Pagure u. ,, vide var.j-y of
mill bases were followed through these units and on several
products rates of over 100 gallons per hour were obtained * A
few easy to disperse products were found-satisfactory by Control
Laboratory tests at double the formula rate. Screen wear was
found to be no worse than currently experienced on side screens*
DUP030001889
Philadelphia Plant August, 1952 Process & Methods Study - P-1
- 14 -
f. Throughput Rate
It has long been Icnowa shat quality cf product is inversely proportional to throughput rat33, Thi3 relationship, however, is not o iraight-llned out rather has a changing slope chrougnouc. A cha-ige in rate at higher rates has 133 effect on quail ;y than a similar change at '.over rates. At low rates quali :y Is critical, but j.f a csrcaln product is founJ satis factory a; say, 50 gpn, coon th^rs i* a good 3nance that it will he satisfactory at 80 or 1C' xj.i under tne same conditions. Therefore, If by an Improved design or bettor operating condibior.O; the critical rats a; v:hi3c. product is satisfactory esn oe increased by a relatival:; .-.rail ar.cunt ths.j chars is a good possibility that -it even nr.cn hig.i-r races th* produce will ecncir.ue to show satisfactory quality, in grinding 33-69?, "Dulux1' Shading fellow Ease, quality was i'ust as satisfactory at 40 gallons per hour as as 15 gph ii tho 6-1/2 gallon experimental vessel. Hurts with 33-2C1 shewed t'na: rate was critical up to approximately 12 gallons per heue but quality retrained essentially unchangsd front 12 to 30 g?h.
The maximum througnpu; rasas ootainabls are directly pro portional to (1) hgifcacor Speed, (j ) Screen Area, (3) Temperature, *(") Disc Sixe ar.d inversely proportional to (l) Sand-to-Bass Ratio, and {) Viscosity.
j;quuottent Ltesinn
A nt>. design for future Installs:ior.o cf 'l? Process" unite ia proposed bared on the results obtained In the investigation of the process variables involved.
The new deaign consists essentially cf a 30-gallon vessel at
a 5/1 hairhe-to-df xaatsr ratro. 3c.ced on the conclusions of power
rcouirsrj.nts ae a /ariab?e, this uric ro-ruiras a 3C K.?. direct
drive so cor operating at 900 RF: agitator speed, thereby eliain-
cuir.g the cost cf i reducer uni;, Tnia higher vessel has ten
cliic'i wi;fc z disrecBr of 1C inches stoh. Specifications ara ra- -
''ias'l to eliminate
uecetci-y for 3 taeniae,-. steel ir. these
re seal o. c cnould
coo .earn prod c tic n ratos anticipates.
Cooling oatasity Is Increased anc. screen changeover simplified,
''easel u j -our-tcJ near tns floor vita d~sclarge direct to ;an.c3
rr j;ora=s, Al-'cagh t'ro r.ei .'>* of -h s *-rit .`s corridor::!',
:"an prsran. "W Is .. .*s cl^tioral herd room is requirsd.
Desijn of ;he` teasel nns beer a-'plai-eci so tna; fao-'icaticn coot
/ill'oa no -ore oral. tn: s for current 'ec3els. Assesroly of discs
and snaffc i3 critical ard -are sheili be taxer, in aligning ard
balancing. Procedure simiTar to fcnat outlined in Exhibit *J anould
be followed.
DUP030001890
Philadelphia Plant August, 1952 process & Methods Study - P-1
b. Peed System
- 15 -
a
Press!* facilities should be 500-gallon standard mixers with revised agitator and valve designs to reduce investment costs. Design of this agitator is based o.i the experience of currant installations and ths recommendations of z'm Engineering Depart
ment the the punp running ging should be clioinatad for all types of bases ana pump wear
considerably reduced.
o. Level Control
The circulation cyooem described above precludes the rood for Mercoid switch control of tha pump. In the proposal installations, level control will be maintained with a simple butterfly valve with paddle uni l3\er system. Inis levsl control device ^as used successfully in the experimental program. Two methods of in stallation trowed satisfactory and are shown in Figures v and ?. The following comments concerning thosa sketches are offered:-
(1) Figure 6 ehows paddle at 130 from front of vessel, material v&jasl rovlr.g cc-nccr-c .02 r l;e.
(2) Figure 7 shows raddle at front of vessel as viewed
from rear of vessel. Here the lever sysbemwmp ,
placed on each side of plate arf valv
'-or.es
i'ron bottom of "nlve.
'O
should be slotted, also.
<b) Adjustable step bar ii slot probably cot no canary on large '-uiita at high tnrouchout rates.
(5) Fir.sd ~.sl.:b of r.t.rr
z': be ad ?uo uhl:
for perfectly cons tent Ler<l raintocoxico.
^6} Paddle is 'V sloped for s:re 33.0citive control.
Cr. sresent Ire call.: ticn:., ? .cr:o__ s'.i :en ''2: t 2
role o*t artirg ;r.e cjr.p for feid-rg 0: lv 'el dr po 1:.: -Its of turning off the punr: in event of power failure 0T agitator drive. To orevsnt roillo in case of iglcrtsr cc*-.pr foal .re, a safe tv shut-eff valve has teen included in the ep'seifi eat ions
to be installed on the draw-off line juiv before :ho level con trol but ter :iy valve. 1 lie safes: ial/e .s e T,or.-c*c__Jir butterfly valve ope^a:=c by z solcrciJ "lrrd in tna agitator circuit so chas in o/er.t of po-efailure, cr w.isnsvcr the
agitator la turned of'% this val/e fcill close.
DUP030001891
Philadelphia Plant August, 1952 Process Ss Methods Study - ?-l
Work on the control system was concluded v/ith the evaluation of a Minneapolis-Honeywell Hi-lift Hand Control Valve with pre
cision indicator for number cf turns. Although this vplve doa3
not give perfect control, it was found easier to operate and :o 'oncrol shan present irethods utilising drilled pipe caps.
Two typical oreposed Installations are shewn in Figures 8
and 9. An installation anere. the grinding unit is placed in the Grinding Floor is depicted in 'isure ^ while the otoer sketca shows uhe vers conventional Mining Floor location of tr.e grinding unit. Figure 10 outlines the ertcosed disc arrangement
with detail of the "anaic" huh.
Detailed specification list of tne proposed standard units is gi/ec in Exhibit C. 3sti-iiced installation costs of the
proposed standard am shoerr. in Exhibit ?*
d. utner aesulcs
a, Capacity Reports
Investigation of the 4jT Process" Capacity Heports issued
n-nly ay all plants rsvs-let t.mpor-a are cl l-'.itod
N Ta' >1
^A V^
+ tfl
n-opooc-d rsviviro.s to tr.e Carzci;y .leperto. k typical, :hcugh sinplified, example of che proposed uachci iz given in this
i^lfci^tt!|8iliii!|iiiiiiliiMiiipiii!lilj|^l!ii||BPIiPliilllliWiiwiiiBilWlMiiS^i^
B, '%w Testing Empadugfe,
,' ' .
7
J,r. / 9 ; 73c .or1 "*c*?.* . f ac tory
f'.e'i -or :slenuny f'6- degree o: .3-
pars tor. 0
b lac.c :c
C>7\exporir
JnM 1
MW 4*4 s'fa
3<ui,
VV
*r
pregrs for .c
and no sa " 7- >* f *ic r.ot"-
:lor ir/cbhc'd fsr lev reflectance products
exists. :*i3ursr:arx of zL'itzii 3 trass;h ;y fscerainiag relative
color on is wu ,-:rt DiTfevsr.tsal iTolor:.:.a ;sr gave reprove Is la
results. r.^~.:r,,vul vulv.ca and yoci co.*?sl itj.cn. Daca-l3 of
5hi* method of ,e:ling ire gi'cn i.: ^r.hiclc H. ?ae rnechcc
v Ol 1c te
's .< " z- .**rs".rv f - ;.u`rreir. pjcg-" a
whore degree of dispersion of lev; reflectance materials is to
be de bemined,
c. Potential Savings
2^.pa:w..f? use cf the -7 Prcccsj ' -ouli yield an asclint-tcc potential anaiai urccs sav-.nys of zporoxi.-.&tcly 900,003 :: 1'.e Finishes Divider. (Sco X*ni'oi; I). r-ase e v/ings are c*:s.d or the complete elimination of Ball and Pebble Mills as a method of alspersicn and upon doubling '*7 Frocks" grinding ra-so and
are summarized as fellows:-
DUP030001892
Philadelphia Plant August, 1952 Process & Methods Study - P-1
- IT -
Iten
Labor Supplies Repair Labor Maintenance Material Media Replacement Depreciation Welfare
Potential Annual Pavings__
$ 307,000 38,000
135.000 113.000
202,000 9*8,000
43,000
IK'KiJi
Details of the savings calculations ire given in Sxhibits
Although se/s-al :;3fcV mid ha rtcrziszi ts rdtlioa rush a potwntlai, auh&is*nt-.ul savings could W obtained wicnlr*_a relatively short period th.re.ugh the use of unit3 v?ith an im proved design to provide higher rates, lt-;er maintenance costs and the use~of additional formulas on this process,
p. Auxiliary Reconmenda-ciors
In atci;ion co ;s retomnenc ttions listsi in the Sx'trir". tnc following ..;cv, should to cctaidtvai. lor asp iLa.t.-
1. Revise '4? :'r-scs33 Capacity Rspccts is ciscussed In
" 3
2. Chec.e forr.ulas for opcijvo sand-tc-base ratios and re vise tr.ese ratios on formula cards where necessary,
When an improved operating ratio for my particular formula n&3 been establiaaed, the laboratory should be oer.ctf'o, t\ 'err,ola re; :_tr. resu;3:vj -s the; f.= *rr ratio and the reasons lifted leading to its new ratio.
3. Revisa raheG or. formulas is infemails:, from capacity reports becomes available,
4. Cor.tines investigation of nylon or ocher 3cIvans-Inert light weight nedia.
5. Revise ,4nr Process'1 operator ,jOb description to Include
s;*ct checi: for fineness during grind. ?hi3 would nc-
r-*.lv..u.co f_ial .c : ' Jortr-'l lu '*.* oils .ruble
r.r>:^?:.T ra.es c s: ob^intd
tn: -'--.ce of
a-
5, Use the tsacing nc;noa 3ugGctea Ir. t.'--u roport for :tscare l and ce,Tc3or"3n: prsgrv:u on any Is.; rsfloctano
7, F~rti.er inves:: ga :a i3e of 3 to 5 r.n. flS3 balls as a potential grincins medium fer extender produces, Special
emphasis s.tculc bo placed on extender grinding by '47 Process because of the lare potential savings In in
vestnon; and grinding media.
O
DUP030001893
aMM
r
r/i -
* -.
*' >
-0
S
DUP030001894
V'/l i/p tfOTC-Z-
Z^^fhHW 'PF!y
n ;tDH:^ ' *rZO -T3 >ZCC -
;
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W4-rTf??7TP
-i_.
\ Jj' F. L L ~Z* *'/0-v
DUP030001895
j \*'r -n 'j
''-
\-mowa)-rurmz. yean
wm
~ - --7------------
*
~fhl V* v- ^ " r-'-~f " ^`r Up '
jrXFf/?/. vftf'm &&&
/0`
ifAR/flai? s/fts/tT * TO DtArt*&-J3QTTOM rFED VfJZFL
CO
*|fCP.. .-li-- - -
s
L_ i<tt 1
H
--i Iiiiit-*-..--......... '^V1 ..A ----*
'1 t`'11 1* 11
f U-
Itil&llt
r o. gJU. L'jT&jgr !7 my/- SfSCrM&e'^<
- -BOTTOM fiTED VJSS5EL .rju.-iDFfi '3*
iiiXZ.
\ - 4
ll (lilililllllil ------------ !
' -- --^ it mi
/"!
--------- 7-- |HHI
tm 'W5 jw;
cjutfotz* -
- aLtxDgt io.iuriCL*m:'if&'
F&:
M
ik> 'rfi .VK:
DUP030001896
m
OPES/ UFA 3 Ci'.a :
TJJ>/PPF BBOOLLT^
*ZAP6 CUMF
r&mvr fitctT4
: ! TAPER. FWKFS '" !
|
_______
igMgKn
1 s,x
vv s >*.
hHil'lili
*______ .*} ^
t r-i SEESTV TZMiE J
j vs ^ SEE ZETfifL
,, * {v
* liTM*^<fciiili .fee - - -fi;
ipiiiifiiii ' -
,r
: ; 'j'S
HC /~3&,- 26
1
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*7* u| *| -it i-t St '- ' r - l-' r
^ f 8CTT0AJ j:FEET - K '
=jj
A VTA 3j ?TA J. "V6 Z " on `FEAFVEz a ~
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ii, ii ' U ir-tiff"
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DUP030001897
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DUP030001898
DUP030001899
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DUP030001900
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DUP030001901
o
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" '^7..7.-.~------ ~~T----------
^1 " /' v'-4' * i,A., ;r ;i* ' '
',
:; 07 g s iij d l v g med
Exhibit A
CHARa OI ERISTIC 07 j EIGDI I: MEDIA
Grinding
Medium
..s .
*1-1/2" Pebblus
, X *' ?0 i ^ O 3
3/3 ' I ;ee1 Bill3 '1/2H Pebbles 1'V Pebble3
3/15" S';eel Shot Xylon-Large Silica-..,:.
'T;.cror. '
,, --l0-20 Hash* Sand ^20-30 Meoh Sand
'. I yl-n-3ru3.il
1 arbo rundu.r,-150
lircerur.cu.';!-?
l i Jl^nen- Size
^l:l|5pi|l|iillli^ip^
i Mazinura
-V'3.
: Size J
7cr O' nun Grindin: ;l)--
Typical
Particle
Sizes
oO^uS Micron# 1 ''icrors
i'.iCITSnS ! J ui,.j
#111 ::5i|iafviS;;::'i:l'A>::-s^!:^':::;:
50 30
33,000 j
!<>~i z
t-Dt'
s-*
-
J
>
t
3,620
3, Sj
390 Josh 150 30 Meeh
I | 1
mm
illlwtll
i
iiip# 1
cO
6o 60 60 51
15,-35:
m Cm 1 * "W
6,3d ^7SC 3,000
% **
S ~ 5'*
S lliailiil!
1
llplilliilllilil isillafcSiiliiiliii*
j 136
* s &\ <
IC4 33
20-50 10-40 5-40
150 lean
40C Mash W-31 W-53
I :s
1,700 j MHHlpB 3-15 'u- -C>3w
||1|| 62 1 510 :
13:3
n * ow
Onro^e Yellow
*v tfo'&f'sWi-'&lx- 50
i,:cc : .liiMllgBil .30
iiSll 62
cCC j ill! .10
Las? Black
III! 21 57
200 '
BainaiMil Mliililliliiiil;l
.03 .CIS
Irou Blue
j^giMisiij
i~7
11
IIIIIMUMHMHj|li|l|ill|i8Siliil
.012
' ' -230
u; - ri^rsn*: oica icr op^I'iiu"! grinding ea'.eulatad
frcn _c?riulJt; -
. tsiltpe'^ sTs* * *f*'^***2, i>fai-^ ~ w * 5 .(, P^^^.ntwon*)
Rei'eronee: ''licrcKeracicV' - J. '.L Dalla Valle
O
i
DUP030001904
E.TOS7ic.ti7s: c?
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CWTAHISO'd 0? OHU'DING H30IA 3??ICI7?!0Y - L^rUCOR'/ SC1L2
A. Oicoersion of Carbon Blae'c Base at overall formula of 6.2# pigment
-- '"usVt4r.rnVil---------1
Specif!3
Grinding Mediur:
! Gm* UrOav/lS"y*4Vmj.&")1
Nylon - large
Macron" Nylon - Sttr.ll Macron "
3.3
*3 3.8 9.3
]
----***--i -1* If *** '- -A
U.J.. .I.mi.1.1.^1 ....JiJ,,.i.-i 1flPWMH
Volure 1 2 Particle iilllilli*! ii :L * it 3-
;j Xadia: Sits
f*cd
** * i ^ - i*
Fineness Factor' * Nils
' ' `J ' vU"'
*0
:.0'jo
2.0
?e.2
4t
-- f<f A i * S'- v
liiiiiiiiiilii T .O
71.1
21 - <2) 2.0
70.1
35
1,500 fiiii
69.1
SilliM Cel Sand 2/15" Itc-il Ivt: Carbctur-dua - 131
14-.1
21.3
o-.i , T/
32
1,700
2.25
6?.f<
jo
680
1.0
mh h mh i
53 :,t 5o Ha
iiMiil iliiiii - (3;
5^.0 . 5 7
Carborundut; - r
22.7
Urt-
:
50
**. (3)
LK')
3, Jlaper-3ior. os' Carbon Slack 3&sa at rh pirrentacien (11 .^y. pigrent)
(.rinding Neoiua
! Nylon - Lares Macron" | ] yV l*o.n - Sai.ll I Sand
L
"^J rtr--rryfgr,<11*" j ' V ft ' #*4 f*
It . 'Jo lure
! , -- =>-: - ' wmmmmm ) ' .'article
| Gravity i fl '-e-'ia i Sis
."inenecc ' _L Thtr.ess
1 LtJvGal.
i Ilierons ?Ul3
?`>j tor
1j .0.0, | 9-3 i 3-
7 j. ............... c, 0- 3
j 2l #5 I l.??0
Illllll , - u; '
2.0
a. 5 2.5
i% silo' } 73,5 1 6a .2
1 21,3
M* - IN *3$ 4 "-! * C
35.9
KCTS:
{!' Car sen Elac >. Base yrovrc, Si, ICC tyc 1-5 in steel T..11 gives fir-cr.css of C.Cf arc II-'mass factor of 55-0. iugncr iaccar sr.c;c pcc'^r tircing otrengti
(2) li-zil -v,Ian ;:35 necdl: s '.gsG 2C0 r.icrcno dla:r.3ter by about one-inch lcr..r.
(3) Carborundon /ias too fins to obtain complete separa tion and nterfere3 vith flreres3 readings.
DUP030001905
DUP030001906
DUP030001907
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BALLONS--PER- HOUR.
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DUP030001909
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DUP030001910
SPMMABY OF "4? PROCESS" PRODUCTION FIIII3HSS DIVISION - YEAR 1951
PRcnucTion 3Y t y p e
To j 1.1 Division Frocuc :ion
!<?$ , . ,
r' Total :U1L lace - All liras' 1-3
"Dulux' Kill 3aso Orthodox sr.d Semi -A 15c;d
33,S1S,337 3 -; `T- -" i 3
7*5-6 ar.d 45 Lir.os
5,215,819
Manufs3tv2*s4 on '*47 ?^O53 30'*
m,** Ait If #*s. * *-O ^ } l--Q3 * li.--f'*- Q**
"'? >< A '****2?
2,472,5^6
DETAIL 2? "TJL'JX" MILL 3/33 'LRODYCTIOr
Plant
Chicajp Everest Fort liaoloon Philadelphia - ft*aay Mix philacolj LU "Du Lim" South Cwll ?7 me 1400 Toledo
Total
Lbs.
3,552,581 i,oi?ftob 2,177,$59 2,631,530 4,256,019 1,116 3v74 125 51"
15,134,319
Bxmolt H
M22 ^
n"
*7./.'i '7J
;i) - Dec-.-. -a*.
lacc^sr production.
0
DUP030001911
Exhibit X
POTENTIAL SAVINGS SUJDK3Y
PROPOSAL I
t s. --. n.'^** production now on 'call-and' pebule ralilo eu formulated
2?* *
af, ?rf`.3cn7 147 ^00533'' average ^afces and C031-.3
baSw-i or. hl_c.Cielpuia ?*an;'3 experience of 1951 {3eo Exhibit Ci
expanded to Divisional Production.
*
Present Costs Proposed Costs Annual Gross Savings
Phlla/'Dx/' Phila.Puir.t ?hila. Division
3 272,913
3 :i,S2c
197,221 S5.?~37
*** />j . ?< t--** it,.
4 OOj 30^ -374,052 970 --riiJg7
- -"v3 , 334 3 J73 i 225
PROPOSAL II
Production rates of codas on "4-7 Process'' could be doubled in proposed d3sc.su installations.
Phila/'D?:. 1 Phils .Pilot Phils. Divider.
< -*>. Present Costs `^J Proposed Cc3ts
$ 76,334 1,665
Annual Gross Savings 5 I-'-j C J
21,C^C
12,534
6,503
57,2'r<-
.iii.1.:!
S3,175
170,933
-"-Pi, 330
63,063
PEQPCSAL HI
''
Coabiraticn of Proposals I ar.d II,
Pr-sent Costs ?reposed Costs Annual Gross Savings
* ~
5 2^1,913 77.3C5
} 132,cC"
?nils. jr&m c Phila. Division
137,:31 31,313
~ . < r-
-00,374 1,37-.053 123,619 __i-32/510
271,555 '^,^3!
DUP030001912
Exhibit J
SAVINGS JIIT.MIL DATA SHEET
BAl^S * - 1951 Costs and Production oT Philadelphia ----- S5"* "Dulux1* and Paint Dcpwtnenfcs .
Sail & Pebble Mills ,!Ji7 Proceaa
Mill Bass Produo "Ion - L'os. - "Dulux" Pain';
WO. Ox Grinding lulls -
ti^.a 1 . .`i JUUA.Uut.
Paint
12,50I,88* 10,7-13,030
'V
v
-j 3,r.2,15-3
^ lliilipiiwiiillil
Production
Rate
-
Lbs ./Man
Hr.
"Dulux" Paint
HIHllRriHiMMl ii^aiiai^MiiiiMiMi
400 490
Purchased ^uppliss - Cc3t
"Dulux"
$7,092
Paint iiilliiMiiliiiMil
$1,336 132
Repair Labor - Coat
''Dulux'' paint
522,568 l6,96B
$-r,42S 2,552
Maintenance Materials - Coat "Dulu:;*' Pain;
)17.50C
11,;; - 7^0
Madia Reclaoeuent - Cc3t
"Dulus" v ' $12*81$
Paint
*6,138
, v $ 300 300
Total divisional Mill Ba.3 3 _ Production - Lbs. ;ij
Total Divisional Mills
'Z)
30,572,329
ZZ,2` 3,533 iiislBiM
not ir.'.luas 'ae-/--* (2) - Does not include Parlin
DUP030001913
PROPOSAL
SAVINGS DETAIL
-MI xroduotlcn one:,** ax: pres V4i,-T9 A1M*.. nsWa ^ ^ 'AOTA
nci* r".lf-vrf in* * J
on ball and 'i,-,'' 'b.'C'JOXJS' 1 -1*rcericrve
pebble .Tills 2VOr"Vr2 rate r? 1951 : la?
> #r t&'W 4"t>4 4U*" j^,m-tv*s?*. A**t ^ 1-,^ < B-.oar trar.;
o
M *) r<Mp VjrS* l/.-Oi i'j$A*>->. *
i o^C "3 ''* ' i"
vtfaiAyj^aaeAifctfiiiliJi, .n*i i,|iMi)H'iriwii'M..ni
- k S + J >lk. .,, 1 *U t
1 33 - ,S X ,09
* 0> "l*' 2J*.
Sr 1 - "11 .'Dij-*;
ia- 36.Z3.34 lbs >
33T8W *y'ssi$nx?
.: 2.1
0
Ml I
^V-
Vn*'\`{
-*
,3
->
J
*1 ST
-m * *
? ^v?
^ X-- *4 j t r3 -3 w M*> w*
y`
3* H-apato. laZoy
Tl rM *v4VO*rrW ^
9 mp
.-- 52
'1* ir ~ar?-i * s *;cr,ez*i31
a. "4'" Proceia*1 fc. Pali Z Fsjhlo
, , . ,0
-.'5 v
vC,i04 17383
5, is&ia. K&pi&omsen?
r-. '4- Process -. ?a:.l Z ?*.:cl5
vS
:, 0 3'Drsci a :I:n - BnJ-sd c ". ra *1 -.se r. ir.x :r, > -r.
Exhibit: K
as,"33 l>
tfb .7,079
3 S28
-* '
. ) -*^W
4* -H , *
b. jSaJLl i3 7,77bio? >.'
k
Investment baaed ec vo-rma ."7 J3
.13 :; >23 :. '!'" - -Z \1zi 13
7 V3 Ifare
1 ,-=
a, '47 Frcoesa*
m
13. -Zj of 3ir-icz --cor -r .1539 x $22,733 03,312
b. Ball t Pebble .1589 x $77,079 -- 11 21:
17, 3?S 15.850
Pniladelphia 'Dulox' Aniual Coot ----- $ 202,913
DUP030001914
* .fetag&al'
:iS.g5Z.^72 . `-,289,253 -
V.
5* ' "3'1-^ ^lac array; 1-3,5?! .,27 2
- i . * * -* T * * * **1\
,, 77
229 "2.
_w - . ^
.1529 -. >33.C5
SiO-
i, 3-53
O
'940' "
i it - *>y
-`f*j433
DUP030001915
-3 -
m
^ Prssant ?-&oij .3. tiS3 -- ~.ciizit Dsaar'iiuert
l. Laser
'~7 P-OCS!33`
3>ci2.qgp rO lb3./~;.n hr.
-<
2 ,-P.
b.'Ball & ?eb'ol*
1 "a72? .030 V <
*3s
t ^ r --
*,.*,** V.
S-~
2.10
2. Pup? Lie 3
1. "~7 ^. Sail* ^ Awaits
- a&siff labor "l7 TrofjGss"
'5. rail. \ .j-'scia
2--
323 5-32 *5
"lv'Z*'\i'.Q2 7?. 13? Ill
a. :: 2 .5?o g o s s ' '3. 0-Vll 'zYzli
* 1*1 ; * "!. - " j ' v 7 .'- ' onsi:'' 3. 2iui j Pobsl*
*1,372 Z* + '*<f si K'f
' 15^
:'7 ?v :j 2s : .vp ;; jr ; i- ~V'J
2. -a*l * ?a:bls
-1/3: ->d57
ovclur; < *. -
; r.---- 3
7.
a. '*17 Precast"
-3 ,-i'/3 o7 Dira^t L-acor 3? .153$ x 113*C33 30x71
O 0. sail i PebfeL*
.1530 :: ?o7,S?9
iLI*l
Total
Exhibit IC Coat
<13,032 :7,o 39 5,o 36 15:520 15,63 2 -i.toi
531
-g.es* ^97,391
DUP030001916
-4 -
Proposed Facilities - Paine PegarsTqsm;
1. labor
iSiSSiSiUS-i- }; 2.1 =
^90 lbs , /fear, .vr.
hr,
2* Supplies: :? r a= 1,012,156
.1:2
.r .a:or
Z ! Z9.U-?.'*t*.t!.'J*Z -Z. 3^012,156
4-w
''SO
y.slntoninc- ? :'.:."3ri.il
1; , 236 3vCl2;i3b
Jv*si; x^
';?r?. R:~ lie crept J S il. 0
- * --~*f' 1 *7* ^
* J IS
a # ^ ,,; *1 ^ -j v- **r ^5 - y*
;^*.rrjre iz~i ~ j ;:.-"..' .
,,o :s.i
Exhibit; IC Com,
,*3 9 u'.*'s-K1 602
n-3- J 1 7, Ji-c3
--- ; -jCCS
&<
DUP030001917
-5 -
S. Divisional FacilitieslProser.fcl
^ praluSIfaS
9::5srl,"s
_ ICOOT a. ,r4*7' Pracsoc **r+ i- <* O *> 2 i *m ^
K >00 4sc: H-- i] ibs 'var. :--. `k
, lc.ll i -o.ols
:0-97'),3e?
- Z"izt -s~ 2 ( -bs/"a:'_ hr.
"
Exhibit K Cont
^-siona!
$105,139
5C3,6C9
"* ,j 22=1
12,143.263 li-i,
.. ,,...,
FT^TtdS - 3.C12055 ibj. " ?{i"' A ^ "
!Rlllfij|^^^fcBilBiHli!!lllililli|Siiili!lSll!llii!!!llSliilMliBllliBfc
^-r:,5C? is-.
*- -724)
V) C2,35l..384 + '.C,T23.. Jj 'I) :t3 .
- 3-^-1
r/r T17
"1
tall -i*.:bis
18MlMllBiiMliMilMiil8i 'i'j.553 ~ l^rb'M ,
'a- ~ caprice ' s. ;ana . % '3** */* ji ) 3 1
\ ^ .aib-3* ^
-- -.31 -
=
Sail S: Debbie
30f9"C,JSo l:s. 23,cr54,3<''. iba.
' -1\17.'*2o -* 1?>0S:* V
5,037
22,253 `33,CCS
114.468
DUP030001918
Ui
-6 -
Exhibit K Cont,
5. KedAx. Jteglacsrr.ar.-r,
a. '*~7
'
* ' 'll" ' 7..ZZl/~^
-- 'b;.
X
V
b. Bali a P'.bble
T'^\ 9/***-* i* < .*-.sc. ,t 23,03v,`j5- ,,! .
*(
-
$2.^16
3- " 3.:
# w <?f %? Vi# !*?*>. wW V * *
: t | j t
a, 3!V ? raq^ss*1
-'
m'" ' '
ia^ed xn .v^ro5E* 3:' 3"$"i:As ^'j 3., - rallon vxnics I'o. 3_' 3 3d. u::ica 'or 3J :c';x,, ur.iss * 20.5 atd. r/oAOs
*'. tall ^ 79'J'319 '
'
'' '
tase-J -.-. r^xei--; ':
: * o ?3b3l3 ' Z:.l
|iiiiiiiiiiiiiiMwBiHfcji(ii?i4|iiBliiliiiiMlp|!li^^towiliilMi itiiiiliatii^^
it ''^a1?
/I.....?......* .
*oro
LI -. L"E,,7'l!o; ,: ,... j,. 1
i~.
- * ;r
"'t *' h -- s'
a*****
l& i .03 ,=
as 3
i:.;r
. jr,?5 ? >ro-3o..`'. ` ' ..j.* j*5^a1** i..i t>K ^-vp*.- -,;j a^
.j?, o.. *. a* ra.. \^'T Jr .a_ ,
.\;- ,3---*i
J t m mm
1'c-sai
> t j .o3
DUP030001919
7
divisional Paoili^isr (Proposed)
1- Labor
.2SjC'4j3j, 2;8 -r- oC . 3^*0, 351/ ***+5 1 , 'rar. nr.
lt3.
rr
P *^
C _w
&! ..ir,
c. Jumbles
103,013,65- :. :.
S,0>8,26C M';,
r ,l" -o fiT 7<
r * H
yVO, 01.8, o57 wiCov ww ,28C lbs.
* `-Siater.cnco Piaberial
* *J C.cC ^ vw
:o:.013,557 1S3.I S,c 3,258 lb.:. : v 9,471
* C3-J ia R.j place rent
, a? r xba * 22,0i-o,253 lbs.
: : i 2,4:6
*>*+*** i -5 1 ^
V* T-V?o/s*-i-*- w:! ,.arouo7^ _1,,f,.cs.. - :0.;
Exhibit; X Cont
>' 20,7S0
23.-J&3 i:*,c35
4>,230
11,233 ;,9ii
1 . l*X*' n --r '-3 '1?- -* * /- y-
--w
,335 ~2 ?
DUP030001920
Exhibit L
SAVINGS DETAIL
PROPOSAL "'ll"
Production rates or.
Pr-ceos" sovld be doubled by
using "he proposed deeijn irstallaoicns.
A. Present; Macilities - ''Dulux ' I?e oartesr.t
** * " ~-,a-3S,3S,3 lt. s
i 00 1 bi,/ zar. ' t*.r.
622,733
51. 1 applies
I:, Mainvtnanc3 Material
3. -IsJid, ?opl;e.'.goa
c , Ispreeia tior. .13 x 4 x 53j SCo
7 Welfare -
.
J? v;1.: -i
*J--
*.-335 4,-23
3CC 1,961
3,612
Total
53 5,3:^
2. Irc-ossc r^cilitiss
i)
. w3::.' - cCD-rsc, ; ., ;c.:sici
i 1 o m * * W ?WN,&f ^ *> (b:c 7. .60 V o)
&3
. fax :t ,-0'
sJNT..
i ,:c;
J. lap'll;'
i 1.-53 J x .5
. IspEir ;::j :
... K
Maintaur.oa Material > ^!36:l .f
, . Med`a A.-;)"..rre-zer.-:
llliiliBM^yiite^lMiiiilllliili^ll;ifliillM3il!!l!iii:llljliliiiill;lliilljSiWSil!ji;IKBIIi^
2,21'+
5Z3
Cai." ots-rali ;.*.c n\"!jar j .' arils ..sc'.irsO
IM
MMgMiiBiM!lMgiiBMl>ligllMigillljp
33 r
___2 253
$ 21,663 Vw-
DUP030001921
Exhibit L Cont |5j|||illII|lli!li|lIilSfl!IS!l!SllllS!llSSSlil8i|liiRSiillil8lllllliiliSlllilllSli:18i
c . J'restsrra 7asilitiss - Pain - 03~at
Z,Z12,lzQ
Y o ic > -
;0 lcs./aan hr.
IMlllijlMiMiB^^iSMBi!WI81l^ll!llillllllli|lllilllll|pi|i|ii|llijl||lliftjll|i|ljl||||WI|llll|||l|
~ . p.s^ir labor
- . iULi tsnar-ca ya^sri-il
j. Maaia Reri-i3 3S3r.t
.;ls8l8li8l^tt^pta^tei^WiM^lllliillllWllMlilpll!lllllllSllllWtelM|liS8lllpiii^l|li^^ii liSjKiiiiiiiiiMliiiitt^^^iyi^i^^iM^fciiiiiiihBiiiiiiiiiiiiiliiiiii^ilgiBiMttliiiMliii^pii
513,032 1* f *nr?1 2* 2,071
o Tt_ r-crraed "aclliciss - ?ai.i" 3aparcr.T>.,;c
I . l?.c~r - _ 1.1
iiiiiii^iiiiipigiiiiiiiiii
1 Oll.lSi *-'os. ____ .
" r .12 ---.
.
5 lo
~-C ":.b: 2; - [-r?:
*r -
iijiii!|Mfcii^Bi
iiiliiiii^^^^iiKliBiiiiiili^Kfcliiiitrtiiii^iiJiMifc
l^Mlil^MiBt liliiilil^^MlM^MlBijiltllMIIUllBiiMiSBiMiiBtHBliBHiMliiMII
-. :'ai `C3?.z(\: * r/jarlai
- -5
TM'Ws -, .
'' 5,
Hoplatsstent
,
-
' ' Cni;/ 2r,9"half "tas 11811111^
cT'
':
1,2'Vl 12,33-
DUP030001922
3
Divisional Facilities - ?M3en;
' '' ' r ' J --^a<*wwwn'|l*|wi`i| rni I III
*->Trii' IIII IIIIHIW'I i I I .III.11.1.1. n
1. labor
.
lbs
2. Supplies
1iS, '
3* Repai:? Liber
>Jr. Mai n t ^ na .ic *d Ma zsvz.r 1
2 - Msiiia Rsplas Tessas
5. i.preaia;iir.
'* 3F"
Exhibit L Cont
o
iiC',033
5,037
-S Ji /% *J
- s .*
. * *; "
.`otal
JU fete* - *&
LilJ3 A*5*nft*n ^
* :4$ =' 3;p?1..5s
'-
' -THTmT^ >5,3 r ;: o
a .5
',
`. ' iir. :,,rii-`:e Maiar'.a?. '?,`-71 ::
Dsprasia,-_.cn .*5 x --j .?o r. o x r o*.': '7. ira :\.=
*; ^uf ,V? \ '' M
.8*319
* ^ * < ^ " i *"
}* J***P
sl*liiti
,,* T*,** -f * ^ v-
DUP030001923
SAVINGS DETAIL
Exhibit M
PROPOSAL 'Til'1
Con; 3ir.fi Tropa^iS ''I' ?.r.ci "ZZ" It era: all tall ar.c
iliilllilillliBiiiIiliSliiillllillllllpp?*reeosbelnse"orraodteusco. lonOr.1ly;
placed on ''47 Processat a cut le onw'.'alD ;l:.a nuisfcer c- ualta vl'-l
bo required :,nd in juclilcn screet and turc v#ear `..ill
be subsnan-.lally roducsc.
A, ?: a sent Facilities - "D ;1u j :" re car tear.t O *-. a '* * '* *v p ** `'"ft ^ * * * Am
r;sc::^i3
-a "a <n --.i, - i -1 7-v" ~ '-'an ~ ''T"<-- -- '
llll!l:!!llliiMlll^li!!liig!ISiii!'lii!##lillIll!lil!!lll!llllilillrtliilll
\S. 551. g7g i`-olO lbs ./can hr.
2.i2 ,-ihF7
2. Supc-lias
:.5.$?Z*Z72 , * --Pr; *^JCr'-Or *
,,d^ / N *
!T <"*I> *
5, Hotair Labor
n n.
x * -i. 'O'I^K:'^'.'-*::';; -
** ** Ze
** -i J
21 ^ .C
W * W
' ** -M< w
* = 31 2"'*
" 4
,3^3
4Sb =
j ^
* *
Le }* ?Ci
T
7
x* 3
, Z,,J
-
*"
-- v-. j ^c">~
,5
, w 3nr-Jbu</v,'.w'a % * -'- ' i*---
**
is 5-tO
sr--O
i O' =; '- * "< *;'7*
-- a .-'.Oi
7* ^l^asar
.123? *: `33.-177
iulSi i 77.3CS
DUP030001924
2
C. Present ?aailiti3o -
Do car&rent
Sav.e as in Propccal ''I1' - c
^ * -^PQP^s-^racillclaa ~ Palm us zzvzz'&v.'c
1. Labor
Ll ^-135?22o Ij s . ., 5 ,2
724 lbs ./man hi',"
a?
2. Supplies
15./35*226
s;
,2' & 3132
5. Rspai.- lab-'i'
--f- x 5 x o x 02,952 3,012,156
4, :ialntenan^e^ :$a serial
1?,"35.235 ,, 3,012,15c " ? " *3 2 $1,372
5, y.sdia. Reolasenc.ic
13,735,2-.:: . 3,012.155 A
,3'^.
,*
6, Depreciation
13,*25 .-O X 3,012,125 " 2 :: ,5 :: 09,337 7. .-'si.'are .1539 k 537,1'C
Exhibit M Cont
*19T,231
3 3
3365
Q
iliililaiiill ' CC'> 1 -
3.129 -
DUP030001925
*** 3 **
E. Present Facilities - Division Same as in Proposal "I" - E
?. Proposed Facilities - Division
1. Labor
103,018, $57 lb-3. 712 lcs./r.:ar hr.
:c 2.12
2. ^applies
21*C&% .)O*='528mzC2:YL7 :; .5 22,048,263
3. .Impair Labor
55,037
103101g.tQ.57 v = ,, 5 -r 3^2
22,0*as3,2c5<cs: x `v "
4. Maintenance Materill
O
103,013,657 ..c .5 '5 .5 :c ?9.471 22.043,253
5. Mjcaa Hep lac era ic
In'S ?57
--- -rr-'-rr x -3 .-c 02,416
22,048,153
6. Depreciation
** - oc 1 '4'll J : .0 Js 7g f'Glia.^
.-o-9 s ,-tf .* i
+ y *V f k 19,337
TDSal
Exhibit M Con-.
$1,374,053
$ 305,743
11,762 26,021 11,0=6
3,642 32,343 $ 432,310
DUP030001926
Exhioit K ESTIMATE Purchase and Installation of a 6x5 ?IW Mill
ibor ] Jaterial To tal
1 6x5 i'll11
7,800 lbs. Pebbles Pcrox Slock Lining Rig Ss Install 1 SKP Trunion hearings 2 3KF Jackshaft Bearings 2 Ease .Plat33 ifor Bearings 1 Jackshaft 1 Vee Belt; Drive with Pulleys & Belt: 1 Belt Guard 1 Mechanical Brake i Fair Steel Safety Bands 1 Limit Switcn. on Brake 1 -r '! *3 3p** 7v^1r.,!,n 1 ;C H. ?. S;arcer, 0i3conr.se c Switch,
* $ 6,110 isifpiiii 1,287 600 1,430 140 20 30 9CO 30 250 kw 125 40 00 200 700 30 40 250 650 200 125 35 25 <w > 1,200
$5,110 1,237 2,030 150 330 330
240 SOO 120 900 325 60 1,230
Push Button Station, Wire & Conduit 1 Sarco Tex?. Regulator 2 Earco Rotary Unions 1 Prcductomecar 1 2" Dijchargo Vnlvo
Water Piping Fainting
Safety Guard
24C :=c
40
70 lo
W' 3d 50
2C5 110
- to "1 100
' 35 ' 3J 15
125
445 260 110 170
75 110
95 175
Totals
S -oTr
t!3,772 yl3z^
Administration:
of Direct Labor
.34* $2,575 =
GrLAND 'TOTAL
dl 517,222
NCTS:
The aoo^e asci-ata ooe3 roc include cr.y dlsrarrlirand rearrangement charges ar.d assumes zhs building" is prepared to take the ins ;allaticn.
Estimate oneea ~t . roce-.t proposed "hiladaionia Plnr.c Major Pz'ojscc.
DUP030001927
Exhibit 0
ESTIMATE Installation of a Present standard 23-3allon "-T Process" Unit.
labor
2 2 2 2 1 T 3, i t. i
K- sJ"'i
, pCO-galloh Trials'-Santo
5 H.P. ICO ?JV Vertical c;:r r.ecu'.src
Asi-aoofs
2-1/2,f Flush 2ococa Tan!: Vo 1,50
Poster Ttcp -ii;l*. Miter? Rstocjr
yercoid Switch lev si Conor;!
1C H.? * Explosion Proof Vc ;er
rhllauvlpiiia G!<.r nsciO'-'i'
23-gallon Grinding 7e =srl
Agitator, Huts, Discs, Wave & Heat Treat
220 lbs. 3and
Process Piping
Water Piping
Hydraulic
,
,
Sleccricai Starters sc Wiring
Installation of''Tanks
^!*
Steel Channels, Prune?- Stands, ecc.
i> . i--fcmf(*y 120
5C
130 .0
120 120
100 3o 3C
530 300
3^
Z-oui?.%
o ^ *0
Waterjai
> 1,2CC i,2C0 530 3C0 64** 0* e? 34 o 3-t o sec 4o 12 45
S3 350 370
12C JisO
To tal
?1,2CQ
1,350 6?c
8~c
5?C
115
^70
*10 ^ 320
ISO 12
145
105 380
S2C i-2C 815
$8,717
c?/:22
Administration:
34^5 ?? Diracs l=.3cr
,3-i ; 12.303
-
33ASU TOTAL
784
S3,805
NOTE:
The above -astirate doe3 not include anv dismantling ar.i r * arranger ar.t jliarces and iJj v j Jo ;.oe building is ps'ioarsd 00 -i:? ;na I'.s;allasin'..
Es oira :a Ye s-*J cr. previous Phi. ouoipn-n Plant projacoc vritn aiv-nn=?R:a -'or Ltoreased
DUP030001928
Exhibit P ESTIMATE Installation of* a Proposed Standard SQ-gallon "47 Process" Unit.
2 - 500-gallon Presilx Tanks
2 - S -l.P. 100 H?M Vertical Motor Reducers
2 * Agitators 2 - 3" Powell (Figure 2310) Plush Sottoo
Valves 1 - 5 GFM Pump and Motor
Stssi channels, Frames, Stands, etc. Butterfly Valve Le^el Control System Solenoid^Safety Shut off 1 30 >!.?, 910 R?;.i Exolosion Proof iiotor 1 30-gallon 7essel - Hew Deoign 1 Agitator, Discs and Hubs 275 lbs. Sand Process Piping i/ijs? Piping Installation of Tani:s Electrical Starters & Wiring Ho laywell K1 Lift Hand Control Valve
Totals
labor Material Total
v4 niiiisi? 1,200 150 1,200 3C ^00
mm 215 50 540 355 *50
50 20 30 110 00 1,200 120 200 100 40
14 200 SO 100 50 300 220
mmm5'C 373 50
*11,200 1,350
480
255 c$3 815
70 140 1,2c0 320 140 14 290 150 420 920 50
=2,215 -,5,363 ::,=4 '
Adr.ir.i3traticn: 3 '-X of Dl.-cot Lasor 'SRAIJD TOTAL
753 ^337
j :o :t 2
Tie above estimate dees not include any dismantling
ar.d rearranrc-mer.c charges and assume* the buLld-'n^"
it prepared to td-ca the installation.
B
Ssti-ate sated ci p'3"fo 0 P1:'. L*-jiia Plait's orc'sett rf-tn a-,,u3-nents for increased -tests a.-.c oujoatic*s*ror new items.
,pfpt
DUP030001929
w
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P
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1 <53 ip' iiOliiiiii2il
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'if * O' i 7$ > it J 3> J 0 ^ c 'it O 3 Si 33 O CO -n-a o, 3: *a
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DUP030001930
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DUP030001931
-. -I
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1111 s** >*
3 >-i S2-, O`' HJ3 , '*"* 1 ZJivOJ H-3 '*-4
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DUP030001932
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DUP030001935
TESTING P30C5CTJR5 FCP. CARBOy SLACK BASS, 33^201.
SAMPLES PROM n47 PROCESS'* DEVSIOFMSHT STUDY
A. FINENESS
1. Stir sample and run fineness, Is, on Hegman Fineness Gage. 2* If sample 3 not at overall 33*201 formula, make necessary ad
ditions to bring tc normal formula and repeat fineness test. 3- Reduce uve-all formula or. the ratio of 1 w 1 with shinning
solution and repeat fineness test. Thin down solution:-
4. Prepare small glass f lav-out po..3l using the reouceo sample.
1. Prepare finished product formula 094-0201 using overall 33-201 formula sample from A-2 above, Prepare as follows:--
Overall 33*201 formula samelo: - 20.0 gms.
Reducing solution: -
9.3 .
Reducing solution is made uo as follows:-
SMIBS^
RC-3C63 * 23I rms,
<T
2. 'Jsing .0033 Doctor .Blade prepare draw-down on 4" x-8" glass panel from 094-0201 sample prepared in (1) above.
3. -al:e panel 25 nin. at 225 ?.
h -'.aad gloss on both Gardner ar.d Universal meters.
c. Trm::o s t r s ^c is
1. Filter through fait strainer unused portion of 034-0201 samole prepared in 3-1 aoove.
2. Make up tinting strength sample as follows:1 part 09*-1201 - 20 gms. 5 parts 09^-00^3 - 100
*
DUP030001937
3. Using .0033 Doctor Blade prepare draw-down on V* x 3" glass panels from tinting strength sample in (2) above.
4. Bake panel 25 ala. at 2~3aF.
5. Take Green, Blue ar.d Roc* readings c.i 2u Pont rifforeniial
. Colorimeter after s t nr/? :r~ *21113 colorimeter zt 30.0. Standard-
,, iae machine as follows:-
:r'
(a) Prepare two tirtlag strath -canals as above using stanSari steel -sill ground 33-201 and the same C3'4~C043 & for test zz::vl~=.
('0) Mark or. Fa.iel 'StandirO' -nd c tr.er ''F.efersnce 1 and
place in prescribed pcsiticns or. colorimeter.
(c) S*t 'lisb,*, `,p .t ? croT.ftt>*T* ,.t ~0 .j.
(d) Adjust Green, Ir..ua and ncc knobs until anaster reads zero on each filter position.
() Remove ''standard1* panel arc replace with test saruls
/f' Taka Gr-jari. B1 3 nnc Re- rsadiitrc,
5. jreon reading 10 11 ghc.taa;: factor. Tko :=*;=r tns reacln- ins cotter the tinting stra.-gun of one olnek bate.
", >alc*ila~e *r" nr/] i_ 7 Vriuas am a>?u to oetearaajte saturation and hue.
1\> * * -5? j TY * * * * i* , 1* \ J ' * . m*
DUP030001938
CAPACITY REPORTS - "*7 PKCC2S3M HBC035MS3D3D HEVI3I3iJ3
o-
i. ?riiiz:;r ?.7 '(s
"47 P'fcTo-Sciijirf* C&^p&s Iby Roocr-3 hare the functions of deternin-
ina (I) Tie product! cn by code of bases ground by "47 Process": (2) T'-e grinding capacity of the various plants* "^7 Process" uni'-a: (3) Tic ;.' oCLpsLcit:' a?. Thick th = .'.-.its arc operacins* ar.d (4) The rates acaunlly cbcair.sl by the plans* on sacn 2 ode,
CepacItieo are dotarniniJ by svtr-nrusing the product:!in of a
rfar ; mi ;r*s ootre required to prc*. i:> :r-_s~n.;.cunt *r.c using she folio- -V -ilcjuls'..'or.: -
"*. ***IJ**',***<#%*4***#* i"1 ~i *--#okn 1^*.-Wt -X"--^* -".*,
fMldwbfi1k<w*->*w**4c)^i .*W-* * w <4NiXirv:
hours re -- u.rscj
:c .v>,cf dtd.Units x 320 nours .
per raontr-1 -< allowed eff. factor.
j Capacity
'milom produced ' ,,
C-allon:s
s o l tv
1 -' ' f1
f "0 - This 71 r-f-si fur nr. r. 'i-runs of 21-2/3 operating days per .wash.
I- shi.se calculo+-ion3 r-o i-Jo'-r" 'a4qi3rd fig rs includes vas
:ir.= fcr grinding 7 ins-3* iru vr^.i ;f-.? for prv.jJi ;aas (if grand-
Lr- * :. a. is r.o; o:. j
-s
next he : .. ora uiz;:\sv
-sixer, j circuiacion
grina .ng unis .or-re discharging^
and actual grinding ti.me. 7Io-rs retired do ,ui ;.;:clude lording^
nlxia*j urd aging ui.ue.. .n
.fflcj.a.ic'. * actor of 9C1 _s
:S3L ;o eo"sr these lire ".3^3. rr -nrdard ';r:r is 3tec.-fLed
is cne 23-jallon un..: *r.d a 13-1/i jailon unit ir rpecifiei as
lirsa'.n Jlscre :rr.:-os ;.:is: ir. ;u Tisent calsulatL.r: tefr.cJa.
0*2 <4 r1 C' saeda. rd fcaisa %n the fDr-'xuji ;aafl.vta isiwofilDld-
*- ty j-
,s\ should sihe f-is
f* 1 ^ i*w
Oase x
A 23-gel - unit grinding 12.ICC gallons requiring 400 hours fer ,,r uvora'je ra. = o.' j: iiilor.3 per hour r`?s-..lu.j 'n ;hc folic;r'.-.g:
3-patil; li.CCC : l.C .* 52^
-> iu,-=g gallons
9
vom
DUP030001939
Case 2
A 13-1/2 gal. unit grinding sase bases In ease number of hours i-:culd grind at half the -rate (for squivalenb eualisy) or 13 gallons per hour* result ing In 6,CC0 gallons of base produced.
Ciiia-slt;* fe,C 30 :: 7.5 x 520 x .SO ' 4C0 "
> `l C **< * *<)<
*"* t* s v ^ mr 7 P'*' 17155
t /**^ r^ *7iota
0V/1 JU2
/y" Ar --- --j^a J vv - ,>-* #V ,**^*v".aC*j <&, ^y----. l?&* *t'wr-rl#- V"-3f ^ ,--w.-r.-^svv.><
"5 Oapasi ;v^2o pr53a-.'-ly ealrulaced i3 corpIsceL.; 'rd^renc-
e/lt O'* r^"*3-a r .^ry^if'ch .v ^ j;*5 .-,* > rs IneJ- ip" Hors'-'j SOlel'"'
cn the hours utilisation cC equlpce.it. 1.. Case*! of A * above, the fS capaci.;*- could nave been calouxujoc an fellows
400 hours
.
r^rn--r~ * -CO * 23-s capacity
Zf the amount troduojd wer? doubled Shs unit -would still be
= * y ;;,. .?a as .j&us _.- !-<::*lut, a . ivllloaJac -.- or.1;.
/''os 2 o'7 A
^ ^r*
T'rj-m number of . '^",dajyf
tTM3 ^3 3.*> 5l
*'Z`?iC iZ
Tbs aapac.ty calculation snows only the irounr w:'i<:h could
hc-'e been prtuu'j.l at she ::; sxparioncc-d luring '..:t
rs.rtio ilu* ^r.:h _r til c- -Liable h: ire nc.1
sd.
pi. -- ;- grinding udeasica.1* y^
J A *j j m< J
^n ^
. m^ .
MM .,,, .y-w v
-- * 3
scale* itsve a ;:ice range oz capacities. 7c r extnt-c:-
^iRlW8iil8Bllisi8lllilill8llS!ii^lllfil5i^lliii!iiSl!liiiilliiillii!pilllHMI!!l!iS
Due ~o 1-:?.i. s*. :2iulins conditio ns. a;ni Wrl-c ssorare
space, clean arunpjcent, an:> no raw ir3':ei*a.ai tsit'fi-
1/ M . C W . C3r"i*n pr-cdut ) z re urctinc: Jar
"* * ' "V^ -
- ~
Irffr ^ C
:. t
"-rtt 1 -"'
^ ?
'TlTTIc^r" 35 i*0 520 : .90 * :>,;50 gals.
SJ Capacity * 12,000 14,050 X j l OO 85.5/5
Plant 2
Ou t tc idrVT.:: ccr.Jitlono cf ccncdullng, e ;e . Is ablu iw civG'i^t . : r-o of only 15 gallons jar rcur for sane orcc-c^t au-'inj -ns ?are nurcei or' .o-rt ^.o that only 5,CCC gallons are produced.
S'* 'r'
Capacity
*--6W,00E0oguarls~. x
,1.0-
x
520
x
__
.90
a
7_ ,025
gala...
$ Capacity 6,000 x 100 * 35.5$ Billie
Tha report than gives the impression that Flans 2 is onerasdng as efficiently as Plant 1, hut has a capacity of* only 7,025 gallons.
5C&E3 Sefiiiticc of Ter33
Available Hours
Grinding Hours
Rremix Hours
- Actual plant operating hours for each munch. Available hours will vary depending upon number of op erating days each month.
- Hours for vile each grirdir.g ves sel is in use. Includes circula tion tina in vessel and wash time for vessel after completion oX' batch.
- Tine for loading, mixing and aging p-e->ix i3 fed to grinding
h
Standard Unit
- Specified as one 23-gal, unit.
13-1/2 gallon unit equals one-half std. unit. 5-1/2 gallon unit eoual3 one-fourth 3td, unit.
Formula Pate
Operating 3a
<1*^ 4 ** "*? 4 1** *> 4*
- Rate giver. on formula card. Where range is given, use lovar irate,
- Rare at -.jhioh unit is to ' run, ' Equals - Formula- -Hate trims 3td .Shits.
- To:al gallons prcdu:ad divided by
"V-n4W *fc*^4*-f >*C* 9* * **w
Tiioerotisel Capacity - s j or? (Formula Ha:e x 3 :d. Units :
Grinding Hrs. for each cede) times available Hours divideo cj grinding * Hours.
Actual Capacity
- Theoretical Capacity :c Y. -
MU*!*
- Capacity factor equivalent to .=5 e
for units with two or more premix . J
tanks, .90 for units witn ono pre-
mix tank,-
mm
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,n
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DUP030001941
Capacity
-> Gallons produced times 100 divided by Actual Capacity.
& Utilization
- luinding Hour3 tlr.es ICO divided by ,Available Hours).
"J -if^idiency -
- Salloris produced tiites ICO divided
by sun of (Formula Rate x Std."* Units x Grinding Hours x .93). The efficiency factor of .95 is
predicted on an average formula rate of 55 gph, with 500-ssiloa batches, allowing 1 hour for circu lation and wash, to give 10C.
3* plan?'?*- 'follows*1-5' Cs'-ca<;"?.a?ort would be prepared at each
1. Listing b:/ code of lbs., gals., grinding hours and actua' races of production for each f-7 Process" injillation.
2* JS'--ijf11-05 Ac',iu-1 C^pacitv.. jj capacity, 3 Utilisation, chid p a.ffiaxency tor each installation.
V I Separate Cvsrspray from regular mill base production.
Ji Summary of 3-2 and 3-3 S-r plant-wide figures. Ics^ci^^-
Overspray separate.
*
r. Prc suction an b-1/2 gal. ur_Itt, if any, will not bs reported. S
O Cl tli O s i r f *-`j H* *1J
rocucolor. Planning Coirai-.t:- at ^ii-iel-I:! world sontir.ro to
wsu* yiViSicnSi. Japacity .-cyerto onewing summary of 2-3 above
cr each plant wi-a separate figures for Oversuray. In add"5-
L5\
v- t=- :"i~ . r .nr. ^tunl R-tij tew ers-
aree Oy O.U.S Ccuni :tee wcul.J *9 Issued to all olants, Th^s
"":~ude r'-' ;-= '5
coda Shown ar.d
. ould_ncl'ude aj... codes whose rreduction ac any one plant ex-
ga*j.onc .or zha stone.", ft is not necessary to in-
.use =onpara;=.73 ru.-es for previous month on this chart. *
*' * 2d7s<r.tags 3 of chis Te ,'hcd of reporting would be:-
1. . itmiblc 0ayj.2f.t7 doyordingf only or. :ico of units and
nab tern of business.
'* > '' >\s . ^ \ w ^ ^ ! ,u
2. fejerrsication j ? the
percentage of capacity at
wh-on. units wer-o opsraceu, allowing for the reduced
capacity of only one prsmix. tank.
3. 2o-ii-aiior. of rtliiaacicn. -facies:oy and percents of
c&^&c^'fcy r
^ N ' ( j1 'u \ ^v7AW^^ x
N
^
4. Comparison of efficiencies of similar units.
.... -..
m*
DUP030001942
- Thess reports could be used for the following purposes:-
1 Deter-minafcion cf the need for increased capacity.
2. Determination of codes on which increased Actual Ratos are possible (comparison with other plants' experience).
3 petermination of units where increased utilization can oe effected.
4. Indication cf =avin33 which could be effected by the use o,, a-aitionsi premia tanh or larger itrinding vessel.
o Hi^-i-syot*j..nty codes on which formula Rates need revision.
&
Attached are copies of the proposed form3 to be used by each plant and a simplified example of how the report will be filled out.
@
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DUP030001943
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DUP030001947
CC: J. S. ALLSff - D-8030 - Km,
Memorandum to Piles
Philadelphia Plant Decsaber 21, 1951
"^7 P30:E3SM DZV310?K3NT PROGRAM cr miATuy '-j It :-? ":TMt oc:"^i::.r
On December 7. 1951 the principles of "V? Process''
were covered:
1. Disc diameter - There should be ar, optimum disc diameter* Above c.iis optimum point *;he oumping action -will be -00 great and Shearing effect
lessened* Belt:; she opticum diarne:er by-passing
o will be excessive ar.i ncuer impact to 3.-?arinc
will not be sufficient for fine dispersion.
7. JJumoer of dices - 'Vn o'-'t'* sr-T
-^
14 ?=--* -.j t o :>!=;:
r:-
will cause an increase in by-passing.
4: ' '
- ;^
Site ce-iign - Plat plitss Jithouc nr** raised sections,
A how used# spu the djeafc design to reduce .swap- ' ing acuion^ano impart; full force to shearing action. -ir. Connoily ncu liac a pater s pending on a disc
design i:i'rh CD.icentrio recessed rings. Tha purpose
of this design is to reduce teuer absorbed and eon-
cencrate pever* nearer the periphery or the disc.
r extfs-^
==aU,
he reared. 7:e cf
*rJ.s design :;ay ce ad vantage oua.
* -, 3aff,,es - Vertical baffles /loald nir.ier rather -Joan aeip dispersion ia the '47 Process unit. Hora-
sontal ouccr rings prooably uovld act further re duce by-passing since cnis niusfc be negligible at present*
Other items of a general nature concerning "47 Process" operation were also discussed.
PROCESS AND METHODS GROUP
BY: R,, P* BALKSHT
DUP030001948
W. fl. PRUTZMAH H. G. WETTIGH. R. CARR
Philadelphia Plant March 13, 1950
C. W. CLARIC CHICAGO PLANT
ATT: P. B. RUCK
,,j-7 FROCSSS'' SRrvS
Re fabric vow-* 11
nf '-torch 7.
The procedure ve folio,: In aligning disc and drive shafts cn 47 Process' agitator units Is a3 follows: GEAR REDUCER ASSKBL?
wm
Males uo Philadelphia sear reducer output shaft. Indicate and make sure It Is running true before fitting and install!.-j -ale half cf coupling.
O-
We us5 7-25:3 IhilaJel;. :In Otar steel : inr.gta icutlings. 3ore out coupling to a l^rc- fit cn "jsur reducer output shaft*
hp coupling, assemble, and indicate both outside diameter and face,* sake sure it Is running true.
If hoc true, remove snafe from gear reducer. Set up in lathe ffib'n coupling assembled and machine until face ir-j dia meter of coupling check + .001*'.
DISC SHAFT ASSSMEl?
,, f- e ow fo-'-le half of Philadelphia Gear ^2530 steel flanged coupling tc fit '.'.3 disc irl/e shaft; alco a force fl:.
?Iu up ec.plins to disc a.-.aft pin coupling to shaft or backweld.
lathe.
Set up cc-plete shaft ifith female half cf coupling In
av.. Indicate snaft and coupling outside diameter, and
face to make sure face and diameter are true with shaft.
Illiiiiilill
DUP030001949
DISC SKA?T A35SKSLY {Continued) Assemble shaft or. gear bo;^install coupling bolts.
Sot up or. too : stand holding She shaft attached in*vertical position.
~vith disc
Bolt or clamp assembly to stand level and plumb up
Indicate ths disc shaft at tct. o-a.-t^r, ar.c^ ^Cj .o s i. The shaft should ho trua uithia tho limit of ^.C-2 a; 'vl- cotton
- STRAIGHT DISC
, Thadiscs.should be bolted thoroughly to tho respecti/e hubs, arc aarlcsd in placo. trued up and balanced before heat trea--
* (r'\
>.fter r.oa; trsaiin^, s..e/ tituld -* rs-croc.iod for ii3tcrtion or ararjasa.
WAVY 2ISC
the apt art *us tsvsinr darans :o tro screc-r.s . Chechir.5 tis oetth of uares and balaocir;; cf these
discs should also be done before neat treating. -'->3-^0 4 1 '""** furtnsr Inf oifati*n "cu ray rise
clsase adviss.
-*' ro. #
TFSyS*
3Y: T. ?. '-:C323
DUP030001950
ED-1916 - ``Final Report - MX-1123 Ir.ves ligation of the '47 Process'Engineering Dept., Industrial Engineering
Division, Marshall Laboratory* KWj 19^3.
Memorandum - "Sons 3aslc Principled cf '47 Process '" -
W. ?. Colio, Marshall Laboratory.
August, 19*3.
Meiaorandun - "Equipment Specifications for ' 47 Process.'" -
'it
Philadelphia Process & Methods Group. August* 1343.
:-'j
>! ,, & ? - -
, Progress Resort - ''Flint *47 process Progress Hapore" -
7-":}^m
:** X:'Flint Process 3s Methods Group., December, 1949.
^ r\ \ --ii ^
-* ir** ?.*
Parlin Laboratory Research Report llo. 377 - "Investigation of `47 Process' 3 Apolied to f Duo o' ::anufac cure"' -
L. X. Miller. April',* 1950.
' * -**c v C\j :
'Philadelphia Frocass & Methods ilotefccoha Ho. 3, No. 4 ana ' --------^:V So. 5435. 1551-1952.
Philadelphia Process & Met.iods Files l-CG to l--S5 Inclusive.
M-*M*>-
T-l'* '47 Process' Overload Study - Elimination cf Power Overloads on Agitator Mo tors'' - Toledo Plan:.
September, 1951.
Port Madison Device Memorandum #25 - ''Ciaxp-or. Screen for 47 Process'*. June, 1952.
South San "ra.-.ciccc Isvi::3 * s-'crir.iur --'15 - "' `-7 ?roc2SSr Preaim Tank Agitator" - June, 1352.
.-.w
Toledo Device Memorandum #39 - 1,1 L7 Ercos33' fencera our?
Controller". June, 1352.
--an
.-Si-'*? 5-1 .tv '
0
.....................................
DUP030001951
DUP030001952
c* IV - BIBLIOGRAPHY
Marshall Laboratory Report No. 884 - "Exploratory Research Report - *47 Process'". S. Kochcerg. Ocoooer, 1947.
VKr-'sr^
..*?*&!
>
3D-19I6 - "Pinal Report - :*J-U23 Ir.v tigitlon or the '47 Process' n. Engineering Dept., I'd retrial Ersir.&erir.s
Division, Marshall Laboratory. Kay, 1948.
Memorandum - "Sons Eucic Principles of f *" Process1 " -
W. ?. Colio, i'!arsnail Laboratory.
.Visas', 13-3.
Mererar.di.in - ''Equipcen: Specifications for ' 4^ Process '" Philsielphia Process & Methods Group. Avgust, 1949
Progress Report - "Flint '47 Process' Progress Report'* Flint Process i Kothods C-rcup. Decencer, 1349-
*' *
. -t .*-r .s..;r.
Parlin laboratory Research Racer: :'o. 3*77 - "Investigation of '47 Process5 as Applied to 1 Dveo5 Manufacture'* 1. I. Miller. April/L95C.
Philadelchia Process A Methods Notebooks No. 3, He. 4 and No. 5435*. 1931-1952.
0S
Philadelphia Prccsco & Method: "Aloe 1:-CC :o 1-J3 Inclcsi'*e
T-l" '47 Process * Crsrload Study - Elimination of Power Overloads on Agitator Motors" - lolsco Plant. September, 1951.
Fort Midi son Device Her.:: ;i*iTt =23 ,JCAa; >47 Proems1". J-jr.s, 1.
Souih/ Gar. Francisco L vice
M'3 - ' "1 Process5
Eremin Task Agitator" - -Tuns, 1355.
Toledo Device Memorandum .-?59 - 11147 Process ' Tempera our3 Controller". J ans, 1952.
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DUP030001953
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Wilmington
V?liming tm Wilmington
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' ' V-i--'. 'r 'c'' op. ies #10 a #u 5 , 2, ffurss '
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Copies #13 & #1;9' Copies #20- &.#2X:. Copy #22 Copy #23Copy #2^
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Copies #25 a #25 Process a Methods.Fixes Philadelphia.--
DUP030001954