Document J3bYRVmzeN4oMp1BgQ2DzDej2
i Johns-Manville PI
12 packings lor pomps and valves that cover 95% o! industry needs
S"t T Lfc NUMBER
CW1 CW2 CGI CF1 CPI CXI CT1
VG"L VT1 VX1 RG1 PG1
I
PAGE
3 3 3 3 3 3 3 44 4 5 5
table a
STYLE NUMBER CODE EX.
X
o \
Centrifugal Pump Pkg.
/ Acid Service
1
First Recommendation
TABLE B
APPLICATION DR EQUIPMENT SYMBOLS
C--Centrifugal pump V--Valves, Expansion joint R--Reciprocating rods P--Pistons
TABLE c SERVICE CLASSIFICATION SYMBOLS
Media pH Range
G--Genera! T--Caustic P--Pulp and paper F--Food W--Water S--Solvents X--Acids T--Any service above except
strong acids pH 0 to 2
4 to 10 lOto 14 4 to 10 4 to 10 6 to 8 4 to 10 0.1 to 2
PRODUCT WARRANTY
J-M Products are warranted tree from defects In workmanship and in raw materials of our own manufacture. These products are not guar* anteed as to performance under an)' specific service condition nor for any specific period of time. Our liability for breach of any Warranty, express or implied, is limited at our sole option, to refund of the invoice vafue of our products, or to the replacement thereof F.O.B, our plant or other shipping point, full freight allowed to prior
destination.
"The physical (or chemical) properties of Johns-Manvllle pump and valve packings represent typical average values obtained in accor dance with accepted test methods and are subject to normal manu facturing variations. They are supplied as a technical service and are
subject to change without notice. Check the Johns-Manvjlle district office to assure current information."
EQUIPMENT
MEDIA BEING ^-^SEALED
EQUIPMENT (MEDIA SYMBOLS) CENTRIFUGAL RECIPROCATING & EXPANSION JOINTS VALVES PISTONS
l
ACIDS CAUSTICS GENERAL PULP & PAPER FOODS COLD WATER STERN TUBES STEAM SOLVENTS j
SIMPLIFIED PACKING SELECTION
X TG P CXI CT1 CGI CPI
F WW CF1 CW1 CW2
G
S CT1
VT1 RG1
VT1 RG1
VX1 VT1 VG1 VG1 VT1 VG1 PG1 PG1
RG1 VG1 VG1
FBW-125
JohnS'Hanville Simplified Packing Procednres
Twelve styles are all yon need
1. The 12 styles of mechanical packing shown in this catalog will handle 95% of industrial sealing requirements and are designed to avoid duplication of inventories. 2. To back up your distributor and his inventory, d-'M maintains over half a million dollars on-the-shelf stock of the items in this book. This assures that all your packing requirements will be met without delay.
Selecting the right style of packing
First letter indicates type of ec Jipment for which packing is
designed. (See Table B)
Middle letter indicates
service or media being sealed for which
packing is designed. (See Table C)
Last digit indicates our recommendation for
the application. Why use second best?
Further simplification if desired
1. Styles with "T" as the middle letter (ex CT1) are suitable for any service or media shown in Table C except for aggressive acids with a pH from 0.1 to 2.
The following styles could service many industries: a. CT1--Centrifugal pumps b. VG1--Valves
FBW-126
2
Johns-Manville
Centrifugal Pump Packings
CENTRIFUGAL PUMPS
Styles
Base Material
Impregnation
or Lubricant
Finish Treatment
Tamp. Limit
Range
CW1 CW2 CGI CF1
CPI CXI CT1
Ramie
Flax
Asbestos Asbestos
Asbestos
White Teflon Yarns Asbestos
Petroleum base oils & waxes
Petroleum base oils, waxes and animal (at
Petroleum base wax
Non toxic compounds and oils and a special inert grease
Petroleum base waxes & oils--no graphite
Teflon suspensoid & inert oil
Teflon Suspensoid & Low friction Lubricant
None None Graphite Mica
None None None
200*F.
6 to 8
100`F.
6 to 8
500'F. . -300" F. -- -
4 to 10 ' 4 to 9
500*F. 500`F. 500'F.
4 to 10 0 to 14 2 to 13
Service
Cold water
Cold water
General Service Foods
Pulp and Paper
Acid
Any service except strong acids pH 0 to 2
MANY CUSTOMERS STANDARDIZE WITH STYLE CT1 as it is compatible with all media except strong acids within (he pH /ange of 0.1 lo 2,
mm
V.nS.r&CeA/
4k
Service Classification Symbols
G--General T--Caustic P--Pulp and paper F--Food W--Water S--Solvents X--Acids T--Any service above except
strong acids pH .1 to 2
\
Jfen
^".*P / -'A t " ' Tl-tj . Tl1-{. <?-. Jj"i
' i Ii
FBW-127
no?*
Johns-Manviiie
Valve Stem Packings
VALVES
Styles
Base Material
Impregnation
or Lubricant
Finish Treatment
Temp. Limit
Pressure Range
Service
VG1
Asbestos Jacket Corrosion inhibitor Graphite
1200F
Up to
General service
Inconel wire
5000 psi
inserted over
plastic core
VT1 Asbestos
Teflon Suspensoid None
500F
400 psi
Chemical service ph 2 to 13
VX1
Teflon Yarn
None
None
500 F
400 psi Acid Service (X)
Service Classification Symbols
G--General T--Caustic P--Pulp and paper F--Food W--Water S--Solvents X--Acids T--Any service above except
strong acids pH .1 to 2
FBW-128
4
Jchns-Manville
Other Applications
RECIPROCATING PUMPS
Base Styles Material
Impregnation
or Finish
Lubricant
Treatment
Temp. Limit
RG1 ReSIlient core wrapped with asbestos cloth
Vegetable oil Graphite 500F.
Service
Air, steam, water
PISTONS
PG1 Neoprene treated
None
folded asb. cloth
and duck. Bonded
with neoprene base
cement
None
350 F.
Weak caustics and acids, brine, air, water,
petroleum prod.
PG1 Pistons
RG1 Reciprocating Rods
FBVV-129
5
Helpful suggestions on handling packings
c
EOV TO SET THE BEST
RESULTS FBOM PACKINGS
There are four main factors that influence the life and performance of packings in service. Give careful at tention to all these factors and the most satisfactory service will be assured.
Quality of Packing Used--Packing costs far less than the laboi^and lost production time of re-pack ing. The use of poor quality packing can sometimes result in damage to equipment. The best quality packing is the cheapest.
The Right Style for the Service--The recommen dations in this book are based on Johns-Manville's research plus practical field service. For special cases, consult your J-M Packing Distributor or J-M Sales Engineer.
Mechanical Condition of Equipment--It pays to use high quality equipment that is properly main tained. If bearings, shafts, sleeves or guides are in bad condition, the result is poor sealing, short pack ing life.
Packing Installation and Lubrication--Properly installed and lubricated, packings help equipment operate efficiently. The suggestions below have been found helpful.
HOW TO PACK STUFFIHO BOXES
Pumps and Agitators
1. Remove all old packing from the stuffing box. Clean the box and shaft thoroughly and examine shaft for wear or scoring. Replace shaft or sleeve if wear is excessive. Check bearing by lifting shaft up and down; do not expect the packing to act as a bearing.
2. Use the right size of coil packing, to be sure the packing will fit and can compensate for shaft wear, if any. To determine the correct coil packing size, measure the diameter of the shaft (inside the stuff ing box area if possible) and then measure the in side diameter of the stuffing box itself (to give you the O.D. of the ring). Subtract the I.D. measurement (the shaft diameter) from the O.D. measurement and divide by two. The result is the required size.
Except for special precision molded packings, all stanoard shaft packings are made up in increments of 1/16" from the smallest size available and up. For most apolications if the calculated size figures under a 16th of an inch it is generally best to use the next size greater. Thus, if the shaft measures 2-1/2" and the inside of the stuffing box 3-7/16", the size of coil packing to use would be 1/2" rather than 7/16".
3. Cut packing into rings. Never wind packing into a stuffing box. For pumps and agitators cut rings with a butt (square) joint; it is easier and you can do a better job.
The best way to cut packing rings is to cut them on a mandrel the same diameter as the shaft in the stuffing box area. If there is no shaft wear, they can be cut on the shaft itself outside the stuffing box if there is room. Hold the coil packing tightly and firmly on the mandrel but do not stretch it excessive ly. Cut the ring and try it in the stuffing box to make certain that it fills the pack ing space properly with no gap in the joint at the O.D. of the ring.
Each successive ring can be cut in the same man ner, or the first ring can be used as a master from which the balance of the rings are cut. If the rings are cut on a flat surface be certain that the side of the master ring, and not the O.D. or l.D. surface is laid on the rings to be cut; this is necessary so that the slight bevel at the ends of the rings be repro duced. Remember that the O.D. circumference of the ring is greater than the l.D. circumference.
4. To cut rings from a packing that is unusually soft or that has a tendency to fray excessively, some mechanics apply a small piece of tape at the point where the cut is to be made, then cut through the tape. If the tape is thin, it can be left right on the ring.
5. Install one ring at a time. Make sure it is clean, and has not picked up any dirt in handling before in stalling it. If clean oil is available it is well to lubricate each ring thoroughly; some mechanics also lubricate the shaft and the inside of the stuffing box.
Joints of successive rings should be staggered and be kept at least 90 apart. Each individual ring should be firmly seated with a tamping tool. When enough rings have been individually seated so the nose of the follower will reach them, the individual tamping should be supplemented by the follower. Never de pend on the follower entirely to seat a set of rings properly--this practice will jam the last rings in stalled but leave the front rings loose in the box. The result is excessive and rapid wear of rear rings; er ratic packing performance; sometimes, twisting and tearing of the front rings because they are loose in the stuffing box.
6. After last ring is installed, take up bolts finger tight. Allow packing to leak freely when starting up a newly packed pump. Excessive leakage during the
FBW-130
6
first hour of operation will result in a better packing job over a longer period of time. Take up gradually on the follower as the packing seats until the leak age is about 2 drops per second on a 1" shaft at 3600 RPM. Allow proportionately more as the shaft size increases. For speeds lower than 3600 RPM, less leakage is permissible. It will take about one working day to break in a set of packing to a point where the leakage is stabilized at a uniform accept able rate. Never try to stop leakage entirely. Start the pump and take up bolts until leakage is decreased to no more than 2 drops per second. Stopping leakage entirely at this point will cause the packing to burn up.
7. If at all possible provide, through a lantern ring, means of lubricating the shaft and packing by sup plying grease, oil, water, or the liquid handled in the pump. FittingsTor this purpose are standard on most pumps.
8. If the stuffing box has a lantern ring, make sure the lantern ring, as installed, is slightly behind the lubri cant fitting so it will move under the fitting as fol lower pressure is applied. Replace packing when leakage cannot be controlled by further take-up on the follower.
Valves and Expansion Joints
The function of a Valve Stem Packing is like a gasket function rather than pump packing, which must both seal and carry lubricant for a turning shaft. Valve Stem Packings must provide a dense structure that will not permit movement of the liquid or gas through the body of the packing itself. The packing under follower pressure must be able to flow sufficiently to seal along the stem and along the stuffing box wall. Maintaining low friction will permit easy movement of the stem. To pack valves:
1. Carefully perform all the operations outlined under steps 1, 2, 3, 4 and 5, as given for pumps and agitators. Rings used on valves and ex pansion joints should be cut with a skive joint.
In preparing skive cut (45 degree bevel) rings, be sure the first ring is carefully cut and then tested on the shaft. It can then be used as a mas ter for cutting other rings on a flat surface to insure that the additional rings are cut precisely at the correct angle.
2. Bring the follower down on the packing to the point where heavy resistance to wrenching is felt. During this time turn valve stem back and forth to determine ease of turning. Do not wrench down to the point where the stem won't turn.
3. After the valve has been on the line a day or so, even if no leakage exists, the follower should be tightened slightly. If it is leaking at all, tighten the follower until there is no leakage.
ROUBLE seootiio PiCEIIfi FAILURES
Carefully examine packing removed from a stuffing box, as it often gives clues to the condition of the equipment and may be the means of solving pack ing problems. The following clues and possible troubles were found by examining sets of packing which had seen service:.
Clue: Excessive reductions in the cross-section of the packing directly beneath the rod, shaft or plunger.
Possible trouble: Low bearings with shaft or rod rid ing on packing. In service early leakage occurs around the top of the shaft or rod.
Clue: Excessive reduction in the thickness of the packing directly over or on either side of rod or shaft.
Possible trouble: Rod or plunger out of alignment. In the case of the rod or shaft, the bearings may be badly worn causing whipping of the shaft.
Clue: One or more rings missing from set.
Possible trouble: Bottom of stuffing box badly worn with packing being extruded into system. Consider able difficulty, such as packing getting into the valves, traps or contaminating the fluid handled may result.
Clue: Wear on outside diameter of the packing.
Possible trouble: Rings rotating with shaft or loose in the box.
Clue: Bulge in the side of one or more rings.
Possible trouble: Adjacent rings cut too short causing packing under pressure to be forced into the open space.
Clue: Rings next to gland followers badly deformed with bottom rings in fair condition.
Possible trouble: Improper installation of packings and excessive gland pressure used.
Clue: Packings showing tendency to sheet out or ex trude between rod or shaft and the gland follower.
Possible trouble: Excessive pressure or, more likely, too great a clearance between the rod or shaft and the gland follower.
Clue: Wearing face of rings dried and charred with rest of packing in good condition.
Possible trouble: High temperatures with lack of lu brication.
FBW-131
7
Row to select packing for media handled
Most Packing selections can tie made using the Equipment Recommendations given on page 1. However, if the liquid you are handling is corrosive or critical in some other way, then you can choose the exact style by reference to the Chemicals listed on these pages.
Listed are hundreds of liquids commonly used in the Process Industries.
At the right of each is a symbol indicating Packings con structed of. naaterials which should handle the liquid.
Styles designated "T" will also handle conditions designated "G", "C", "P", "S" or "F" to the pressure and temperature assigned to the style.
Service Classification Symbols
G--General T--Caustic P--Pulp and paper F--Food W--Water S--Solvents X--Acids T--Any service above except
strong acids pH- 0 -- 2
CHEMICALSPACKIS6S
Acetaldehyde ___ . . -....................TS
Acetate solvents
..................
..S
Acetates, esters A petroleum
derivatives
.................... .............. S
Acetic ecld .............................
, .T
Acetic acid, glacial ....................................T
Acetic acid (hydroxy crude) .
T
Acetic enhydrlde ............................. ... T
Acetone . ..
< .. .. . ........ T-$
Acetophenone
..... ... . T-S
Acetyl chloride
.. ....................T
Acetylene
...
Acetylene gas
Acetylene with water
Acetylene o&s with water or
liauid H. C.
.
Acid sludge
... ....G . . .. G
...... . .G
....
G
.X-T
Acrylonitrile . .................... ... .. S
Alcohol, ethyl
.... ...S-G
Alcohol & tub. oil
.S
Alcohol methyl
.. G
Aldehyde
. T-S
Alkanes
....
Alkyl erylsulphonic acid
Alkyl benzene
.
....
Alkylate light
.
Ally! acetone
T-G T
-T-S ..S
T-S
AUyl amine
Allyl chloride
Alpha Picoline Alum solution
.
Aluminum chloride
. . ___
G G G G G
Aluminum hydroxide
Amine: Diethanol amine .
Amine Monoethanol amine
AmineWat condensate
Amines
.
Ammonia, anhydrous . Ammonia, aaua Ammon.a gas Ammonia, liauid Ammonia, liquors & oil
G ... T-S
T-S . S-G
T-S
. .G G G G G
Ammonium acid phosphate Ammonium blfluonde Ammonium bicarbonate Ammonium bromide Ammonium carbonate
.G X-G G G G
Ammonium chloride Ammonium Uuosilicate Ammonium, hydroxide Ammonium nitrate Ammon.um nitrate molten
G G G G G
Ammonium oxalate Ammcr.um persulphate Ammonium phosphate, dibasic Ammon.um phosphate, monobasic Ammonium phosphate. t?lbes<c
G G G G G
Ammonium sulfate .......................
G
Ammonium sulphite, to boiling .....................G
Ammonium thiocyanate .............
G
Ammonium thiocyanlde .............................. G
Amyl acetate ..................................... .T-S
Amyl acid phosphate ............................... S-G
Amyl alcohol ..................
S-G
Amyl chloride .. ...........
S-G
Amyl nitrate .............
S-G
Aniline
.. .. ........................................ T
Aniline dyes .............. .... ............,.T-G
Aniline Hydrochloride -.............................. T
Antibiotic fermentation broth-
no solvent
...........
G
Antibiotic fermentation broth--
with aolvent .............................................. S
Anti-freeze water & alcohols
or Qlycols .. .............................
G
Antimony trichloride ............................. Aaua regia ............... Argon gas ....................................... Aroclor ................... Aroclor 1242 ............................
.T X G T-S T-S
Aroclor 1248
T-S
Aroclor 1254
. .......................... T-S
Aromatic fuels ........................................ T-S
Asphalt-emulsified
S
Barium chloride solution 0-20% ................... G
Barium hydroxide........................................... G
Barium nitrate solutions ..... ..........................G
Barium sulphide..................
G
Beer
........ . ........................ T
Beer and beer mash .
T
Beer wort
...................
.T
Beet sugar liquors
......... F
Benzaldehyde .. .................................. T-S
Benzene (Benzol)
, ............... T-S
Benzene & gas mixtures............................ T-S
Benzene (petroleum ether) ...................T-S
Benzoic acid solution...................................G
Ben2onitrile
...
, ... G
Benzyl alcohol .
... ..S-G
Benzyl chloride
T-S
Bichloride of mercury
....
Bittern
Black liauor
...
Black sulphate liquor, to boiling
Blood
..
...G G
.,.. ,C .C
F
Bo*le feed water Bcnderite solution Borex solution Boric acid Be'on Vschlonde
G S-G
G F-G
T
Boron trif.voride Brme (acid; Bnne calc.um chloride B'me. copper chloride Brine, sea wate-
T G G .G G
Brine, sodium.......................
G
Bromine ...........................
T
Bromoben2ano ..............,..............................T
Bunker "C`` luel oil ...................................... <S
Butadiene .......................... .................... ..T-S
Butane ...................................
T-S
Buttermilk ....................................................... F
Butyl acetate ................................................ T-S
Butyl alcohol . .................. .
. , ...S-G
Butyl chloride ...................
..T-S
Butyl ether ................................................. T-S
Butyl sebacate ...............................
T-S
Butylene ............................................................G
Butylamine .................... .......... . ... ,T-S
Butyric acid ....................................................G
Butyric acid, to 150F
G
Calciun bisulfide ............................................G
Calciv Disulfite ............................................G
Calciun. carbonate slurry..............................G
Calcium chloride ....................................... G
Calcium hydroxide .
F
Calcium hypochlorite ..........................
G
Calcium phosphate slurry ........................... ,G
Caigon .........
F
Camphene . ..................................................S
Candelilla wax &varaol mixture . . . . .G
Cane sugar liquors 8cane juice.................... F
Carbinot .....................
S-G
Carbitol acetate.......... .................
S
Carbolic acid .................
,T
Carbon bisulfide........................................T-S
Carbon dioxide (dry)............................... G
Carbon dioxide (wet) ......................................G
Carbon disulfide .... ............................T-S
Carbon tetrachloride wet .............. . .T-S
Carbon tetrachloride, anhydrous .
. T-S
Carbonic acid ................................................G
Carbon monoxide .. . ............................ ...G
Castor oil .................
.,G
Caustics
. .............. ...............
.C
Ceifosolve acetate ..............
S
Chinawood oil
....... . G
Chlorex
C
Chiorextol ... ,................................... T
Chloric acid .... .............................. T
Chlorinated hydrocarbons .............................. T
Chlorinated polyphenyl
G
Chlorinated toluene
.
Chlorinated water....................
Chlorine, anhydrous liQuId
Chlorine (dry)
.,
Chlorine (wet)
..
.T-S ... F
T , .. T
T
l-Chioro-l-nltfOpropane
S
Chloroacelic acid
. ... .......... r
Chio'cbenzene
.....
.. T
Chlorobenzene, to boiling
T
FBW-132
CHEMICALS/PACKIM fll&ss Liquid-Packing (continued)
Chioroeth*ne Chloroform Chloromethyl ether
2-Chloroprooene Chiorosulfonic acid
7 S T-5 T-S T
Chiorotoluene Chlorotnfluoroethylene Chrome alum Chromic acid Citric acid
T-S T G
- T F
Clay slurries Coca-Cola syrup Cocoa butler Cocoanut. tatty acid Cotfee. to boiling
...
-G F F
F
Cooper cyanide
Cooper nitrate
...
Cooper sulfate (blue vitrol)
Copperas (Greene)
.
Core oils
..
T-G -G
G G
G
Cottonseed oil Creosote Cresol. meta Cresylic acid Cuprous ammonia acetate
Cupric chloride Cyanide Cyanogen chloride Cyanohydrin Cyclohexane
G
..... T
S
.
...
$
G T-S .G ,. F
S
Cyclohexanone
.
DOT Solutions (kerosene solvent)
DOT Solutions (toluene solvent)
DNC (Oinitrochloro benzene) ............
De-Butamzer reflux .. ..... ..
5 S S T
S-G
De-Ethamzer charge.......................
S
De-Propantzer rellux
- .. S
Developer Solution..................................T
Diacelone
-
S-G
Dibutyl cellosolve adipate .......................S-G
Dibutyl phthalste Dibutyl sebacate Olchtorobutane Dichtoroethane Dichloroethyi ether
Dichiorohexatluorocyclobutane
Dichloropropylene . ............
Dichiorotoluene .....
Dicyclopentadiene
Diesel fuel
..
.T-S
. . sS .s
S-G
Diethanolamine
..................... .,,,.S-G
Diethyl carditol
.,................... -
Diethyl carbonate . ...
.........................
Diethyl cellosolve.................
S
Diethyiamine
.............................................. S
Diethylene glycol .............................. - S-G
Dlethyienetnamine
.................................... S
Dimetnyt formaldehyde
S-G
Dimethyl hydrazine
. ............ ...S-G
Oinitrochloro benzene &styrene ..............T-S
Dimtrochlorobenzene
Dioctyi amine
Dioctyl phthalate .
Dioxane
Diphenyl
.
. ... .................... T-S . ........................S S ... ..S-G . . .. .. T
Dlpheny, chlorinated ..... Disobulyl ketone .......... Doctor solutions.................. Dow Corning silicone fluid Dowtherm "A"
Dowtherm *'E" Dyewood liQuors Embalming fluid Ester type plasticizer Ethane
Ethanol Ethanolamine Ether Ethyl acetate Ethyl acrylale
Ethyl alcohol Ethyl chloride Ethyl ether Ethyl tormale Ethyl mercaptan
Ethy-n-bi.lyrate S'^Y' bc:-..crsde c'V P*- p.onate E:Ky suf;:hate Ethyter.e cNoride
:*y ene cn-o'chydrin Etnye^e dichloride c.Ky'e^e gycoi E;r-y pyid'ne Fatty acids
.T T-S ...T
G ..T
.T ,G G T .S
G
ssS .s
G .S
Sss s
S S-G S-G T-S
S T G S-G G
Ferric chloride Feme nitrate Feme sullate Ferrous sulfate (Green Copperas) Ferrous sulphate A lime
. .G
G G G .-G
Film dope Fish oils Formaldehyde or formalin
Formic acid Freon 11
Freon 12
Freon 121
........
Freon 12 and refrigeration oil
Freon 22 and refrigeration oil
Freon 113 and 114 . .
Freons-liquids Fruit juices Fuel oil Furfural Furan
.. . S-G . . .S . ...S-G
...S-G .....S-G
..S-G .. S-G . .S-G
S-G ...S-G
...S-G .... .F
$ ....S-G
. S-G
Gallic acid
S-G
Gas Oil ..
....................... .......... ..
Gasoline Gasoline (aromatic) ... -.
| o
Gasoline (automotive grades) . .....................S
Gasoline (bronze) ....................................
Gasoline (ethyl)
......................... *...........
Gasoline (100 Octane) ............................... S
Gasoline (Hi-test)
. ......................... *
Gasoline with mercaptan .......
S
Gasoline with HjS Gelatin Ginger ale Glacial acetic acid Glaubers salt
Glue .
-...................................'
Glue (acid) .................................................. G
Glue sizing
............... .
... .....G
Glucose
...............................*...........*
Glycerine (glycerol) ................................ G-F
Grain rnasti
..........................................G-F
Grease
.. ... ....................... "r
Green liquor ........................... .......... * J
Halowax 1000 . .........................................G
Heptane
... ................-..........................
Hexachloro acetone
Hexane
.* ...
Hexone (mik)
Hollingshead H-2 ..
Hydrofluoric acid .
. .S S
.T-S ..G ..T
Hydrobromic acid ... .........-- T
Hydrocarbons (light).................................... S
Hydrochloric acid . ... ................... T
Hydrocyanic acid
............- -T-S
Hydrofluoric acid (anhydrous) .................. T
Hydrofluosihcic acid................................... T-S
Hyd/oformic acid ...............
T-S
Hydrogen
... . ........................... G
Hydrogen cyanide.......................................T-S
Hydrogen Uuoride ..........................
X
Hydrogen peroxide ................................. T-S
Hydrogen sulfide
S
Hydrogen sulfide A organic
su*fur compounds , ...
5
Hydrogen & water ................. .. ...... G
Hydroquinone
...
6
Hydroxy--acetic acid..................................... T
Ink
. ................................
G
Insecticides
...................................... G
Iodoform .....................................................S-G
Iodoform
... . ... ....................S
Iso-butane
Iso-butyl methyl ketone
Iso-butylene
..
Iso-pentane
.
Iso-propyl-acetate
..... .
................
S T-S
.. sSs
iso-propyl s-coho! Iso-prooyl amine Iso-propyl ether Kerosene Ketchup
-
Lacquer ir kelone solvents
Lacouer solvents
....
LecQue'S. hot
Lactic acid
Lard
Latex
Lead nitrate
Lime slurries
..
L>me-sjJfur
wi-T.e wa*er (m,'*k of lime)
L.noo- .'tricresol phosphate) L*nseed of wiouid cyanide _ Cw^d *a*.et 4 gaseous butadiene
LiQuor, black
S-G S-G
Ss
.. F
.T-S T-S
.S F .F
G G T G G
S S T-S T-S T
Liquor, green
LiQUor, lime Liquor, steep Lmuor sulpnale LiQuor. white
.T ..T ..T ..T
T
Lithium bromide brine Lithium chloride Lubricating oils, hot Lye. caustic Lysol...........................
G .G ..S .T T-S
Magnesium chloride..................
G
Magnesium hydroxide ..
..................... G
Maonesium oxychloride.............................. G
Magnesium sulfate (epsom salts)............. G-F
Maleic acid...........................................
T
Maleic hydrazide ...........
T-S
Malt beverages .
...... . ........T-F
Manganese chloride .....................
G
Mash
T
Mayonnaise .. . >...................................... F
Meat products .....................
F
Melamine resins . .
G
Mercaptan ...................................................G
Mercuric chloride ............................... G
Mercury .
G
Mercury salts ............................................. G
Mercunous nitrate .
..........................,G
Mesityl oxide ............
...... . T-S
Methanol .. ................ ... ......................... .S-G
Methyl. acetate . .. ......................... S-G
Methyl acrylate...................................... .S-G
Methyl alcohol
...................
S-G
Methlal
....................................... >T
Methahyl chloride............. .........................T-S
Methyl alcohol ...............................................G
Methyl bromide .. ............................
T
Methyl cellosolve ................................. S-G
Methyl chloride
................... ....S-G
Methyl chloro-silanes . ...................
S
Methyl ether............................... . ................ S
Methyl ethyl ketone.............
T
Methyl formate
.......
S-G
Methyl iso-butyl ketone ........................... T-S
Methyl methacrylate
,,...............T-S
Methyl propionate ..............................
S
Methylamide (hot) ............. Methylene chloride..................... Milk ,, ................................ Mineral oil .............. .............. Mineral spirits...........................
Mfscelfas .. ... .............
Mixed acids (HN0*+H2S04) ...
Molasses
.. ......................
Mono ethanolamine (with copper
suiphale)
.......... ...
Monochloro-benzene........... .
Mustard ........................................
Naptha
... - -................
Naptha, sour or gasoline
(trace HjS)...........................
Naptha. Vmp ...........................
Naothaiene sulphonic acid .......
... S ...S-G ... F
.....S ........ T . ...X ........F
...S-G .... S ........F .... S
... .S
.. s
. T-S
Napthalene Naothaienic acid, to hot.......... Natural gas ...... ............. Nickel chloride . ..................... Nickel sulfate ..............................
Nicotine sulfate ... ............... Nitrating acids ....................... Nitric acid Niter cake (fused) ................. Nitric acid fuming.................
... S .. .T-S ... S ... G .. G
.... G
. . . .A ........G ... X
'Nitro methane
Nitrobenzene
Nitroetnane
Nitrogen
.
Nitrogen gas
.. . .........................
..................... . ......
.................
Nitromethsne
...
Nitropropane
...................
Nitrous acid
. - ...
Oaklte .....
Oil. air corps hydraulic
Oil. apiezon .........................
Oil. asphalt base
Oil. Bunker C fuel
....
Oil. Chinswood (tung)
Oil. cocoanut
..
0*1- cotton seed , ... .... . Oil. crude (asphalt base) Oil. c'ude (corrosive) Cl. crude (pars'tin base)
0<, crude (sweet)
Oi', cutting (soluble)
C\ Diesei Oil, domestic fuel
On, fuel A gas Ci., J6 fuel
. T-S . T-S
... S .... G
.. S .. S
T G . T-S
.. S-G S-G S S-G
.. S-G
Ss s
S S
s sS ss
FBW-133
9
Oil. fuel Oil. hjrO?aui'C Oil. hydraulic (mineral base) Oil ke'osene OH. linseed
S-G S S
s
S
Oil. lubricating Oil. mineral Oil. mineral seal Oil. nut Oil. paim
S S S-G S-G S-G
OH. paraffin base OH. peanut Oil. guenchino OH. rapeseed Oil with refrigerants
S S-G
S S-G S-G
Oil. rich OH. silicone OH. soya bean Oil iransformer OH vegetable
S-G S
.S-G .. T-S
S
OH and Freon (n4 12) Oil and Freon (22^> OH and methylene chloride OH end sulphur dioxide Oleic acid
Olefin (crude) Oleum Oxatic acid Oxygen Ozone
Palmitic acid Paracymene Paraitin. hot Parallin Wax 60% Paregoric Compound
Pectin liquor Penicillin Pentachloroethane Pentachiorophenol Pentane
. .
.T-S .T-S S-G T-S S-G
,S .X T-S X G
G G G G F
F F S S ,$
Pentasol
Perchlorethytene Perchtorethylene & filter aid Perfume Perchloric acid
F ............ T
T-S . T-S . . . T-S
Perfluorothiethylamme Peroxide of hydrogen Petroleum ether Phenol Phenol, formaldehyde mix
.S G ... T-S T-S .. T-S
Phenolic sulphonate
Phenylacetic acid
Phenylethyfmalomc ester
Phosgene
... ...
Phosphoric acid
S -T S .T-S . T-S
Phosohonc acid, crude Phosphoric anhydride Phosphorus (liQUid) hot Photograph.c developers Ph'haiale esters
T-S T-S . . T-S T-S ......T-S
Phthahc anhydride Picric acid Picric acid, molten Pine gum (hot) Pineapple juice
... S S
.. . S .. G
.. F
Pioendme
.G
Plasticizer (iiouid dibutyl)
S
Plating solutions
. ....
S
Potyglycols
... G-S
Polyvinyl acetates
. .... . S
Potash alum Potassium bitartrate, toboiling Potassium bromide Potassium bicarbonate Potassium carbonate
.
G G G F G
Potassium carbonate, to boiling
Potassium chlorate
Pctass.um cyanide
pcussium dichromate, to boiling
Pctess'um terncyanide. to boiling
G G G G G
Potassium hydroxide
.
C
Potassium hyoochtonte
G
pc.asslicd-de
G
Potassium nitrate
- ^
pw!ass'-^ ler'ocyanide
G
Potassium pe'liLC'o-acetate Pctassiurr permanganate pc*ass -m c^osohate pc.ass chcspnete. di- or triPotass um su `ate
pc:ass,u"' so -ce PrcCi.ce' gas P'ccane Prcc.ona seryce prop.onc ac.C
T G $ o G
S S S T-$ S-G
Propylene Propylene chloride Propylene bichloride Propylene glycol N-propyl acetate
...S-G S
..... ..-............ S . .... .................... F ..................................S
N-propyf ether .
N-propy! formate N-propyl propionate Propylene glycol Propylene oxide
................. S ,s
.. ... s , .............. F
.................. S
Propylene polymer
Pulp stock
Pyridine
Pyroligneous acid
Pyronol
,
........ ..S-G
.. .. ................P
.
..
...... . S
. ............ T-S
- . ............... S
Quinine bisulphate Quinine sulphate
..................S ............. ........... s
Resins, hot ...................
Rosins
. .....
Salt ceke ........................ ........T-G
Santicizer 8 Santicizer B-16 Santicizer E-15 Santicizer M-17
........ .................................................SS--GG
...... .............S-G
Santolube 31 ............................ . . .S-G
Sea water
. ............ ..
. .. G
Sewage
.. ..................................G
Silicone fluid
........................................... S
Silicon tetrachloride ................................ T
Silver bromide............................. Silver chloride . . . Silver nitrate ... ............. ,,............. .. Slop, brewery ................................ Slop,distillers .......................
S T G G G
Sludge acid ,, ... ................................ .T-S
Soap ................................................................ T
Soda ash (sodium carbonate) .................. G
Soda, caustic . ....
.......... *............T
Soap liquor . . .. ........
T
Sodium Sodium Sodium Sodium Sodium
acetate .....
S
alummate ......................
G
alummate lime
G
bicarbonate or baking soda......... F
bichromate............................
G
Sodium Sodium Sodium Sodium Sodium
bisulfate ........
...T-S
bisulfite . ......... . ..............T-S
bromide ..... ................................... G
carbonate ..............
G
chloride . .
G
Sodium glutamate
.............
F
Sodium cyanamide ...........................
T-S
Sodium cyanide
..... .. T-S
Sodium dichromate
............................. G
Sodium dichromate & water .........................G
Sodium ethylate .... .......................... .. T
Sodium fluonde .
.......
G
Sodium hydrosulfile ....................................... T
Sodium hydrosulfide .....................................T
Sodium hydroxide .......................................T
Sodium hydroxide(Doctor's Solution) .. ..T
Sodium hydroxide over 180F ..... S
Sodium hypochlorite . ...... .... . G
Sodium lactate
.................. - G
Sodium melaphosphate ... ..................... G
Sodium nitrate
. .. . G
Sodium oleate
. ... ..
Sodium perborate ................ ..................T
Sodium peroxide
T-S
Sodium peroxide solution .. . , ......G
Sodium phosphate (01) ....
Sodium phosphate
(mono) ....
Sodium phosphate, to boiling . .
Sodium phosphate (tri) ,
.
Sodium po'ysulfide
.
.. G G G
.. G ...G
Sodium plumbile Sodium resmate Sodium sancylate Sodium sHtcate Sodium sulfate
.............................. G G
....... S .. G
., ..... G
Sodium sulfide Sodium sulfite Sodium tefaborate(Borax) Sod urn ihiosutohate . Sod-urn thicsutlate or"Hypo"
.
G G G G G
SoivasoJ Sorbitol Stanr c chionde Stannous chloride Starch, s.urry
..
. ,
S S-G S-G
G G
Sta'Ch. tc boiling
Stearic acid Stea' c & ceic acid Stoddard Solvent
F
G G G S
Styrene
...... . ... . ... S
Styrene 4 dinltrochloro benzene
.S
Suoar liquors 4 solutions............................ F
Sulfate liquors, kraft.......................................T-P
Sulfur molten ................................................ T
Sulfur chloride
....................
T
Sulfur dioxide (wet)...................................... T
Sulfur dioxide, anhydrous liquid ................ T
Sulfur lnoxide .............................................. T
Sulfuric acid
.X
Sulfurous acid ..........................
T-S
Sulphite pulp .........................................
P
Sulphoneted fatty alcohol . ....................S-G
Sulphonated vegetable oils ......................... G
Sulphur (molten) ................
G
Sulphur chloride .............................................,T Sulphur dioxide 4 water vapor................T-S Syrup (high sugar) .......................................... F Tallow ......................................................P-G Tannic acid ................................................... G
Tanning liquors (veg)............ Tar .......................................... Tartaric acid ...................... Terephthalic acid (water slurry
10% N. acid) .................. Telrachloroethytene ................
..G ..S
G T-S T-S
Tetrachiorethane ...............
T-S
Sym-tetrachlorethane .... ........................ T-S
Tetrahydrofuran ..................................... T-S
Tetraethyl lead ............................................T-S
.Thiamrn solution .................
F-S
Titanium tetrachloride .................... . .T-S
Toluene or toluol ........................................ T-S
Tomato Juice ..................
F
Trichloropropane ..............................................S
Trichlorethyiene (dry) .......................
T-S
Trichlorethyiene (wet) ............................. T-S
Tnchloro ethane ....................
T-S
Tricresyl phosphate ......................... ...........S
Thiethylamine ...........................
S
Trisodium phosphate .................................... G
Turpentine ...................
S
Ucon Hydrolubes ...... ..
.,G
Urea
>. ........................ . ..................S
Urea 4 Phenolic resins.............................S-G
Urine ..........................................................,...S
Varnish .............................................,.......... S Vegetables, Juices ........ ............ .. .... F
Vegetables, oils ......... ................. .-- -...F
Vmeoar ..............................................................F
Vinyl acetate ..................
<S
Vinyl chloride ........... .....................................S
Vinyl chloride gas ...........
S
Vinyl pyridine ................
.T-S
Vinylldine chloride .....................
T
Vitrol. oil of .. ..................
X
Water (acid, mine, nonoxidizing) ,. -. T-S
Water (acid, mine-oxidizing) ., . ..... .T-S
Water (boiler feed)
. ............ .. G
Water (brackish) ........................................ ..G
Water (chilled air. washing) .
G
Water (chilled condenserservice) .
G
Water (cooling tower) . ............................. .6
Water (de-iomzed)..........................................G
Water (detergent) .................... .
.. G
Water (distilled) ..... .. ....
G
WWGaatteerr
(ont, carrying, cool) ........ (Iresh, clean, cool)...............
G .G
Water (soapy)
.... -..............-. G
Water( to boiling)
.... ....
G
Water (with soluble oil) .................................G
Wax, hot
....
Wax. slurry ,, ................ ... ..... ...
Whey
........................................ ... ,,
Whiskey
...
......
While liquor
...... ...............................-
G G F F P
Wme
White water
Wort
Xylene or xylol
Zein
..
. ..
.... ............ .. . .
..................................
F P T T-S
G
Zeolite, treated water ..
Zing chloride
Znc cyanide
.
Z'oc nitrate
Zmc sulfate
.
G G .. G G ... G
Z.nc sulphate (to boiling)
G
FBW-134
10
FOBIS FURBISHED
Stylet CW1 and CW2
RG1 (12% Ft. Lengths)
PG1 Lengths)
All Other Styles
Forms
y, X, v* % % % Vi % K y< % 1 VA 1% IVi 2
Colls
Coils per box
Flat boxes Feet per box
4444444 3 3 2 150 125 109 93 80 66 60 36 33 19
Spools -
% & on 1 lb. spools Yi to 1" on 25 or 50 lb. spools
1" and up on 50 lb. spools
Lengths per box
8 6 5 4 4 33 3 2 2 2 2 2 2
Cbils
Feet per box
100 75 62 50 50 37 37 37 25 25 25 25 25 25
Weight per box
4.5 5.4 6.3 6.8 8.8 8.4 10 14 11.6 14.5 20.5 24 27 42
Spiral
Lengths per box
Feet per box
Inside diameter of spiral
Weight per box
22 1 1 1 1 1 1 1 1 1 1 1 1
25 25 12.5 12i5 125 ' 12.5 125 12.5 12.5 12.5 12.5 12.5 12.5 12.5
1* 1* 1% 1% 1% 2% 2% 3Vi 4% 4V4 4Vi 4Vi 4.5 4.5 1.1 1.8 1.8 1.7 2.2 2.8 3.3 4.6 5.8 7.2 10.5 11.9 13.6 212
Number length per box
Coll Feet per box
8654433 322 96 72 60 48 48 36 36 36 24 24
Feet per box
12 12 12 12 12 12 12 12 12 12
Spiral
Inside diameter of spiral
1% 2 2 2Vi 2Vi 3 4 5 5 5
Spools
Up to Vi "--1 lb. spools All sizes--5,10, 25 and 50 lb. spools
FBW-135
APPROXIMATE WEIGHTS POHIDS PER 100 FEET
SIZES
Min. Style Size lA Vl6 Va %6 %
7/l6 % */l6 % V* Vs
Max. 1 Size
CGI X,
i 3 Vi 4 Vi 7
10 14
18 21 24 32 46 65 1%
CF1 Vs
-- 2V4
4
7 9>/< 12'
20 26 36 50 60 --
2
CPI Vs
i 2% 4 Vi 7 10 14 18 21 24 32 46 65 1%
CXI Vs
IVi 3Vz 5 Vi 8 Vi 12 Vi 16Vi 21 Vi 27 32-Vi 45 58 Vi 75
--
CT1 Va
-- -- 4'A 7Vi 10% 14
17 21 25 35 56 68 1%
VG1 Vs 1 Vi 3% 5 7Va 11 14
17 21 24 34 45 55
1
VT1 % 1 2 3Va 5% 8 9 Vi 11 17 22 31 40 50 2Vi
VX1 Vs 1% 3% 6 8% 11 15
18 21 24 30 -- -- 2Vi
RG1 V* -- -- 4y2 7 10 13
17 22 26 37 46 56
2
PG1 Va
-- -- 4 Vi 7 Vi 10 14
18 20 24 36 45 60 1Yi
SIZES
Min. Style Size
Va
% Vi % Va
1
iy 1% iVz 15/s 13/4
Max. 2 Size
CW1 %
3 6% 12 IB 26 47
73 89 106 124 142 186 2
CW2
3 Vi 7 V/2 12 20 28 48
73 88 102 117 132 160 2
FBW-136
JHEN
Time was you had to uncoil packing from spools^ measure
and cut to fit. The result: loss ot time, less precise fit. and wasted material.
1140 fj/
~------------ *=*
PRE FORMED
(
PUMP PACKINGi
Johns-ManviHe adds a new twist
to a reliable old product.
Pre-formed Pump Packing comes in five standard sizes to pack most pumps. It saves you labor and money. Pre-formed Pump Packing is a more efficient way to do the packing job.
FBW-137
PRECISION-FORMED
PACKING ^
J-M .precision dies form each
ring precisely to an exact cross':
s^ronrj&rners'a're'^qua^ed to
EXACT :.
exact_Siz6 'and rings'have uni CROSS SECTION
form density throughout. Pack-,
ing seals quickly with minimum
i>ott load on follower.
..
KEYSTONING HH ...
EUMINATES KEYSTONING
Preformed rings will not distort that.critical' cross section.. This THE OLD WAY prevents keystoning which ,
causes,bore leakage and excess -v
sive packing5 pressures on the shaft which In turn causes bum-' outs land shaft grooving. With-- 'J-M Pre-formed Pump Packing : there is no keystoning effect. :
WITH J-U PRE-FORMED PUMP PACKINI
PRE-FORMED PUMP KIT DATA STanuakD 61
J Style
11
Base Material j
Impregnation or Lubricant
ri
R-CT
1
1
Asbestos
1
TeHon Suspensoid plus lubricant
Finish None
Temp Limit
pH Range
Service
soo 2 to 13 Any service except
strong acids
R-CP
Asoestos
Petro oase ludricant
None
500 4 to 14
Pulp & paper stocks
R-CG
Asdesios
Peiro base oil and graphite
Graphite 500 4 to 10
General
J
i
t
PRE-FORMED PUMP KIT DATA STANDARD KITS
Packing Size y.
7'6
Max. Shaft Diameter
i y. 2'/,, 2'A 2% 3T;
Rings Per Kit
5 5 5 5 5
No. Kits Per Carton
8 8 8 8 8
Approx. Wt. Per Carton
10 1.0 32 50 80
Fits a wide variety of sizes.
J-M Pre-formed Pump Packing is pre-formed and pre-packed ... ready to go when you've a job to do. The old method was sticky and time-consuming. Now Johns-Manville engi neers have come up with a far better way to pack those pumps. If one of our standard rings isn't an exact fit, you can take "just a snip" for a perfect fit and the job is done.
FBW-138
Packaged five
rings to a kit
Dust-free plastic con tainer is clearly label ed and prevents abra sive materials from contaminating rings. Packing stays clean from factory to pump.
PRE-FORMED MEANS
EASY INSTALLATION
Simply place, ring on shaft or mandrel and cut off the slighfex* ^cess at both ends on radiusvAdustment labor is reduced ioja Minimum. Pre-formed rings save, ryou time and money, and result in a better seal.
JUST* "SNIP" FOR PERFECTFIT!
REDUCES
RUN-IN TIME
Precision formed rings adapt to 'the'stuffing box quickly., reduc ing..start-ftp gland adjustment procedures,
14