Document B91gLkYvj59Gn0eZDGqo3wQX
FILE NAME Corning OC DATE 1967 Apr 26
DOC OC193
DOCUMENT DESCRIPTION Report RE Kaylo with Confidential Stamp
Mr. J. Kirry 1. Y. Stamnca
FourHILIARY FourHILIARY FourHILIARY
Owens This document document or any parts of it
should not be to others wiwithout thcoouptied nornor divulged divulged
permission of
CCoornrinnging Fiberglas Corporation
April 26 2267
Mr. D. Y. Pfeifer Contral Files
Iast work you asked us to prepare for you a brief status repart covering the Kyle Product Developoprionprte directed toward replac asi ben stg os in Keylo
Dua to a ombination of factfoactrorss factors this program is falling sombat behind
sabodule We have attempted to merate vithin the badget I and C allocated
to Rs ^ robar of roquarta from I and C and mai^ repairs to the SID
gylinder not planted or bagsted for the first quarter cousunod a cobres cobres
tial
portion of the budget budget We ran maly 310 in the red on Kyle Product
Development S4035 during the first quarter 9.399 9.399 in the black for
the overall Kayle program including that sponsored by Yanufacturing
portion of our I and C 1 obstantial ponsored badget time and varpower
res speat on 1 ) the parchice and testing of capotitive insulations
requested by Del Ledd 2 various activities related to the production
and cortification of the stress corrosion betch
defect in February
approximately tikdag and block tikdag and program est by fedosky and Kevlia
) melting drying
end grinding of over to tous of 2339 glass at Granville f^r um la
maxfacturing of stress corrosiva ST3 pipe
for the test market
program Lovlix 4 plant trials to produce approximately 20,000 pounds
of stress corrosion product for test marketing
and 5 for
expenditures for repairs to the 3D gyliates Swank and Schilling
to charge repairs against project project
In addition to the probless of ties mumpovar and planned progres and requests from I and C Ferksting va bave also beca dove for ^,st
of the last mix vocks due to series of moobasicel breakdowns of the a
SI cylinder For the replacemat of adestost progtrheeks ey survival of fibers through the SD cylinder bea the SID is dora so ere vo, At the motrat so hire a mostantial backlog of fibers and Alber
treatmts to be evaluated as room es the SID cyli agn aladboe nomr as
sparational estimated fyril 27 or 28 b expletion of repairs
All calaiza silicate insulations on the market are reinforced t^
Good arbestos Atosios fibars are low cost and resistant is alkali
they do not bell ty or braaidova during riding riding they provide unvallart
ry
informing charestaristics to the cagedte cagedte and have mallet shoda
Good
to olatum millastes Deir only possible drur book involves a health
^', Karard
wevewoald
wate wma
a
Iron 4th all the above advantages of asbestos in Lavay murl t ^o z a colination of grades and fiber lengths to achieve the overall strengths
and handlesid required to the long fibored andito arbustes t
cy
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wo Mr. J. Hebry ale April 26 1967
a
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provide provide impet fleural and tensile
chart fibered drysstile bestos to strength in the prodort Va top
and
inorasca
mustension
of Inarta
provide processing
la
ratios datering
during
On the
batch and to allinto allinto crecking
drying in fiber length or
years to be found that eva a slight variation
characteristics and processing
percentage of bed bed
of Lyle materially affects strengths
glraesasstaably owe 7
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Mace the first of the
~
. .
,
priced fiber
year va have survomed just ebost
we could
flod
irolating
organie
every
roshvool
carinda and
.
products
The
first
step
paremad many of our an textils
of our staly has been to dotemdos
vhatbor
@ fiber is resistant to alkali present in calcium silleata
sjected to the pressures and
batch '
ww texperatures of the Layo
W
a
het
.
our standard glass roving products
bepaale and saremo fibers failed to
rockwool as well as
only natal fibers alkali
survive autoslaring To date
resistant glass 5 fibers leached plaze6
survive the autoelara
overal orgando fibers including cotton
Yotal fibers
rejected ability and favbraircaation fabrriecjateiocntedAlblrosotrgoasnioof their aireras efforts on hands-
rejected Fibern umopt prorecjeesctsedbutYansyhrionrkganinic vfiisbeertshusinclating heap and beegxetstsoon svuarrveivealtsohe
comporictompoerite
providing no relaforsemat to th
Tids Leares just four alessee of
. of replacing astogios in Kayla
fibers which have any probability They inalads sotion aball
glassee Lesobed Reframil I glass and
redistant
ised glass
possibly resin trusted or
bara problem the momost is all four of the above listed at
to be bara som
Khiob provide the
Peplace the short
suitable forreplacinrg eplacing ampsite abertos ocnllyiatmhoaseof
strength fibered
Ya hors not found to dete boy ^ berte
chrysotile arbestos in myle batch
suber of attents have bons I
atlatl rodistant rodistant delayed delayed fed with
made to fabricateinto
cation all
into pipe and black
8
alkali
gets gets all rose the
into plass er all losabed
Cucks during in
products produced bylin Strengths ditaized
hairline
sofied those fibers which
showed
vers very lov 15 eart
tibestos with a smill parocstage of chrystile
point has progress started to bare SID cyllater palms mally in propres
actostos was wond to replace the 15-20 d Lyle l's exgarable to standard
our
Kaylo vore ch^'alond
progress
has boca ra held dirse
rare
fe
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et as
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fo 2 barits the status of this progres ve have not found to date a
* .
mivinual mivinual fiber which can be used to replace both amuita and shrysotile
.
i
arbastos in kayla Es here at least three and possibly four plazone
of fibers which chov prosive of repleting andita abestos To nih
}
stitutes for chrysotile asbestos fobou ca n foud nd
La soon is the SID cylinder again becases opal ples containing
ome estion alkall rodistant gliss and leschod 3 Fafraal glass in oxblostis vith chrysotile 15estos vill be poured and rudeditted to Product Testing for evaluation Yajor emphasis during the next coveral months vill also be placed on finding a mibstitute for obrysotile dart
.
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Following is a short outline and sketchy description important batch changes that favorably and adversely adversely of the end product Improvements were made to years When any changes were made away from the basic density formulation an accompanying loss of impact resulted Naturally a lower density gave lower strengths
of
cons
cons
af ected af ected affected affected affected
thermal values values values
Kaylo
of
of
the
the
nose
thethe the
strength strength strength
strength
strength strength strength
1. 1954
Asbestos changes were made both in percentages of chrysotile
:
and amosite as well as types of each
1955 1955 1955
1955
No major batch changes .
1956 1956
Increased amounts of amosite asbestos
grade
particularly particularly particularly
AAW W
1957
Introduced various additives to 10 batch to improve improve thermal conductivity curve Finally settlesettledd on limestone aanndd chromite Percentages were as high as 25 percent Finally reduced to 12 percent because of loss of strength Removed clay from batch in a deliberate attempt to make a soft Kaylo
similar to 85 percent magnesium Due to low strength increased breakage replaced clay and improved end product quality Asbestos raised to 20 percent and lowered back to 13.5 percent
1958
Began use of Kenite for Celeton and had to discontinue because of uniformity of product Reduced additives in June to 9 percent to improve strength Increased asbestos in October to improve K factor
1959
Tried Kenite again for Celeton and again hahad d to remove it
for
was
analysis variations of too great a second trial of this material for
perpecrcentage entage
cost
cost cost saving
This purposes
In August cut Plant back to 5 days per weeweekk due to slack
business and high inventories
00865
Raised density to 12 pcf for an improvement in strength
handleability and offware Introduced Kaylo dust to 10
batch
1961
Few batch changes none major keeping strengstrength th of strength
product fairly high due to customer's desire for a
product in their manufacturing of fittings
Began
Plant operation on June 1
end
hard
hard
hard
full
1962
1962
Began introduction of coated glass fibers both phenolic and vinyl base for strength improvements and reduction of asbestos fibers Began also the use of liquid sodium silicate and dry milled amosite asbestos Removed coated
glass fibers at year end
_
10. 1963
Reduced Reduced Reduced density of K10 to 11 pof Not
substitutingsubstiuting changeschangcheangses substituting
changes , all minor except for removal
ssubsutitbutisngtituting 6D1 also chrysotile
too many batch
of 47 chrysotile
1964 4 .
Reduced density of 10 to 10-3 pcf Experimented with
powdered sodium silicate for prevention of stress corrosion along with liquid sodium silicate The latter mad madee for an improvementimprovement in surface visual appearance of pipe insulation
12. + 1965
=
Substituted supersil for tripoli
to 11 pcf
Strengths declined
Density remainremaienedd at 10-3
13. 1966
Began use of 50 percent 533 short amositeamosif te or longer fiber
W3 amosite Stopped the use of powderedpowdered sodium silicate
experiments Substituted 703 chrysotile for 6D chrysotile
asbestos Strengths dropped Introduced several bags of
11.3 cement per batch and increased density to 11-1 / to
pcf These helped to increase the strength of end product
some
255