Document jgEqNpz7d3BM9VJem8rKaNM8O
FILE NAME Keene KNE
DATE 1953 Mar 31 DOC KNE004
DOCUMENT DESCRIPTION US Patent - Insulating Material
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UNITED
UNITED UNITED UNITED
STATES
PATENT
OFFICE
ote
2,633,433
INSULATING MATERIAL
Frederic H. Hollenberg Jr. Wyndmoor Pa assignor to Exldwin Company Trenton N. J.
a corporation of New Jersey
.
No Drawing Application May 2 1946
Serial No. 666,807
11 Claims CL 117
126
inorganic .2
I
enter section and the resin may even be sub-
The present invention relates to an insulating material of unusual
and
im-
stantially confined to the outer sections
be pretared by any process
Abre
proved properties and to a wet process of pro-
The product may
thermosetting resin and bentonite in
ducing the same and more particularly it
in which a
medium is incor-
relates to an insulating sheet material which is addition
the presence of an aqueous porated in incrganic ficrous material the fibres
characterized by its resistance In
of which are interfelted in an aqueous suspension
the invenison relates to an aquecus resinous com
thereof and in which the resin after its associa-
position which is available for use in the produc-
tion in the interfelted web is converted by heat
tion of inorganic fibrous insulating material pos-
10
the infusible insoluble stage Since the ben-
sessing water and resistant properties
to
in the inorganic fibrous
One object of this invention is to provide an which while
tonite is incorporated
material in the presence of an aqueous medium
bentonite and the final
inorganic fibre insulating materizi high flexural strength
the water will swell the
relatively light possesses
electrical
product will contain bentonite in its swollen
is waterproof fireproof and has high
state
and thermal insulating values
In the preferred embodiment of the invention
Another object is to furnish an insulating ma-
the sheet of insulating material which is sub-
terial which possesses in addition to other desir-
to heat to convert the resin is formed
able
properties
resistance and which if the combustion tem-
jected
from an
aqueous
suspension
of the fibrous mato remove water
raised at one portion to
20 terial by the use of a screen
perature of the resin will provide a barrier pre-
therefrom Preferably the thermosetting resin
venting propagation of thermal decomposition in
and bentonite are mixed with the aqueous sus-
adjacent portions of the product
pension of the inorganic bres for example in
A further object is to provide an insulating
the beater or the mixing or agitating tank or the
material comprising inorgarde fibrous material
head box but if desired & soluble liquid resin
bentonite the latter 25
be added to the inter-
bentonite may
e synthetic resin binder and
and the
ingredient imparting resistance and other
feited web for example to the wet fibre on the
destrable properties to the product and which
screen or subsequently If de-
product may be made by an economical and
producing sired instead of forming the interfelted web from
commercially practical process
Still another object of the invention is to pro- se vide an insulating matenal in the production of
which various types of thermosetting resins in-
cluding a soluble resin even in a very dilute solution may be used and in which the white water may be utilized to make up new stock solutions 35
Still another coject is to provide & resinous
composition comprising a soluble thermosetting resin in solution in an aqueous medium and a
retardant in suspension therein which composition is available for use in the production of 40
insulating material of improved properties
Other objects will be apparent from a con-
sideration of this specification and the claims
The insulating material of the present in-
vention comprises an interfelted web of inor- 45
ganic fibrous material and a synthetic resin in
its insoluble fusible stage and bentonite incorporated in said interfelted web the resin and
bentonite providing resistance and fireresistance respectively to the product as will
bereinafter be discussed In cue preferred em-
bodiment the resin and bentonite are distributed
substantially throughout the interfelted web
mating uniformly product Mena
but
nacin
nacin
in
in
if desired
the
the
contacmontam
the
mating
mating mating mating mating
may have
them them
for
for
th
th
the an aqueous suspension by
use of a screen &
smaller amount of water may he employed and
the resulting suspension may then be deposited
either continuously on a conveying system or
batch into forms As will hereinafter ap-
pear other additives such as a supplemental
retardant a foaming agent a bentonite-
viscosity reducing agent or both may advants-
geously be added at a sultable point in the process
By inorganic fibres is meant what is generally
known in the industry as glass wool mineral
rock or slag wool and asbestos fibres and all
these will be referred to generally herein as fibres
Any one of these fibrous materials may be used
advantageously in the process the use of mineral
wool being generally preferred and mixtures of
any two or all of them in varying proportions
may be utilized For example portions of long
fibre asbestos such as amosite may be advantageo'isly mixed with glass wool or rock wool or both to provide additional strength to the
Anished board
In the case of the use of the glass or rock
wool either fibre or loose wool or what is
known in the trade as granulated or nodulized
water
ot ng
orn ge
te
gold
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ets
ee
2,633,433
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ty
One wool is prepared by nodulizing the wool on a bustion It can be seen therethf atoifrae ny
rotary screen which also removes the major par-
portion of the binder is raised to the combustion
TD
EN tion of the shot that is the glass granules
of fiberized material When fibre wool
temperature of the resin thermal decomposition will spread throughout the entire product unless
is used a large percentage of the shot is ad-
some is means provided to prevent such action
vantageously removed in the process for ex-
The presence of the bentonite in the finished
a
product serves as the means preventing the ete ample by a riffe box The removal of the major
portion of the shot is important since obviously
for propagation of thermal decomposition through
substantial quantities of it will seriously alter the
the product Bentonite acts as an excellent fire-
fe
weight of the finished board without changing 10 retardant for all the various types of thermo-
the volume appreciably In the preferred embodiment of the invention
setting resins that may be used in the production of the insulating material since the bentonite
granulated or nodulized wool is employed since the finished product will have lower thermal ~ anductivity lower density greater strength and better handling properties as compared to a product made from fibered wool Mixtures
provides a mechanical barrier between the portion
of the product which has
been bustion point of the resin and
product tions In the event the
raised to the comthe adjacent por
is subjected to
& temperature sufficiently high to cause fusion of
of fibered and nodulized wool may be used
the bentonite the fused bentonite then serves as
if desired
the barrier This condition occurs during the
By thermosetting resin is meant any syn- 20 application of the insulating material to a metal
thetic resin in an initial stage of polymerization
starface by metal pins since in such a process the
which is convertible by heat to the insolubline-
fusible state Such resins may be used in any
one of the three following forms 1 as an aque-
pins are welded to the metal surface Thus if the material is ignited at one portion the combustion will not spread to other portions due
ous solution of a soluble liquid thermo- 25 the barrier provided by the bentonite
setting resin 2 as an aqueous emulsion of a
The bentonite is used in any particular case
insoluble thermosetting resin in liquid
in an amount to provide the desired resist-
form and 3 es an aqueous dispersion of a
insoluble thermosetting resin in a dry
30
powdered Snely divided form Mixtures thereof
^nceto the product The amount employed wili be dependent on the quantity ofrest in the product When optimum resistance is de-
may also be used if desired The first two forms
contain liquid resins as distinguished from the
sired the amount of bentonite will usually exceed
the resin content for example with a product
powdered resin of the third form While any of the thermosetting resins or mix-
whereas containing % resin about % bentonite may be
present
whereas with a resin content of % the
tures thereof may be employed for example
bentonite content may only be about %
formaldehyde formaldehyde formaldehyde and formaldehyde
As previously stated if desired the fireretardant characteristics of the bentonite may
the use of a formaldehyde resin that is
be supplemented by the presence in the product
& resin produced by reacting a phenol with a formaldehyde substance is preferred Examples of the phenc's are phenci cresol and xieuol and examples of formaldehyde substances are formaldehyd~ paraformaldehyde
of another retardant While various cherai-
fire cals having
retardant properties may be used
with the bentonite zinc ammonium phosphate
has been found to be particularly effective The
choice of the particular supplemental retard-
and netetramive The usua extenders or mod^>lerssuch as Vin^olresin which
Ent employed will depend upon its ability to be used in the process without undesirable reaction
is a thermoplastic hydrocarbon resin
derived from wood containing phenol alde
with the reci anrd to be retaiinnethde fin-
ished material Certain substances having fire-
hyde and ether groups Iresinate which is merely an emulsion of the above described Vinsol resin in water and the like may be included in
50
the resinous composition Bentonite is a generic term covering colloidal
retardant properties are notavailable for use due to their reactivity with the resin for example
zinc borate may be used with a powdered resin
but not with the liquid resin due to its reactivity
with the latier
clays that have an affinity for water and swell in the presence thereof and any of the various grades of bentonite such as sodium- potassium calcium- or magnesium bentonites may be used in the production of the product of the invention Advantageously a bentonite with & high absorptive capacity is employed and as stated the bentonite will be present in the product in a swollen state Regardless of the type of resin employed the presence of bentonite either alone or with other fire retardants in the
the -
finished insulating material serves to render product resistant
The resins used in this process being af a coinbustible nature will undergo thengal decompusi-
The proportions of inorganic fibre resin and
bentonite in the finished product may vary widely
but since these three ingredients are associated in
the presence of water the relative amounts
thersof will depend upon the particular type of process used in the preparation of the product
Generally Generally the finished material will contain from
about 55 to about 97 of incrganic fibre from
about % to about 30 of the converted
resta and from about % to about 25 of ben-
tonite Insulating material baving particularly
properties advantageous
may contain from sbout
70 to about 97 of inorganic Ebre from about
from about 25 of to % to about10%
from
the converted resin and
about 18 of bentonite for in-
tion when subjected to high temperatures even
stance from 85 to 90 fibre % to % resin
when the resin is incorporated with the inorganic
and % to 35 bentonite In a typical example
fibrous material the finished product The in- To the moulating material contains 87 rock rooi
organic fibres fu the finished product form an
insulating blanket over the resin particles preventing the heat of combustion from being dissi-
pated and poh
Pade
due vine
to
the presence of
171966 12,8 metais van
the Abres vastuu pari tig a aitr
we
fibre % of a formaldehyde resta converted to its infusible insoluble state and % of bentonite in another example the finished prodn^t entiained 02 of rock wool flore % of a
ae
Fe fbn SIVUAYTPat dehyda resto andand
-2,63 ,48
5 -2,633,488 6
5
-
6
% of bentonite When a supplemental fire-
tonite particles in suspensiaonnd % by weight
ae
-
ats retardant is included in the product the amount
of resin solids in solution after dilution with the
thereof may vary from a very small amount for
water employed in the process is desired it is not
example a few tenths of a per cent up to 5
necessary to use an initial resin solution having &
Ee
or even more based on the weight of the resin 6 dilutability of at least 14 to 1 but a solution of a
ere and the amount employed in any particular case
dilutability ratio of less than 14 to 1 may be em-
wili be determined by the degree of supplemental
*
ployed provided the dilutability ratio is greater
retarding action desired
than about L. Thus the bentonite wlli serve
te
2
The insulating material of the present inven-
to convert a precipitatable solution into s
tion is characterized not only by resistance 10 Land proofness but also by high electrical
and thermal insulation values It is further- -
characterized by high flexural strength sound
precipitatable solution
It is to be understood that the resin content of
the solution or suspension after the dilution by the water in the process may vary widely for
absorbing properties and resistance to vibration
example from about 1to about 20 by
Referring to resistance a sample of the 16 weight of resin solids and that an initial resin
insulating material of the invention was found to have absorbed less than % water in an atmos-
solution to provide such resin content will be employed This is also the case when a resin
phere of 95 relative humidity at a temperature
emulsion or dispersion is used
of 120 F. Even when the material was sub-
Likewise the bentonite content of the resin-
merged in cold hot or boiling water it did not 20 water medium after the dilution by the water in
deteriorate and after the wet insulating material
the process may vary widely for example from
was dried the original strength was retained
about % to 18 by weight of bentonite and an
Tests of the product by the Columbin tem-
initial amount of bentonite to provide such quan-
perature method showed no evidence of burning
tity will be employed The bentonite is prefer-
Furthermore the product is characterized by its 25 ably moistened with sufficient water to swell it
Alacr,
ease of handling and may be utilized with a
minimum of dusting and breakage and there-
fore with practically no industrial health hazard
before it is incorporated with the water medium When bentonite is employed in the upper portion of the range for example about
ern The product may therefore be used in any application where such properties are desirable The weight per cubic foot of the product may
% and above the viscosity of the medium is high 30 and with relatively thick products difficulty may
he encountered in removing excess liquid from
vary over a wide range depending upon the proc-
the interfelted web when a screen is used in the
ess steps employed in its production as will here--
formation thereof In order to decrease the vis-
inafter be described and usually the weight per
cosity of the medium particularly when more
cubic foot will be between about 6 and 25 pounds 35 than about % bentonite is present it has been
When the product is to be used as an insulating
eave material for ships or in other applications where a light weight product is desired the weight per
found that this may be accomplished by the indinsion in the water medium of a small amount of a soluble polyphosphate for example
ELAR
cabic foot is advantageously between about 6 and 10 pounds
sodium or potassium hexametaphosphate tetra40 phosphate or pyrophosphate sodium tetraphos-
As previously stated various processes may be
phate being preferably employed When &
used in the preparation of the product and the
soluble polyphosphate is employed some of it at
particular process depends on whether en aque-
least will be present in the finished lest
043 solution an emulsion or a dispersion is
verted product The amount employed may vary
Initially employed Furthermore when an aque- 4545 from a few tenths of a per cent up to % or more
ous salution is employed the process depends on
based on the weight of the bentonite The pre-
whether the resin will remain in solution when
ferred range is from about 0.5 to about 15
the solution is brought into contact with the water employed in the process or whether the resin will precipitate under such conditions These two types of initial aqueous solutions are termed precipitatable and Tesin-
precipitatable respectively When bentonite is
included in the aqueous solution of the resin the dilutability of the solution without precipitation of the resin is markedly increased so that a solution which is normally precipitatable may become upon the inclusion of the bentonite the
precipitatable type
In a typical case where it is desired to employ a precipitatable solution and to pro-
vice a solution after dilution with the water em-
resin ployed in the process of % by weight of
solids an itutial solution containing 70 resin
solids and having a difutability of at least 14
water to 1 solution by weight is employed
Ina typical case where it is desired to employ a
provide precipitatable solution and to
a
suspension containing % by weight of precipi-
tated resin solids after dilution with the water
employed in the process an initial solution con-
taining 70 resin solids and having a dilutability
of less than 14 water to 1 solution by weight
ts used Illustrative of the effect of bentonite if
solution containing % to 10 by weight of ben-
Thus in a typical case where an % suspension
of bentonite after dilution by the water in the
process was used and % of sodium tetraphos-
phate was present the viscosity was reduced ap-
proximately to that of 3,5 bentumite concentration In the case where the suspension of
fibre bentonite and resin is sufficiently concen-
trated so that it is not necessary to remove excess
65
water by a screen the use of a polyphosphate is
usually not required since a high viscosity is an
advantage
by
The process is preferably carried out by mix-
ing the resin and the bentonite with the in-
so organic fibrous raaterial before the interfelted
web is formed and in this type of process the
precipitating solution the resin emul-
sion or resin dispersion may be added to the
65 beater mixing or agitating tank or bead or delivery box to the screen used to form the web
If desired instead of using a screen to form the
web a conveyor or stationary form may be emplayed In this case the use of granulated
73 mineral wool is advantageous In the case a precipitating solution
a precipitating solution or a resin emulsion is used the interfelted web after its formation
for instance on the forming screen or after
y removal therefrom either before or after drying
-
.
.
,
ee
2,538,433
ns
8
an aqueous may be treated with
medium con-
the wat interfelted web is placed upon pallets
a
-taining the resin and bentonite Since the web which support it in a flat form and are dengned
Shea is formed from a suspension of the inor-
to impart impart to the web a smooth flat surface The
ganic fibrous material it is a water web pallets are placed on cars and the cars in turn
me t
and as is usual in water webs the major por-
are dryini a dn ryig ng tunnel The drying tunnel
NS
tion of the fibers therein are oriented in a plane
is usually kept at a temperature of between 250
substantially parallel to the plane of the web or
F. and 550 F. preferred range being between
sheet If the dried sheet is treated it may or
300 F. to 350 F. At this temperature the water
wen may not be wet prior to the application of the
is evaporated and the resin is converted to the
carrying medium but of course if a pre-
cipitated resin is desired the product must con-
tain suficient water to cause a precipitation of the resin when a precipitatable solution is
Infusible Insoluble state The length of time of
treatment is a function of the temperature
employed and usually requires three hours or
mare
slight increase in resin the employed Furthermore if desired instead of
When the interfelted web contains a resin
treating the interfelted web with an aqueous
which is soluble in the residual water associated
medium containing both the resin and the
with the web there is a tendency during the dry-
bentonite the bentonite may be incorporated
ing cycle for such resin to migrate to the outer
with the fibres prior to the interfelting step or
surface This migration results in a product that
subsequently thereto and after drying the prod-
has a strong outer crust but a softer inner
oct may be treated with an aqueous solution or
core
emulsion for example by spraying dipping or
while such a product is at times desirable the
passing the solution or emulsion through the
use of bentonite has the further advantage when
product
a product having a substantially uniform distri-
When a precipitatable solution is ap-
bution of resin is desired since when using such
plied to the interfelted web whether it be on
soluble resin the bentonite reduces the amount of
the forming device or subsequently the water 27 migration so that from a practical standpoint
associated with the web and the displaced water
very little occurs although there usually is a
is drawn through the web as filtrate Since the
concentration on
presence of the water in the web raises the
outer surface This slight increase is beneficial
since it dies in the fibre very com- amount of water in the resin solution above the
particles of
critical dilution ratio the resin is precipitated 30 pletely and provides a finished product which is
from the solution and is dispersed throughout
easier to handle In fact in cases where the
the wet web
product has been cut to size before conversion of
The interfelted web of organic fibrous materisk whether the resin be associated with the
Abres prior to the formation of the web or thereafter is advantageously formed on the screen of an Oliver filter or other type of revolving screen
squipped with vacuum compartmenbtust if de-
sired the web may be formed on the usual
the resin then the slight migration provides & product in which the surfaces thereof including the edges and ends are neatly sealed
Regardless of the particular form of aqueous resin medium employed it will be desirable to recirculate the water removed through the screen This is particularly important when a
cylinder type of paper machine or on the screen
of a Fourdrinter machine Thereafter the web is subjected to the action of a pressure roll or rolls in order to compact it to some extent and to
smooth the surface and after the treatment with the bentonite and resin as described the interfelled web is dried and heated to convert the
resin to the insoluble infusible state In the
preferred embodiment of the invention the inter-
felted web is formed by the process described in
Patent No. 1,865,069 except when granulated or
~
nodulized wool is employed the riffle box may be
omitted As stated the use of pressure rolls is
recommended since they serve to establish the
thickness of the product at a predetermined
point
For
example
in
the
preparation
of
55 a
one inch board the suction may be applied so
that the stock will build up an interfelted web of
approximately one and eighth inches and by passing under the pressure rolls the thickness may be reduced to one inch
When the stock solution delivered to the screen
contains the resin and bentonite as well as the
inorganic fibrous material the solution may foara
and if this condition is encountered a suitable
reducing agent may be added
65
The interfelt web is subsequently heated to dry
the web and convert the resin to the infusible Insoluble state and the product may be cut to the
desired size for example by means of circular
70
discs revolving at high speed either before or
after the drying and heat treatment The in-
terfelted material may be heated by any suitable means and the temperature of the treat-
ment will depend upon the partialar resin preseut in the interfelted structure Advantageously 75
precipitating solution is employed
since the resin and bentonite content of the white
water remains substantially constant Such a solution is normally relatively unstable and there is a tendency for the resin upon standing to sepa-
rate from the solution The use of beatonite in such a solution however makes it possible to obtain resin solutions stable over a period of
months and in fact the stability of such a solntion increases toon aging The stability imparted to such a solution by the bentonite therefore makes + possible to recover and reuse the
white water
As stated previously one object of the invention
is to provide a resinous composition comprising & soluble thermosetting resin in solution in an
aqueous aqueous medium and bentonite suspended therein which composition is useable in the produc-
tion of insulating material In making such a
compositicomoposintion it is desirable to first suspend the
bentonite in water to swell it and than to incor-
porate it with the resin solution The concen-
trations of bentonite and resin in the solution may correspond to those of the solution to be used in
the production of the insulating material such
for example as those given above but it is advan-
tagies to make a core concentrated solution
for example a solution containing from 20 to
50 of resin and from 10 to 40 of bentonite
and then to dilute this solution at the time of
its use The presence of the bentonite stabilizes
the resin as hereinbefore described
Considerable modification is possible in the
proportions of the constituents of the insulating
material of the invention as well as in steps
whe
ons
anoe ne
Bn, aes
AF
-
TONS
IT wool and asbestos fibres and mixtures thereof
between about % and about 18 of bentonite
~.
formaldehyde formalde- and electrical in-
between about % and about 10 of synthetic
ee
high flexural strength heat
thermosetting condensation product selected
tn
ting valves fireproofness and waterproofness
from the group consisting of
comprising in the form of an interfelted web an
hyde formaldehyde formalde-
ce
of inorganic fibres selected from
h^fide and formaldehyde condensation
intimate mixture
the group consisting of glass wool mineral wool 10 products in the infusible insoluble state and
and asbestos fibres and mixtures thereof be-
zinc ammonium phosphate said bentonite said
tween about % and about 18 of bentoni aend
synthetic thermosetting condensation product
between about % and about 10 of a synthetic
and said zinc ammonium phosphate being molec-
thermosetting condensation product selected
ularly interspersed with each other at least the
from the group consisting of formulde- 15 major portion of said inorganic fibres being ori-
hyde
formaide-
ented in a plane substantially parallel to the
hyde and formaldehyde formaldehyde condensation
plane of the interfelted web and said bentonite
" products in the infusible insoluble state said
being present in an amount in excess of said syn-
bentonite and sald synthetic thermosetting con-
thetic thermosetting condensation product
densation product being molecularly interspa 20
8. The product of claim 7 wherein the syn-
with each other at least a maior portion of said
thetic thermosetting condensation product is a
inorganic fibres being oriented in a plane substan-
formaldehyde resin and wherein the in-
tially parallel to the plane of the interfelted web
organic fibres are granulated mineral wool fibres
and said bentonite being present in an amount in
9. The product of claim 1 wherein the inor-
excess of said synthetic thermosetting conden-
zanic fibres are a mixture of asbestos fibres and
sation product
2. The product of claim 1 wherein the syn-
thetic thermosetting condensation product is a
mineral wool fibres
10. The product of claim 1 wherein the inorganic fibres are a mixture of asbestos fibres and
phenol formaldehyde resin wherein the mor-
3. The product of claim 1
glass wool fibres 11. The product of claim 1 wherein the inor-
ganic fibres are mixture glass wool fibres ganic fibres are mineral wool fibres
4. The product of claim 1 wherein the syn-
thetic thermosetting condensation product is a .
resin and wherein the in-
a
of
and mineral wool fibres
FREDERICK E HOLLENBERG JL
formaflodremhyadledehyde eee organic fibres are granulated mineral wool fibres
5. An insulating material characterized by
REFERENCES CITED
high Bexural strength heat and electrical in-
The following references are of record in the
sulating values freproofonfesasnainndtewrafteeltrepdrowoefbneasn s file of this patent ~
comprising in the form
of inorganic fibres selected
UNITED STATES PATENTS
intimate mixture
40
from the group consisting of glass wool mineral
Number
Name
Date
wool and asbestos abres and mixtures thereof
300.946
Carey -..--
-
1884 June 24
_~~--
between about % and about 18 of bentonite
1,160,362
Baekeland .._.-.-- Nov. 16 1915
between about % and about 10 of a synthetic
1,887,726
Weber --- Nov. 15 1932
thermosetting condensation product selected
1,949,087 Squiers
Feb. .--__--~
27
1934 1934
from the group consisting of formalde-
1,969,156
Schuttler ..--.---
Aug. 7
-
formalde-
2,011,915
Seigle .
Aug. 20 1935
hyde
and
formaldehyde
condensation
2,040,348
Victor et al .----. May 12 1936
hyde
in the infusible insoluble state and a
-
2,101,449
Party - Dec. 7 1937
psorloudbulcetsalkali metal polyphosphate said benton-
2,122,514
Crocker s---...
July 5 1928
--
and said synthetic thermosetting condensa-
2,164,316
Plummer .---.-..- Dec. 26 1939
ite
tion product being molecularly interspersed with
2,105,272 2,105,272
Ehlers -- Mar. 26 1940
each other at least a major portion of said in-
2,221,420
Clarvos et al
Nov. 12 1940
--.
organic Abres being oriented in a plane substan-
2.251.236
Shipp -.-
_.. Aug. 5 1941
tially parallel to the plane of the interfelted weh
2,266.638
Hauser Dec. -----.--_~ 16 1941
and said bentonite being present in an amount
2,298,295
Hyatt ---..___----- Oct. 13 1942
in excess of said synthetic thermosetting con-
2,319,033
Bernstein et al .
M. ay 11 1943
densation product
2,330106
Bernstein et al
Sept. 21 1943
6. The product of claim 5 wherein the syn-
2,335,103 . Borgin --
_ Nov. 23 1943
Cassel thetic thermosetting condensation product is a
2.543.541
wee
Feb. 29 1944
resin wherein the inor-
2,345,965
Fiedler _
-a.
Apr. 4 --.
1944
formaldehyde ganic fibres are mineral wool fibres and wherein
2,367,181
Bernstein et al - Jan. 16 1945
the soluble polyphosphate is sodium tetraphos-
2,376,595
Hood ..
. May 22 1945
phate
2,376,687
Goldstein et al
May ... 22 1945
7. An insulating material characterized by
2,316,588
Goldstein et al -- M.ay 22 1945
high flerunni strength heat and electrical in-
2,385,384 Schroy
aoe Sept. 25 1945
ulating values Areproofness and waterproofness
2,500,635
Courtright -- Mar. 14 1950
comprising in the form of an interfelted web ~
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. Patent No, 2,633,433
Certificate of
Correction
|
Certificate 4
Patent Patent
No.
2,633,433
2,633,433
H.
1953 1953 1953
HOLLENBERG 2,633,433 FREDERICK
FREDERICK H. HOLLENBERG HOLLENBERG HOLLENBERG
hereby
above
hereby
certified
certified
FREDERICK
that
appears
printed
JR printed
specification
of the
numbered
numbered
correction correction
above Column Column 7
core read
66 interfelt
more ,
read be
follows line 67 for 67,
that
Letters
said Letters
Patent should be
above Tead corrected corrected
Patent
Patent
of
the
read
case
as
corrected
corrected
that that the the
Office
D. Patent Patent
[sraL}
a
a
a
hres MURPHY THOMAS F.
Assistant Commissioner
Ys
Commissioner of Patents.
-
Patenteg March March 31 Certificate Certificate Correction ;
oe pee a
ee TO wee
ee
wo
It is It
i
FREDERICK FREDERICK
HOLLENBERG Jr. No, the
above
HOLLENBERG It
has appears
numbered above above numbered
numbered
patent
and
showing has
showing fault been made that
occurred occurred correction faith and was not the of Patent Office said mistake mistake
read | requiring
follows
fault the
said mistake
;
Patent Column Column line line
No. 1,865,049
for The The said
Patent though
o^'
Signed Signed
patent should 7th
and sealed this 7th dadyayoJfulAy.D1.953 . i 865, ate
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