Document daq5aVZGNJ2Ora1bZRebELvN6
AROCLOR resins and plasticizers for chlorinated rubber
TECHNICAL BULLETIN No.PL- 311 JANUARY, 1958
Monsanto V t..
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TOWOLDMONOQ27209
This bulletin replacet Monsanto'Technical Bulletin No. 0*124 dated May. 1957.
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V
Some important applications for protective and decorative coatings plasticized with AROCLOR compounds --
Wood and metal used in yachts, barges and other marine craft. Structural steel for bridges, buildings, roofs and power-lines. Structural materials at chemical plants, pulp and paper mills textile mills, petroleum refineries and gas works for protection against acid fumes, alkalies and gas. Tank cars and other rolling stock and construction machinery for protecting against corrosive materials and weathering. Equipment and stop-off lacquers used in electroplating. Masonry floors and walls. Concrete swimming pools. Highway markings. Cable coatings requiring fire resistance, chemical resistance, and excellent electrical properties. Textile coatings resistant to chemicals, fire and water.
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TABLE OF CONTENTS
Naming of Aroclor Compounds....................... . Properties of Chlorinated Rubber
General.......................... ........................... .......... Physical................................................................ Chemical Resistance......... ............ ................... . Electrical............................ ............ ..................... Mechanical_______________________________ Thermal_______ ____________ ____________ ... Physical-Chemical............................................... Viscosity Types................................ ........ ........................ Solvent Compatibility........... ........................................ .. Formulation and Properties of Chlorinated Rubber - Formulation for Aroclor Resins.............. " Formulation for Aroclor Plasticizers_______ Properties of Formulated Films. ............... .. Applications - -Alkaline-Resistant Coatings_________ Chemical-Resistant Finishes............................ Marine Finishes.................................................. Emulsion Paints........... ....................................... Adhesives...^............................. ............ ........ Paper and Textile Coatings........... ................ Electrical Coatings.......................... ................. Printing Inks______________________________ Resins for Chlorinated Rubber................................... Monsanto Plasticizers for Chlorinated Rubber_____ Toxicity.............................. ................................................ Shipping Information................................ ....................... Trademark Index............... ....... ........................................
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TOWOLDMONOQ27212
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AROCLORJ . resins and plasticizers for chlorinated rubber
INTRODUCTION
Monsanto produces a series ol chlorinated biphenyls and polyphenyls identified by the trade mark Aroclor* for use as plasticizers and resins for chlorinated rubber base lacquers, varnishes and paints. These protective coatings are fire resistant, corrosion resistant, chemical resistant (to acids, alkalies and water), and have good electrical insulating properties.
When properly pigmented, these coatings have unusually good weatherability. Chlorinated rubber films plasticized with an Aroclor grip common structural materials in strong adhesive bonds and the addition of an Aroclor improves the flexibility and life of chlorinated rubber and plastic coatings.
The formulations suggested in this bulletin are common in commercial practice today. They
are given as a starting point or guide in developing formulations that expand the outstanding
e qualities of these compounds.
Naming of Aroclor Compounds
-
The last two digits in a numbered series refer to the degree of chlorination by weight. Aroclor 1248 is a
biphenyl with 48 per cent chlorination. Aroclor 5460 is a terphenyl with 60 per cent chlorination. Two
special mixtures are:
.
Aroclor 4465--a 60:40 mixture (biphenyl to terphenyl) with 65 per cent chlorination.
Aroclor 2565--a 75:25 mixture (biphenyl to terphenyl) with 65 per cent chlorination.
The physical properties of the Aroclor plasticizers vary gradually with the degree of chlorination. At low percentages of chlorine, such as Aroclor 1221 and 1232, the compounds are clear and very fluid. At 42 per cent they resemble vegetable oil; at 48 per cent they thicken slightly and look more like a medium-grade mineral oil. At 54 per cent chlorine, the compounds are quite viscous; if a bottle containing them is turned upside down, the bubble rises slowly to the top. At higher percentages, the biphenyls become gumlike, and a fingerprint on the surface lasts several days. Then at 68 per cent chlorine, the range is complete; Aroclor 1268 is a white powder. The terphenyls (Aroclor 5442 and 5460) are both yellowish solids.
Thegradual change in physical properties often allows a processor to select a plasticizer particularly suited for his operation. For example, if he wants to dry mix the plasticizer,Aroclor 1268 could be used.It melts
o at higher processing temperature and can act as a solvent-plasticizer.
Aroclor. Monunto Trademark, Reg. U.S. Pat. Off.
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Properties of Chlorinated Rubber
--
"Parlon" is a mixture of two polymers with an average chlorine content of 67 per cent made by chlorin ating natural rubber. The typical properties of "Parlon" as given by the manufacturer, Hercules Powder Company, Wilmington, Delaware, are listed in Table I.
Table I. Typical Properties of "Parlon"
General
Form as shipped........................ Color of film............................... Odor............................................... Clarity of film............................ Taste............................................. Moisture, per cent as shipped.
.White, granular powder .Water white .None .Good .None .0.5 maximum
Physical Specific gravity................... ...........................................................................1.64 Specific volume, as shipped, in cubic inches per pound.........................16.9 Bulking value, gallons per pound................................ ............................ 0.0735 Index of refraction.................................................................--..................1.554
Chemical resistance to:
Acids, weak.................................................................................................... excellent ^ Adds, strong.................. ...'................................................... ......................... excellent
Alkalies, weak................................ .............. .................................................excellent Alkalies, strong............................................................ ;...... ...........................excellent
Salt spray....................................................................................................... good Alcohols........................................................................................................... excellent
Ketones.................................. ..........................................................................soluble
Esters........................................................................................
soluble
Hydrocarbons, aromatic...................................................
soluble
Hydrocarbons, aliphatic.............................................................................. good Oils, mineral.........................................................................-....................... good Oils, animal....................................................................................................poor Oils, vegetable..................................................................... -.........................poor
.
Electrical (clear unplasficbed film*) Specific surface resistance, ohmsXlO10................................ .................... 2,000 Dielectric strength, volts per mil (ASTM method)............................... 2,300 Dielectric constant at 25C. and 1,000 cycles...................................... 3.1 Power factor at 25C. and 1,000 cycles..................................................0.0015 to 0.0030 Power factor at 25C. and 1,000 cycles, after immersion in water for 140 hours and surface wiped dry..................................0.0027
Films uwd in tests were laid down from a toluene aolution.
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Properties, cont'd.
rrcr>ir: ' Mechanical {clear unplosticized film*)
20-cp. type
Tensile strength, pounds per square inch, dry..................................4,270
Tensile strength, pounds per square inch, wet.............
...... 4,100
Elongation, per cent, dry........................................ ............................. J*3..66`'
Elongation, per cent, wet................................................................. *5.8
Modulus of elasticity, pounds per square inch.................................. 1.44XX1100''
Hardness, Sward index, per cent of glass......................................... 90
Note: Flexibility of "Parlon" film increases with viscosity of "Parlon*' used.
1.000-cp.
4,850 ' 4,360
3.3 3.4 -- --
t
Thermal (clear unplosticized film*)
Burning rate...................................................................
nonflammable
Effect of dry heat on film.............................................................. stable up to and at 125C. Softening point.................................................................................... decomposes at 135 to 150C.
Physical-Chemical (clear unplasticized film*)
_
Effect of sunlight.............................................................................. Discolors and embrittles
. Effect of aging...................................................................................Very slight
. Effect of hot water........................................................................Blushes Effect of cold water..........................................................................None
Moisture absorption (80# relative humidity for 24 hours), per cent.......................................................................................... 0.27
Moisture vapor permeability of 0.003-inch film (grams water/
. square centimeter/0.01 centimeter/hour at 21C.).............. 0.2X104
Viscosity Types
Table II. "Parlon" Viscosity Types
.. Viscosity Type
............................. ..............................
Viscosity Range (centipoises)
5 cp.............................................................................................................................. 5 to 7 / io cp............................................................... ........... ........... ..................................... 8 to 12
' 20 cp..................................... .............. ............. \.V.V...V.V..'..V.V.\.V.'..'.`..'...'.i..."................... 16 to 25 : 125 Cp............................. ........... ...;........................................... ...... ...............................110 to 190
- 1,000 cp..............................................................................................................................800 to 2,000
Examples of actual or suggested applications of the several viscosity types are given below:
Type
Example of Use
5 cp. In printing inks and as a fortifier for alkyd resin enamels.
. 10 cp. In high-solids finishes and as a fortifier for alkyd resin and oleoresinous varnishes and enamels.
20 cp. As a film-former in protective coatings and as a fortifier in enamels and varnishes.
125 cp. As a film-former in protective coatings, in paper lacquers, adhesives, and textile finishes.
1,000 cp. As a film-former in adhesives, textile finishes and other finishes where flexibility is important.
Film? used in tern were laid down from a toluene solution.
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Solvent Compatibility
Solvents and solvent mixtures suggested for use in preparing formulations with Aroclor and "Parlon" are
given in Table III:
-
Table III. Suggested Solvents for Compositions with Aroclor and "Parlon"
"Amsco Solv," B and E Amyl acetate Butyl acetate Carbon tetrachloride "Cellosolve" Diacetone alcohol Diethyl carbonate Ethyl acetate Ethylene dichloride Hi-Flash naphtha Methyl acetate
Xylene
Methyl ethyl ketone
Methyl isobutyl ketone
Methyl salicylate
Notol
Octyl-acetate
"SovasoI""Nos. 74, 75
"Solvesso 100"
.
"Tollac"
Toluene
"Union Aromatic Solvent" 3553-10
"Union Solvent No. 30"
Formulations and Properties of Chlorinated Rubber
Chlorinated Rubber Films
'
Aroclor 1262 and 5460, resinous types, show good compatibility in chlorinated rubber films laid down from toluene solution containing 20 per cent of the plastic in ratios of 2:1 and 1:1 ("Parlon" to Aroclor). The plasticizer types, Aroclor 1242, 1254 and 1260, also show good compatibility. Formulations and properties of films derived from both resin- and plasticizer-type Aroclor are listed below.
Table IV. Formulations for Aroclor Resin
Ingredient
Parts by Weight
"Parlon," 20-cp......................... .................... 16
16 16 12 12
Aroclor 5460.................................................... 8 8 8 12 12
Dibutyl phthalate...................... ....................
4----
3
Tung oil, Thermolyzed, 976 ... .................... --
--
5----
Xylene or butyl acetate.......... ..................... 76 72 71 76 73
12 12 -- 3.75 72.25
Table V. Formulations for Aroclor Plasticizer
Ingredient "Parlon," 20-cp......................... .................... 20 ' Aroclor 1254 or 1260.............. ..................... 4 Xylene.......................................... ..................... 76
6
Parts by Weight 20 7 73
20 20 70
^5 96
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TOWOLDMONOQ27216
Films cast from these lacquers show improved characteristics due to Aroclor. Some of their advantages are listed below:
Adhesion
,
Unplasticized chlorinated rubber films have very poor adhesion. The lacquer film containing Aroclor 5460 gave good adhesion to aluminum, bare steel, primed steel, galvanized iron and "Transite" surfaces. Othen commercial resins, particularly oil-modified alkyd resins, gave better adhesion to glass, tin, copper, sealed wood and cellophane.
The lacquer films plasticized with Aroclor 1254 or 1260 gave good adhesion to "Transite," cellophane, gal vanized iron and primed steel surfaces. Some of the other commercial plasticizers tested in similar films gave better adhesion to aluminum, tin, bare steel, copper and sealed wopd surfaces.
Though compounds with an Aroclor alone possess pronounced adhesive qualities, better adhesion to all of the surfaces results if mixtures of Aroclor or varied contents are used.
Resistance to Aqueous Solutions
Chlorinated rubber films with Aroclor 1254 or 1260 (plasticizers) and Aroclor 5460 (resin) show satisfac
tory resistance to solutions of 10 per cent hydrochloric acid, 5 per cent sodium hydroxide, 5 per cent sodium
chloride and water spot tests.
'
Film Hardness
.
Softer films were produced with Aroclor 5460 in ratios of 5:10 and 10:10 {Aroclor:11 Parlon") than with other commercial resins in similar mixtures. Likewise, softer films result from Aroclor 1254 or 1260 in ratios of 2:10 and 5:10 (/froc/or:"Parlon") than with other commercial plasticizers at these concentrations. " From these tests compounds with Aroclor are shown to have strong plasticizing action on chlorinated rubber.
Cold-Check Resistance
Aroclor 5460 is superior to phenol formaldehyde resins in cold-check resistance imparted to chlorinated
rubber films, but not as good as alkyds modified with long oil. Aroclor 1260 used as a plasticizer proved
somewhat better than Aroclor 1254.
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Weather Resistance
"
Pigmented chlorinated rubber finishes containing Aroclor have consistently withstood outdoor weather tests, but unpigmented finishes do not stand up well regardless of the resin or plasticizer used.
Poor resistance to ultraviolet light is also a weakness of chlorinated rubber.. Most pigments (except ultramarire blue) are usable with "Parlon" and are recommended if the coating is to be subjected to outdoor weather or ultraviolet light. However, pigment protection varies considerably. Inspection of alkyd enamels fortified w'ith "Parlon" showed weatherability varied from 63 months with chrome green to 4 months for titanium dioxide--iron blue combinations.
Sanding and Polishing Properfies
Plastic films compounded with "Parlon" and containing Aroclor 5460, 1254 and 1260 have shown satisfac tory sanding and polishing characteristics.
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Applications
Alkaline-Resistant Coatings
Products containing* Aroclor and chlorinated rubber are highly resistant to alkalies and moisture. Paints with combinations of Aroclor and chlorinated rubber are. used in large quantities for concrete floors, walls, swimming pools and other surfaces. A paint formulation is given in Table VI.
Table VI. Paint Formulation for Alkaline Surface [Parts by Weight)
Ingredient
Formulation
Formula I (baiamant floor*)
Formula 2 [Fad. $pac. TT-P-91)
"Parlon," 20-cp. type................................ Aroclor 1254...............................................
18 10
18 10
"Rezyl 869"................................................. Aroclor 5460 or "Cumar P10"...............
8 --
6
"Beckosol 31".............................................
--
Tung oil, Thermolvzed, 976.................... Titanium dioxide......................................... Zinc oxide.....................................................
-- 16
2
16 2
Silica flour................................................... Carbon black............................................... Xylene...........................................................
3 0.2 42.8
0.5 47.5
Hi-Flash naptha.......................................... Totals..............................................
-- 100
100
Formula 3 (swimming pools)
14.6 4.4
4.4 19.7
6.5
47.5 100
Chemical-Resistant Finishes Particular care is necessary in choosing resins and plasticizers for chemical-resistant paints. Chlorinated rub ber formulations with an Aroclor have proved outstanding for acid and alkali resistance. Five formulations are shown in Table VII.
..............................
Table VII. Formulations for Chemical-Resistant Paints - [Parts by Weight)
Ingredient
..
1
Interior uto,
odd* and alkali**
"Parlon," 20-cp. type............. Aroclor 5460...............................
16 6.4
"Bakelite XJ-12895"..-............
--
"Rezyl 807" (solids).............. Aroclor 1254............................... Aroclor 1260............................... Tung oil, Thermolyzed, 976..
--
8 -- --
Iron oxide...................................
16
Titanium dioxide......................
--
Zinc oxide....................................
--
Zylene............................................ Hi-Flash naphtha.................... Toluene.........................................
53.6 --
_
Totals............................ 100
2 Extarior
ute, acid*
16 -- --
6.4 4.8 --
4.8 16 -- --
52 -- _
100
Formulation 3
Exterior US*,
alkali**
16 ---
6.4 '_
- 4.8 --
4.8 16 -- --
52 -- _
100
4 Maximum ratiitanca, acid* and alkali**
18 --
--
-- 8 6
--
18 --
--
39 11
-- 100
S Soap rasittant
12 6
-- -- -- --
7.7 --
18 6 28 10.3 12 100
I
8 TOWOLDMONOQ27218
These formulations were applied to metal bars or panels and tested for resistance.
Formula I showed good resistance to 10 per cent hydrochloric acid and 5 per cent sodium hydroxide
solutions.
-
Formula 2 gave excellent outdoor protection to metal surfaces on plants manufacturing acids.
Formula 3 performed well on exteriors of plants producing alkali.
Formula 4 had excellent resistance to acids, alkalis and salt solutions-. It also showed good adhesion
to glass and other surfaces.
............ .
. ...- .
...............
Formula 5 proved good for resistance to warm, soapy water.
Note: No finishes with Aroclor or chlorinated rubber are recommended for con tinuous exposure at temperatures above 140 F.
Marine Finishes
The marine industry makes great use of chlorinated rubber coatings plasticized with Aroclor to protect wood and metal on boats, barges and other marine equipment. They possess good resistance to salt water and their hard finish deters algae and other marine growth.
A suggested formula for a white marine paint is given in Table VIII.
Table Vlil. Formulation for a Chlorinated Rubber Marine Paint
Ingredient
.
"Parlon," 20-cp. type Aroclor 1254............... "Rezyl 869"................ Titanium dioxide........ Xylene........................... Hi-Flash naphtha.......
Total...............
Parts by Weight
......... .
....
20 6
....... \ 6
....... 25
........ 23
.... 20
....... 100
Emulsion Paints
If chemical resistance is required on porous surfaces, Aroclor 1254 is often added to chlorinated rubber emulsion paints. The Hercules Powder Company reports that preferred water phases for such paints are either a 1 per cent distilled water solution of "Aerosol OT" or a 4 per cent distilled-water solution of sodium oleate. A lacquer-to-water ratio of 2.5 to 1 (by weight) is suggested for the complete emulsion. "Parlon" of any viscosity may be used. A typical paint phase for such an emulsion paint is given in Table IX.
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TbU IX. Formulation for Faint Phase of Emulsion Paint
Ingredient
Parts by Weight
"Parlon"................. .................................................................... 28 Aroclor 1254............................................................................ 14 "Cumar P10"..................................;......................................... 10 Xylene.......................................................................................... 24 Hi-Flash naphtha...................................................................... 24
Total................................................................................ 100
Adhesives
Chlorinated rubber adhesives with an Aroclor were developed originally for adhering labels to acid bottles because of their general resistance to chemicals. These adhesives are also of unusual interest because they are fire resistant. A typical formulation is given in Table X.
Table X. Formulation for Chlorinated Rubber Adhesive
Ingredient
_
Parts by Weight
"Parlon," 125-cp. type. Aroclor 1254.................. Ajoclor 1260.............. .... Toluene............................
Total.............................................................................. r..;..
100
Paper end Textile Coatings
Chlorinated rubber coatings with Aroclor are worthy of consideration for specific end uses in the paper and textile coating fields. In general, this type of coating is restricted by odor and taste. Unpigmented fin ishes seem suitable for certain fabrics used indoors, but not for exposure to high temperatures or direct sunlight.
Electrical Coatings
Because of their desirable electrical properties, these compositions are useful for insulating and protecting electrical wire and apparatus from moisture. With selected fungistats and waxes, coatings of this type are used to protect electronic equipment in the tropics against moisture and fungi. The fire resistance of these plastics is an added dividend in the electrical field.
Printing Inks
.
Printing inks requiring a fast drying time and chemical resistance are often based on chlorinated rubber compositions plasticized with an Aroclor. These inks are especially useful on soap wrappersand boxes, bottle labels and many other commodities because oftheir alkali resistance.
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Other Resins and Plasticixers Compatible With Chlorinated Rubber
The resins and Monsanto plasticizers given in Tables XI and XII are'compatible with chlorinated rubber, but none gives the over-all desired qualities attained by using an Aroclor. The strong points and limitations of each are known. If their use is necessary for specific applications in chlorinated rubber, more detailed in formation on them may readily be found.
Table XI. Resins Compatible with "Parlon"
"Amberol 801, 806P, ST-137, F7"
Aroclor 1262, 5460
"Aroplaz 920, 930, 935, 940"
"Bakelite" XR-3180, XR-4503, XR-4006, BR-2963, XJ-9868, BR-1329, BR-3360"
"Beckacite 1112"
"Beckamine P-138, P-254"
"Super-Beckamine 3501"
-
"Beckapol 1400"
"Beckosol 1 (solid), 18, 31, 34, 40, 1329"
"Beetle" Resin 227-8
"Clorafin 70"
Copal
-
"Cumar P10"
Dammar
-
"Duraplex C-45-LV, C-48, C-49, C-50-LV, C-51, C-62, D-61, D-62, E-71, E-71-A, E-73"
East India gum
Ester gum
;
Ethyl methacrylate
-'
"Esterol 750"
"Formvar"
"Gelva 2.5"
"Glyptal 1247, 2450, 2454, 2458, 2464, 2466, 2500"
"Lewisol 2L, 28, 33"
Methyl methacrylate polymers
"Neville R-3, R-10"
"Pentalyn A, G, M, X"
"Petrex 1, 130H"
_ "Phenac 633-M"
"Rezyl 116, X315, 412, 775, 803, 807, 829, 869,880,1103"
..... Rosin
.. Santolitc* MPH (sulfonamide-aldehyde resin)
....... "Stabelite Ester 1, 2, 10"
"Stabelite" resin
"Super-Beckacite 1001"
"SyntexHl, H3, H12, 17, 213, 22, 28, 29, 32, 36"
- . "Teglac 15, Z-152" _
-
: " "Velsicol AD6-3"
:
"Vinsol"
Table XII. Monsanto Plasticizers Compatible with "Parlon"
Aroclor 1242 Aroclor 1254 Aroclor 1260 Dibutyl phthalate Diethyl phthalate Dimethyl phthalate
Santicizcr B-16 (butyl - phthalyl butyl glycolate)
Santicizcr M-17 (methyl phthalyl ethyl glycolate)
Tricresyl phosphate
Triphenvl phosphate
Santofite. Santicuer: Monsanto Trademarks. Reg. U.5. Pat Off.
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Toxicity
Animal toxicity studies and 20 years of manufacturing and use experience indicate that Aroclor compounds
are not serious industrial health hazards. If the materials are heated to volatilization, ventilation should be
provided to prevent inhalation of vapors.* This is true of other major components of the formulation as well
as the Aroclor compounds.
' .'
:;
. -- - ^ -
Repeated or prolonged skin contact should be avoided although there are few instances of skin irritation. Human patch tests with finished products containing Aroclor compounds have shown no irritation. Mon santo will furnish information on specific Aroclor compounds upon request.
Shipping Information
Regulations Standard Containers Rail Classification
Chlorinated diphenyl (synthetic resin, liquid, NOIBN)
Synthetic resin, liquid, NOIBN Snythetic resin, other than liquid, NOIBN
.Truck Classification Synthetic resin powder, NUl Synthetic resin, lumps or solid mass, NOI
-- None -- Steel and Fiber (Aroclor 1268, 5460) drums.
-- Aroclor 1142, 1148, 1154, 1160, 1162, 1168, 1221, 1232, 1242, 1248, 1254, 1260, 1268
-- Aroclor 1260 mix, 1262 mix -- Aroclor 2565, 4065, 4465, 5042, 5060,
.5442, 5460
-- Aroclor 2565 -- Aroclor 4065, 4465, 5042, 5060, 5442, 5460
The information contained in this bulletin is, to our best knowledge, true and accurate, but all recommendations or suggestions era made without guarantee, since the conditions of use are beyond our control. The Monsanto Chemical Company disclaims any liability incurred in connection with the use of these date or suggestions. Furthermore, nothing contained herein shell be construed as a recommendation to use any product in conflict with existing patents covering any material or its use.
12
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Trademark Index
Trademark
Company
"Aerosol OT" "Amberol" "Amsco Solv" "Aroplaz" "Bakelite" "Beckacite" "Beckamine" "Beckopol" "Beckosol" "Beetle" Resin "Cellosolve" "Clorafin" "Cumar" "Duraplex" "Esterol" "Formvar" "Gelva" "Glyptal" "Hercolyn"
American Cyanamid Company Rohm & Haas Company American Mineral Spirits Co. U. S. Industrial Chemicals Co. Bakelite Company Reichhold Chemicals, Inc. Reichhold Chemicals, Inc. Reichhold Chemicals, Inc. Reichhold Chemicals, Inc. American Cyanamid Company Carbide & Carbon Chem. Co. Hercules Powder Company Barrett Division, Allied Chem. & Rohm & Haas Company L. Sonnebom Sons, Inc. Shawinigan Resins Corp. Shawinigan Resins Corp. General Electric Company Hercules Powder Company
"Lewisol" "Neville" "Pentalyn" "Petrex" "Phenac" "Rezyl" "Solvasol" "Solvesso" "Stabelite" Ester "Subelite" Resin "Super-Beckacite" "Syntex" "Teglac" "Tollac" "Troluoil" "Transite" "Velsicol" "Vinsol"
Hercules Powder Company Neville Chemical Company Hercules Powder Company Hercules Powder Company American Cyanamid Company American Cyanamid Company Socony-Mobil Oil Company Esso Standard Oil Hercules Powder Company Hercules Powder Company Reichhold Chemicals, Inc. Flintkote Company American Cyanamid Company Neville Chemical Company Anderson-Pritchard Oil Corp. Johns-Manville Sales Corp. Velsicol Corp. Hercules Powder Company
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