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Bisphenol A fumarates

Polyester ICI Americas (Atlac 382-05 AC) PE Bisphenol A-Fumarate Polyester + 1% CoNap + DMA 50% Styrene MEKP 100 2 6-12 152-305... [Pg.79]

Isophthalic Bisphenol A fumarate Hydrogenated bisphenol A Halogenated polyester Terephthalate (PET)... [Pg.160]

Standard bisphenol-A fumarate resins are derived from the propylene glycol or oxide diether of bisphenol-A and fumaric acid. The aromatic structure provided by the bisphenol-A provides several benefits. Thermal stability is improved, and the heat distortion point of the resin is mainly raised from the more rigid nature of the aromatic structure. The number of interior chain ester groups is reduced so the resistance to hydrolysis and saponification is increased. Bisphenol A fumarate polyesters have the best hydrolysis resistance of any commercial unsaturated polyester. [Pg.166]

Solvents such as benzene, carbon disulfide, ether, methyl ethyl ketone, toluene, xylene, trichloroethylene, and trichloroethane will attack the resin. Sulfuric acid above 70%, sodium hydroxide, and 30% chromic acid will also attack the resin. Refer to Table 3.8 for the compatibility of bisphenol-A fumarate polyester resin with selected corrodents. Table 3.9 lists the compatibility of hydrogenated bisphenol-A fumarate polyesters with selected corrodents. Reference [1] provides a more comprehensive listing. [Pg.167]

Compatibility of Bisphenol A-Fumarate Polyester with Selected Corrodents... [Pg.167]

Chem. Descrip. Bisphenol A fumarate polyester resin Uses Polyester for reinforced thermoset plastic equip, incl. filament wound and hand lay-up tanks, pipes, pumps, flooring, stacks, scrubber, equip, handling corrosives, and in fiberglass linings, coatings, and monolithic toppings... [Pg.400]

Unsaturated polyesters are the most versatile class of thermosetting polymers. They are macromolecules made up of an unsaturated component, (i.e., maleic anhydride or its trans isomer, fumaric acid, which provides the sites for further reaction) and a saturated dibasic acid or anhydride with dihydric alcohols or oxides (typically phthalic anhydride which can be replaced by aliphatic acid, like adipic acid, for improved flexibility). If blends of phthalic anydride (or isophthalic acid) and maleic anhydride/fumaric acid are used, ortho (or iso) resins (Figure 6.18) are obtained. On the other hand, if propoxylated or ethoxylated bisphenol A is used with fumaric acid, bisphenol A fumarates are obtained, if a blend of chlorendic... [Pg.220]

Corrodent at room temp. Chlorendio Bisphenol A fumarate... [Pg.197]

A = bisphenol A epoxy—aliphatic amine hardener 1 -B = bisphenol A epoxy—aromatic amine hardener 1 -C = bisphenol F epoxy (epoxy novolac) 2-D = polyester resin—chlorendic acid type 2- E = polyester resin—bisphenol A fumarate type 3- F = vinyl ester resin 3-G = vinyl ester novolac resin ... [Pg.417]

Table 18.9 provides the chemical resistance of chlorendic and bisphenol A fumarate resins in the presence of selected corrodents. [Pg.418]

Table 18.9 Chemical Resistance of Chlorendic and Bisphenol A Fumarate Resins... Table 18.9 Chemical Resistance of Chlorendic and Bisphenol A Fumarate Resins...
Vinyl ester resins are addition reactions of methacrylic acid and epoxy resin. These resins have many of the same properties as the epoxy, acrylic, and bisphenol A fumarate resins. [Pg.419]

The vinyl urethanes are normally derived from hydroxyl-terminated unsaturated polyester alkyds, e.g., propoxylated bisphenol A fumarate, which have been end-capped with a polyisocyanate and then subsequently end-capped with an hydroxy alkyl methacrylate. Thus, these resins have both terminal acrylic and in-chain maleate/fumarate unsaturation, the ratio depending on the oligomer molecular weight and the functionality of the polyisocyanate. High molecnlar weight results in a lower terminal in-chain unsaturation ratio, while a polyisocyanate fimctionality > 2 increases the ratio. A typical oligomer structure is shown in Structure 9.3 [13,14]. [Pg.430]

A high reactive, low viscosity bisphenol-A fumaric acid resin offering high dimensional stability at elevated temperature high resistance to chemicals and particularly alkalis and hydroiysis. b. 48% c. 370-620... [Pg.143]

The chlorendic and bisphenol A fumarate resins offer improved chemical resistance over the isophthalics (see Table 10.1). The essentially neutral curing systems provide capability for application to concrete substrates. When properly formulated the polyester resins provide installation flexibility to a wide range of temperatures, humidity, and contaminants. [Pg.173]

Unsaturated polyester resins formulated with either carbon or silica fillers are used as polymer concretes. Bisphenol A fumarate resins and chlorendic acid resins are the two primarily used to formulate polyester concrete. Either resin can provide corrosion protection from normal atmospheric pollutants. Of the two, the chlorendic resins have a somewhat superior overall corrosion resistance (see Table 10.2). [Pg.177]

Polyesters, Although typically not as strong as the epoxies, polyesters offer good resistance to mineral acids, bleaching solutions, and salts. The most commonly used polyester resins for pipe are isophthalic polyesters and bisphenol A fumarate polyesters. Isophthalics have poorer resistance to caustics and oxidizers. Bisphenol A fumarates have improved resistance to these materials and are widely used in paper mills for bleach hues. [Pg.752]

Vinyl Esters. These resins include chemical features of both epoxies aud polyesters. Vinyl ester resins offer better chemical resistance, somewhat higher temperature limits, aud better solvent resistance than ordinary polyesters but generally do not compare to epoxies in these properties. Vinyl ester resins are preferred over polyesters because they are more chemical-resistant than the isophthalics and less brittle than the bisphenol A fumarates. Typical services are in fertilizer plants (acid lines), chlorine plants (chlorine-saturated briue hues), and paper mills (caustic and black-hquor lines). [Pg.752]

Fig. 4.14 Penetration of sulfur from 25% H2SO4 into glass reinforced bisphenol-A fumarate polyester laminates, with and without surfacing mat. (Regester 1969)... Fig. 4.14 Penetration of sulfur from 25% H2SO4 into glass reinforced bisphenol-A fumarate polyester laminates, with and without surfacing mat. (Regester 1969)...
Environmental resistance Fiberglass, vinyl esters, Bisphenol-A Fumarates, Chlorendic Resins Tanks and piping, corrosion resistance to industrial chemicals, crude oil, gasoline at elevated tempera-... [Pg.233]

HCR-197 is a chemical resistant polyester laminate produced by the match metal molding of fiberglass mat, inert fillers and ATLAC 382 resin. The ATLAC 382 system is bisphenol A fumarate resin. [Pg.108]

The data below represent the current knowledge of corrosive environmental conditions which Atlac 382 bisphenol A fumarate resin will withstand when properly used in reinforced plastic laminates ... [Pg.109]

HETRON 700 Bisphenol-A Fumarate resins. Excalent corrosion resistance. Non-fire retardant. Al corrosian resistant equipment except fume handling systems to about 250° F. Ideal for caustic and hypochlorite. [Pg.179]

The use of bisphenol A fumarates introduces aromaticity into the structure and products with high thermal stability, chemical resistance and hardness are obtained. These products are exclusively used in high performance applications. [Pg.2]


See other pages where Bisphenol A fumarates is mentioned: [Pg.321]    [Pg.321]    [Pg.202]    [Pg.211]    [Pg.2678]    [Pg.2655]    [Pg.148]    [Pg.166]    [Pg.167]    [Pg.625]    [Pg.6163]    [Pg.416]    [Pg.418]    [Pg.418]    [Pg.122]    [Pg.332]    [Pg.135]    [Pg.136]    [Pg.173]    [Pg.816]    [Pg.588]   
See also in sourсe #XX -- [ Pg.2 ]




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