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Polyester acrylate resins

Trade Names Lexorez 5901 -300 Polyester acrylate resin... [Pg.1293]

The resin, as has been stated, may be any resin containing hydroxyl groups. This includes castor oil, alkyds, nitrogen resins, epoxy resins, cellulose derivatives and so on, provided always that, if a mixture is used, then the ingredients must be compatible with one another. However, the most popular resins used are saturated polyesters acrylic resins and, to a lesser extent, polyethers. [Pg.196]

Actilane 579. See Polyester acrylate resin Actimer FR-803. See Tribromostyrene Actimer FR-1033. See Tribromophenyl maleimide... [Pg.116]

CNR. See Zinc oxide CNSL. See Cashew nut shell oil CNUVE 151. See Epoxy acrylate CNUVP210,CNUVP220,CNUVP225. See Polyester acrylate resin CO. See Carbon monoxide CO-064. See Zinc oxide CO-618. See Coconut alcohol CO-810. See C8-10 alcohols CO-1214. See C12-14 alcohols CO-1218. See Cl 2-18 alcohols CO-1270. See C12-14 alcohols CO-1670. See Cetearyl alcohol CO-1695. See Cetyl alcohol CO-1895] CO-1897] CO-1898. See Stearyl alcohol... [Pg.983]

EBA] EB Acetate. See Butoxyethanol acetate Ebai. See p-Ethylbenzaldehyde Ebecryi 40, Ebecryi 80, Ebecryi 81] Ebecryi 82] Ebecryi 140, Ebecryi 810, Ebecryi 830] Ebecryi 870] Ebecryi 1810. See Polyester acrylate resin Ebecryi 2000. See Urethane-acrylate resin Ebecryi 2047. See Polyester acrylate resin Ebecryi 3500, Ebecryi 3605] Ebecryi 3701] Ebecryi 3702] Ebecryi 3703. See Epoxy acrylate... [Pg.1596]

Iron vitriol. See Ferrous sulfate heptahydrate Ferrous sulfate anhydrous iRR 210. See Polyester acrylate resin iRR 213, iRR 221, iRR 222. See Urethane-acrylate resin... [Pg.2185]

Photomei 4812. See Lauryl acrylate Photomei 4818. See Stearyl acrylate Photomei 4846. See 1,6-Hexanediol diacrylate Photomei 5018] Photomer 5029] Photomei 5429] Photomer 5430, Photomer 5432] Photomei 5433] Photomer 5806. See Polyester acrylate resin... [Pg.3355]

Pyrophyllite Styrene 1,1,1-Trichloroethane Trichloroethylene diluent, paper coatings Polyester acrylate resin diluent, paper upgrading Polyester acrylate resin diluent, personal care sprays C10-11 isoparaffin C11-12 isoparaffin diluent, pesticides Deodorized kerosene diluent, pharmaceutical capsules Sucrose... [Pg.5093]

Pyrophyllite Starch Starch, pregelatinized Sucrose palmitate Sunflower (Helianthus annuus) seed oil diluent, plastic coatings Polyester acrylate resin... [Pg.5093]

Hexyl decanoic acid PEG-3 dimethacrylate Polyester acrylate resin Polyethylene, oxidized Sodium alum Zinc rosinate hardener, adhesives... [Pg.5358]

A large mrmber of polymeric materials are involved in a web coating. These include poly-virtylchloride, polyurethanes (thermoplastic and thermoset solvent-based and water-based), natural, nitrile, chloroprene, and ethylene-propylene rabbers, silicones, polyethylene (chlorinated and chlorositifonated), polyamide, polyester, acrylic resins, polyvinylal-cohol, polytetrafluroethylene, and ethylene-vinyl acetate copolymer as the main matrix polymers of coating compositions. Most of these polymers are not plasticized or seldom... [Pg.404]

Clearly, hot motmting methods cannot be used for temperature-sensitive materials, but otherwise they do in general provide a harder mount this is particularly important in order to maintain a flat polished surface and good edge retention or definition. However, the continuing development, particularly of the polyester/acrylic resins, makes this distinction less evident. [Pg.3139]

Dye Name Solvent- Borne Acrylic Polyurethane Epoxy Polyester Acrylic Resin ... [Pg.324]

Self-leveling epoxy, polyester or reactive acrylic resin systems 9/105... [Pg.99]

Polyester resin systems and, more recently, acrylic resins are also used. Polyester resin-based systems have a tendency to shrinkage during and after application and application is very critical. [Pg.104]

Acrylic resin systems developed in Germany are similar to polyester resins but, by careful formulation, the problems due to shrinkage have been largely overcome. The acrylic resin-based systems are currently based on highly flammable materials (flash point 10°C), which can present hazards during laying. However, there are systems available that can take foot traffic 2-3 hours after application and full service conditions within 24 hours, even at very low temperatures. [Pg.104]

These requirements are usually met with two-pack paints based on hydroxyl-rich polyester or acrylic resins in the pigmented pack and aliphatic polyisocyanates in the activator pack. Cure with this type of finish is relatively fast and complete even at low ambient temperatures. An alternative finish is an acrylic lacquer, similar to the lacquer used for refinishing motor cars. These finishes are applied to the assembled aircraft by operators protected by air-fed hoods and using airless or conventional spray guns. High durability pigments are included. [Pg.631]

Unsaturated polyester finishes of this type do not need to be stoved to effect crosslinking, but will cure at room temperature once a suitable peroxide initiator cobalt salt activator are added. The system then has a finite pot life and needs to be applied soon after mixing. Such a system is an example of a two-pack system. That is the finish is supplied in two packages to be mixed shortly before use, with obvious limitations. However, polymerisation can also be induced by ultra violet radiation or electron beam exposure when polymerisation occurs almost instantaneously. These techniques are used widely in packaging, particularly cans, for which many other unsaturated polymers, such as unsaturated acrylic resins have been devised. [Pg.676]

Thermoset Plastics Alkyd, amino resin, thermosetting acrylic resin, casein, epoxy, phenolic, polyester, polyamide, silicone. [Pg.602]

Polyols and polyamines are the most important coreactants for isocyanates. As briefly outlined in Section 4.2.2, the two most common classes of urethane-grade polyols are the polyethers and polyesters. In this section their synthesis and structure are discussed. Other polyol types, such as acrylic resins and polycarbonates, are of more limited applicability and are not presented here. [Pg.222]

An obvious means of increasing conductivity is to incorporate metals into the fabric. Thus fabric can be sprayed with a liquid resembling metallic paint, containing micron-sized metallic particles such as copper incorporated into a binder such as a polyester, epoxy or acrylic resin. During curing the metallic particles come into contact with one another, thus... [Pg.248]

Osaka Organic Chemical will embark on volume production of a low-toxicity acrylic ester monomer with extremely low skin irritation, it is briefly reported. Principal applications are as a diluent monomer for UV and EB coating materials and inks, and as a modifier in unsaturated polyester resins, acrylic resins and PVC. OSAKA ORGANIC CHEMICAL INDUSTRIES CO.LTD. [Pg.67]

Another specialty area is coil coating, which involves coating metal coils by continuous operation. Modern roller systems afford speeds of up to 200 m/min. Most coils are made of cold-rolled and surface treated steel, aluminum, or alloys of the latter with manganese or magnesium. Coating systems are based on alkyd or acrylic resins, oil-free polyester, silicone-modified polyester or acrylic resin, poly(vinylidene fluoride), or poly(vinyl fluoride). Water-reducible systems, mainly based on acrylic resins, have been developed for aluminum as well as for steel coils [21-24], Drying is carried out by continuous operation in gas- or oil-heated multichamber ovens. [Pg.159]

Several benzimidazolone pigments are suitable candidates for use in powder coatings based on polyester, acrylic, or polyurethane resin. These pigments satisfy the heat requirements of this application and do not plate out in these media (Sec. 1.6.4.1). Various benzimidazolone pigments even meet the particularly high thermal standards of coil coating. These pigments are also suitable for use in architectural and emulsion paints. [Pg.350]

Studies on acrylate resins [82, 124, 125] based on hyperbranched aliphatic polyesters have shown that it is possible to vary both the polarity (wetting be-... [Pg.26]

Uses Manufacture of acetone, acetophenone, diisopropylbenzene, a-methylstyrene and phenol, polymerization catalysts constituent of motor fuel, asphalt, and naphtha catalyst for acrylic and polyester-type resins octane booster for gasoline solvent. [Pg.687]

Estapol, a blend of polyester/polyether resins NA, not available PBA, polybutyl acrylate PUV, polyurethane varnish PVAL, polyvinylalcohol SVF, silicone vacuum fluid fiber volume fraetion. [Pg.281]

Polyester acrylates Acrylated polyesters are prepared by reacting the OH group of polyesters with acrylic acid or hydroxy acrylate with acid groups of the polyester structure. Polyester acrylates are often low-viscosity resins requiring little or no monomer ll They produce coatings and adhesives dominated by the polyester structure used in the oligomer. They are used for pressure-sensitive adhesives and... [Pg.74]


See other pages where Polyester acrylate resins is mentioned: [Pg.1499]    [Pg.982]    [Pg.982]    [Pg.3463]    [Pg.4901]    [Pg.4903]    [Pg.4905]    [Pg.5093]    [Pg.5093]    [Pg.786]    [Pg.2361]    [Pg.1499]    [Pg.982]    [Pg.982]    [Pg.3463]    [Pg.4901]    [Pg.4903]    [Pg.4905]    [Pg.5093]    [Pg.5093]    [Pg.786]    [Pg.2361]    [Pg.366]    [Pg.106]    [Pg.628]    [Pg.154]    [Pg.158]    [Pg.481]    [Pg.27]    [Pg.271]   
See also in sourсe #XX -- [ Pg.69 , Pg.180 ]




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Acrylates Acrylic resins

Acrylic resins

Polyester acrylates

Polyester resins

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