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Diacid-glycol copolyesters

Standard polyester fibers contain no reactive dye sites. PET fibers are typically dyed by diffusiag dispersed dyestuffs iato the amorphous regions ia the fibers. Copolyesters from a variety of copolymeri2able glycol or diacid comonomers open the fiber stmcture to achieve deep dyeabiHty (7,28—30). This approach is useful when the attendant effects on the copolyester thermal or physical properties are not of concern (31,32). The addition of anionic sites to polyester usiag sodium dimethyl 5-sulfoisophthalate [3965-55-7] has been practiced to make fibers receptive to cationic dyes (33). Yams and fabrics made from mixtures of disperse and cationicaHy dyeable PET show a visual range from subde heather tones to striking contrasts (see Dyes, application and evaluation). [Pg.325]

Thermoplastic copolyester elastomers are generally block copolymers produced from short-chain aUphatic diols, aromatic diacids, and polyalkjlene ether-diols. They are often called polyesterether or polyester elastomers. The most significant commercial product is the copolymer from butane-l,4-diol, dimethyl terephthalate, and polytetramethylene ether glycol [25190-06-1J, which produces a segmented block copolyesterether with the following stmcture. [Pg.301]

Hie most representative member of this class of polyesters is the low-molar-mass (M 1000-3000) hydroxy-terminated aliphatic poly(2,2/-oxydiethylene adipate) obtained by esterification between adipic acid and diethylene glycol. This oligomer is used as a macromonomer in the synthesis of polyurethane elastomers and flexible foams by reaction with diisocyanates (see Chapter 5). Hydroxy-terminated poly(f -caprolactonc) and copolyesters of various diols or polyols and diacids, such as o-phthalic acid or hydroxy acids, broaden the range of properties and applications of polyester polyols. [Pg.29]

PET copolymers can be produced by introducing an additional glycol, an additional diacid, or both, into the polymerization. These comonomers generally reduce the polyester s crystallinity and increase its melt strength, permitting easier formabil-ity and improved impact resistance. Glycol modified PET (PETG) is the copolyester... [Pg.132]

Chem. Descrip. Copolyester produced from conventional diacids and glycols... [Pg.297]


See other pages where Diacid-glycol copolyesters is mentioned: [Pg.64]    [Pg.296]    [Pg.64]    [Pg.288]    [Pg.489]    [Pg.296]    [Pg.288]    [Pg.489]    [Pg.1078]    [Pg.2596]    [Pg.642]    [Pg.177]   
See also in sourсe #XX -- [ Pg.188 ]




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