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Acetal homopolymer/elastomer

Acetal copolymer Acetal homopolymer Polyethylene, ultrahigh m.w. high-density Polyurethane, cast elastomer pPDI-PTMEG rollers, abrasion-resistant Polyurethane elastomer, thermoplastic roofing... [Pg.5624]

Copolymerization is an important way to produce properties that are not possible with homopolymers. For example, the homopolymer of vinylidene chloride is highly crystalline, and though it has excellent moisture and oxygen barrier properties, it does not produces very strong film or fiber. Copolymerization with 15 percent vinyl chloride disrupts the regular structure of the homopolymer to produce a stronger, clearer, more flexible material. The copolymer retains much of the barrier properties of the homopolymer and finds wide use for food packaging and filament. Other commercial copolymers include styrene-acrylonitrile, discussed above vinylidene fluoride-hexafluoropropylene, a heat- and oil-resistant elastomer styrene-butadiene rubber ethylene-vinyl acetate hot melt adhesive and 2-ethylhexyl acrylate-vinyl acetate-acrylic acid pressure-sensitive adhesives. [Pg.664]

Ethylene copolymers are produced i) with vinyl acetate (EVA, EVAC), ii) with vinyl alcohol (EVOH, EVAL), iii) as binary copolymers and terpolymers with acrylics (E/EA, E/MA, E/AA etc.), or iv) as lonomer resins. Olefinic thermoplastic elastomers (TPE) are available, usually PP based with EPM or EPDM rubber additions that may be lightly crosslinked. Polypropylenes are offered in various forms homopolymers, block copolymers, random copolymers and mixtures of types. Polybutylene (PB) and Polymethylpentene (PMP) complete the range. [Pg.6]


See other pages where Acetal homopolymer/elastomer is mentioned: [Pg.112]    [Pg.112]    [Pg.89]    [Pg.142]    [Pg.333]    [Pg.403]    [Pg.56]    [Pg.15]    [Pg.1804]    [Pg.15]   


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Acetal homopolymer

Acetal homopolymers

Elastomers acetate)

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