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Weathering reference material , polymer

Most polystyrene products are not homopolystyrene since the latter is relatively brittle with low impact and solvent resistance (Secs. 3-14b, 6-la). Various combinations of copolymerization and blending are used to improve the properties of polystyrene [Moore, 1989]. Copolymerization of styrene with 1,3-butadiene imparts sufficient flexibility to yield elastomeric products [styrene-1,3-butadiene rubbers (SBR)]. Most SBR rubbers (trade names Buna, GR-S, Philprene) are about 25% styrene-75% 1,3-butadiene copolymer produced by emulsion polymerization some are produced by anionic polymerization. About 2 billion pounds per year are produced in the United States. SBR is similar to natural rubber in tensile strength, has somewhat better ozone resistance and weatherability but has poorer resilience and greater heat buildup. SBR can be blended with oil (referred to as oil-extended SBR) to lower raw material costs without excessive loss of physical properties. SBR is also blended with other polymers to combine properties. The major use for SBR is in tires. Other uses include belting, hose, molded and extruded goods, flooring, shoe soles, coated fabrics, and electrical insulation. [Pg.529]

Outdoor durables encounter a wide variety of material stress brought on by exposure to the environment. Weather conditions vary around the world so upfront design of a polyolefin durable (herein referred to as durable) sufficient to perform in various climates if often required. The main components of the weather that cause degradation of any polymer are temperature, moisture, wind, dust, pollutants, and sunlight [1]. [Pg.3109]


See other pages where Weathering reference material , polymer is mentioned: [Pg.342]    [Pg.9256]    [Pg.430]    [Pg.1479]    [Pg.77]    [Pg.35]    [Pg.313]    [Pg.343]    [Pg.44]    [Pg.1342]    [Pg.329]    [Pg.588]    [Pg.180]    [Pg.306]    [Pg.1468]    [Pg.1349]    [Pg.237]   


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Polymers weathering

Weathering, polymer materials

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