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New emulsion SBR technology: Part I. Raw polymer study

机译:新型乳液SBR技术:第一部分。原料聚合物研究

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摘要

Emulsion styrene-butadiene rubber (ESBR) has been the workhorse of the tire industry since World War II. With the development of solution polymers, ESBR has seen a steady decrease in its use in tire applications. A novel ESBR has been developed which imparts some of the rheological behavior previously only observed in solution polymers. This new ESBR was prepared by blending a high molecular weight elastomer with a low molecular weight elastomer, each having a unique styrene-butadiene composition. A two-phase co-continuous morphology was observed by scanning probe microscopy when the bound styrene difference between the two components was greater than 18%, consistent with the two glass transition temperatures measured by thermal analysis. Blending also served to reduce the amount of very high molecular weight material (>10{sup}7 g/mol) readily observed in 1502- and 1712-type polymers by thermal field flow fractionation (ThFFF). ThFFF was found to be superior to size exclusion chromatography for fully characterizing the molecular weight and molecular weight distribution of the polymers. Time-temperature superposition was performed to characterize the viscoelastic behavior in the rubbery plateau and terminal zones. The ESBR blends showed a cross-over in the terminal flow region that was not observed in 1502- and 1712-type polymers.
机译:自第二次世界大战以来,乳液丁苯橡胶(ESBR)一直是轮胎行业的主力军。随着溶液聚合物的发展,ESBR在轮胎应用中的使用稳步减少。已经开发出新颖的ESBR,其赋予了以前仅在溶液聚合物中观察到的一些流变行为。通过将高分子量弹性体与低分子量弹性体共混来制备这种新的ESBR,每种均具有独特的苯乙烯-丁二烯组成。当两个组分之间的结合苯乙烯差大于18%时,通过扫描探针显微镜观察到了两相共连续形态,这与通过热分析测得的两个玻璃化转变温度一致。通过热场流分馏(ThFFF),共混还有助于减少在1502型和1712型聚合物中容易观察到的非常高分子量的材料(> 10 {sup} 7 g / mol)。发现ThFFF优于尺寸排阻色谱法,以充分表征聚合物的分子量和分子量分布。进行时间-温度叠加以表征橡胶高原和末端区域的粘弹性行为。 ESBR共混物显示在末端流动区发生交叉,这在1502-和1712型聚合物中未观察到。

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