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Isobutylene Elastomer Compound Optimization for Winter Tire Tread Applications

机译:冬季轮胎胎面应用中异丁烯弹性体化合物的优化

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摘要

Use of brominated isobutylene-co-para-methylstyrene(BIMS)improves lab dynamic properties predictive of wet and winter traction of formulations modeling winter passenger tire treads.Statistically designed blends of BIMS with cis-polybutadiene(BR)and natural rubber(NR)were studied in silane-coupled,silica-filled compounds.BIMS elastomer use requires adjustments to the curative system.By reducing sulfur and/or accelerator levels,compound cure and mechanical properties can be maintained.Winter and wet traction and handling properties were measured for retreaded winter tires containing BIMS/NR/BR blends in the model winter tread.Performance was evaluated by independent tire testing labs for tires having three different levels of BIMS used in place of NR.Results were compared to tires with a solution-polymerized styrene-buta-diene rubber/NR/BR model treadused as control,and to a commercial winter tire tread compound used as a reference.Vehicles having tires with BIMS winter treads showed reduced braking distances on an indoor ice surface,on a snowy glacier in Austria,on a wet asphalt surface,and on a dry surface compared to both the control and reference winter treads.The 20-phr BIMS tread had a 76,000-kilometer projected wear-out life based on road testing in the winter in the U.S.
机译:使用溴化异丁烯-对-对甲基苯乙烯(BIMS)可改善模拟冬季客运轮胎胎面配方的湿动力和冬季牵引力的实验室动态性能。统计设计的BIMS与顺式聚丁二烯(BR)和天然橡胶(NR)的共混物BIMS弹性体的使用需要调整固化体系。通过降低硫和/或促进剂的含量,可以保持化合物的固化和机械性能。测量了冬季和湿润的牵引力和处理性能以进行翻新冬季胎面模型中包含BIMS / NR / BR共混物的冬季轮胎。通过独立的轮胎测试实验室评估了使用三种不同水平的BIMS代替NR的轮胎的性能,并将结果与​​溶液聚合的苯乙烯-丁二烯进行了比较以丁二烯橡胶/ NR / BR模型为对照组,并以商业冬季轮胎胎面胶为参考。具有BIMS冬季胎面轮胎的车辆呈红色与对照和参考冬季踏面相比,室内冰面上,奥地利的冰雪冰川上,湿沥青路面上以及干燥路面上的制动距离。20phr BIMS胎面的预计磨损为76,000公里美国冬季基于路试的超长寿命

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