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A FUTURISTIC MATERIAL FOR IMPROVING TIRE PERFORMANCE: ADDRESSING ROLLING RESISTANCE, DURABILITY AND WEAR CHARACTERISTICS

机译:用于改善轮胎性能的未来派材料:解决滚动阻力,耐用性和磨损特性

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Reducing rolling resistance of tires remains a prime importance for the tire industry. With rising gasoline prices, awareness of the Kyoto protocol as a given, the Euro 5 norm demanding for decreasing CO2 emission, the International Energy Agency focusing on tires to reduce fuel consumption and the California Energy Commission releasing legislation on tire efficiency, the challenge to tire engineers and compounders to address fuel efficiency, i.e. reduced rolling resistance of tires remains highly actual. Several approaches (varying polymers, fillers, etc) have been tried or explored but each approach has its own advantages and drawbacks in terms of balance between performance and cost. Recently Teijin Twaron has introduced chemically activated aramid fiber granules (Sulfron~R) that reduce compound hysteresis significantly, which translates into better rolling resistance or fuel economy. This paper presents the results on our latest research in this area focussing on improvement in rolling resistance, heat build up, flex and dynamic properties. Compounds have been engineered to improve the hysteresis characteristics with a positive effect on wear and tear resistance. Tire test data are presented to demonstrate the improvement in rolling resistance, durability and wear characteristics.
机译:降低轮胎的滚动阻力仍然是轮胎行业的主要重要性。汽油价格上涨,京都议定书的认识作为给定的欧元5欧元要求减少二氧化碳排放,专注于轮胎减少燃料消耗和加州能源委员会对轮胎效率的立法,犯罪工程师和复合者解决燃油效率,即轮胎的滚动阻力降低仍然高度实际。已经尝试或探索了几种方法(不同的聚合物,填料等),但在性能和成本之间平衡方面,每个方法都有自己的优点和缺点。最近帝宾·扣引入了化学活化的芳纶纤维颗粒(亚硫〜r),从而显着减少复合滞后,这转化为更好的滚动阻力或燃料经济性。本文介绍了我们在该领域的最新研究的结果,其侧重于改善滚动阻力,热量,弯曲和动态性能。已经设计成化合物以改善滞后特性,对磨损和抗撕裂性产生积极影响。提出了轮胎测试数据以证明滚动阻力,耐久性和磨损特性的提高。

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