首页> 外文会议>Fall Technical Meeting of the Rubber Division, American Chemical Society >Silica Morphology Beyond the Surface to Benefit Non Tread Tire Components to Further Reduce Energy Loss
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Silica Morphology Beyond the Surface to Benefit Non Tread Tire Components to Further Reduce Energy Loss

机译:超出表面的二氧化硅形态,以利用非胎面轮胎部件,进一步降低能量损失

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Rising fuel costs, a wide range of national and international legislation, and increased public attention continue to encourage the automotive industry to pursue increasingly environmentally friendly passenger car tires with improved fuel efficiency and safety. The focus of the last few decades has been on the benefits derived from using silica in the tread to address mechanical energy dissipation leading to improvements in fuel efficiency and safety. Recently there has been more focus on non-tread tire components which can account for more than 50% of the mechanical energy dissipation associated with a tire. This paper will discuss how advances in silica technology have shown benefits in these non-tread tire components. There will be particular emphasis on showing the benefits derived from fillers produced with the appropriate combination of a core precipitated silica particle with a significant organic surface, made up of coupling and non-coupling agents, to enable the appropriate development of filler-filler and polymer-filler interaction within hydrocarbon polymer based compounds.
机译:燃料成本上升,广泛的国家和国际立法,以及增加公众的关注,继续鼓励汽车行业追求越来越环保的乘用车轮胎,以提高燃油效率和安全。过去几十年的重点是在胎面中使用二氧化硅的益处来解决机械能耗,导致燃油效率和安全性的改善。最近,更专注于非胎面轮胎组件,其可以占与轮胎相关的机械能耗散的50%以上。本文将讨论二氧化硅技术的进步如何在这些非胎面轮胎部件中显示出益处。特别强调显示用核心沉淀的二氧化硅颗粒的适当组合产生的填料的益处,其具有由偶联和非偶联剂的重要的有机表面,以实现填充填料和聚合物的适当发展 - 烃基聚合物基化合物内的相互作用。

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