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Carbon Black for Racing and Motorcycle Tire Treads Performance Model Development

机译:碳黑为赛车和摩托车轮胎踩踏性能模型开发

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Racing tires and motorcycle tires present individual segments of the tire market. For instance, while the average life of cars and trucks tires is 50,000 miles, the average life of race tires is 100 miles. Because tires play a critical role in a race, technical demands to assure safety and performance are growing. Similarly, tires have a large influence on safety, handling/grip and performance of the rapidly growing world fleet of motorcycles, due to the fact of only two wheels being in contact with the ground. Thus, the common feature of both market segments is that the typical tire compromise of wear, rolling resistance and traction is strongly weighted towards traction. Most of the recent efforts of rubber scientists have been directed towards lowering rolling resistance of the tread compounds, which left a certain void in the science of compounding for racing and motorcycle treads. Particularly, the industrial assortment of polymers and fillers used for motorcycles treads is commonly different from that used for cars or trucks treads, but it is not known how the filler properties affect the hysteresis-stiffness compromise. The objective of this study is to evaluate the effects of the carbon black characteristics on the important properties of a typical racing and motorcycle tire tread compound. More than fifty individual carbon blacks were mixed in an SBR formulation. The acquired data were statistically analyzed, and a linear multiple regression model was developed to relate rubber properties (responses) such as static modulus, complex dynamic modulus, hysteresis and viscosity to the key carbon black characteristics (variables) of surface area, structure, aggregate size distribution and surface activity. Prediction profiles created from the model demonstrate rubber performance limits for the range of carbon blacks tested, and indicate the niches to provide required combinations of the rubber properties.
机译:赛车轮胎和摩托车轮胎目前存在轮胎市场的单个段。例如,虽然汽车和卡车轮胎的平均寿命为50,000英里,但赛车轮胎的平均寿命为100英里。因为轮胎在比赛中发挥着关键作用,所需的技术要求,以确保安全性和性能正在增长。同样,由于只有两个轮子与地面接触,轮胎对安全性,处理/握持和摩托车的快速发展/抓地力和性能具有很大的影响。因此,两个市场段的共同特征是耐磨,滚动阻力和牵引的典型轮胎折衷都强烈加权朝向牵引力。最近橡胶科学家的大多数努力一直针对降低胎面化合物的滚动阻力,这在赛车和摩托车胎面的复合科学中留下了一定的空隙。特别地,用于摩托车胎面的聚合物和填料的产业分类通常与用于汽车或卡车胎面的那样的不同,但是填充物质是如何影响滞后刚度折衷的方式。本研究的目的是评估炭黑特征对典型赛车和摩托车轮胎胎面化合物的重要特性的影响。在SBR配方中混合了超过五十个单独的炭黑。在统计上分析了所获取的数据,并且开发了线​​性多元回归模型以将橡胶性能(响应)(例如静态模量,复杂的动态模量,滞后和粘度相关,所述表面积,结构,骨料)的关键炭黑特征(变量)尺寸分布和表面活动。从模型中创建的预测谱证明了所测试的炭黑范围的橡胶性能限制,并指示利基提供所需的橡胶性能组合。

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