首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >A sensitivity analysis of design attributes and operating conditions on tyre operating temperatures and rolling resistance using finite element analysis
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A sensitivity analysis of design attributes and operating conditions on tyre operating temperatures and rolling resistance using finite element analysis

机译:使用有限元分析对轮胎的工作温度和滚动阻力的设计属性和工作条件进行敏感性分析

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摘要

The hysteresis characteristics of tyre materials primarily contribute to operating temperatures and rolling resistance. The experimental results of these characteristics measured for different tyres at various operating conditions, pavement surface texture, and tyre wear clearly indicate a complex relationship among various design attributes and operating conditions. It is extremely difficult to develop analytical models that can be used to study these complex relationships and, therefore, one should rely completely on experimental results. However, experimental techniques to study these tyre characteristics are highly expensive and complex. In addition to this, the manufacture of an actual tyre for each design alternative will increase significantly the tyre development cycle and, in addition, have a severe impact on the overall economy. In this study, a three-stage sequential model using finite element (FE) technique is used to determine these characteristics for tyres with smooth and circumferential groove tread profiles. An FE algorithm is developed with Petrov-Galerkin Eulerian technique in cylindrical coordinates and is used to determine three-dimensional tyre-operating temperatures. A sensitivity analysis has been made with various operating conditions and tyre design attributes that will aid tyre designers to realize improved designs with reduced rolling resistance and acceptable temperatures.
机译:轮胎材料的磁滞特性主要影响工作温度和滚动阻力。在不同的操作条件,路面表面纹理和轮胎磨损情况下针对不同轮胎测得的这些特性的实验结果清楚地表明了各种设计属性和操作条件之间的复杂关系。开发可用于研究这些复杂关系的分析模型非常困难,因此,应该完全依靠实验结果。但是,研究这些轮胎特性的实验技术非常昂贵且复杂。除此之外,为每个设计替代方案生产实际轮胎将显着增加轮胎开发周期,此外,还会对整体经济产生严重影响。在这项研究中,使用有限元(FE)技术的三阶段顺序模型用于确定具有平滑和周向胎面花纹的轮胎的这些特性。利用Petrov-Galerkin Eulerian技术在圆柱坐标系中开发了有限元算法,并用于确定三维轮胎工作温度。已经对各种工况和轮胎设计属性进行了灵敏度分析,这将有助于轮胎设计人员实现降低滚动阻力和可接受温度的改进设计。

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