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Finite Element Analysis of the Thermal Characteristics and Parametric Study of Steady Rolling Tires

机译:稳定滚动轮胎热特性的有限元分析及参数研究

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摘要

This article presents a numerical thermomechanical analysis and parametric study of steady rolling tires that are treated as axisymmetric structures for simplification. Under periodic stress-strain cycles, during tire rolling, internal heat will be generated because of energy loss from the tire material. A general-purpose, finite element program is used to model this two-dimensional heat conduction with distributed, internal heat sources, whereas an inhouse code for tire simulation performs the underlying three-dimensional structure and heat-generation rate analysis. The tire belts and carcasses are modeled using layer solid elements with transverse, isotropic, thermomechanical properties, whereas the rubber components are made of isotropic materials. The goal of this article is to develop a simple and easy methodology for simulating tire thermomechanical behavior. Furthermore, the parametric study for the highest shoulder temperature (HST), which is widely accepted as one of the triggers of tire failure, has been performed. The HST sensitivities to the selected parameters have been computed from the simulated temperature fields under different conditions, which provide a guidance to improve the tire structural, material, and pattern designs.
机译:本文介绍了稳定轧制轮胎的数值热力学分析和参数研究,该轮胎被简化为轴对称结构。在周期性的应力应变循环下,轮胎滚动过程中会由于轮胎材料的能量损失而产生内部热量。使用通用的有限元程序对具有分布式内部热源的二维热传导进行建模,而用于轮胎模拟的内部代码执行基本的三维结构和生热率分析。轮胎带束和胎体使用具有横向,各向同性,热机械特性的层状实体元素建模,而橡胶组件则由各向同性材料制成。本文的目的是开发一种简单的方法来模拟轮胎的热力学行为。此外,已经进行了关于最高胎肩温度(HST)的参数研究,该参数被广泛认为是轮胎故障的诱因之一。 HST对所选参数的敏感性已从不同条件下的模拟温度场计算得出,为改善轮胎结构,材料和花纹设计提供了指导。

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