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Performance evaluation of cord material models applied to structural analysis of tires

机译:帘线材料模型在轮胎结构分析中的性能评估

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Tires are, in essence, a composite structure made of reinforced elastomers. As in other composite structures, the accuracy of finite elements (FEs) in predicting the performance of a fire is highly dependent on the validity of the material models chosen to describe the mechanical behavior of its constituents. This paper concentrates on the material modeling of fire reinforcements, and analyzes several material models, namely linear, Yeoh and Marlow, which are quite common in these investigations. A realistic fire is considered as a general system and the most relevant results are discussed concerning precision, computational efficiency and complexity in parameters identification. The advantages of non-linear material models, especially of the Marlow model, are outlined. To the authors' knowledge, no study has addressed the abovementioned aspects of the application of fire cord models in FE analysis of fires in such detail or directly compared the performance of cord models in a realistic example.
机译:轮胎本质上是由增强弹性体制成的复合结构。与其他复合结构一样,有限元(FE)预测火灾性能的准确性高度依赖于用来描述其成分的机械性能的材料模型的有效性。本文着重研究消防增强材料的材料模型,并分析了几种材料模型,即线性,Yeoh和Marlow,它们在这些研究中很常见。现实中的火灾被认为是一个通用系统,并讨论了与精度,计算效率和参数识别复杂性相关的最相关结果。概述了非线性材料模型(尤其是Marlow模型)的优点。据作者所知,尚无任何研究对火绳模型在火的有限元分析中应用的上述方面进行过如此详细的介绍,或在实际示例中直接比较了火绳模型的性能。

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