基于频响分析的复合材料轮胎数值模拟方法

M. Karpenko, Paulius Skačkauskas, O. Prentkovskis
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引用次数: 5

摘要

交通运输的可靠性和维修分析侧重于事故和事件调查的主要目标,这有利于更好地了解事故的原因,并在未来预防事故。本文对复合充气轮胎在运输工程中的应用进行了理论和实验研究。本研究提供的数值模拟序列的方法有助于工程师在设计阶段有效地确定车辆轮胎的动力特性和行为。采用压电微振动试验和频率分析对轮胎材料进行了测试。采用基于材料频响优化的有限元数值模拟与实验测量相结合的方法,对轮胎材料行为进行建模,避免了复合材料结构建模的问题。结果表明,该方法可用于复合材料轮胎的数值模拟研究,并考虑材料的粘弹性特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methodology for the Composite Tire Numerical Simulation Based on the Frequency Response Analysis
Reliability and maintenance analysis in transport focus on the main objective of accident and incident investigations that benefit to better understanding of the causes of accidents and prevention of them in the future. The conducted research presents theoretical and experimental research on composite pneumatic tire used in transport engineering. The approach of the numerical simulation sequence which is offered in this research facilitates engineers in efficient determination of the dynamic properties and behaviour of vehicle tire at design stage. The tire materials have been tested by employing piezoelectric micro-vibration tests and frequency analyses. The Finite Element Method used for numerical simulation in combination with experimental measurements based on optimization by material frequency response, was applied in modelling tire material behaviour avoiding problems of composite structure modelling. The obtained results indicate that the offered methodology can be used in numerical simulation of composite tire investigation and considering material viscos-elastic properties.
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