利用基于频率的子结构对静态接触条件下带刷子模型的三维柔性环进行轮胎振动分析

IF 2.2 3区 工程技术 Q2 MECHANICS
Masami Matsubara, Akira Saito, Chang Po-Siang, Shozo Kawamura
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引用次数: 0

摘要

使用公路车辆轮胎的简化物理模型是研究整个底盘规格(包括轮胎规格)的一种有效且同步的方法。因此,在没有详细计算机辅助设计数据的情况下,开发一种可用于早期设计阶段的简化物理模型非常重要。在本研究中,使用基于频率的子结构来描述轮胎与路面接触时的振动分析,该模型是轮胎的三维弹性环模型,其中包括模拟胎面橡胶的刷子模型。通过将刷子建模为轮胎与路面之间的接触弹簧,可以利用点耦合三向接触弹簧约束计算出轮胎在负载条件下的固有频率和模态振型。实验结果表明,固有频率随路面接触而发生显著变化,且与垂直载荷无关。理论分析也表明,当接触弹簧的刚度大到足以限制路面接触位移时,固有频率不会发生变化,这与实验结果一致。与以往的研究不同,该方法是根据无道路接触的模态振型来计算有道路接触的模态振型;因此,可以根据自由状态下的实验模态分析来确定所需的模型参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tire vibration analysis of three-dimensional flexible ring with brush model under static contact conditions by using frequency-based substructuring

The use of a simplified physical model of the tire of road vehicles is an efficient and simultaneous method to study the specifications of the entire chassis, including the tire specifications. Therefore, it is important to develop a simplified physical model that can be used in the early design phase when detailed computer-aided design data are not available. In this study, a vibration analysis of tires in road contact is described using frequency-based substructuring in a three-dimensional elastic ring model of a tire that includes a brush model simulating the tread rubber. By modeling the brush as a contact spring between the tire and the road surface, the natural frequencies and mode shapes of the tire under load conditions can be calculated using point-coupled three-way contact spring constraints. The experimental results show that the natural frequency changes significantly with road contact and does not depend on the vertical load. The theoretical analysis also showed that the natural frequency does not change when the stiffness of the contact spring is large enough to limit the displacement of the road contact, which is consistent with the experimental results. Unlike previous studies, this method calculates the mode shape with road contact based on the mode shape without road contact; therefore, the required model parameters can be determined based on the experimental modal analysis for the free-free condition.

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来源期刊
CiteScore
4.40
自引率
10.70%
发文量
234
审稿时长
4-8 weeks
期刊介绍: Archive of Applied Mechanics serves as a platform to communicate original research of scholarly value in all branches of theoretical and applied mechanics, i.e., in solid and fluid mechanics, dynamics and vibrations. It focuses on continuum mechanics in general, structural mechanics, biomechanics, micro- and nano-mechanics as well as hydrodynamics. In particular, the following topics are emphasised: thermodynamics of materials, material modeling, multi-physics, mechanical properties of materials, homogenisation, phase transitions, fracture and damage mechanics, vibration, wave propagation experimental mechanics as well as machine learning techniques in the context of applied mechanics.
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