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Fatigue Life Evaluation of Automotive Engine Mount Insulator

机译:汽车发动机悬置绝缘子的疲劳寿命评估

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摘要

Fatigue life of automotive engine mount insulator made of natural rubber was evaluated. In order to develop an appropriate fatigue damage parameter of the rubber material, a series of displacement controlled fatigue tests was conducted using 3-dimensional dumbbell specimens with different levels of mean displacement. It was shown that the maximum Green-Lagrange straia was a proper damage parameter, taking the mean displacement effects into account. Nonlinear finite element analyses of the rubber engine mount insulator and 3D dumbbell specimen were performed based on a hyper-elastic material model determined from the simple and equi-biaxial tension tests. Fatigue life prediction of the engine mount insulator was made by incorporating the maximum Green-Lagrange strain values, which was evaluated from the finite element analysis and fatigue tests, respectively. Predicted fatigue lives of the engine mount insulator showed a fairly good agreement with the experimental fatigue lives.
机译:评价了由天然橡胶制成的汽车发动机支架绝缘子的疲劳寿命。为了制定合适的橡胶材料疲劳损伤参数,使用具有不同平均位移水平的3维哑铃样品进行了一系列位移控制疲劳测试。结果表明,考虑到平均位移效应,最大的Green-Lagrange straia是合适的损伤参数。橡胶发动机悬置绝缘子和3D哑铃试样的非线性有限元分析是基于通过简单和等双轴拉伸试验确定的超弹性材料模型进行的。发动机安装绝缘子的疲劳寿命预测是通过结合最大格林-拉格朗日应变值来进行的,该值分别通过有限元分析和疲劳测试进行评估。发动机安装绝缘子的预测疲劳寿命与实验疲劳寿命显示出相当好的一致性。

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