首页> 外文会议>European Conference on Constitutive Models for Rubber(ECCMR 2005); 20050627-29; Stockholm(SE) >Dynamic stiffness prediction of filled rubber mounts: Comparison between a fractional derivative viscoelastic-elastoplastic model and a simplified procedure
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Dynamic stiffness prediction of filled rubber mounts: Comparison between a fractional derivative viscoelastic-elastoplastic model and a simplified procedure

机译:填充橡胶支座的动态刚度预测:分数导数粘弹弹塑性模型与简化程序的比较

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摘要

A time domain non-linear model is presented to predict the dynamic stiffness of rubber isolators using a FE code. The problem of simultaneously modelling elastic, viscoelastic and friction contributions is removed by additively splitting them. Viscoelastic response is modelled via a fractional derivative model, while amplitude dependency is considered through Coulomb friction elements. Nevertheless, determination of the dynamic stiffness takes long time and requires large amount of memory, as well as the estimation of the transfer function between applied excitation and resulting forces at different frequency and amplitude values. This is why a frequency domain simplified procedure is also proposed to obtain the dynamic stiffness. The technique is based on providing a generalized Maxwell model with the adequate material data set, once the dynamic strain amplitude, to which the mount is subjected, is estimated from quasi-static strain values. The methodology has proved to be efficient and easy to be applied.
机译:提出了时域非线性模型,以使用FE代码预测橡胶隔离器的动态刚度。通过将弹性贡献,粘弹性贡献和摩擦贡献同时建模,可以消除问题。通过分数导数模型对粘弹性响应进行建模,而通过库仑摩擦元件考虑幅度依赖性。然而,动态刚度的确定需要很长时间,并且需要大量的存储空间,并且还需要估算施加的激励与在不同频率和振幅值下产生的力之间的传递函数。这就是为什么还提出了频域简化程序来获得动态刚度的原因。一旦根据准静态应变值估算了安装座所承受的动态应变幅度,该技术便是基于提供具有适当材料数据集的广义Maxwell模型。该方法已被证明是高效且易于应用的。

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