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Modelling of stress softening in filled elastomers

机译:填充弹性体中的应力软化建模

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摘要

The phenomenon of stress softening in filled elastomers, commonly known as the Mullins effect, has received renewed attention in the engineering community due to its importance in predicting the nonlinear response of elastomeric components. The stress softening is assumed to be the result of irreversible damage in the material. Ogden & Roxburgh (1999a,b) have recently developed a pseudo-elastic model to capture Mullins effect, treating it as a quasi-static phenomenon. This model, with some modifications, has been implemented in the commercial finite element software ABAQUS. This paper describes the modified Ogden-Roxburgh model, and motivates the needs for the modifications. The modified model is then used to calibrate available experimental data for several benchmark cases involving simple stress states. The model is also used for the simulation of quasi-static deformation and steady state rolling experiments on a solid rubber wheel, and the numerical results are compared with experimental data.
机译:填充弹性体中的应力软化现象,通常称为穆林斯效应,由于其在预测弹性体成分的非线性响应中的重要性,因此在工程界引起了新的关注。假定应力软化是材料不可逆损坏的结果。 Ogden&Roxburgh(1999a,b)最近开发了一种伪弹性模型来捕获穆林斯效应,并将其视为准静态现象。经过修改的该模型已在商业有限元软件ABAQUS中实现。本文描述了修改后的Ogden-Roxburgh模型,并激发了修改的需求。然后,将修改后的模型用于校准涉及简单应力状态的几种基准情况的可用实验数据。该模型还用于模拟固体橡胶轮的准静态变形和稳态滚动实验,并将数值结果与实验数据进行比较。

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