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首页> 外文期刊>Journal of engineering materials and technology >Modeling of the Rate Responsive Behavior of Elastomer Foam Materials
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Modeling of the Rate Responsive Behavior of Elastomer Foam Materials

机译:弹性体泡沫材料的速率响应行为建模

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摘要

Elastomer foam materials are shock absorbers that have been extensively used in applications of electronic packaging. Finite element modeling simulation plays an important role in helping the designers determine the best elastomer foam material and the best structure of a shock absorber. Elastomer foam materials have very complicated material behaviors. The prediction of the rate responsive behavior is one of the most interesting topics in elastomer material modeling. The focus of this article is to present a unique method for deriving the rate dependent constitutive model of an elastomer foam based on the extension of the Cowper and Symond law and the curve fitting on experimental test data. The research on rate dependent material models and the material models available in commercially available finite element analysis software have been reviewed. Test data collection at various strain rates has been discussed. Two steps of curve fitting on experimental test data are used to retrieve analytical expression of the constitutive model. The performance of the constitutive model for a foam material has been illustrated and shown to be quite good. This method is easy to understand and the simple formulation of the constitutive model is very suitable for applications in numerical simulation. The constitutive model could be used to predict the stress-strain curves of a foam material at any strain rate, especially at the intermediate strain rates, which are the most difficult to collect so far. In addition, this model could be readily integrated with the hyperelastic material models to more efficiently evaluate the mechanical behavior of an elastomer foam material. The model could potentially be implemented in commercially available software such as ABAQUS and LS-DYNA. The method presented is also useful in deriving constitutive models of rubberlike elastomer materials.
机译:弹性体泡沫材料是减震器,已广泛用于电子包装的应用中。有限元建模仿真在帮助设计人员确定最佳的弹性体泡沫材料和最佳的减震器结构方面发挥着重要作用。弹性体泡沫材料具有非常复杂的材料性能。速率响应行为的预测是弹性体材料建模中最有趣的主题之一。本文的重点是提出一种独特的方法,该方法基于考珀和西蒙德定律的扩展以及对实验测试数据的曲线拟合来得出弹性体泡沫的速率相关本构模型。速率依赖的材料模型和可在市场上买到的有限元分析软件中可用的材料模型的研究已经进行了综述。已经讨论了各种应变率下的测试数据收集。对实验测试数据进行曲线拟合的两个步骤用于检索本构模型的解析表达式。泡沫材料的本构模型的性能已得到说明,并显示出很好的性能。该方法易于理解,本构模型的简单公式非常适合于数值模拟中的应用。本构模型可用于预测泡沫材料在任何应变率下的应力-应变曲线,尤其是在中等应变率下,这是迄今为止最难收集的。另外,该模型可以很容易地与超弹性材料模型集成,以更有效地评估弹性体泡沫材料的机械性能。该模型有可能在诸如ABAQUS和LS-DYNA的商业软件中实现。提出的方法也可用于推导橡胶状弹性体材料的本构模型。

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