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Dynamic Finite Element Analysis of Nonlinear Hyperelastic and Viscoelastic Materials for Thermoforming Applications

机译:用于热成型应用的非线性超弹性和粘弹性材料的动态有限元分析

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In this work,a dynamic finite element method is used in modeling and numerical simulation of the viscoelastic and hyperelastic behavior of a thin,isotropic,and incompressible thermoplastic membrane.The viscoelastic behavior (Lodge,Christensen) and hyperelastic behavior (Ogden and Mooney-Rivlin),are considered.The ther-moforming of the sheet is performed under the action of perfect gas flows.The pressure load used in modeling is thus deduced from the thermodynamic law of perfect gases.The Lagrangian formulation together with the assumption of the membrane theory is used in the finite element implementation.The numerical validation is performed by comparing the obtained results with measured experimental data for the polymeric acrylonltrile-buta-diene-styrene (ABS) membrane inflation.Moreover,the influence of the Lodge,the Christensen,the Mooney-Rivlin,and the Ogden constitutive models on the thickness and on the stress distribution in the thermoforming sheet are analyzed.
机译:在这项工作中,动态有限元方法被用于建模和数值模拟薄的各向同性且不可压缩的热塑性膜的粘弹性和超弹性行为。粘弹性行为(Lodge,Christensen)和超弹性行为(Ogden和Mooney-Rivlin)片材的热成型是在完美气流的作用下进行的,因此从完美气体的热力学定律推导出用于建模的压力载荷。拉格朗日公式和膜理论的假设用于有限元实现。通过将所得结果与聚合物丙烯腈-丁二烯-苯乙烯(ABS)膜充气的实验数据进行比较,进行数值验证。此外,洛奇,克里斯滕森,分析了门尼-里夫林(Mooney-Rivlin)以及热成型板材厚度和应力分布的奥格登本构模型。

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