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首页> 外文期刊>International Journal of Plasticity >A 3D finite strain viscoelastic constitutive model for thermally induced shape memory polymers based on energy decomposition
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A 3D finite strain viscoelastic constitutive model for thermally induced shape memory polymers based on energy decomposition

机译:基于能量分解的热诱导形状记忆聚合物的3D有限应变粘弹性组织型模型

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A 3D finite strain viscoelastic constitutive model for thermally induced shape memory polymers (SMPs) is proposed in this work. The thermodynamic system of SMPs in the shape memory cycle is decomposed into thermal and mechanical parts, and the two parts are described separately. Then the constitutive equation is derived based on the restrictions of the second law of thermodynamics through a decomposing of the thermodynamic free energy. The concept of phase transition is introduced to greatly facilitate the determination of material parameters, which makes the model easier for application. Three sets of experimental data in the literature are used to validate the proposed model. The simulation results have an excellent consistency with experiment results, which demonstrates the effectiveness of the proposed model in predicting the shape memory effect (SME) of SMPs.
机译:在这项工作中提出了一种用于热诱导形状记忆聚合物(SMPS)的3D有限应变粘弹性本构型模型。 形状记忆循环中的SMP的热力学系统被分解成热电部和机械部件,并且两部分被单独描述。 然后通过分解热力学自由能来基于热力学的第二定律的限制来导出本构方程。 介绍了相变的概念,以极大地促进材料参数的确定,这使得模型更容易应用。 文献中的三组实验数据用于验证所提出的模型。 仿真结果具有优异的实验结果一致性,这证明了所提出的模型在预测SMPS的形状记忆效果(SME)方面的有效性。

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