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Shape memory polymers: three-dimensional isotropic modeling

机译:形状记忆聚合物:三维各向同性建模

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This paper presents a comprehensive three-dimensional isotropic numerical simulation for a thermo-mechanical constitutive model of shape memory polymers (SMPs). In order to predict the thermo-mechanical behavior of SMPs, a one-dimensional rheological thermo-mechanical constitutive model is adopted, translated into a three-dimensional form and a time discrete form of the three-dimensional model is then presented. Numerical simulation of this model was developed using the UMAT subroutine capabilities of the finite element software ABAQUS. Evolution of the analysis was conducted by making use of the backward difference scheme, which was applied to all quantities within the model, including the material properties. A comparison of the numerical simulation results was carried out with the available experimental data. Numerical simulation results clearly exhibit the thermo-mechanical properties of the material which include shape fixity, shape recovery, and recovery stress. Finally, a prediction for the transverse and shear directions of the material is presented.
机译:本文为形状记忆聚合物(SMP)的热机械本构模型提供了全面的三维各向同性数值模拟。为了预测SMP的热力学行为,采用一维流变热力学本构模型,将其转化为三维形式,并提出了三维模型的时间离散形式。使用有限元软件ABAQUS的UMAT子例程功能开发了此模型的数值模拟。分析的演变是通过使用后向差分方案进行的,该方案适用于模型中的所有数量,包括材料属性。数值模拟结果与可用的实验数据进行了比较。数值模拟结果清楚地显示了材料的热机械性能,包括形状固定性,形状恢复和恢复应力。最后,给出了材料的横向和剪切方向的预测。

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