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Simulation of curing-induced viscoplastic deformation: a new approach considering chemo-thermomechanical coupling

机译:固化引起的粘塑性变形的模拟:考虑化学-热机械耦合的新方法

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摘要

A modelling and simulation approach for plastic deformation effects in curing resins is presented. For this purpose known rheological models of viscoelasticity and viscoplasticity are combined and a ther-mochemical element is added to account for chemical shrinkage and thermal expansion. The degree of cure of the resin has a major influence on the behaviour of the curing material, and therefore, the material model is formulated depending on the degree of cure. It affects the viscoelastic behaviour as well as the chemical shrinkage and the yield function of the viscoplastic part of the model. For the yield function a von Mises approach with isotropic hardening is chosen, where the initial yield stress as well as the yield surface depends on the degree of cure and the temperature.
机译:提出了一种用于固化树脂中塑性变形效应的建模和仿真方法。为此目的,将粘弹性和粘塑性的已知流变模型进行组合,并添加热化学元素以说明化学收缩和热膨胀。树脂的固化程度对固化材料的性能有很大影响,因此,根据固化程度来制定材料模型。它影响模型的粘塑性部分的粘弹性行为以及化学收缩和屈服函数。对于屈服函数,选择具有各向同性硬化的von Mises方法,其中初始屈服应力以及屈服面取决于固化程度和温度。

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