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Invariant Based Transversely-Isotropic Material and Failure Model for Fiber-Reinforced Polymers

机译:纤维增强聚合物的基于不变性的横观各向同性材料和破坏模型

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摘要

In this article, a constitutive formulation of a transversely-isotropic material and failure model for fiber-reinforced polymers is presented comprising pre-failure material nonlinearities, a novel invariant based quadratic failure criterion (IQC) as well as post failure material softening. The failure surface of the IQ criterion is assumed to take the influence of triaxiality on fracture into account. Further, a distinction between fiber failure and inter-fiber failure is conducted. Material softening is governed by a fracture energy formulation and the introduction of an internal length. The constitutive model is implemented into a programming user interface of the commercial finite element program Abaqus. As results, different laminate lay-ups are modelled and exposed to different stress states in an FE analysis. The obtained failure surfaces and stress strain curves for each laminate lay-up are compared to experimental data. As further applications of the material model presented, a curved composite beam, showing delamination, and a 079070°-rod, showing the characteristic damage state in the 90°layer, are simulated and compared to tests.
机译:在本文中,提出了一种横观各向同性材料的本构公式和纤维增强聚合物的破坏模型,其中包括破坏前的材料非线性,基于不变性的新型二次破坏准则(IQC)以及破坏后的材料软化。假设IQ准则的破坏面考虑了三轴性对断裂的影响。此外,在光纤故障和光纤间故障之间进行区分。材料的软化取决于断裂能的公式化和内部长度的引入。本构模型被实现到商业有限元程序Abaqus的编程用户界面中。结果,在有限元分析中对不同的层压板叠层进行了建模并暴露于不同的应力状态。将每个层压板获得的破坏面和应力应变曲线与实验数据进行比较。作为提出的材料模型的进一步应用,模拟了弯曲的复合梁(显示分层)和079070°的杆(显示了90°层中的特征损伤状态),并将其与测试进行了比较。

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