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Failure analysis of laminated composites with shear nonlinearity and strain-rate response

机译:具有剪切非线性和应变率响应的层合复合材料失效分析

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Prediction of the mechanical response and failure behavior of laminated composites is vital for an efficient design in engineering applications. Vast quantity of failure models for composites were developed and compared in accuracy and applicability. In practice, many concerns usually appear at the material and damage model selection stage, since some models are not sensitive to important mechanical effects, while others are too complicated and require a large amount of experimental data. Presented work proposes a flexible approach for a failure modelling and initially requires only minimum of commonly available experimental data, but with possibility of extension to capture different forms of physical nonlinearity, including nonlinear shear and strain-rate effect. Proposed failure model is based on introduction of two damage parameters. Nonlinear shear response is formulated by introduction of an arbitrary polynomial shear stiffness dependency on shear strain component. Strain rate effects are considered using damage rate parameter, which has some advantages in constitutive equation formulation and practical usage. Special analytical relations for damage rate influence are presented with successful test correlation. Proposed model was implemented in commercial finite element analysis software via special user subroutines for practical computations. Numerical simulations for example problems of composites under biaxial loading and open-hole compression plate test were performed and a good correlation between theoretical and experimental results were achieved.
机译:预测层合复合材料的机械响应和失效行为对于工程应用中的有效设计至关重要。开发了大量复合材料失效模型,并对其准确性和适用性进行了比较。在实践中,许多问题通常出现在材料和损伤模型选择阶段,因为一些模型对重要的力学效应不敏感,而另一些模型过于复杂,需要大量的实验数据。本文提出了一种灵活的失效建模方法,最初只需要最少的常用实验数据,但有可能扩展到捕捉不同形式的物理非线性,包括非线性剪切和应变率效应。提出的失效模型基于两个损伤参数的引入。非线性剪切响应由剪切应变分量的任意多项式剪切刚度表示。利用损伤率参数考虑应变率效应,在本构方程的建立和实际应用中具有一定的优势。给出了损伤率影响的特殊分析关系式,并给出了成功的试验关联式。该模型通过特殊的用户子程序在商业有限元分析软件中实现,用于实际计算。对复合材料在双轴载荷和开孔压缩板试验下的算例问题进行了数值模拟,理论结果与实验结果具有良好的相关性。

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