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An analytical model for the progressive failure prediction of reinforced thermoplastic pipes under axial compression

机译:轴压下加固热塑性管渐进式故障预测的分析模型

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摘要

An analytical model is presented to predict the progressive failure of reinforced thermoplastic pipes (RTPs) under axial compression, in which the existing homogenization method and a nonlinear stiffness degradation model are combined to predict the continuum damage mechanical response in an iterative and cyclic way. As the homogenization method ignores the effect of the cross-sectional curvature on the damage sequence, a stress correction factor is defined to consider this effect. Once corrected stresses satisfy Hashin-Yeh failure criteria, the nonlinear stiffness degradation model is adopted to update the constitutive relationship established by the homogenization method. The proposed model is capable of identifying the damage location and failure mode, analyzing damage accumulation and predicting the ultimate compression. Meanwhile, ABAQUS Explicit quasi-static analyses calling a user-defined subroutine were conducted to capture the progressive failure mechanisms in 3D composites and verify the proposed model. The proposed model was found to give accurate prediction on the elastic stiffness, first ply failure, the damaged stiffness, the ultimate compression, and stress distributions. Furthermore, the effects of fiber's winding angles and the thickness-radius ratios have been discussed, which illustrate that tensile failure mode would appear even when RTPs are under axial compression.
机译:提出了一种预测增强热塑性塑料管(RTP)在轴向压缩下渐进破坏的分析模型,该模型将现有的均匀化方法与非线性刚度退化模型相结合,以迭代和循环的方式预测连续损伤力学响应。由于均匀化方法忽略了截面曲率对损伤序列的影响,因此定义了应力修正因子来考虑这种影响。修正后的应力满足Hashin-Yeh破坏准则后,采用非线性刚度退化模型来更新由均匀化方法建立的本构关系。该模型能够识别损伤位置和失效模式,分析损伤累积,预测极限压缩。同时,通过调用用户定义的子程序进行ABAQUS显式准静态分析,捕捉三维复合材料的渐进失效机制,并验证所提出的模型。所提出的模型可以准确预测弹性刚度、第一层失效、损伤刚度、极限压缩和应力分布。此外,还讨论了纤维缠绕角度和厚度-半径比的影响,这表明即使RTP在轴向压缩下也会出现拉伸破坏模式。

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