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Stress state failure analysis of thin-walled GLARE composite members subjected to axial loading in the post-buckling range

机译:薄壁GLARE复合材料构件在后屈曲范围内承受轴向载荷的应力状态失效分析

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摘要

The paper investigated the load-carrying capacity and the participation of stress components in the failure analysis of top-hat-shaped composite columns subjected to uniform compression. GLARE members were axially compressed in laboratory tests employing a static testing unit. Failure tests were monitored in the full load range using the digital image correlation (DIC) system, which enabled visualization of full-field displacements and strains. Simultaneously, FEM numerical simulations were carried out to estimate the load-carrying capacity of the top-hat-shaped sections based on the nominal stress state in both the non-degraded and degraded composite models. In the latter, the material property degradation method (MPDG) allowed a progressive lowering of the material stiffness based on the presumed damage variables. Failure initiation in composite plies was monitored in FE simulations based on Hashin and Puck failure criteria. Stress state analysis was performed to investigate the participation of stress tensor components in the failure function of selected failure criteria. This enabled the identification of critical stresses contributing to aluminum plastic deformation and intra-laminar failure mechanisms that led to the composite fracture. The results of the numerical simulations were found to be in high agreement with the experimental evidence.
机译:本文研究了平顶形组合柱在均匀受压破坏分析中的承载能力和应力分量参与情况。在采用静态测试单元的实验室测试中,眩光杆件被轴向压缩。使用数字图像相关 (DIC) 系统在全负载范围内监测故障测试,该系统能够可视化全场位移和应变。同时,在非退化和退化复合材料模型中,基于标称应力状态的有限元数值模拟估计了顶帽形截面的承载能力。在后者中,材料性能退化法(MPDG)允许根据假定的损伤变量逐步降低材料刚度。在有限元模拟中,基于Hashin和Puck失效准则监测复合材料层的失效启动。通过应力状态分析,研究了应力张量分量在所选失效准则的失效函数中的作用。这样就可以识别导致铝塑性变形的临界应力和导致复合材料断裂的层内破坏机制。数值模拟结果与实验结果吻合较好。

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