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A computational and experimental analysis of the buckling, postbuckling and initial failure of pultruded GRP columns

机译:拉挤玻璃钢柱的屈曲,后屈曲和初始破坏的计算和实验分析

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A two-dimensional finite element (FE) model was developed and nonlinear FE analyses were carried out, using the ANSYS software, to predict the buckling, postbuckling and initial failure loads of pultruded glass reinforced plastic (GRP) wide flange (WF) columns. Phenomenological failure criteria were proposed to predict failure initiation at the web-flange junctions of pultruded GRP WF columns, whereas the Tsai-Wu failure criterion was used for the web and flanges. Initial failure analysis was carried out with reasonable success as a post-processing operation on the nonlinear analysis results. The numerical predictions of the buckling, postbuckling and initial failure loads of pultruded GRP WF columns were in reasonably good agreement with the experimental results.
机译:建立了二维有限元(FE)模型,并使用ANSYS软件进行了非线性有限元分析,以预测拉挤玻璃钢(GRP)宽翼缘(WF)柱的屈曲,后屈曲和初始破坏载荷。提出了现象学上的破坏准则,以预测拉挤玻璃钢WF柱腹板-法兰连接处的破坏起始,而蔡-吴破坏准则则用于腹板和法兰。初始故障分析作为非线性分析结果的后处理操作,取得了合理的成功。拉挤玻璃钢WF柱的屈曲,后屈曲和初始破坏荷载的数值预测与实验结果基本吻合。

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