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Progressive Failure Analysis of Thin-Walled Composite Structures Verified Experimentally

机译:薄壁复合结构渐进破坏分析的实验验证

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摘要

The subject of the presented research was a thin-walled composite column made of CFRP (carbon-epoxy laminate). The test sample had a top-hat cross-section with a symmetrical arrangement of laminate layers [90/−45/45/0] . The composite structure was subjected to the process of axial compression. Experimental and numerical tests for the loss of stability and load-carrying capacity of the composite construction were carried out. The numerical buckling analysis was carried out based on the minimum potential energy criterion (based on the solution of an eigenvalue problem). The study of loss of load-carrying capacity was performed on the basis of a progressive failure analysis, solving the problem of non-linear stability based on Newton-Raphson’s incremental iterative method. Numerical results of critical and post-critical state were confronted with experimental research in order to estimate the vulnerable areas of the structure, showing areas prone to damage of the material.
机译:本研究的主题是由CFRP(碳-环氧层压板)制成的薄壁复合柱。测试样品具有叠层[90 / -45 / 45/0]的对称布置的大礼帽横截面。复合结构经受轴向压缩过程。对复合结构的稳定性和承载能力的损失进行了实验和数值测试。基于最小势能准则(基于特征值问题的解决方案)进行了数值屈曲分析。在渐进式失效分析的基础上进行了承载能力损失的研究,以牛顿-拉夫森增量迭代法为基础解决了非线性稳定性问题。临界和后临界状态的数值结果受到实验研究的影响,以便估计结构的易损区域,显示出易于损坏材料的区域。

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