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Experimental and numerical studies of laminated plates with delamination subjected to compressive loads

机译:对压缩载荷进行分层的层压板的实验和数值研究

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In this research, the multilayered composite plates made of glass/epoxy material were experimentally and numerically investigated under compressive loading conditions. The intact and defected structures were analyzed with the use of finite element method. The influence of the thickness and geometrical imperfection level were carried out in the linear buckling analysis. The nonlinear analysis was performed to determine the influence of the delamination length on the buckling behavior of the plate. The numerical results were validated by experiments. Experimental tests were performed for structures having artificial delamination between laminate layers. The buckling behavior was monitored using the nondestructive and noncontact structural vision-based health monitoring system (the digital image correlation (DIC)). The influence of the different delamination behavior during the tests on the compressive load capacity was determined by a detailed analysis of DIC measurements. The 20% reduction of the compressive load was noticed in the cases with local buckling of delamination.
机译:在该研究中,通过玻璃/环氧材料制成的多层复合板在压缩负载条件下进行实验和数值研究。利用有限元法分析完整和缺陷的结构。在线性屈曲分析中进行厚度和几何缺陷水平的影响。进行非线性分析以确定分层长度对板的屈曲行为的影响。实验验证了数值结果。对层压层之间具有人为分层的结构进行实验试验。使用非破坏性和非接触结构视觉的健康监测系统(数字图像相关(DIC))监测屈曲行为。通过对DIC测量的详细分析来确定不同分层行为在对压缩负荷能力的测试期间的影响。在局部屈曲的分层的情况下,注意到压缩载荷的20%降低。

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