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Finite element analysis of the ECT test on mode III interlaminar fracture of carbon-epoxy composite laminates

机译:碳-环氧复合材料层合板III型层间断裂ECT试验的有限元分析

摘要

In this work a parametric study of the Edge Crack Torsion (ECT) specimen was performedin order to maximize the mode III component (GIII) of the strain energy release rate for carbon-epoxy laminates.A three-dimensional finite element analysis of the ECT test was conducted considering a[90/0/(+45/-45)2/(-45/+45)2/0/90]S lay-up. The main objective was to define an adequate geometry to obtain an almost pure mode III at crack front. The geometrical parameters studied were specimen dimensions, distance between pins and size of the initial crack.The numerical results demonstrated that the ratio between the specimen length and the initial crack length had a significant effect on the strain energy release rate distributions. In almost all of the testedconfigurations, a mode II component occurred near the edges but it did not interfere significantly with the dominant mode III state.
机译:在这项工作中,对边缘裂纹扭转(ECT)标本进行了参数研究,以使碳-环氧层压板的应变能释放速率的模式III分量(GIII)最大化.ECT试验的三​​维有限元分析考虑[90/0 /(+ 45 / -45)2 /(-45 / + 45)2/0/90] S叠合进行。主要目的是定义适当的几何形状,以便在裂纹前沿获得几乎纯的III型。研究的几何参数是试样尺寸,销钉之间的距离和初始裂纹的尺寸。数值结果表明,试样长度与初始裂纹长度的比值对应变能释放速率分布有显着影响。在几乎所有测试配置中,模式II分量均出现在边缘附近,但它并未显着干扰显性模式III状态。

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