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Experimental and numerical monitoring of strain gradients in notched composites under tension loading

机译:缺口载荷作用下缺口复合材料中应变梯度的实验和数值监测

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Experimental tensile tests have been carried out to investigate the effect of progressive damage within notched, quasi-isotropic T650/F584 carbon fibcr/epoxy laminates on the strain distribution in the vicinity of the notch. Three-dimensional Digital image correlation was used during quasi-static tests to obtain the distribution of strains as a function of applied stress. A finite element model was developed using Abaqus and Digimat in which Digimat was used to implement the damage evolution model via a user-defined material subroutine. Damage initiation has been assessed using Hashin's failure criteria and Matzenmiller model was adopted for damage evolution. Numerical and experimental strain results were presented and compared for different section lines on the outer surface of the laminate at different load stages. The experimental notched composite strength was compared as well with the predicted one from finite element solution.
机译:已经进行了实验拉伸试验,以研究带缺口的准各向同性T650 / F584碳纤维/环氧树脂层压板内渐进式损伤对缺口附近应变分布的影响。在准静态测试中使用了三维数字图像相关性,以获取应变分布与所施加应力的关系。使用Abaqus和Digimat开发了有限元模型,其中Digimat用于通过用户定义的材料子例程来实现损伤演化模型。已使用Hashin的破坏准则评估了损伤的开始,并采用Matzenmiller模型进行损伤演化。给出了数值和实验应变结果,并比较了在不同载荷阶段层压板外表面上的不同截面线。实验缺口强度也与有限元解决方案的预测缺口强度进行了比较。

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