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首页> 外文期刊>International Journal of Damage Mechanics >Strength prediction and progressive failure analysis of carbon fiber reinforced polymer laminate with multiple interacting holes involving three dimensional finite element analysis and digital image correlation
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Strength prediction and progressive failure analysis of carbon fiber reinforced polymer laminate with multiple interacting holes involving three dimensional finite element analysis and digital image correlation

机译:具有多个相互作用孔的碳纤维增强聚合物层压板的强度预测和渐进破坏分析,涉及三维有限元分析和数字图像关联

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摘要

Composites are finding lot of applications in aerospace, automobile and many other sectors due to their high strength to weight ratio and longer fatigue life. For assembly or electrical wiring purposes, often hole(s) are drilled into the laminate thereby reducing its strength. The strength prediction and damage mechanics study is of great importance in such structural applications. In this work, a three-dimensional finite element based progressive damage model (PDM) is presented for unidirectional carbon fiber reinforced polymer (CFRP) laminates having two holes in different configurations subjected to tensile loading. The developed model is suitable for predicting failure and post failure behavior of fiber reinforced composite materials. The material is assumed to behave as linear elastic until final failure. The three broad steps involved in this study are stress analysis, failure analysis and damage propagation which are implemented as a PDM involving finite element analysis. Hashin's failure criteria for unidirectional fiber composite is used for the damage prediction. It utilizes a set of appropriate degradation rules for modeling the damage involving material property degradation method. Digital image correlation (DIC) experiment is also carried out to perform whole field strain analysis of CFRP panel with different hole configurations. Whole field surface strain and displacement from finite element prediction are compared with DIC results for validation of the finite element model. Load-deflection behavior as well as path of damage progression is predicted by both PDM simulation and experiment. They are found to be in good agreement thereby confirming the accuracy of PDM implementation. Effect of spacing between the holes on stress concentration factor (SCF) is also further investigated.
机译:复合材料由于其高的重量重量比和更长的疲劳寿命而在航空航天,汽车和许多其他领域得到了广泛的应用。为了组装或电线的目的,经常在层压板中钻出一个或多个孔,从而降低其强度。在这种结构应用中,强度预测和损伤力学研究非常重要。在这项工作中,提出了基于三维有限元的渐进式损伤模型(PDM),用于单向碳纤维增强聚合物(CFRP)层压板,该层压板具有两个承受不同拉伸强度的孔。开发的模型适用于预测纤维增强复合材料的失效和失效后行为。假定该材料在最终破坏之前表现为线性弹性。这项研究涉及的三个主要步骤是应力分析,失效分析和损伤传播,这是作为涉及有限元分析的PDM实现的。 Hashin对单向纤维复合材料的破坏准则用于损伤预测。它利用一组适当的退化规则来对涉及材料属性退化方法的损伤进行建模。还进行了数字图像相关(DIC)实验,以对具有不同孔配置的CFRP面板进行全场应变分析。将有限元预测的全场表面应变和位移与DIC结果进行比较,以验证有限元模型。通过PDM仿真和实验可以预测载荷-挠曲行为以及损伤的发展路径。发现它们非常一致,从而确认了PDM实施的准确性。还进一步研究了孔之间的间距对应力集中系数(SCF)的影响。

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