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3D finite element analysis of tensile notched strength of 2/2 twill weave fabric composites with drilled circular hole

机译:带圆孔的2/2斜纹织物复合材料拉伸缺口强度的3D有限元分析

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摘要

This paper presents the micromechanical three-dimensional finite element models of the 2/2 twill weave T300 carbon/epoxy woven fabric composite laminates with drilled circular holes of different sizes. A fiber breakage failure criterion for predicting the ultimate tensile notched strength of fiber dominated composites is also proposed. It is found that the location of failure initiation for laminates with large hole size is different from those for laminates with smaller holes while the stress concentration may not occur at the notch roots for the fiber dominated laminates. Based on the uniaxial, shear and von Mises stress distributions in the yam and matrix, the influence of hole-size on the stress distributions and stress concentration is discussed. Standard tensile tests with modifications are performed for this particular type of woven fabric composites. The apparent strain concentration factors and notched strengths determined by experiments are presented and the finite element models are verified by satisfactory correlation between prediction and experiment.
机译:本文介绍了2/2斜纹编织T300碳/环氧机织织物复合材料层压板的微机械三维有限元模型,该层压板具有不同尺寸的钻孔。还提出了一种用于预测纤维占主导地位的复合材料的极限拉伸缺口强度的纤维断裂破坏准则。已经发现,具有大孔尺寸的层压板的失效引发位置与具有较小孔的层压板的失效引发位置不同,而对于纤维为主的层压板而言,在切口根部可能不会出现应力集中。基于纱线和基体中的单轴应力,剪切应力和冯·米塞斯应力分布,讨论了孔尺寸对应力分布和应力集中的影响。对这种特殊类型的机织复合材料进行标准的拉伸试验,并进行修改。给出了通过实验确定的表观应变集中系数和缺口强度,并通过令人满意的预测与实验之间的相关性验证了有限元模型。

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