Behavior of 3-D Orthogonally Woven Composites Under Tensile Loading

N. Naik, B. Thuruthimattam
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引用次数: 12

Abstract

A three-dimensional woven fabric composite strength model is presented for predicting the failure behavior of three-dimensional orthogonally woven composites under on-axis, uniaxial, static tensile loading. The representative unit cell is discretized into sections and elements. The method predicts the stress levels at which secondary failures take place at element level. The effect of secondary failure is considered for further analysis, and the ultimate tensile-failure strength and failure strain are predicted. It is observed that for the same fiber volume fractions, 3-D orthogonally woven composites show a significant increase in through-the-thickness properties without a comparable reduction in in-plane properties. It is found that the assumed cross-sectional geometry of the strand with the same overall fiber volume fraction does not make a significant difference to the elastic and strength properties, and hence a square cross-section can be considered.
三维正交编织复合材料在拉伸载荷下的性能
为预测三维正交编织复合材料在轴向、单轴静态拉伸载荷作用下的破坏行为,建立了三维编织复合材料强度模型。代表性的单元胞被离散成截面和单元。该方法在单元水平上预测二次破坏发生时的应力水平。考虑二次破坏的影响进行进一步分析,并预测了极限抗拉破坏强度和破坏应变。观察到,对于相同的纤维体积分数,三维正交编织复合材料的穿透厚度性能显著增加,而面内性能却没有相应的降低。研究发现,在相同的总纤维体积分数下,假设的横截面几何形状对纤维的弹性和强度性能没有显著影响,因此可以考虑采用方形横截面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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