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Failure Mechanisms of Woven Carbon and Glass Composites

机译:碳纤维和玻璃复合材料的失效机理

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摘要

Stress-Strain repsonses in tension, compression, and shear of a fiver-harness satinweave carbon/epoxy composite and a four-harness satin-weave glass/epoxy composite have been examined. Damage progression under tension was examined by optical microscopic inspection of woven-fabric composites were examined and correlated with the experimental data. Damage inspection of the carbon/epoxy composite under tension revealed that the initial failure was cracking of pure matrix regions followed by transverse bundle cracking. Fill/weft debonding and longitudinal splits of the fill bundles occured close to ultimate failure of the coomposite. The glass/epoxy composite displayed damage in the form of fill/weft debonding and longitudinal splits, but no transverse yarn cracking. The damage observed in both composites was confined to the region where ultimate failure occurred. Elastic properties of the composites were overall in good agreement with micromechanical predictions based on uniform strain, but failure stress predictions were less accurate.
机译:研究了拉丝缎纹碳/环氧树脂复合材料和四丝缎纹玻璃/环氧树脂复合材料在拉伸,压缩和剪切方面的应力应变响应。通过光学显微镜检查来检查在张力下的损伤进展,从而检查编织织物复合材料并与实验数据相关。碳/环氧复合材料在张力下的损伤检查表明,最初的破坏是纯基质区域的开裂,然后是横向束开裂。填充/纬线脱粘和填充束的纵向分裂发生在复合材料的最终破坏附近。玻璃/环氧树脂复合材料显示出纬纱/纬纱脱粘和纵向裂口形式的损坏,但没有横向纱线开裂。在两种复合材料中观察到的损坏仅限于发生最终破坏的区域。复合材料的弹性性能总体上与基于均匀应变的微机械预测非常吻合,但是破坏应力的预测不太准确。

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