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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Influence of matrix toughness on damage initiation and growth in carbon fiber fabric composites
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Influence of matrix toughness on damage initiation and growth in carbon fiber fabric composites

机译:基体韧性对碳纤维织物复合材料损伤引发和生长的影响

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Progression of fatigue damage in toughened carbon fiber fabric composites by using matrix material of high toughness has been examined with hole-notched specimens. The matrix is toughened by impregnating solid rubber particles a fraction of a micron in diameter. The damage progression in the materials is mainly investigated as two-dimensional information by using analyses of stress distribution data obtained through the thermoelastic stress analysis (TSA). In particular, a new TDA technique developed by improving ordinary TSA has been applied to ascertain smaller (mesoscopic) failure. With the TDA data, improved matrix resin toughness actually influences to inhibit damage development in early fatigue process in the laminates. In addition, the finite element analysis is discussed in terms of a stress distribution and a strain level of damage initiation in the laminated materials. [References: 14]
机译:使用带孔的试样检查了使用高韧性基体材料对增韧碳纤维织物复合材料造成的疲劳损伤的进展。通过浸渍直径为微米的固体橡胶颗粒,可以使基体增韧。通过使用通过热弹性应力分析(TSA)获得的应力分布数据分析,主要将材料中的损伤进展作为二维信息进行研究。特别是,通过改进普通的TSA而开发的新TDA技术已用于确定较小(介观)故障。根据TDA数据,提高的基体树脂韧性实际上会抑制层压板在早期疲劳过程中损坏的发展。另外,根据应力分布和层压材料中损伤引发的应变水平讨论了有限元分析。 [参考:14]

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