首页> 外文期刊>材料 >Mixed-Mode (I+II) Fracture Toughness and Rate Dependent Fracture Behavior of Interlayer-Toughened Composite Laminate
【24h】

Mixed-Mode (I+II) Fracture Toughness and Rate Dependent Fracture Behavior of Interlayer-Toughened Composite Laminate

机译:层间增韧复合材料层压板的混合模式(I + II)断裂韧性和取决于速率的断裂行为

获取原文
获取原文并翻译 | 示例
           

摘要

Mixed mode (I + II) fracture toughness of the interlayer-toughened composite laminates, T800H/3900-2 (Toray), which is a newly developed composite material having a tough 'interlayer' containing fine polyamide particles, was investigated over a very wide range of loading rate from static to impact The MMF (Mixed Mode Flexure) specimen and SHPB (Split Hopkinson Pressure Bar) system were employed for measuring the mixed mode fracture toughness under impact loading. The strain rate dependence of fracture behavior was also studied from both macro- and microscopic aspects to clarify the mesoscopic fracture mechanism of the material. The experimental results showed the crack path was inside the toughened interlayer during the initial stage of crack growth, however, it moved from the toughened interlayer to the carbon/epoxy base lamina during the propagation stage of crack growth. The mixed mode fracture toughness was sensitive to loading rate; the impact fracture toughness for the toughened interlayer was about 23 percent lower than the maximum value under static loading, and the impact fracture toughness for the carbon/epoxy base lamina was about 11 percent lower than the maximum value under static loading. The effects of mode mixture varied with loading rate for interlayer fracture, though they did not varied for base-lamina fracture. Microscopic observation showed that the fracture morphology was sensitive to loading rate.
机译:层间增韧的复合材料层压板,T800H / 3900-2(东丽)的混合模式(I + II)断裂韧度,是在非常宽的范围内研究的一种新开发的复合材料,具有韧性的“中间层”,包含精细的聚酰胺颗粒。从静态到冲击的加载速率范围MMF(混合模式挠曲)试样和SHPB(分离式霍普金森压力棒)系统用于测量冲击载荷下的混合模式断裂韧性。还从宏观和微观两个方面研究了断裂行为的应变率依赖性,以阐明材料的介观断裂机理。实验结果表明,在裂纹扩展的初始阶段,裂纹路径位于增韧的中间层内部,而在裂纹扩展的扩展阶段,裂纹路径从增韧的中间层迁移至碳/环氧基薄层。混合模式的断裂韧性对加载速率敏感。增韧中间层的冲击断裂韧性比静态载荷下的最大值低约23%,而碳/环氧基薄层的冲击断裂韧性比静态载荷下的最大值低约11%。模式混合的影响随层间断裂的加载速率而变化,尽管对于基底层断裂没有变化。显微镜观察表明,断裂形态对加载速率敏感。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号