首页> 外文期刊>International Journal of Fracture >A METHOD OF EVALUATION OF TRANSVERSE CRITICAL ENERGY RELEASE RATE (FIBER FAILURE MODE) IN ADVANCED COMPOSITS
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A METHOD OF EVALUATION OF TRANSVERSE CRITICAL ENERGY RELEASE RATE (FIBER FAILURE MODE) IN ADVANCED COMPOSITS

机译:先进复合材料横向临界能量释放率的评估方法

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摘要

Ultimate failure of composite laminates typically involves fiber failure after a number of spurious cracking modes have developed and grown. The possibility that this failure can be treated as a legitimate fracture process has apparently been neglected due to the difficulty in producing the appropriate failure mode in the laboratory. This issue is addressed in this communication, where we design a specimen in which the 0 degree ply is sandwiched between 90 degree plies which serve as guides to direct the crack propagation across the fibers. The corresponding fracture anisotropy, or the ratio of the transverse and longitudinal critical energy release rates is found to be 1,011 for a graphite-epoxy unidirectional composite, the highest fracture anisotropy measured to date.
机译:复合材料层压板的最终破坏通常涉及许多伪裂纹模式的产生和发展之后的纤维破坏。由于在实验室中难以产生适当的故障模式,因此可以将这种故障视为合法断裂过程的可能性已被忽略。在本交流中解决了这个问题,我们在其中设计了一个样本,其中0度层板夹在90度层板之间,用作引导裂纹在纤维上传播的向导。对于石墨-环氧单向复合材料,相应的断裂各向异性或横向和纵向临界能量释放速率之比为1,011,是迄今为止测得的最高断裂各向异性。

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