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Interlaminar shear fracture toughness and fatigue thresholds for composite materials

机译:复合材料的层间剪切断裂韧性和疲劳阈值

摘要

Static and cyclic end notched flexure tests were conducted on a graphite epoxy, a glass epoxy, and graphite thermoplastic to determine their interlaminar shear fracture toughness and fatigue thresholds for delamination in terms of limiting values of the mode II strain energy release rate, G-II, for delamination growth. The influence of precracking and data reduction schemes are discussed. Finite element analysis indicated that the beam theory calculation for G-II with the transverse shear contribution included was reasonably accurate over the entire range of crack lengths. Cyclic loading significantly reduced the critical G-II for delamination. A threshold value of the maximum cyclic G-II below which no delamination occurred after one million cycles was identified for each material. Also, residual static toughness tests were conducted on glass epoxy specimens that had undergone one million cycles without delamination. A linear mixed-mode delamination criteria was used to characterize the static toughness of several composite materials; however, a total G threshold criterion appears to characterize the fatigue delamination durability of composite materials with a wide range of static toughness.
机译:在石墨环氧树脂,玻璃环氧树脂和石墨热塑性塑料上进行了静态和循环末端缺口挠曲测试,以确定它们的层间剪切断裂韧性和分层的疲劳阈值(根据II型应变能释放速率的极限值G-II) ,用于分层增长。讨论了预破解和数据缩减方案的影响。有限元分析表明,在考虑到裂纹长度的整个范围内,包含横向剪力贡献的G-II梁理论计算是相当准确的。循环载荷显着降低了临界G-II分层。对于每种材料,确定了最大循环G-II的阈值,在此阈值下,在一百万次循环后未发生分层。另外,对经过一百万次循环而无分层的环氧玻璃样品进行了静态静韧性测试。线性混合模式分层标准用于表征几种复合材料的静态韧性。但是,总的G阈值标准似乎可以表征具有广泛静态韧性的复合材料的疲劳分层耐久性。

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