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首页> 外文期刊>International Journal of Solids and Structures >Fracture parameters of interfacial crack of bimaterial under the impact loading
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Fracture parameters of interfacial crack of bimaterial under the impact loading

机译:冲击载荷作用下双材料界面裂纹的断裂参数

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摘要

The impact responses of the fracture parameters of interfacial crack tip, such as energy release rate (J integral), stress intensity factors (K), crack opening displacement (COD) and T stress, under the dynamic loading condition were studied using both numerical and experimental methods. A three point bending impact test was performed with bimaterial specimens composed of aluminum and polymethyl methacrylate (PMMA). Fracture parameters for the interfacial crack tip were calculated by a programmed post processor which used both the domain integral method and the interaction energy method. The interaction energy method showed good performance in the decomposition of stress intensity factor and the calculation of elastodynamic T stress with path independency. The phase angle of stress intensity factor varied with time. The relationship between energy release rate and phase angle at the onset of crack propagation showed unsymmetrical U shaped curve. COD showed same result with the result of stress intensity factors. The magnitude of the T stress was not enough to affect the plastic deformation. Specimens whose T stress were less than zero exhibited stable crack growth along the interface as expected in the analysis. (C) 2001 Published by Elsevier Science Ltd. [References: 20]
机译:研究了动载荷条件下界面裂纹尖端的断裂参数,如能量释放速率(J积分),应力强度因子(K),裂纹开口位移(COD)和T应力的冲击响应。实验方法。对由铝和聚甲基丙烯酸甲酯(PMMA)组成的双材料试样进行了三点弯曲冲击试验。界面裂纹尖端的断裂参数是通过程序化后处理器来计算的,该后处理器同时使用了区域积分法和相互作用能法。相互作用能法在应力强度因子分解和路径独立的弹性动力T应力计算中表现出良好的性能。应力强度因子的相角随时间变化。裂纹扩展开始时能量释放速率与相角的关系呈不对称的U形曲线。化学需氧量显示出与应力强度因子相同的结果。 T应力的大小不足以影响塑性变形。 T应力小于零的试样沿界面表现出稳定的裂纹扩展,如分析所预期的那样。 (C)2001年由Elsevier Science Ltd.出版[参考文献:20]

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