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Experimental Study of Mixed Mode Fatigue Crack Growth of Automotive Structural Adhesive BM4601

机译:混合模式疲劳裂纹裂纹生长的实验研究BM4601

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Fatigue crack growth tests have been carried out to investigate the mixed mode fatigue crack propagation behavior of an automotive structural adhesive BM4601. The tests were conducted on a compound CMM (Compact Mixed Mode) specimen under load control with 0.1 R ratio and 3Hz frequency. A long distance moving microscope was employed during testing to monitor and record the real time length of the fatigue crack in the adhesive layer. The strain energy release rates of the crack under different loading angles, crack lengths and loads were calculated by using finite element method. The pure mode I and mode II tests show that an equal value of mode I strain energy release rate results in over ten times higher FCGR (Fatigue Crack Growth Rate) than the mode II stain energy release rate does. The mixed mode tests results show that under a certain loading angle, the mixed mode FCGR is changed by changing the load, which is contrary to the find in pure mode I and mode II tests.
机译:已经进行了疲劳裂纹生长试验,以研究汽车结构粘合剂BM4601的混合模式疲劳裂纹传播行为。在用0.1 r比和3Hz频率的负载控制下,在化合物CMM(紧凑的混合模式)样本上进行测试。在测试期间使用长距离移动显微镜,以监测粘合剂层中疲劳裂纹的实时长度。通过使用有限元法计算不同负载角度,裂缝长度和负载下的裂缝的应变能量释放速率。纯模式I和模式II测试表明,相等的模式I应变能量释放率会导致比模式II污染能量释放速率更高的FCGR(疲劳裂纹生长速率)超过十倍。混合模式测试结果表明,在某个装载角度下,通过改变负载来改变混合模式FCGR,这与纯模式I和模式II测试中的查找相反。

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