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作 者:刘聪[1] 袁定旺 杨修波[1] 刘吉梓[1] 秦芳[1] 刘春辉[1] 陈江华[1]
机构地区:[1]湖南大学高分辨电镜中心,湖南大学材料科学与工程学院,湖南长沙410082
出 处:《电子显微学报》2015年第3期181-188,共8页Journal of Chinese Electron Microscopy Society
基 金:国家自然科学基金资助项目(No.51371081,No.51301064)
摘 要:本文利用扫描电子显微镜电子背散射衍射(EBSD)技术研究了一种Al-Zn-Mg合金焊接区微观组织结构不均匀性对裂纹萌生和扩展的影响。实验显示裂纹在粗晶区和细晶区的界面处萌生,沿着晶界扩展。小角度晶界对沿晶裂纹的扩展有阻碍作用,产生"闭合效应"。穿晶裂纹在遇到大角度晶界时,扩展路径会发生偏转。在部分再结晶区域,裂纹更倾向避开变形晶粒,沿着再结晶晶粒之间的晶界扩展。如果在外力作用下,迫使裂纹穿过形变晶粒,将导致解理断裂的断口形貌。In the present work, electron back scattering diffraction was employed to investigate the effects of microstructural heterogeneity on the initiation and propagation of a crack in typical welding zones of aluminum alloy parts. The results show that when the welding zones consist of heterogeneous microstructure regions of large-size grains and small-size grains, a crack trends to initiate at and then propagate along the borders between the region with large grains and that with small grains. It is also shown that low-angle grain boundaries may impede the propagation of intergranular crack tips by causing crack closure whereas large-angle grain boundaries can change the propagation path of a transgranular crack. For partially recrystallized microstructure regions where the microstructure of recrystallized equiaxial grains and that of deformed elongated grains coexist, a crack usually propagates along the borders of these heterogeneous microstructure regions.
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