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Evolution of voids during ductile crack propagation in an aluminium alloy sheet toughness test studied by synchrotron radiation computed tomography

机译:通过同步辐射计算机断层扫描研究铝合金板材韧性试验中延性裂纹扩展过程中空洞的演变

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摘要

The anisotropy of fracture toughness in AA2139 (Al-Cu-Mg) alloy sheet has been investigated via synchrotron radiation computed tomography of arrested cracks in Kahn tear test pieces for different loading cases. The three dimensional distribution and morphology of pores and defects in the as-received state are seen to be anisotropic, with chains of voids and void elongation in the L (longitudinal) direction. For toughness testing in L-T orientation (T is transverse), voids ahead of the crack grow and link in the L direction. In T-L tests, voids ahead of the crack tip also grow in the loading direction, although a high degree of alignment is retained in the L direction. The present work provides quantitative microstructural data that can be used as input for and validation of recent idealised model formulations, and it is shown that the measured void dimensions and evolution are consistent with measured toughness anisotropy.
机译:通过同步辐射辐射计算机断层扫描,研究了不同载荷情况下卡恩撕裂试样中的滞留裂纹,研究了AA2139(Al-Cu-Mg)合金薄板的断裂韧性各向异性。处于接收状态的孔和缺陷的三维分布和形态被认为是各向异性的,在L(纵向)方向上具有空隙链和空隙伸长率。对于在L-T方向(T为横向)的韧性测试,裂纹之前的空隙会在L方向上生长并连接。在T-L测试中,尽管在L方向上保持了较高的对齐度,但裂纹尖端前方的空洞也在加载方向上增长。目前的工作提供了定量的微观结构数据,可以用作最新理想模型模型的输入和验证,并且表明测得的空隙尺寸和演变与测得的韧性各向异性一致。

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