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Three-dimensional effects of microstructures on short fatigue crack growth in an Al-Li 8090 alloy

机译:微观组织对Al-Li 8090合金短时疲劳裂纹扩展的三维影响

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摘要

Al-Li 8090 alloy specimens were fatigued using a self-aligning four-point bend rig at R = 0.1 and room temperature, in air, under constant maximum stress control. The crystallographic characteristics of fatigue crack initiation and early growth were studied using EBSD. It was found that the growth behaviour of a short crack were controlled by the twist (α) and tilt (β) components of crack plane deflection across each of the first 20 grain boundaries along the crack path, and that the α angle at the first grain boundary encountered by a micro-crack was critical in determining whether the crack could become propagating or non-propagating. In addition to the orientations of the two neighbouring grains, the tilt of their boundary could also affect α across the boundary. A minimum α-map for a vertical micro-crack was calculated to evaluate the resistance to crack growth into a neighbouring grain with a random orientation. Such an α-map is of value in alloy design against fatigue damage by optimising texture components in the alloys.
机译:Al-Li 8090合金标本在恒定的最大应力控制下使用自对准四点弯曲钻机在R = 0.1和室温下在空气中疲劳。使用EBSD研究了疲劳裂纹萌生和早期生长的晶体学特征。发现短裂纹的生长行为受裂纹平面偏斜的扭曲(α)和倾斜(β)分量控制,沿着裂纹路径的前20个晶界中的每一个,并且α角位于微裂纹遇到的第一个晶界对于确定裂纹是扩展还是不扩展至关重要。除了两个相邻晶粒的方向之外,它们边界的倾斜也可能会影响跨边界的。为垂直微裂纹的最小α图进行了计算,以评估对裂纹生长成具有随机方向的相邻晶粒的抵抗力。通过优化合金中的织构成分,这样的α-贴图在抵抗疲劳损伤的合金设计中具有价值。

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