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Effect of laser shock peening on residual stress and fatigue life of clad 2024 aluminium sheet containing scribe defects

机译:激光冲击强化对含有划线缺陷的2024铝板复合材料残余应力和疲劳寿命的影响

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摘要

Laser peening at a range of power densities has been applied to 2-mm-thick sheets of 2024 T351 aluminium. The induced residual stress field was measured using incremental hole drilling and synchrotron X-ray diffraction techniques. Fatigue samples were subjected to identical laser peening treatments followed by scribing at the peen location to introduce stress concentrations, after which they were fatigue tested. The residual stresses were found to be non-biaxial: orthogonal to the peen line they were tensile at the surface, moving into the desired compression with increased depth. Regions of peen spot overlap were associated with large compression strains; the centre of the peen spot remaining tensile. Fatigue lives showed moderate improvement over the life of unpeened samples for 50 μm deep scribes, and slight improvement for samples with 150 μm scribes. Use of the residual stress intensity Kresid approach to calculate fatigue life improvement arising from peening was unsuccessful at predicting the relative effects of the different peening treatments. Possible reasons for this are explored.
机译:已经在2mm厚的2024 T351铝板上施加了各种功率密度的激光喷丸处理。使用增量钻孔和同步加速器X射线衍射技术测量感应残余应力场。对疲劳样品进行相同的激光喷丸处理,然后在尖头位置划线以引入应力集中,然后对其进行疲劳测试。发现残余应力是非双轴的:与长矛线正交,它们在表面上是拉伸的,并随着深度的增加而进入所需的压缩状态。针状点重叠的区域与较大的压缩应变有关。喷点的中心保持拉伸状态。对于深度为50μm的划痕,疲劳寿命表现出比未喷丸样品的寿命有所改善,而具有150μm划痕的样品的疲劳寿命略有改善。使用残余应力强度Kresid方法来计算喷丸引起的疲劳寿命改善,无法预测不同喷丸处理的相对效果。探索了可能的原因。

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