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Experimental evaluation of fatigue crack initiation from corroded hemispherical notches in aerospace structural materials

机译:航空航天结构材料中腐蚀的半球形缺口引发疲劳裂纹的实验评估

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A test program was developed and executed to evaluate the influence of corroded hemispherical notches on the fatigue crack initiation process in aluminium 7075-T7351, 4340 steel and D6AC steel.Surface enhancements such as shot peening and laser shock peening were also incorporated as part of the test effort with the intent of assessing any improvements in fatigue performance.The aluminium specimens exhibited a relative insensitivity to the surface enhancements for crack initiation in pits ranging from 0.3 to 2.0 mm, and localized yielding was only a factor for smaller pits operated at an elevated load ratio.Residual stresses created by the surface enhancements as well as localized yielding improved the crack initiation behavior from the base of the pits for both the 4340 and D6AC steel specimens.This behaviour was evident at high and low load ratios.In particular, laser shock peening induced residual stresses produced a significant increase in the crack initiation stress even when localized yielding was not a factor.
机译:开发并执行了一个测试程序来评估腐蚀的半球形缺口对铝合金7075-T7351、4340钢和D6AC钢的疲劳裂纹萌生过程的影响。测试工作旨在评估疲劳性能是否有所改善。铝试样对0.3至2.0 mm范围内的坑中裂纹萌生的表面增强表现出相对不敏感,局部屈服只是在高温下工作的较小坑的一个因素表面增强和局部屈服所产生的残余应力改善了4340和D6AC钢试样从基坑底部产生的裂纹萌生行为,这种行为在高和低负载率下都很明显,特别是激光冲击喷丸引起的残余应力即使在局部情况下也会使裂纹萌生应力显着增加合格产量不是一个因素。

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