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Effect of micro-shot peening on fatigue properties of precipitate strengthened Cu-Ni-Si alloy in air and in salt atmosphere

机译:微射下喷丸对沉淀强化沉淀疲劳性能的影响,盐气氛强化Cu-Ni-Si合金

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摘要

In this study, the precipitate strengthened Cu-Ni-Si alloy was micro-shot peened by ceramic balls with a diameter of 40 mu m. The fatigue tests using the peened specimens were conducted in air and in salt atmosphere respectively. The results show that a fine and hardening layer is formed on the surface of peened specimen and the compressive residual stress is introduced. There is no fatigue limit for specimens in both test conditions. The S-N curve of specimens in salt atmosphere shows a continuous decrease with the increasing number of loading cycles, while that in air shows a step-wise shape. Compared with the un-peened specimens, the fatigue strengths of specimens at 10(7) cycles are increased by 47% and 67% in air and in salt atmosphere respectively. The peened specimens in air condition failed from subsurface zone in high cycle fatigue region, while all the other specimens failed from surface. The micro-shot peening can improve the surface property and delay the crack initiation and propagation, so as to enhance the fatigue strength greatly.
机译:在这项研究中,沉淀强化Cu-Ni-Si合金通过陶瓷球的微粉,其直径为40μm。使用喷丸样品的疲劳试验分别在空气和盐气氛中进行。结果表明,在喷丸样本的表面上形成精细和硬化层,并引入压缩残余应力。试验条件下标本没有疲劳极限。盐气氛中标本的S-N曲线显示出随着载入循环的越来越多的载荷循环而连续降低,而空气中的速度显示出逐步的形状。与未加入的标本相比,10(7)个循环下标本的疲劳强度分别在空气和盐气氛中增加了47%和67%。空调的喷丸标本从高循环疲劳区域中的地下区域失败,而所有其他样品都没有表面。微射击喷丸可以改善表面性能并延迟裂纹启动和繁殖,从而大大提高疲劳强度。

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