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Fully Reversed Uniaxial Tension-Compression High Cycle Fatigue Behaviour of Shot-peened Steels

机译:喷丸钢的全反向单轴拉伸压缩高周疲劳行为

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The effect of shot-peening on the uniaxial fatigue behaviour of four engineering steels, heat treated to a similar final hardness was investigated. Forged 0.39%C and 0.72%C steels, a quenched and tempered 0.51%C steel and a 0.50%C powder forged (PF) steel were fatigue tested under fully reversed (R=-1) push-pull loading conditions. Following long life (10~7) cycling, shot-peening had little effect on the fatigue limit of the 0.39%C and 0.72%C steels whereas the fatigue limit of the PF steel increased 10.4%. Conversely, the fatigue limit of the quenched and tempered steel decreased 12.0% after shot-peening. The results showed that the beneficial effects of shot-peening, such as compressive residual stresses and work hardening, balanced the effects of surface roughness since crack initiation tended to occur below the surface. Microhardness profiles showed that the greatest amount of cyclic softening in the shot-peened regions occurred in the hot rolled steels. Softening was accompanied by a decrease in the depth of surface hardness.
机译:研究了喷丸处理对四种工程钢的单轴疲劳行为的影响,并对其进行了热处理以达到类似的最终硬度。在完全反向(R = -1)推拉载荷条件下对0.39%C和0.72%C的锻造钢,0.51%C的调质钢和0.50%C的粉末锻造(PF)钢进行了疲劳测试。经过长寿命(10〜7)循环后,喷丸处理对0.39%C和0.72%C钢的疲劳极限影响很小,而PF钢的疲劳极限提高了10.4%。相反,喷丸后,调质钢的疲劳极限降低了12.0%。结果表明,喷丸强化的有益效果(例如压缩残余应力和加工硬化)平衡了表面粗糙度的影响,因为裂纹萌生倾向于在表面以下发生。显微硬度分布图表明,喷丸处理区域中最大程度的循环软化发生在热轧钢中。软化伴随着表面硬度深度的降低。

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