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Effect of removing surface hardened layer on the fatigue strength of bearing steel SUJ2 ground specimen in the long life field

机译:长寿命场中去除表面硬化层对轴承钢SUJ2地面试样疲劳强度的影响

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In order to study the fatigue damage of a high carbon chromium bearing steel SUJ2, rotating bending fatigue tests of smooth specimens (K{sub}t = 1.06, stress concentration factor) were carried out. The specimens were finished by the grinding after the heat-treatment. The fatigue strength of EP-0 (ground) specimen exhibited large scatter and it tended to drop again in the long-life field in excess of 10{sup}7 cycles. In such a case, fish-eye was left on the fracture surface. In order to study the effect of surface hardened layer due to the grinding, two types of EP (electropolished) specimens, EP-15 specimen whose surface hardened layer and grinding flows were almost removed and EP-3 specimen which has the decreased surface roughness and surface hardened layer, were fatigued. The fatigue strength of EP-15 specimen was dramatically decreased when compared to the EP-0 specimen, and no drop in fatigue strength in the long-life field were observed. This indicates that the drop in fatigue strength in the long-life field results from the surface strengthened layer due to the grinding. On the other hand, SN data of EP-3 specimen exhibit large scatter, but the range of scatter is smaller than that of EP-0 specimen. This narrowed scatter may be related to the decreased surface roughness of EP-3 specimen. Considering the experimental results of EP-15 and -3 specimens, the physical basis of peculiar S-N characteristics of EP-0 specimen was investigated.
机译:为了研究高碳铬轴承钢SUJ2的疲劳损伤,对光滑试样(K {sub} t = 1.06,应力集中系数)进行了旋转弯曲疲劳试验。热处理后,通过研磨对试样进行精加工。 EP-0(磨削)试样的疲劳强度表现出较大的分散性,并且在超过10 {sup} 7个循环的长寿命领域中倾向于再次下降。在这种情况下,鱼眼留在骨折表面。为了研究由于研磨而产生的表面硬化层的影响,有两种EP(电抛光)试样:表面硬化层和研磨流动几乎被去除的EP-15试样和表面粗糙度降低的EP-3试样。表面硬化层,已疲劳。与EP-0试样相比,EP-15试样的疲劳强度显着降低,并且在长寿命领域中未观察到疲劳强度下降。这表明,长寿命场中疲劳强度的下降是由于磨削引起的表面强化层的结果。另一方面,EP-3标本的SN数据显示较大的散布,但散布的范围小于EP-0标本。散射变窄可能与EP-3样品表面粗糙度降低有关。考虑到EP-15和-3标本的实验结果,研究了EP-0标本特有的S-N特性的物理基础。

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