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首页> 外文期刊>International Journal of Fatigue >Fatigue properties and fatigue strength evaluation of railway axle steel: Effect of micro-shot peening and artificial defect
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Fatigue properties and fatigue strength evaluation of railway axle steel: Effect of micro-shot peening and artificial defect

机译:铁路车轴钢的疲劳性能和疲劳强度评估:微喷丸处理和人工缺陷的影响

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摘要

In this study, the effects of micro-shot peening and artificial defect on the fatigue properties of EA4T railway axle steel were evaluated. Un-peened (UP) and micro-shot peened (MSP) EA4T axle steel specimens were drilled to introduce artificial defects on the surface. Then the fatigue tests were conducted on a rotary bending fatigue machine (R = -1). The test results showed that the fatigue limit of the UP specimens was improved by 25% after MSP; when the equivalent defect sizes were less than 60 and 70 μm respectively, they had no negative effect on the fatigue strength of the UP and MSP drilled specimens, otherwise the fatigue strength of both specimens decreased with the increase of the defect size. The fracture surfaces were analyzed by scanning electron microscopy (SEM) observations, which indicated that crack initiation sites for the as-prepared UP and MSP specimens were on the surface, while for the drilled specimens, they were on the vicinity of hole defects. The effect of artificial defect size on the fatigue strength of the UP and MSP specimens and the critical defect size were analyzed with fracture mechanics approach, the results of which showed that the relationship between defect size and fatigue strength of the UP and MSP specimens can be well evaluated by the modified Haddad model, and the critical defect size of the UP specimens was 65 μm while that of the MSP specimens was increased to 76 μm due to the introduction of compressive residual stress.
机译:在这项研究中,评估了微喷丸处理和人工缺陷对EA4T铁路车轴钢疲劳性能的影响。对未喷丸(UP)和微喷丸(MSP)的EA4T车轴钢样品进行了钻孔,以在表面上引入人工缺陷。然后在旋转弯曲疲劳机(R = -1)上进行疲劳测试。测试结果表明,MSP后UP试样的疲劳极限提高了25%。当等效缺陷尺寸分别小于60和70μm时,它们对UP和MSP钻孔样品的疲劳强度没有负面影响,否则,两个样品的疲劳强度会随着缺陷尺寸的增加而降低。通过扫描电子显微镜(SEM)观察来分析断裂表面,这表明所制备的UP和MSP试样的裂纹萌生点在表面上,而钻孔的试样则在孔缺陷附近。用断裂力学方法分析了人工缺陷尺寸对UP和MSP试样疲劳强度和临界缺陷尺寸的影响,结果表明,缺陷尺寸与UP和MSP试样疲劳强度之间的关系可以被确定。修改后的Haddad模型对其进行了很好的评估,由于引入了压缩残余应力,UP试样的临界缺陷尺寸为65μm,而MSP试样的临界缺陷尺寸增加到76μm。

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