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    缺陷深度对30CrMnSiA钢激光再制造件旋转弯曲疲劳性能的影响

    Effect of Defect Depth on Rotational Bending Fatigue Properties of Laser Remanufactured Samples of 30CrMnSiA Steel

    • 摘要: 采用手工激光堆焊技术对预置缺陷深度为0.15 mm和0.55 mm的30CrMnSiA高强度钢疲劳试样进行激光修复,然后对试样进行了旋转弯曲疲劳性能测试和疲劳断口分析。结果表明:在低应力下,缺陷深度为0.15 mm的试样疲劳性能接近于无缺陷试样的,但随着试样缺陷深度的增加,试样的疲劳性能显著降低;随着应力水平的增加,疲劳裂纹数量增多,更易发生断裂。

       

      Abstract: The fatigue samples of 30CrMnSiA high strength steel with 0. 15 mm and 0. 55 mm preset defect depth were repaired by manual laser surfacing technology. Then the rotational bending fatigue properties of the samples were tested and the fatigue fracture was analyzed. The results show that the fatigue properties of samples with defect depth of 0. 15 mm were closed to those samples without defect under low stress condition, however, with the increase the depth of defect, the fatigue properties decreased significantly. With the increase of stress level, there were more and more fatigue cracks, which made the fracture easier.

       

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