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首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >The Effect of an Overload on the Rate of Fatigue Crack Propagation under Plane Stress Conditions
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The Effect of an Overload on the Rate of Fatigue Crack Propagation under Plane Stress Conditions

机译:平面应力条件下过载对疲劳裂纹扩展速率的影响

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It has been shown that the retardation in the rate of fatigue crack growth following an overload is largely the result of surface-related, plane-stress plastic deformation. In the present article, in order to isolate the plane-stress behavior, the effect of an overload on the subsequent rate of fatigue crack growth of 0.3-mm-thick specimens of 9Cr-lMo steel has been investigated and compared to results obtained using 6.35-mm-thick specimens. It was found that for the 0.3-mm thickness, as with thicker specimens, two opening load levels were associated with the overload process. The upper opening load is associated with plane-stress deformation in the overload plastic zone, and this opening process is more clearly observed with thin as compared to thicker specimens. Based upon the determined level of the upper opening load, a semiempirical analysis is developed for calculating the number of delay cycles due to an overload as a function of thickness.
机译:业已表明,过载后疲劳裂纹扩展速率的降低很大程度上是表面相关的平面应力塑性变形的结果。在本文中,为了隔离平面应力行为,研究了过载对随后的0.3Cr厚度的9Cr-1Mo钢试样的疲劳裂纹扩展速率的影响,并将其与使用6.35获得的结果进行了比较。 -毫米厚的标本。发现对于0.3mm的厚度,与较厚的试样一样,两个打开载荷水平与过载过程有关。上部打开载荷与过载塑料区中的平面应力变形有关,并且与较厚的试样相比,在较薄的情况下更清楚地观察到这种断开过程。基于确定的上部开启载荷的水平,进行了半经验分析,以计算由于过载引起的延迟周期数与厚度的函数关系。

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