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首页> 外文期刊>Engineering Fracture Mechanics >Fatigue crack propagation and threshold for shallow micro-cracks under out-of-phase multiaxial loading in a gear steel
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Fatigue crack propagation and threshold for shallow micro-cracks under out-of-phase multiaxial loading in a gear steel

机译:齿轮钢在异相多轴载荷下疲劳裂纹扩展和浅微裂纹阈值

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摘要

Most of the recent studies on shear propagation have been devoted to the description of growth rate and growth mechanisms under shear, even though the state of stress caused by RCF is a more detrimental condition. The aim of the paper is to obtain the growth rate and threshold condition for small cracks under RCF conditions in a gear steel, whose properties under torsion had been previously studied.Two series of out-of-phase fatigue tests were carried out on specimens containing small cracks (EDM micro-notches pre-cracked under Mode I). Results show that compared with simple torsion shear crack propagation under RCF conditions is enhanced and that the threshold condition (characterized by a discontinuous crack advance) is lower than it is under simple torsion. Moreover, the experimental data confirmed the existence of a ‘short crack effect’ under RCF conditions. The crack growth mechanism is characterized by an intense rubbing and plastic deformation of the crack lips which, unlike simple shear, enhances crack propagation.
机译:尽管由RCF引起的应力状态是一个更有害的条件,但有关剪切传播的最新研究大部分都致力于描述剪切下的生长速率和生长机理。本文的目的是获得齿轮钢在RCF条件下的小裂纹的扩展速率和阈值条件,该齿轮的扭转特性已在之前进行了研究。对含碳的试件进行了两个系列的异相疲劳试验小裂缝(在模式I下,EDM微缺口已预先破裂)。结果表明,与简单扭转相比,RCF条件下的剪切裂纹扩展得到了增强,并且阈值条件(以不连续的裂纹扩展为特征)比简单扭转下的阈值条件要低。此外,实验数据证实了在RCF条件下存在“短裂纹效应”。裂纹扩展机制的特征在于裂纹唇部的强烈摩擦和塑性变形,与简单的剪切不同,裂纹增强了裂纹的扩展。

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