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A selective review of high-cycle fatigue criteria with applications in out-of-phase bending and torsion

机译:选择性审查高周疲劳准则及其在异相弯曲和扭转中的应用

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The aim of this contribution is to provide a concise assessment of some multiaxial high-cycle fatigue criteria and to check their predictive capabilities against synchronous sinusoidal out-of-phase bending and torision experimental results.This bending-torsion stress system does not closely represent real load conditions undergone by a machine part.However,it is complex enough to differentiate the various fatigue criteria and to permit an initial classification of the approaches examined,according to the accuracy of their predictions.A fatigue criterion recently formulated with the help of the mesoscopic approach,by the first of the authors,is also included in this comparative study.According to this criterion,the phase difference in out-of-phase bending and torsion does not affect the fatigue strength corresponding to a very high (theoretically infinite) fatigue life.It is pointed out that this theoreticla finding is valid for the category of hard metals for which the ratio of the fully reversed torsion fatigue limit over the fully reversed bending fatigue limit,lies in the interval from 0.6 to 0.8 approximately.Experimental resultscollected from the relevant literature,concerning precisely hard metal specimens submitted to out-of-phase bending and torsion,fully support this theoretical finding.
机译:这项贡献的目的是提供一些多轴高周疲劳准则的简明评估,并检验其对同步正弦异相弯曲和扭转试验结果的预测能力。该弯曲扭转应力系统并不完全代表真实的机械零件承受的载荷条件。但是,它很复杂,足以区分各种疲劳标准,并根据其预测的准确性,可以对所研究的方法进行初步分类。最近在介观镜的帮助下制定了疲劳标准根据该标准,异相弯曲和扭转中的相位差不会影响与非常高(理论上无限大)疲劳相对应的疲劳强度。需要指出的是,这一理论发现对硬质合金的比例是有效的。完全反向弯曲疲劳极限的完全反向扭转疲劳极限大约在0.6到0.8之间。从相关文献中收集的实验结果,关于精确地经受异相弯曲和扭转的硬质金属试样,完全支持了这一理论发现。

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