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首页> 外文期刊>International Journal of Fatigue >New data analysis of probabilistic stress-life (P-S-N) curve and its application for structural materials
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New data analysis of probabilistic stress-life (P-S-N) curve and its application for structural materials

机译:概率应力-寿命(P-S-N)曲线的新数据分析及其在结构材料中的应用

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摘要

Conventional S-N fatigue curves, the so-called Wohler curves are generally considered as the experimental fatigue life plots for several stress amplitudes. The curves are usually expressed as median ranks and each life distribution is supposed to follow the log-normal distributions. Therefore, it can be said that not enough work on the theoretical relationship between the life distributions and the S-N curve exists till today. This paper unveils a new data analysis method for a probabilistic stress-life (P-S-N) curve. It was used to define the physical meaning of the statistical parameters in the Weibull and the lognormal life distribution function as well as the P-S-N curve. At first, it was applied to conventional S-N test results for bearing steel (no fatigue limit) and rail steel (showing fatigue limit) in the literature. The test data for the material showing no fatigue limit on a log-log (not a semi-log) paper results in a straight line plot, but for the materials showing fatigue limit the data plot is an asymptote to the fatigue limit for any of the probabilities of failure. Following this, the alternating torsion life test data for two P-S-N test series of through hardened bearing steels were examined. The three-parameter Weibull as well as the log-normal distribution function fit fairy well to the life distribution data for the two test materials. No fatigue limit was observed on both materials for the projected data onto the P-S-N curves; and the P-S-N life formulas were successively conducted.
机译:传统的S-N疲劳曲线,即所谓的Wohler曲线,通常被视为几种应力振幅下的实验疲劳寿命图。曲线通常表示为中间等级,每个寿命分布都应遵循对数正态分布。因此,可以说,到目前为止,关于寿命分布与S-N曲线之间的理论关系的研究还不够。本文揭示了一种新的概率应力寿命(P-S-N)曲线数据分析方法。它用于定义Weibull中统计参数的物理含义,对数正态寿命分布函数以及P-S-N曲线。首先,在文献中将其应用于轴承钢(无疲劳极限)和钢轨(显示疲劳极限)的常规S-N测试结果。在对数对数(非半对数)纸上显示无疲劳极限的材料的测试数据会形成一条直线图,但是对于显示疲劳极限的材料,该数据图是任意一个疲劳极限的渐近线失败的可能性。此后,检查了两个P-S-N测试系列的淬硬轴承钢的交替扭转寿命测试数据。三参数Weibull以及对数正态分布函数很好地拟合了两种测试材料的寿命分布数据。对于投影到P-S-N曲线上的数据,两种材料均未观察到疲劳极限。并相继推导了P-S-N寿命公式。

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