An empirical approach to a comprehensive damage-equivalent stress function for fatigue

IF 1.2 Q3 ENGINEERING, MECHANICAL FME Transactions Pub Date : 2022-01-01 DOI:10.5937/fme2203535w
M. Welch
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Abstract

This paper develops an empirical damage-equivalent stress function for fatigue. Classical analysis methods are used to 'fit' an equation to a number of S-N curves for various grades of carbon steel. The resulting equivalent-damage stress function is applicable to steels subjected to a wide range of heat treatments, from normalised up to hardened and tempered to 1900MPa. It is also applicable to a wide range of stress concentrations, unnotched up to Kt = 5.0 and typical of screw threads. A range of stress ratios and mean stresses are also considered. The function overcomes some of the limitations of existing methods of 'correcting' for mean stress. Existing methods are limited in that, while they may give good results over a range of conditions, there are some circumstances where the results are highly inaccurate. The damage-equivalent stress function is suitable for use in automated calculation procedures such as spreadsheets, MathCAD ©, and SMathStudio ©.
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疲劳综合损伤-等效应力函数的经验方法
本文建立了疲劳的经验损伤-等效应力函数。经典的分析方法用于将一个方程“拟合”到各种等级的碳钢的许多S-N曲线上。由此产生的等效损伤应力函数适用于从正火到调质到1900MPa的各种热处理的钢。它也适用于大范围的应力集中,无缺口至Kt = 5.0和典型的螺纹。还考虑了应力比和平均应力的范围。该函数克服了现有“校正”平均应力方法的一些局限性。现有方法的局限性在于,虽然它们可能在一系列条件下给出良好的结果,但在某些情况下,结果非常不准确。损伤等效应力函数适用于电子表格、MathCAD©和SMathStudio©等自动计算程序。
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来源期刊
FME Transactions
FME Transactions ENGINEERING, MECHANICAL-
CiteScore
3.60
自引率
31.20%
发文量
24
审稿时长
12 weeks
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