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The Modified Manson-Coffin Curve Method to estimate fatigue lifetime under complex constant and variable amplitude multiaxial fatigue loading

机译:改进的manson-Coffin曲线法估算复杂恒定和变幅多轴疲劳载荷下的疲劳寿命

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摘要

This paper investigates the accuracy of the so-called Modified Manson–Coffin Curve Method (MMCCM) in estimating fatigue lifetime of metallic materials subjected to complex constant and variable amplitude multiaxial load histories. The MMCCM postulates that fatigue damage is maximised on that material plane experiencing the maximum shear strain amplitude. In the present investigation, the orientation of the critical plane was determined through that direction along which the variance of the resolved shear strain reaches it maximum value. Under variable amplitude complex load histories, this direction was also used to count the resolved shear strain cycles via the classic Rain-Flow method. Further, the degree of multiaxiality and non-proportionality of the time-variable stress states at the assumed critical locations was directly quantified through a suitable stress ratio which accounts for (i) the mean value and the variance of the stress perpendicular to the critical plane as well as for (ii) the variance of the shear stress resolved along the direction experiencing the maximum variance of the resolved shear strain. The accuracy and reliability of the proposed approach was checked against approximately 650 experimental data taken from the literature and generated by testing un-notched metallic materials under complex constant and variable amplitude multiaxial load histories. The sound agreement between estimates and experimental results which was obtained strongly supports the idea that the proposed design technique is a powerful engineering tool allowing metallic materials to be designed against constant and variable amplitude multiaxial fatigue by always reaching a remarkable level of accuracy. This approach offers a complete solution to the strain based multiaxial fatigue problem.
机译:本文研究了所谓的修正曼森-棺材曲线法(MMCCM)在估计金属材料在复杂的恒定和可变振幅多轴载荷历史下的疲劳寿命时的准确性。 MMCCM假定,在经历最大剪切应变幅度的材料平面上,疲劳损伤最大。在本研究中,临界平面的方向是通过该方向确定的,解析剪切应变的方差沿着该方向达到最大值。在变幅复杂载荷历史下,该方向还通过经典的雨流法用于计算解析的剪切应变循环。此外,通过适当的应力比直接对假定临界位置处随时间变化的应力状态的多轴度和非比例度进行了量化,该应力比说明了(i)垂直于临界面的应力的平均值和方差以及(ii)沿已解决的剪切应变最大方差的方向解决的切应力的方差。根据从文献中获取的大约650个实验数据检查了所提出方法的准确性和可靠性,这些实验数据是通过在复杂的恒定和可变振幅多轴载荷历史下测试无缺口的金属材料而生成的。获得的估计值与实验结果之间的合理一致性有力地支持了以下观点:所提出的设计技术是一种功能强大的工程工具,通过始终达到非凡的精度水平,可以设计出针对恒定和可变振幅多轴疲劳的金属材料。这种方法为基于应变的多轴疲劳问题提供了完整的解决方案。

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    Wang Y.; Susmel L.;

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  • 年度 2016
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