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A path-dependent cycle counting method for variable-amplitude multi-axial loading

机译:变幅多轴载荷的路径相关循环计数方法

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摘要

A path-dependent maximum range (PDMR) cycle counting method is presented in this paper for performing fatigue evaluation of engineering components under variable-amplitude and arbitrary multi-axial conditions. For a given multi-axial time history, PDMR method can be used to reliably extract the following parameters that are important for modeling multi-axial fatigue damage:rn(a) Path-independent reference effective stress or strain ranges which are defined as distances in a mapped stress or strain space.rn(b) Path-dependent effective stress or strain ranges which are defined as path lengths in completing the corresponding reference stress or strain ranges in an incremental sense in the same stress or strain space.rn(c) Histogram of both path-independent reference effective stress or strain ranges and their corresponding path lengths that can be consistently used to measure out-of-phase induced fatigue damage in arbitrary multi-axial loading.rnThe effectiveness of PDMR method has been validated by its ability in correlating multi-axial fatigue data available in the literature. Its fracture mechanics basis is also illustrated. Under uniaxial loading conditions, PDMR method recovers exactly the same rainflow counting results.
机译:本文提出了一种基于路径的最大范围(PDMR)循环计数方法,用于在可变振幅和任意多轴条件下对工程部件进行疲劳评估。对于给定的多轴时间历程,PDMR方法可用于可靠地提取以下参数,这些参数对于建模多轴疲劳损伤很重要:rn(a)与路径无关的参考有效应力或应变范围,定义为距离rn(b)依赖于路径的有效应力或应变范围,定义为在相同的应力或应变空间中以增量方式完成相应的参考应力或应变范围时的路径长度.rn(c)可以独立地测量任意多轴载荷下异相引起的疲劳损伤的与路径无关的参考有效应力或应变范围及其对应的路径长度的直方图。PDMR方法的有效性已得到验证关联文献中可获得的多轴疲劳数据。还说明了其断裂力学基础。在单轴载荷条件下,PDMR方法可恢复完全相同的雨水流量计数结果。

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