A two-step multiaxial racetrack filter algorithm for non-proportional load histories

M. Meggiolaro, J. Castro, Hao Wu
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引用次数: 2

Abstract

The recently proposed multiaxial racetrack filter (MRF) is able to deal with general non-proportional multiaxial load histories. While only requiring a single user-defined scalar filter amplitude, the MRF is able to synchronously eliminate non-damaging events from any noisy multiaxial load history without changing the overall shape of its original path, a necessary condition to avoid introducing errors in fatigue damage assessments. The MRF procedures are optimized here by the introduction of a pre-processing “partitioning” step on the load history data, which selects candidates for the reversal points in a robust partitioning process, highly increasing the filter efficiency and decreasing its computational time. The improved MRF is evaluated through the fatigue analyses of over-sampled tension-torsion data measured in 316L stainless steel tubular specimens under non-proportional load paths.
非比例负荷历史的两步多轴赛道滤波算法
最近提出的多轴赛道滤波器(MRF)能够处理一般的非比例多轴负载历史。虽然只需要一个用户定义的标量滤波器振幅,但MRF能够在不改变其原始路径的整体形状的情况下,同步消除任何有噪声的多轴载荷历史中的非破坏性事件,这是避免在疲劳损伤评估中引入错误的必要条件。本文通过在负载历史数据上引入预处理“分区”步骤来优化MRF过程,该步骤在鲁棒分区过程中选择反转点的候选点,从而大大提高了过滤效率并减少了计算时间。通过对非比例加载路径下316L不锈钢管试样的过采样拉扭数据进行疲劳分析,对改进的MRF进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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