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Experimental and FEM numerical assessment of multiaxial fatigue failure criteria for a rolling Stock's seats structure

机译:用于轧制座椅结构的多轴疲劳故障标准的实验和有限元数值评价

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摘要

This paper deals with the experimental and numerical investigations of the structural behaviour of a rolling stock's seats system under static and fatigue loading conditions, aimed to assess the reliability of some multiaxial fatigue failure criteria implemented in the FE model. According to the NF F31-119 standard, a specific full-scale multiaxial testing machine has been used for the fatigue test. During the test, a visual inspection approach with a detection interval of 3.10(5) cycles has been adopted. After 1.2.10(6) cycles the test has been stopped and a Liquid Penetrant Inspection (LPI) has been carried out in order to detect accurately cracks nucleation and propagation. Moreover, numerical analyses, based on the Finite Elements (FE) Method, have been performed on the EN-AW 6060 T5 aluminium alloy structure of a rolling stock's seats to predict the most affected zones where the cracks nucleation may occur under multiaxial fatigue loads. Since the in-service applied loads belong to Multiaxial High-Cycle Fatigue (MHCF) load class, Sines, Crossland and Dang Van criteria have been used to post-process the predicted results achieved by the FE analyses. For validation purpose, numerical and experimental results have been compared. According to the numerical-experimental results comparison, Dang Van criterion provided the best level of accuracy.
机译:本文涉及滚动股票系统在静态和疲劳负载条件下的结构行为的实验性和数值研究,旨在评估Fe模型中实施的一些多轴疲劳失效标准的可靠性。根据NF F31-119标准,特定的全级多轴试验机已用于疲劳试验。在测试期间,已经采用了具有3.10(5)个循环的检测间隔的视觉检查方法。在1.2.10(6)循环后,已经停止测试,已经进行了液体渗透性检查(LPI),以便精确地裂缝成核和繁殖。此外,基于有限元(Fe)方法的数值分析已经在轧制座椅的en-aw 6060 t5铝合金结构上进行,以预测在多轴疲劳载荷下可能发生裂缝成核的最大影响的区域。由于施用的施加负载属于多轴高循环疲劳(MHCF)负载类,因此已用于后处理Fe分析所实现的预测结果。为了验证目的,已经比较了数值和实验结果。根据数值实验结果比较,Dang VAN标准提供了最佳的准确度。

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