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Probabilistic multiscale models and measurements of self-heating under multiaxial high cycle fatigue

机译:多轴高周疲劳下的概率多尺度模型和自热测量

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摘要

Different approaches have been proposed to link high cycle fatigue properties to thermal measurements under cyclic loadings, usually referred to as "self-heating tests." This paper focuses on two models whose parameters are tuned by resorting to self-heating tests and then used to predict high cycle fatigue properties. The first model is based upon a yield surface approach to account for stress multiaxiality at a microscopic scale, whereas the second one relies on a probabilistic modelling of microplasticity at the scale of slip-planes. Both model identifications are cost effective, relying mainly on quickly obtained temperature data in self-heating tests. They both describe the influence of the stress heterogeneity, the volume effect and the hydrostatic stress on fatigue limits. The thermal effects and mean fatigue limit predictions are in good agreement with experimental results for in and out-of phase tension-torsion loadings. In the case of fatigue under non-proportional loading paths, the mean fatigue limit prediction error of the critical shear stress approach is three times less than with the yield surface approach.
机译:已经提出了不同的方法来将高循环疲劳性能与循环载荷下的热测量联系起来,通常被称为“自热测试”。本文着重介绍两个模型,这些模型的参数可通过自热测试进行调整,然后用于预测高周疲劳性能。第一个模型基于屈服面方法以在微观尺度上考虑应力多轴性,而第二个模型则依赖于滑移面尺度上的微塑性概率模型。两种模型识别都是经济有效的,主要依靠自热测试中快速获得的温度数据。他们都描述了应力异质性,体积效应和静水压力对疲劳极限的影响。热效应和平均疲劳极限的预测与同相和异相拉伸扭转载荷的实验结果高度吻合。在非比例载荷路径下的疲劳情况下,临界剪切应力方法的平均疲劳极限预测误差比屈服面方法小三倍。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2010年第4期|p.578-593|共16页
  • 作者单位

    LMT-Cachan (ENS Cachan/CNRS/Universite Paris 6/PRES UniverSud Paris) 61 avenue du President Wilson, F-94235 Cachan Cedex, France;

    LBMS EA 4325 (E.N.S.I.E.TA./Universite de Brest/E.N.I.B.) 2 rue Francois Verny, F-29806 Brest Cedex, France;

    rnLBMS EA 4325 (E.N.S.I.E.TA./Universite de Brest/E.N.I.B.) 2 rue Francois Verny, F-29806 Brest Cedex, France;

    ArcelorMittal Maizieres Research Voie Romaine BP 30320, F-57283 Maizieres-les-Metz, France;

    rnLMT-Cachan (ENS Cachan/CNRS/Universite Paris 6/PRES UniverSud Paris) 61 avenue du President Wilson, F-94235 Cachan Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    thermomechanical process; metallic materials; mechanical testing; probability and statistics; multiaxial fatigue;

    机译:热机械过程;金属材料;机械测试;概率和统计;多轴疲劳;
  • 入库时间 2022-08-18 03:00:18

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