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Issues on the mean stress effect in fretting fatigue of a 7050-T7451 Al alloy posed by new experimental data

机译:新实验数据对7050-T7451铝合金微动疲劳平均应力影响的问题

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摘要

The aims of this work are: (i) to produce new experimental data for fretting fatigue considering the presence of a mean bulk stress and (ii) to assess two design methodologies against failure by fretting fatigue. Tests on a cylinder-flat contact configuration were conducted using a fretting apparatus mounted on a servo-hydraulic machine. The material used for both the pads and fatigue specimen was an aeronautical 7050-T7451 Al alloy. The experimental program was designed with all relevant parameters, apart from the mean bulk load (always applied before the contact loads), kept constant. The mean bulk stress varied from compressive to tensile values while maintaining a high peak pressure in order to encourage crack initiation. Two methodologies against fretting fatigue are proposed and confronted against the experimental data. The non-local stress-based methodology considers the evaluation of a critical plane fatigue criterion at the center of a process zone located beneath the contacting surfaces. The results showed that it correctly predicts crack initiation, but was not capable to provide successful prediction of the integrity of the specimens. Alternatively, we considered a crack arrest criterion which has the potential to provide a more complete description about the integrity of the specimens.
机译:这项工作的目的是:(i)考虑平均体应力的存在,为微动疲劳产生新的实验数据,以及(ii)评估两种针对微动疲劳失效的设计方法。使用安装在伺服液压机上的微动装置,对气缸-扁平接触构型进行了测试。用于护垫和疲劳试样的材料均为航空7050-T7451铝合金。设计了具有所有相关参数的实验程序,除了平均总载荷(始终在接触载荷之前施加)之外,保持恒定。平均总体应力从压缩值到拉伸值不等,同时保持较高的峰值压力,以鼓励裂纹萌生。提出了两种抗微动疲劳的方法,并针对实验数据进行了研究。基于非局部应力的方法考虑了位于接触表面下方的工艺区域中心的临界平面疲劳准则的评估。结果表明,它可以正确预测裂纹萌生,但不能成功预测样品的完整性。另外,我们考虑了裂纹止裂准则,该准则有可能提供关于试样完整性的更完整描述。

著录项

  • 来源
    《International Journal of Fatigue》 |2009年第12期|2041-2048|共8页
  • 作者单位

    Escola de Engenharia de Sao Carlos USP, EESC/SMM, Sao Carlos - SP - Brazil, CEP: 13560-970, Brazil;

    Universidade de Brasilia - Departamento de Engenharia Mecanica, Brasilia-DF-Brazil CEP: 70910-900, Brazil;

    Escola de Engenharia de Sao Carlos USP, EESC/SMM, Sao Carlos - SP - Brazil, CEP: 13560-970, Brazil;

    Universidade de Brasilia - Departamento de Engenharia Mecanica, Brasilia-DF-Brazil CEP: 70910-900, Brazil;

  • 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

    fretting fatigue; fretting device; mean stress effect; aluminum alloy;

    机译:微动疲劳;微动装置平均压力效应铝合金;

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