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Fatigue crack growth in nickel-based superalloys at elevated temperatures

机译:高温下镍基高温合金的疲劳裂纹扩展

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摘要

In the present work, fatigue crack growth in two nickel-base mono-materials and one bi-material has been investigated at 450 and 550 ℃. The electric potential drop technique was found to better estimate the crack length during cycling as compared to the compliance method. This finding is supported by microscopic observations of the fracture surface and also by the numerical simulation using finite element code Castem2000. The crack was found to grow faster in the coarse grained material than in the fine grained one. The fracture surface observation showed that the performance of the bi-material is linked to the mono-material content at the interface. In addition, the content of each mono-material at the interface was found to be very stochastic. This heterogeneity, due to the assembly process, strongly affects the behaviour of the biomaterial. Finite element computation showed a good agreement between numerical and experimental results in term of stress intensity factor.
机译:在目前的工作中,已经研究了两种镍基单材料和一种双材料在450和550℃下的疲劳裂纹扩展。与顺应性方法相比,发现电势下降技术可以更好地估计循环过程中的裂纹长度。显微观察断裂表面以及使用有限元代码Castem2000进行的数值模拟都支持了这一发现。发现裂纹在粗粒材料中比在细粒材料中增长得更快。断裂表面观察表明,双材料的性能与界面处的单材料含量有关。另外,发现界面处每种单一材料的含量是非常随机的。由于组装过程,这种异质性极大地影响了生物材料的行为。有限元计算表明,数值和实验结果在应力强度因子方面有很好的一致性。

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  • 来源
    《Materials & design》 |2011年第5期|p.2710-2716|共7页
  • 作者单位

    ITl, CRP Henri Tudor, 29 Bdjohn F. Kennedy, 1-1855 Luxemburg, Luxembourg,ENSA, iquipe de Mecanique et Calcul Scientifique, Universite Mohamed 1", BP 696, Oujda, Morocco;

    Institute for Energy, DC-Joint Research Centre, European Commission, NL-1755 ZC Petten, The Netherlands;

    ITl, CRP Henri Tudor, 29 Bdjohn F. Kennedy, 1-1855 Luxemburg, Luxembourg;

    ENSA, iquipe de Mecanique et Calcul Scientifique, Universite Mohamed 1", BP 696, Oujda, Morocco;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    c. hot isostatic pressing; e. fracture; f. elastic behaviour;

    机译:C。热等静压;e。断裂;F。弹性行为;

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