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Remaining Creep Life Assessment Techniques Based on Creep Cavitation Modeling

机译:基于蠕变气穴建模的剩余蠕变寿命评估技术

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摘要

The boiler and its components are built with assumed nominal design and reasonable life of operation about two to three decades (one or two hundred thousand hours). These units are generally replaced or life is extended at the end of this period. Under normal operating conditions, after the initial period of teething troubles, the reliability of these units remains fairly constant up to about two decades of normal operation. The failure rate then increases as a result of their time-dependent material damage. Further running of these units may become uneconomical and dangerous in some cases. In the following article, step-by-step methodology to quantify creep cavitation based on statistical probability analysis and continuum damage mechanics has been described. The concepts of creep cavity nucleation have also been discussed with a special emphasis on the need for development of a model based on creep cavity growth kinetics.
机译:锅炉及其组件均采用假定的名义设计和合理的使用寿命(约两到三十年(十万二十万小时))制造。在此期间结束时,通常会更换这些单元或延长使用寿命。在正常运行条件下,经过初期磨合故障后,这些单元的可靠性在正常运行约二十年的时间内仍保持相当稳定。由于其随时间变化的材料损坏,故障率会增加。在某些情况下,进一步运行这些装置可能会变得不经济且危险。在下面的文章中,已描述了基于统计概率分析和连续损伤机制量化蠕变空化的分步方法。还讨论了蠕变腔形核的概念,并特别强调需要开发基于蠕变腔生长动力学的模型。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第5期|1013-1018|共6页
  • 作者

    Kumar Ankit;

  • 作者单位

    Department of Metallurgical Engineering Institute of Technology Banaras Hindu University Varanasi India;

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  • 正文语种 eng
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