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Creep-Fatigue Failure Diagnosis

机译:蠕变疲劳故障诊断

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摘要

Failure diagnosis invariably involves consideration of both associated material condition and the results of a mechanical analysis of prior operating history. This Review focuses on these aspects with particular reference to creep-fatigue failure diagnosis. Creep-fatigue cracking can be due to a spectrum of loading conditions ranging from pure cyclic to mainly steady loading with infrequent off-load transients. These require a range of mechanical analysis approaches, a number of which are reviewed. The microstructural information revealing material condition can vary with alloy class. In practice, the detail of the consequent cracking mechanism(s) can be camouflaged by oxidation at high temperatures, although the presence of oxide on fracture surfaces can be used to date events leading to failure. Routine laboratory specimen post-test examination is strongly recommended to characterise the detail of deformation and damage accumulation under known and well-controlled loading conditions to improve the effectiveness and efficiency of failure diagnosis.
机译:故障诊断总是要考虑相关的材料状况和先前运行历史的机械分析结果。这篇综述着重于这些方面,特别是对蠕变疲劳失效诊断的参考。蠕变疲劳开裂可归因于一系列的载荷条件,从纯循环载荷到主要是稳定载荷,且载荷瞬变很少。这些需要一系列的机械分析方法,其中许多方法已被审查。揭示材料状态的微观结构信息会随合金种类的不同而变化。在实践中,尽管在断裂表面上氧化物的存在可以用来确定导致失效的事件的发生日期,但在高温下的氧化作用可能掩盖了随后破裂机制的细节。强烈建议对常规实验室样品进行测试后检查,以表征在已知且控制良好的载荷条件下变形和损伤累积的细节,以提高故障诊断的有效性和效率。

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