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首页> 外文期刊>Nuclear Engineering and Design >An elastic-plastic fracture mechanics based methodology to characterize cracking behavior and its application to environmental assisted processes
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An elastic-plastic fracture mechanics based methodology to characterize cracking behavior and its application to environmental assisted processes

机译:基于弹塑性断裂力学的表征裂纹行为的方法及其在环境辅助过程中的应用

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摘要

Cracking processes suffered by new structural and piping steels when used in petroleum or other energy installations have demonstrated the need for a cracking resistance characterization methodology. This methodology. valid for both elastic and elastoplastic regimes, should be able to define crack propagation kinetics as a function of their controlling local parameters. This work summarizes an experimental and analytical methodology that has been shown to be suitable for characterizing cracking processes using compact tensile specimens, especially subcritical environmentally assisted ones, such as those induced by hydrogen in microalloyed steels. The applied and validated methodology has been shown to offer quantitative results of cracking behavior and to correlate these with the existing fracture micromechanisms.
机译:当用于石油或其他能源装置时,新型结构钢和管道钢所经历的开裂过程证明了对开裂性表征方法的需求。这种方法。对于弹性和弹塑性两种情况都有效,应该能够根据其控制局部参数来定义裂纹扩展动力学。这项工作总结了一种实验和分析方法论,该方法论已被证明适用于使用紧凑的拉伸试样,特别是亚临界环境辅助试样(例如由微合金钢中的氢诱导的试样)表征裂化过程。应用和验证的方法论已被证明可以提供开裂行为的定量结果,并将其与现有的裂缝微观机制相关联。

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