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Reliability analysis of stainless steel piping using a single stress corrosion cracking damage parameter

机译:使用单应力腐蚀裂纹损伤参数的不锈钢管道可靠性分析

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This article presents the results of an investigation that combines standard methods of fracture mechanics, empirical correlations of stress-corrosion cracking, and probabilistic methods to provide an assessment of Intergranular Stress Corrosion Cracking (IGSCC) of stainless steel piping. This is done by simulating the cracking of stainless steel piping under IGSCC conditions using the general methodology recommended in the modified computer program Piping Reliability Analysis Including Seismic Events, and by characterizing IGSCC using a single damage parameter. Good correlation between the pipe end-life probability of leak and the damage values were found. These correlations were later used to generalize this probabilistic fracture model. Also, the probability of detection curves and the benefits of in-service inspection in order to reduce the probability of leak for nuclear piping systems subjected to IGSCC were discussed for several pipe sizes. It was found that greater benefits could be gained from inspections for the large pipe as compared to the small pipe sizes. Also, the results indicate that the use of a better inspection procedure can be more effective than a tenfold increase in the number of inspections of inferior quality.
机译:本文介绍了一项研究结果,该研究结果结合了断裂力学的标准方法,应力腐蚀裂纹的经验相关性和概率方法,以评估不锈钢管道的晶间应力腐蚀裂纹(IGSCC)。通过使用修改后的计算机程序“包括地震事件的管道可靠性分析”中推荐的通用方法,模拟IGSCC条件下不锈钢管道的开裂,并使用单个损伤参数来表征IGSCC。发现管道的泄漏终生概率与损伤值之间具有良好的相关性。这些相关性随后被用于概括这种概率性骨折模型。此外,还讨论了针对几种管道尺寸的检测曲线的概率和在役检查的好处,以减少遭受IGSCC的核管道系统的泄漏概率。人们发现,与小尺寸的管道相比,大型管道的检查可以带来更大的收益。同样,结果表明,使用更好的检查程序比将次等检查的次数增加十倍更为有效。

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