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Inspection and treatment for surface cracks of stainless steel surfacing layer in pressurized hydrogen environment

机译:加压氢气环境不锈钢堆焊层表面裂缝的检测与处理

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Stainless steel surfacing layer is widely used for the equipments working in pressurized hydrogen environment such as hydrogenation reactors in order to improve the corrosion resistance. Surface cracking is a basic failure mode of the layer due to the extreme working condition. It is also a quite difficult problem for safety assessment and defect elimination. In this paper, a typical case of surface cracking of the layer in hydrogen environment is analyzed in detail. Inspection methods including non-destructive testing (NDT) for confirming quantity and location of surface cracks are introduced. Surface cracking causes and treatment methods for the defects are also studied. Finally, some suggestions for inspection and treatment of surface cracks of the layer are proposed. Phased array ultrasonic testing is an effective NDT method for confirming the extension of surface cracks. Fitness for service assessment for the cracks of stainless steel surfacing layer is suggested. Defect elimination method is only suggested to be adopted if the cracks extend into the base metal.
机译:不锈钢表面层广泛用于加压氢环境中的设备,如氢化反应器,以提高耐腐蚀性。由于极端工作条件,表面开裂是层的基本故障模式。安全评估和缺陷消除也是一个非常困难的问题。本文详细分析了氢气环境中层的典型表面裂纹的典型案例。介绍了包括用于确认数量和表面裂缝位置的非破坏性测试(NDT)的检查方法。还研究了表面开裂原因和治疗方法。最后,提出了对层的表面裂纹检查和处理的一些建议。相控阵超声波测试是一种有效的NDT方法,用于确认表面裂缝的延伸。提出了用于不锈钢堆焊层裂缝的服务评估。仅在裂缝延伸到基础金属中时才能采用缺陷消除方法。

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