Evaluation of the Vent Header Crack at Edwin I. Hatch Unit #2 Nuclear Power Station

C. Czajkowski
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Abstract

A metallurgical failure analysis was performed on pieces of the cracked vent header pipe from the Edwin I. Hatch Unit 2 Nuclear power plant. The analysis consisted of optical microscopy, chemical analysis, mechanical Charpy impact testing, and fractography. It was found that the material of the vent header met the mechanical and chemical properties of ASTM A516 Grade 70 carbon-manganese steel material and microstructures were consistent with this material. Fracture faces of the cracked pipe were predominantly brittle in appearance with no evidence of fatigue contribution. The NDTT (Nil ductility Transition Temperature) for this material was approximately -51 deg C (-60 deg F). The fact that the material's NDTT was significantly out of the normal operating range of the pipe suggested an impingement of low temperature nitrogen (caused by a faulty torus inerting system) induced a thermal shock in the pipe which, when cooled below its NDTT, cracked in a brittle manner.
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埃德温·哈奇2号机组泄气口裂缝评价
对埃德温·哈奇核电站2号机组通风管断裂件进行了冶金失效分析。分析包括光学显微镜、化学分析、机械夏比冲击试验和断口学。结果表明,该排气总管材料符合ASTM A516 70级碳锰钢材料的力学和化学性能,显微组织与该材料一致。裂纹管的断口表面以脆性为主,无疲劳作用。该材料的NDTT(零延性转变温度)约为-51摄氏度(-60华氏度)。事实上,材料的NDTT明显超出了管道的正常工作范围,这表明低温氮气的撞击(由有缺陷的环面惯性系统引起)在管道中引起了热冲击,当冷却到NDTT以下时,管道以脆性方式破裂。
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