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Assessment of overheated generator end bells

机译:评估发电机端盖过热

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摘要

18 percent Mn18 percent Cr steel end bells from a 350 MW generator were briefly overheated during an operational fault. Many heat affected zones from electrical arcing were found on the inner surfaces of the shrink fit areas. In situ hardness testing revealed that the heat-affected areas were significantly softer than the base material. Replication also showed that localized areas had been heated to temperatures in excess of 400 deg C, which is known to significantly reduce tensile strength, fracture toughness and resistance to aqueous stress corrosion cracking. Two of the most severely damaged zones were found to be less than 8 mm deep after progressive excavation, hardness testing and replication. The excavations were located in a section thickness that varied from 38 to 50 mm. The option of temporarily re-installing the end bells was explored using a fracture mechanics approach, assuming that the heat affected zones were equivalent to multiple cracks. The risk of fracture and fatigue crack growth during operation was found acceptable. With operational restrictions, the end bells were re-installed and ran successfully for 8 months until replacement end bells were available.
机译:在运行故障期间,一台350 MW发电机产生的18%Mn18%Cr钢端盖短暂地过热。在收缩配合区域的内表面上发现了许多电弧产生的热影响区。原位硬度测试表明,受热影响的区域明显比基础材料软。复制还表明,局部区域已被加热到超过400摄氏度的温度,已知这会显着降低拉伸强度,断裂韧性和对水应力腐蚀开裂的抵抗力。在进行逐步开挖,硬度测试和复制后,发现两个受损最严重的区域深度不足8毫米。开挖的断面厚度从38毫米到50毫米不等。假设热影响区相当于多个裂缝,则使用断裂力学方法探索临时重新安装端盖的选项。发现在操作过程中产生断裂和疲劳裂纹的风险是可以接受的。由于操作限制,重新安装了端铃,并成功运行了8个月,直到有可用的替换端铃为止。

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