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Root cause analysis of failure of bolts in the low pressure section of a gas turbine in an oil and gas production plant

机译:油气生产厂燃气轮机低压段螺栓故障的根本原因分析

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This research establishes the cause of a severe failure in bolts in the low pressure (LP) section of a gas turbine in an oil and gas production plant. The failure in bolts was reported together with massive failures of turbine blades in the second stage in the hot section of the turbine. The failure was categorized as an unexpected premature failure, given that it was reported to take place after 20 k of service and that the expected service life for this turbine is beyond 100 k. This research had a two-fold purpose; i) to analyse the cause of failure in both components (failed bolts and blades) and ii) to come up with a scenario for the chain of events. Standard microscopic examination techniques (optical metallography and electron microscopy) were used to correlate microstructure of failed components with possible failure mechanisms. Results showed a clear corrosion-fatigue-induced failure in blades. Hardly is there any evidence of fatigue failure in bolts. Bolts appeared to have experienced an excessive load and have consequently been heavily deformed and broken. The failure scenario was proposed, based on the service history, observations, and microstructural examinations.
机译:该研究在石油和天然气生产厂中燃气轮机低压(LP)部分中的螺栓严重失效的原因。螺栓中的故障与涡轮机的热部分中的第二阶段中的涡轮机叶片的大规模故障报告。由于据报道,在20千千年之后举行,该涡轮机的预期使用寿命超过100 k,因此失败被分类为意外的过早故障。这项研究具有两倍的目的; i)分析组件(故障螺栓和刀片)和ii)中失败的原因,以提出事件链的情景。标准微观检查技术(光学金相和电子显微镜)用于将故障组分的微观结构与可能的故障机构相关。结果表明,叶片中透明腐蚀诱导的抗衰力。几乎没有任何证据表明螺栓疲劳失败。螺栓似乎经历了过多的负荷,因此被严重变形和破碎。基于服务历史,观察和微观结构检查,提出了故障情景。

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