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Failure analysis on abnormal wall thinning of heat-transfer titanium tubes of condensers in nuclear power plant Part II: Erosion and cavitation corrosion

机译:核电站冷凝器换热器钛管壁异常变薄的失效分析第二部分:冲蚀和空化腐蚀

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In Part I of the failure analysis on abnormal wall thinning of heat-transfer titanium tubes used in condensers in nuclear power plant, we analyzed the causes and mechanisms of abnormal thinning that commonly happened at the contact part between the tubes and the support plates. This kind of failure was the mainstream failure type in our case and the main causes were found to be eccentric contact wear and three-body contact wear rooted in processing defect of internal borings, corrosion products deposit and sagging, and foreign particles. However, there were still some individual failure tubes with different failure sites and modes and were located under the bypass pipes at the shoulder of the tube tower instead of in its lower part, obviously telling another failure story. In Part II of the failure analysis, material analysis, metallographic examination, mechanical performance tests, macro- and microstructure analysis and composition analysis were conducted. The failure causes were found to be erosion and cavitation corrosion and the synergetic effect of them. Finally, corresponding countermeasures were suggested.
机译:在核电站冷凝器中使用的传热钛管壁异常减薄的失效分析的第一部分中,我们分析了通常发生在管与支撑板接触部分的异常减薄的原因和机理。这种故障是我们案例中的主要故障类型,主要原因是偏心接触磨损和三体接触磨损,这些磨损源于内部镗孔,腐蚀产物的沉积和流挂以及异物的加工缺陷。但是,仍然存在一些具有不同故障部位和模式的单独的故障管,它们位于管塔肩部而不是下部的旁路管下方,这显然是在讲另一个故障的故事。在失效分析的第二部分中,进行了材料分析,金相检查,机械性能测试,宏观和微观结构分析以及成分分析。发现破坏的原因是腐蚀和气蚀以及它们的协同作用。最后,提出了相应的对策。

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