核电厂汽机保护系统主汽门阀杆断裂原因分析

Analysis on Causes of Main Steam Valve Stem Fracturer in Nuclea Power Plant Turbine Protection System

  • 摘要: 核电厂汽轮机保护系统承担着在预定汽轮发电机故障工况下,为汽轮发电机提供安全停机、预防或限制事故的功能。某核电厂在实施汽轮机保护系统主汽门打闸试验过程中,连续发生两起主汽门阀杆断裂事件且断口均呈脆性断裂形貌,直接影响汽轮机冲转。本文通过分析阀杆机械性能、化学成分、晶粒度、非金属夹杂物、金相组织及油动机排油缓冲功能丧失等因素对阀杆断裂的影响,最终判定油动机制造偏差导致的缓冲功能丧失为事件主因;阀杆材质晶粒度等级低及大量非金属夹杂物导致材料冲击韧性低,阀杆根部存在应力集中共同促成了阀杆断裂。由以上结果可知,减小油动机排油间隙并选择材质合格的阀杆,可有效解决主汽阀打闸过程中阀杆断裂问题,同时也为其他机组解决类似问题提供指导及借鉴。

     

    Abstract: The turbine protection system of a nuclear power plant is designed to ensure the safe shutdown of the turbogenerator and mitigate or limit accidents under predefined fault conditions. During the implementation of the main steam valve trip test at a nuclear power plant, two consecutive fractures of the main steam valve stem occurred, severely hindering the turbine startup process. To identify the underlying mechanism, a comprehensive root cause analysis was conducted. In this study, the potential factors contributing to the fractures were systematically examined, including the mechanical properties, chemical composition, grain size, non-metallic inclusions, and metallographic structure of the valve stem material, as well as the functionality of the hydraulic actuator drain buffer. The results indicate that the failure of the hydraulic actuator—specifically the loss of the drain buffer function caused by manufacturing deviation—serves as the main reason. Concurrently, inherent material deficiencies, such as a low grain size rating, an abundance of non-metallic inclusions leading to reduced impact toughness, and stress concentration at the stem root, collectively precipitated the brittle fracture. Based on the above results, reducing the oil discharge clearance of the actuator and selecting valve stems with qualified materials can effectively solve the problem of valve stem fracture during the tripping process of the main steam valve, while also providing guidance and reference for other units to address similar issues.

     

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