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RECENT LIFE ASSESSMENT TECHNOLOGY FOR EXISTING STEAM TURBINES

机译:现有汽轮机的最新寿命评估技术

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摘要

A large and growing portion of electricity is produced by aging thermal power plants. Although excellent, high quality materials such as CrMoV steel and 12% Cr steel, etc. are used for the steam turbines, various forms of metallurgical degradation, due to creep and fatigue, etc. affect the parts and components during long-term operation at high temperature. Extending the life of steam turbines and ensuring high reliability requires life assessment technology, scheduled repairing, conversion, modification and upgrading of components in order to provide a stable power supply. As the high temperature parts and components of aged steam turbines are mainly metallurgically damaged by creep, fatigue and the interaction of both, life assessment combined with analytical and nondestructive methods is essential for realizing strategic plant life extension. We have developed a life assessment technology that takes material degradation into consideration, and have applied the procedure to more than 650 units and 2500 components since 1983. A rotor bore replication device was developed in 1989 for the purpose of nondestructive observation of creep voids and supporting the validity of life prediction results. This paper describes the technical features and applied experience of recent life assessment technology for existing high temperature steam turbines.
机译:火力发电厂老化,产生了越来越大的电力。尽管蒸汽轮机使用了优质优质的材料,例如CrMoV钢和12%Cr钢等,但是由于长期蠕变和疲劳等原因,各种形式的冶金降解都会影响零部件。高温。要延长汽轮机的使用寿命并确保高可靠性,就需要使用寿命评估技术,对部件进行定期维修,改装,改造和升级,以提供稳定的电源。由于老化的汽轮机的高温零件和部件主要因蠕变,疲劳以及二者的相互作用而受到冶金破坏,因此,将寿命评估与分析和非破坏性方法相结合,对于实现战略性的设备使用寿命至关重要。我们开发了一种考虑到材料降解的寿命评估技术,自1983年以来已将该程序应用于650多个单元和2500个组件。1989年开发了一种转子孔复制装置,用于无损观察蠕变空隙和支撑寿命预测结果的有效性。本文介绍了现有高温蒸汽轮机的最新寿命评估技术的技术特点和应用经验。

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