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首页> 外文期刊>Transactions of the Indian Institute of Metals >Creep damage evaluation of a power plant header using combined FEM analysis and quantitative metallography
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Creep damage evaluation of a power plant header using combined FEM analysis and quantitative metallography

机译:结合有限元分析和定量金相学评估发电厂集管的蠕变损伤

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The actual operating conditions of a component may vary from the original design conditions either constantly or variably as a consequence of deviation from design parameters. Hence, the knowledge of operating temperatures and stresses, both historically and for anticipated future operation is required for an accurate life assessment. A number of high temperature and high stress components of Indian thermal power utilities are being monitored round-the-clock for damage assessment by acquiring real-time process data using an on-line damage monitoring system BOSSES, developed by BARC, Mumbai. A number of surface replicas have been obtained from the critical location of a shell-nozzle junction of a super-heater header and analyzed by quantitative metallographic methods. The aim of these activities is to assess service damage of critical components to prevent any unforeseen failure based on a closed loop on-line damage monitoring system-cum-surveillance-cum-life management programme.
机译:组件的实际操作条件可能会由于偏离设计参数而不断或可变地与原始设计条件有所不同。因此,为了准确地进行寿命评估,需要了解历史上以及预期的未来运行中的工作温度和应力。印度孟买电力公司的许多高温和高应力组件通过使用在线损害监测系统BOSSES(由孟买BARC开发)获取实时过程数据,全天候监测损害评估。从过热器集管的壳-管接头的关键位置获得了许多表面复制品,并通过定量金相方法进行了分析。这些活动的目的是基于闭环在线损害监控系统暨监视和生命管理计划,评估关键组件的服务损害,以防止任何不可预见的故障。

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