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Development of thermal stress concentration factors for life assessment of turbine casings

机译:开发用于涡轮机壳体寿命评估的热应力集中系数

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摘要

The major components of thermal power plants are made of low-alloy steel and operated under high temperature and pressure conditions. Even though such facilities have design lives of 100,000 h, unexpected failure can occur due to thermal fatigue or creep damages during operation. In particular, high-pressure and intermediate-pressure casing components are susceptible to frequent cracking due to thermo-mechanical low-cycle fatigue at the nozzle fit corner radius and other stress concentration shapes. Thus, for effective maintenance, it is necessary to have accurate knowledge of transient thermal stresses at critical positions that are susceptible to failure. In this paper, thermal stress concentration factors for the inner surface of the casing and valve are defined to account for variations in the geometry using three-dimensional finite element analysis. In addition, the total strain range is obtained to assess the low-cycle fatigue life according to the life assessment procedures in Korea.
机译:火力发电厂的主要组件由低合金钢制成,并在高温和高压条件下运行。即使此类设备的设计寿命为100,000小时,由于运行过程中的热疲劳或蠕变损坏,仍可能发生意外故障。尤其是,高压和中压外壳组件会因在喷嘴装配角半径和其他应力集中形状下发生热机械低周疲劳而频繁开裂。因此,为了有效维护,有必要对易发生故障的关键位置处的瞬态热应力有准确的了解。在本文中,使用三维有限元分析法定义了壳体和阀门内表面的热应力集中系数,以考虑几何形状的变化。此外,根据韩国的寿命评估程序,获得了总应变范围以评估低周疲劳寿命。

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