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Creep and Fatigue Behavior in Micro-alloyed Steels - A Review

机译:微合金钢的蠕变和疲劳行为-综述

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This is a study of microalloyed steels for power plants and reactors. Components operate at coal dust fire temperature or thermal states of reactors, prone to creep during its service. This is to assess remaining life after passage of valuable life by variation in microstruc-ture, e.g. cavity formation. Precipitation at the sub-grain boundaries and grain interior has increased high temperature strength. Coarsening of these appears at the end of life. Variation of heat treatment like spheroidising in place of solutionizing has been responsive to deteriorate performance. Dislocation interplay with precipitate has been acceptable while interaction among dislocations to forest dislocation has been unacceptable. Dislocation assisted nucleation of precipitates of fine size has been found to strengthen steel by thermo-mechanical control process with in greater heating temperature and lower finish rolling temperature. High temperature performance of materials has been assessed by creep, accelerated creep, creep-fatigue and fatigue performances. Increasing temperature for increasing efficiency has correlated the phase transformation of steel. Fatigue performances have been included in creep properties of materials when intermittent shut down-shut up schedules are operated, e.g. peaking power plants.
机译:这是对用于发电厂和反应堆的微合金钢的研究。组件在煤尘着火温度或反应堆的热态下运行,在使用期间容易蠕变。这是为了通过微结构的变化,例如通过微结构来评估有价值的寿命过后的剩余寿命。腔形成。亚晶粒边界和晶粒内部的沉淀增加了高温强度。这些的粗化出现在寿命的尽头。诸如球化代替固溶化的热处理变化已经对性能下降做出了响应。位错与沉淀物的相互作用是可以接受的,而位错与森林位错之间的相互作用是不可接受的。已经发现,位错辅助的细小尺寸析出核能通过热机械控制工艺在更高的加热温度和更低的终轧温度下强化钢。材料的高温性能已通过蠕变,加速蠕变,蠕变疲劳和疲劳性能进行了评估。为了提高效率而提高温度已经使钢的相变相关。当执行间歇关闭关机时间表时,疲劳性能已包括在材料的蠕变特性中。高峰电厂。

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