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Long term creep behaviour of welded joints of P91 steel at 650 ℃

机译:P91钢焊接接头在650℃的长期蠕变行为

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摘要

The martensitic P91 steel (9 Cr-1Mo-V-Nb) has been used for high temperature components in the highly ultra super critical pressure steam power plants. The creep behaviour in terms of creep rupture strength and minimum creep rate of the welded joints of this steel is controlled by that of the finegrained heat affected zone (FGHAZ). The factors which results in the reduction of the creep rupture strength and the increase in the minimum creep rate of FGHAZ at 650℃ were determined and discussed. It was found that the main difference between the welded joint zones is the prior austenite grain size. The finer the prior austenite grain size as in FGHAZ, the higher is the rate of recovery of dislocations, the rate of coarsening of the subgrain structure and coarsening of the intergranular Cr-rich carbide particles, consequently, the lower the creep resistance.
机译:马氏体P91钢(9 Cr-1Mo-V-Nb)已用于高度超超临界压力蒸汽发电厂中的高温部件。就该钢焊接接头的蠕变断裂强度和最小蠕变率而言,其蠕变行为由细粒热影响区(FGHAZ)来控制。确定并讨论了导致650℃FGHAZ蠕变断裂强度降低和最小蠕变速率增加的因素。已经发现,焊接接头区域之间的主要差异是原始奥氏体晶粒尺寸。如在FGHAZ中那样,先前的奥氏体晶粒尺寸越细,位错的恢复速率,亚晶粒结构的粗化速率和晶间富Cr的碳化物颗粒的粗化速率越高,因此,抗蠕变性越低。

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