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Variation in Residual Stresses due to Thermal Cycling induced on the Hardfaced Grid Plate in PFBR

机译:在PFBR中的Handfaced栅格板上诱导的热循环引起的残余应力的变化

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In sodium cooled fast breeder reactors, the high operating temperature necessitates hard facing of grid plate to avoid galling and to reduce the wear loss of the base material. Nickel-base cobalt-free alloy called Colmonoy-5 has been chosen as the hard facing material for the Prototype Fast Breeder Reactor (PFBR) grid plate. The grid plate (GP) which is a critical component made of 316 LN SS that holds the core subassemblies are hard faced, to prevent galling and also to minimize wear caused by subassembly insertion/removal and erosion due to high sodium velocity at 670 K. Thermal cycling of hard faced circular grid plate made by Plasma Transferred Arc Welding (PTAW) generates residual stresses due to differential shrinkage of the molten deposit and difference in coefficients of thermal expansion between the deposit and substrate material. In this project the effect of thermal cycling of a nickel-base hardfacing alloy deposited on an austenitic stainless steel grid plate was studied. Finite element analysis of hard faced circular grid plate is performed for obtaining residual stress which includes elasto-plastic analysis. Coupled thermo-mechanical analysis is done for thermal cycling of hardfaced circular gridplate to quantitatively estimate the residual stress.
机译:在钠冷却的快速饲养液反应堆中,高效温度需要栅格板的硬面,以避免磨损,并降低基材的磨损损失。选择了镍基钴的无钴合金,被选为原型快速饲养反应器(PFBR)网格板的硬面材料。作为由316Ln SS制成的关键部件的栅格板(GP)是坚硬的面部的,以防止磨损,并且还可以最小化由于670k的高钠速度引起的子组件插入/去除和腐蚀引起的磨损。通过等离子体转移电弧焊接制造的硬面圆形栅格板的热循环(PTAW)由于熔融沉积物的差异收缩和沉积物和基板材料之间的热膨胀系数的差异而产生残余应力。在该项目中,研究了沉积在奥氏体不锈钢栅格板上的镍基硬化合金的热循环的效果。进行硬面圆形栅格板的有限元分析,以获得包括弹性塑性分析的残余应力。结合热机械分析用于处理硬漂的圆形网格的热循环,以定量估计残余应力。

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