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Relation Between Resistivity and Mechanical Properties in Heat Affected Zone of Welded Pressure Vessel Steel

机译:压力容器钢热影响区电阻率与力学性能的关系

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The relation between resistivity and mechanical properties, such as hardness and the ductile-brittle transition temperature (DBTT), in heat-affected zone (HAZ) of welded A533B pressure vessel steel (PVS) has been investigated by means of a small specimen test technique before and after neutron irradiation. A submerged arc welded thick plate of A533B for plant use was supplied by Japan Steel Works, Ltd. Neutron irradiation was performed in the Japanese Materials Test Reactor (JMTR) at 290℃ up to 1.3 X 10~(24) n/m~2. Resistivity measurements with a pair of potential probes, 1 mm distance apart, were performed on the surface of specimens at different locations across the fusion boundary. Before the irradiation, the resistivity of the weld was higher than that of the base metal and the resistivity in the HAZ gradually reduced with increasing distance from the fusion boundary. After the neutron irradiation, the resistivities at all the locations were reduced. Post-irradiation annealing experiments revealed that resistivities of base metal and HAZ almost recovered after annealing to 500℃, while only a part of the recovery was observed for the resistivity of the weld. On the contrary, the recovery of irradiation hardening was faster in the weld than in the base metal. It is considered that the reduction of resistivity is due to precipitation of solute elements, such as manganese, nickel and copper. The correlation between resistivity change and irradiation hardening is also discussed.
机译:通过小样本试验技术研究了焊接的A533B压力容器钢(PVS)的热影响区(HAZ)中的电阻率与机械性能之间的关系,例如硬度和韧性-脆性转变温度(DBTT)中子辐照前后。日本钢制株式会社提供的工厂用A533B埋弧焊接厚板。在日本材料试验反应器(JMTR)中于290℃下进行了1.3 X 10〜(24)n / m〜2的中子辐照。 。使用一对电位探针(相距1 mm的距离)在整个融合边界上不同位置的样品表面上进行电阻率测量。在辐照之前,焊缝的电阻率高于母材的电阻率,并且随着距熔合边界距离的增加,热影响区的电阻率逐渐降低。中子辐照后,所有位置的电阻率均降低。辐照后退火实验表明,退火至500℃后,母材和HAZ的电阻率几乎恢复,而焊缝的电阻率仅观察到一部分恢复。相反,焊缝中辐射硬化的恢复速度快于母材。认为电阻率的降低是由于诸如锰,镍和铜的溶质元素的沉淀。还讨论了电阻率变化与辐照硬化之间的关系。

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