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Application of high strength MnMoNi steel to pressure vessels for nuclear power plant

机译:高强度MnMoNi钢在核电站压力容器中的应用

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摘要

Recent increase in output of nuclear power plant has been attained by enlargement of major components such as pressure vessels. Such large components have almost reached a size limit from the points of manufacturing capacity and cost in both forgemasters and fabricaters. In order to solve this problem, it must be beneficial to apply design by use of material of higher strength, which brings reduction of pressure vessel thickness and weight. The Japan Steel Works Ltd. (JSW) has many manufacturing experiences of large integrated forgings made from high strength MnMoNi steel with tensile strength level of 620 MPa for steam generator (SG) pressure vessel, and has performed confirmation tests of its material properties. This paper describes the confirmation test results such as tensile and impact properties, nil-ductility transition temperature (NDT-T), static and dynamic fracture toughness, weldability including under-clad cracking (UCC) sensitivity, as well as metallurgical factors which influence on such material properties.
机译:通过增加压力容器等主要部件,实现了核电站近期产量的增长。从锻造大师和制造商的制造能力和成本的角度来看,这种大部件几乎已达到尺寸极限。为了解决该问题,使用强度更高的材料进行设计必须是有益的,这会减小压力容器的厚度和重量。日本钢铁厂有限公司(JSW)在由蒸汽发生器(SG)压力容器制成的,由抗拉强度等级为620 MPa的高强度MnMoNi钢制成的大型整体锻件方面拥有许多制造经验,并且对其材料性能进行了确认测试。本文介绍了确定的测试结果,例如拉伸性能和冲击性能,零延性转变温度(NDT-T),静态和动态断裂韧性,包括下包层开裂(UCC)敏感性的可焊接性以及影响该性能的冶金因素这样的材料特性。

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