首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Multiple heat isothermal stress rupture correlations for type 316L(N) stainless steel and their use - Part 2 - Applications for nuclear grade type 316L(N) stainless steel base metal and its weld metal
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Multiple heat isothermal stress rupture correlations for type 316L(N) stainless steel and their use - Part 2 - Applications for nuclear grade type 316L(N) stainless steel base metal and its weld metal

机译:316L(N)型不锈钢的多重热等温应力断裂相关性及其用途-第2部分-核级316L(N)型不锈钢母材及其焊接金属的应用

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The 'reference' multiple heat isothermal stress rupture correlations for stainless steel types 316 and 316L(N) base metals derived in Part 1 are used for establishing those for a specific 316L(N) stainless steel base metal and also its weld, both candidates for the forthcoming prototype fast breeder reactor at Kalpakkam. The phases that form in the weld metal during creep are the same as those in the base metal; however, the uniformly distributed 6 ferrite ( similar to 7 ferrite number) in vermicular morphology present in the initial microstructure accelerates their formation and increases their quantities, resulting in poorer stress rupture properties. A simple modification allows for correlating and extrapolating the weld data to long rupture lives using the multiple heat isothermal correlations developed for the base metal. [References: 14]
机译:第1部分中衍生的316和316L(N)型不锈钢基体的“参考”多重热等温应力断裂相关性用于确定特定316L(N)不锈钢基体金属及其焊缝的相关性,两者均适合于Kalpakkam即将面世的原型快速增殖反应堆。蠕变过程中焊缝金属形成的相与母材中形成的相相同。但是,最初的显微组织中存在蠕虫形态的均匀分布的6铁素体(类似于7铁素体数)会加速其形成并增加其数量,从而导致较差的应力断裂性能。一个简单的修改就可以使用为母材开发的多种热等温关联对焊接数据进行关联和外推,以延长断裂寿命。 [参考:14]

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