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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructural Evolution and Creep-Rupture Behavior of A-USC Alloy Fusion Welds
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Microstructural Evolution and Creep-Rupture Behavior of A-USC Alloy Fusion Welds

机译:A-USC合金熔焊的组织演变和蠕变断裂行为

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Characterization of the microstructural evolution of fusion welds in alloys slated for use in advanced ultrasupercritical (A-USC) boilers during creep has been performed. Creep-rupture specimens involving INCONELA (R) 740, NIMONICA (R) 263 (INCONEL and NIMONIC are registered trademarks of Special Metals Corporation), and Haynes(A (R)) 282(A (R)) (Haynes and 282 are registered trademarks of Haynes International) have been analyzed via light optical microscopy, scanning electron microscopy, X-ray diffraction, and thermodynamic and kinetic modeling. Focus has been given to the microstructures that develop along the grain boundaries in these alloys during creep at temperatures relevant to the A-USC process cycle, and particular attention has been paid to any evidence of the formation of local gamma'-denuded or gamma'-free zones. This work has been performed in an effort to understand the microstructural changes that lead to a weld strength reduction factor (WSRF) in these alloys as compared to solution annealed and aged alloy 740 base metal. gamma' precipitate-free zones have been identified in alloy 740 base metal, solution annealed alloy 740 weld metal, and alloy 263 weld metal after creep. Their development during long-term thermal exposure is correlated with the stabilization of phases that are rich in gamma'-forming elements (e.g., eta and G) and is suppressed by precipitation of phases that do not contain the gamma' formers (e.g., M23C6 and mu). The location of failure and creep performance in terms of rupture life and WSRF for each welded joint is presented and discussed.
机译:已经对蠕变期间预定用于高级超超临界(A-USC)锅炉的合金中的熔合焊缝的组织演变进行了表征。涉及INCONELA(R)740,NIMONICA(R)263(INCONEL和NIMONIC是Special Metals Corporation的注册商标)和Haynes(A(R))282(A(R))的蠕变断裂样品(Haynes和282已注册已经通过光学显微镜,扫描电子显微镜,X射线衍射以及热力学和动力学模型对Haynes International的商标进行了分析。在与A-USC工艺周期相关的温度下蠕变期间,这些合金沿晶界发展的微观结构已得到关注,并且特别注意了形成局部伽马'剥蚀或伽马'的任何证据。 -无区域。进行这项工作是为了了解与固溶退火和时效合金740基体金属相比导致这些合金的焊接强度降低因子(WSRF)的微观结构变化。蠕变后,已在合金740贱金属,固溶退火的740焊接金属和263焊接金属中确定了无γ'沉淀区。它们在长期热暴露期间的发展与富含伽马形成元素(例如eta和G)的相的稳定相关,并被不包含伽马形成剂的相的沉淀(例如M23C6)抑制和亩)。介绍并讨论了根据每个焊接接头的断裂寿命和WSRF确定的失效和蠕变性能的位置。

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