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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Tensile properties and microstructure of additively manufactured Grade 91 steel for nuclear applications
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Tensile properties and microstructure of additively manufactured Grade 91 steel for nuclear applications

机译:用于核应用的含有91级钢材的拉伸性能和微观结构

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Laser powder bed additively manufactured Grade 91 composition steel was investigated in comparison to wrought Grade 91 steel in terms of microstructure and mechanical properties. As-deposited additively manufactured Grade 91 steel had a microstructure of lower bainitic regions surrounded by martensite. This is significantly different from the typical tempered martensitic microstructure of conventionally produced Grade 91 steel. The as-deposited additively manufactured material had excellent tensile mechanical properties with greater strength than the wrought material at room temperature, 300 and 600 degrees C showing excellent promise for nuclear applications. Retention of strength at 300 and 600 degrees C for the as-deposited additively manufactured material was attributed to transitional carbides in the lower bainitic regions. The additively manufactured material was also investigated in the tempered as well as normalized and tempered conditions, each showing decreased strength at elevated temperature than the as-deposited material. (C) 2020 Elsevier B.V. All rights reserved.
机译:在显微组织和力学性能方面,研究了激光粉末床附加制造的91级复合钢与锻造91级钢的对比。沉积时额外制造的91级钢具有下贝氏体区域的微观结构,周围有马氏体。这与常规生产的91级钢的典型回火马氏体微观结构显著不同。在室温、300℃和600℃条件下,沉积态附加制造材料具有优异的拉伸机械性能,比锻造材料具有更高的强度,显示出良好的核应用前景。沉积态添加制造材料在300℃和600℃下的强度保持归因于下贝氏体区域的过渡碳化物。在回火、正火和回火条件下也对额外制造的材料进行了研究,每种材料在高温下的强度都比沉积态材料低。(C) 2020爱思唯尔B.V.版权所有。

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