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USING ADDITIVE MANUFACTURING FOR MAKING LIGHT WATER REACTOR COMPONENTS

机译:利用添加剂制造制造轻型水反应器组分

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Making light water reactor (LWR) components using additive manufacturing (AM) provides a high degree of design freedom to create complex near net shape geometries, with significant reduction in the deployment time. Since most of the current AM research focus on the refining of the fabrication variables, little information exists on the actual corrosion behavior (including general corrosion, localized corrosion and environmentally assisted cracking - EAC) of AM components. The most frequent operational material failure modes in LWR is EAC and debris fretting of fuel rods, therefore the objective of this work was to evaluate the environmental performance of AM type 316L SS in relation to the traditionally melted and forged wrought material. Stress corrosion cracking results show similar behavior between AM and wrought 316L SS in high temperature water. Ambient temperature electrochemical testing showed that the AM 316L SS was slightly more resistant to localized corrosion than the traditional wrought material and that AM material did not suffer sensitization during fabrication or heat treatment processes.
机译:使用添加剂制造(AM)制造轻型水反应器(LWR)部件提供高度的设计自由,以创造复杂的净形状几何形状,在部署时间显着降低。由于大多数当前的研究重点是制造变量的精炼,因此对AM组分的实际腐蚀行为(包括一般腐蚀,局部腐蚀和环保裂缝 - EAC)存在很少的信息。 LWR中最常用的操作材料故障模式是EAC和燃料棒的碎片摩擦,因此这项工作的目的是评估AM型316L SS的环境性能与传统熔化和锻造的锻造材料相关。压力腐蚀裂解结果在高温水中显示了AM与锻造316LS之间的类似行为。环境温度电化学测试表明,AM 316L SS比传统的锻造材料略高于局部腐蚀,并且AM材料在制造或热处理过程中没有敏感。

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