Characterization of Refractory Alloys Produced by Laser Additive Manufacturing

A. Kustas, J. Pegues, M. Melia, S. Whetten, Morgan R. Jones, N. Argibay
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Abstract

Refractory alloys often possess superior thermomechanical properties compared to conventional materials, such as steels, Ni-based superalloys, and Ti alloys, especially in high-temperature environments. While these materials promise to revolutionize numerous industries, significant hurdles remain for insertion into applications due to an incomplete understanding of structure-property relationships and conventional processing challenges. We explore laser-based additive manufacturing (AM) to construct refractory alloys consisting of combinations of Mo, Nb, Ta, and Ti with systematically increasing compositional complexity. Microstructure, composition, and hardness of the AM-processed alloys were characterized. Results are discussed in the context of pairing additive manufacturing with refractory metals to enable next-generation alloys.
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激光增材制造耐火合金的表征
与传统材料(如钢、镍基高温合金和钛合金)相比,耐火合金通常具有优越的热机械性能,特别是在高温环境中。虽然这些材料有望彻底改变许多行业,但由于对结构-性能关系的不完全理解和传统加工挑战,在应用中仍然存在重大障碍。我们探索基于激光的增材制造(AM)来构建由Mo, Nb, Ta和Ti组合组成的耐火合金,并系统地增加成分复杂性。对am合金的组织、成分和硬度进行了表征。在将增材制造与难熔金属配对以实现下一代合金的背景下讨论了结果。
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