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Fabrication of Mo-Si-B intermetallic powder by mechano-chemical process

机译:机械化学法制备Mo-Si-B金属间化合物粉末

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摘要

Mo-Si-B alloys have attracted attention as alternatives to Ni-based superalloys for gas turbine blade due to their high melting point and excellent oxidation resistance, as well as mechanical properties including a higher service temperature than that of Ni-based superalloys. In previous research, most Mo-Si-B alloys have been fabricated by casting and mechanical alloying method, which have some problems con cerning the presence of non-equilibrium phase, difficulty in controlling the microstructure, impurities during the process, and so on. In this work, mechano-chemical process to fabricate two phases interme tallic powders (Mo_5SiB_2 and Mo_3Si) was carried out as an initial stage of research for controlling the microstructure of Mo-Si-B alloys. This method uses starting powders of MoO_3, Si_3N_4 and BN and includes the stages of ball-milling for mechanical mixing and refinement and chemical reactions during reduction and continuative heat treatment under hydrogen atmosphere.
机译:Mo-Si-B合金以其高熔点和出色的抗氧化性以及机械性能(包括比Ni基超级合金更高的工作温度)而引起人们关注,作为燃气轮机叶片的Ni基超级合金的替代品。在以前的研究中,大多数的Mo-Si-B合金是通过铸造和机械合金化的方法制造的,这些合金存在着一些不平衡相,难于控制微观结构,过程中存在杂质等问题。在这项工作中,进行机械化学过程以制造两相中间粉末(Mo_5SiB_2和Mo_3Si)是控制Mo-Si-B合金微观结构的研究的初始阶段。该方法使用MoO_3,Si_3N_4和BN的起始粉末,包括球磨阶段,用于在氢气气氛下还原和连续热处理期间进行机械混合,细化以及化学反应。

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