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

机译:由机械化学过程制备Mo-Si-B金属间粉末

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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:由于其高熔点和优异的抗氧化性,因此Mo-Si-B合金作为燃气涡轮机叶片的替代品引起了对燃气涡轮叶片的替代品的关注,以及包括比Ni基超合金高的服务温度更高的服务性能。 在以前的研究中,大多数Mo-Si-B合金通过铸造和机械合金化方法制造,这对施加了一些问题,巩固了非平衡阶段的存在,难以控制过程中的微观结构,杂质等。 在这项工作中,进行制造两个阶段的Chinerme高粉末(MO_5SIB_2和MO_3SI)的机械化学过程作为控制MO-Si-B合金的微观结构的初始研究阶段进行。 该方法使用MOO_3,Si_3N_4和BN的起始粉末,包括用于在氢气氛下减少和连续热处理期间的机械混合和细化和化学反应的球磨的阶段。

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