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Fabrication and Characterization of a Low Magnetic Zr-1Mo Alloy by Powder Bed Fusion Using a Fiber Laser

机译:光纤激光粉末床熔合制备低磁性Zr-1Mo合金及其表征

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A low magnetic Zr-1Mo alloy was fabricated by a powder bed fusion (PBF) process using a fiber laser. The microstructure, surface morphology, and pore distribution of the as-built Zr-1Mo alloy were observed. Its magnetic susceptibility and Vickers hardness were evaluated by magnetic susceptibility balance and a microindentation tester, respectively. The as-built Zr-1Mo alloy mainly consisted of an ???±?¢???2 phase with an acicular structure. From the processing maps of the surface morphology and pore distribution, open pores on the top surface due to the lack of fusion corresponded to grid-like distributed pores, and large pores corresponded to balling particles on the top surface. The Vickers hardness was influenced by the oxygen and nitrogen contents rather than the porosity. The magnetic susceptibilities of the as-built Zr-1Mo alloy still were one-third those of Ti-6Al-4V and Ti-6Al-7Nb, thus PBF can be applicable to the fabrication process for the low magnetic Zr-1Mo alloy.
机译:低磁Zr-1Mo合金是使用光纤激光器通过粉末床熔合(PBF)工艺制造的。观察了Zr-1Mo合金的组织,表面形貌和孔分布。分别通过磁化率天平和微压痕测试仪评估其磁化率和维氏硬度。制成的Zr-1Mo合金主要由具有针状结构的±2相组成。从表面形态和孔分布的加工图来看,由于缺乏熔融而在顶表面上形成的开孔对应于网格状分布的孔,而大孔则对应于在顶表面上的球形颗粒。维氏硬度受氧和氮含量的影响,而不是孔隙率的影响。 Zr-1Mo合金的磁化率仍仅为Ti-6Al-4V和Ti-6Al-7Nb的三分之一,因此PBF可用于低磁Zr-1Mo合金的制造过程。

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