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Design and manufacture of Nd-Fe-B thick coatings by the thermal spray process

机译:通过热喷涂工艺设计和制造Nd-Fe-B厚涂层

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摘要

Permanent magnetic coatings show potential in micro scale applications such as micro motors and micro generators. Nd-Fe-B magnetic coatings of average thickness 50 μm were produced via the flame spray method where the behavior of Nd-Fe-B particles in the thermal spray process was studied through single splat formation. There are generally five types of Nd-Fe-B splat morphology; which correspond to different solidification routes and varying degree of splashing. Microstructures of coating cross sections exhibit features such as cracks and porosity. The microstructural features were related to the physical properties and the brittle nature of the rare-earth alloy feedstock. Cross sections of the coatings also exhibited the presence of two distinct phases: Nd-rich and Fe-rich regions, which have been validated by EDS analysis. Metastable phase formation and decomposition followed by non-equilibrium solidification of the molten droplet prior to impact have been suggested to cause phase separation and were also identified in the formation of single splats. Hardness tests further confirmed the two distinct phases as Nd-rich and Fe-rich areas.
机译:永磁涂层在微型应用(例如微型电动机和微型发电机)中显示出潜力。通过火焰喷涂方法生产了平均厚度为50μm的Nd-Fe-B磁性涂层,其中通过单喷溅形成研究了Nd-Fe-B颗粒在热喷涂过程中的行为。 Nd-Fe-B splat形态通常有五种类型。对应于不同的固化途径和不同程度的飞溅。涂层横截面的微观结构表现出诸如裂缝和孔隙率的特征。微观结构特征与稀土合金原料的物理性质和脆性有关。涂层的横截面还显示出两个不同的相:富Nd和富Fe区域,这已经通过EDS分析得到了验证。已经提出,在冲击之前,亚稳相的形成和分解以及随后熔滴的非平衡固化会引起相分离,并且在单片的形成中也得到了证实。硬度测试进一步证实了两个不同的阶段,即富Nd和富Fe区域。

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