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首页> 外文期刊>Applied Surface Science >Properties of atomized AlCoCrFeNi high-entropy alloy powders and their phase-adjustable coatings prepared via plasma spray process
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Properties of atomized AlCoCrFeNi high-entropy alloy powders and their phase-adjustable coatings prepared via plasma spray process

机译:等离子喷涂法制备的雾化AlCoCrFeNi高熵合金粉末及其调相涂层的性能

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In this study, the adjustment of the phase constitution of AlCoCrFeNi high-entropy alloy (HEA) coatings was achieved using a plasma spray process with vacuum gas-atomized powders. The as-prepared AlCoCrFeNi powders were of pure BCC phase and the particles were in spherical shape. The FCC phase began to form above 600 degrees C, and its degree of crystallinity increased with annealing temperature, resulting in a reduced saturation magnetization. Two Curie temperatures were observed in as-atomized powders: the first was around 220 degrees C and was reversible; the second was contributed by the irreversible FCC phase transformation over 600 degrees C. When depositing the AlCoCrFeNi coating using the plasma spray process, the ratio of the FCC phase increased with increasing spraying current and argon flow rate. However, the phase constitution of the AlCoCrFeNi coatings was also influenced by powder size. With coarse powders (60-90 mu m), the formation of FCC phase was suppressed, even as the current and gas flow were increased to 750 A and 50 l/min, respectively. The physical properties, such as porosity, hardness, and saturated magnetization, of plasma-sprayed AlCoCrFeNi can hence be adjusted by tuning its phase constitution.
机译:在这项研究中,使用等离子喷涂工艺和真空气雾化粉末来实现AlCoCrFeNi高熵合金(HEA)涂层的相组成调整。所制备的AlCoCrFeNi粉末为纯BCC相,颗粒为球形。 FCC相在600摄氏度以上开始形成,并且其结晶度随退火温度的升高而增加,导致饱和磁化强度降低。雾化粉末中观察到两个居里温度:第一个居里温度约为220摄氏度,可逆。第二个原因是在600摄氏度以上不可逆的FCC相变。当使用等离子喷涂工艺沉积AlCoCrFeNi涂层时,FCC相的比例随喷涂电流和氩气流量的增加而增加。但是,AlCoCrFeNi涂层的相组成也受粉末尺寸的影响。使用粗粉(60-90μm),即使电流和气体流量分别增加到750 A和50 l / min,也可以抑制FCC相的形成。因此,可以通过调整其相组成来调整等离子喷涂的AlCoCrFeNi的物理性质,例如孔隙率,硬度和饱和磁化强度。

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