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Effect of Feed Metal Flow Rate on Low-cost Plasma Atomizer for Fabricating 316L Stainless Steel Powder

机译:饲料金属流速对生产316L不锈钢粉的低成本等离子体雾化器的影响

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The low-cost plasma atomizer in the present study successfully synthesized stainless steel spherical powder using an energy source of less than 3 kVA. Repeated testing was conducted to examine the resulting spherical powder, among other observations, using a digital microscope (Dino-Lite AM4115), scanning electron microscopy (SEM-FEI-Inspect F50), and energy dispersive spectroscopy (EDS). To ensure the purity of the resulting 316L stainless steel spherical powder, EDS was used for qualitative and quantitative elemental analysis. The results showed that the 316L stainless steel spherical powder particles varied in size from 26 μm to 180 μm with average particle diameters of approximately 82.6 μm, making them ideal for biomedical applications. The results of the feed metal flow rate on the powder weight percentages for particle sizes 50 μm for 2 mm3/s feed metal flow, 3 mm3/s feed metal flow, and 4 mm3/s feed metal flow were 26.04%, 28.04%, and 13.09%, respectively. It is possible that this could occur because greater metal flow rates require greater plasma energy to form liquid metal droplets, so that a lower metal flow rate at the same energy consumption makes it possible to produce more metal powder in smaller particles.
机译:本研究中的低成本等离子体雾化器成功地使用小于3 kVA的能量来合成不锈钢球形粉末。进行重复测试以使用数字显微镜(Dino-Lite AM4115),扫描电子显微镜(SEM-Fei-Fei-Inspect F50)和能量分散光谱(EDS),以检查所得球形粉末。和能量分散光谱(EDS)。为了确保所得316L不锈钢球形粉末的纯度,EDS用于定性和定量元素分析。结果表明,316L不锈钢球形粉末颗粒的尺寸为26μm至180μm,平均粒径约为82.6μm,使其成为生物医学应用的理想选择。粒子尺寸的粉末重量百分比对2mm3 / s饲料金属流动,3mm3 / s饲料金属流动和4mm3 / s饲料金属流动的粉末重量百分比对粉末重量百分比的结果为26.04%,28.04%分别为13.09%。这可能发生这种情况,因为更大的金属流速需要更大的等离子体能量来形成液体金属液滴,因此在相同的能量消耗处的较低金属流速使得可以在较小的颗粒中产生更多的金属粉末。

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