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Fabrication of a Spherical Titanium Powder by Combined Combustion Synthesis and DC Plasma Treatment

机译:燃烧合成与直流等离子体处理相结合制备球形钛粉

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Combustion synthesis is capable of producing many types of refractory and ceramic materials, as well as metals, with a relatively lower cost and shorter time frame than other solid state synthetic techniques. TiO2 with Mg as reductant were dry mixed and hand compacted into a 60 mm diameter mold and then combusted under an Ar atmosphere. Depending on the reaction parameters (Mg concentration 2 ≤ α ≤ 4), the thermocouples registered temperatures between 1160°C and 1710°C · 3 mol of Mg gave the optimum results with combustion temperature (Tc) and combustion velocity (Uc) values of 1372°C and 0.26 cm/s respectively. Furthermore, this ratio also had the lowest oxygen concentration in this study (0.8 wt%). After combustion, DC plasma treatment was carried out to spheroidize the Ti powder for use in 3D printing. The characterization of the final product was performed using X-ray diffraction, scanning electron microscopy, energy dispersive spectroscopy, and N/O analysis.
机译:燃烧合成能够生产多种类型的耐火材料和陶瓷材料以及金属,与其他固态合成技术相比,其成本相对较低且时间框架较短。将具有Mg作为还原剂的TiO2进行干混,并手工压制成直径60 mm的模具,然后在Ar气氛下燃烧。根据反应参数(Mg浓度2≤α≤4),热电偶在1160°C和1710°C之间记录的温度·3 mol Mg的最佳燃烧温度(Tc)和燃烧速度(Uc)为1372°C和0.26 cm / s。此外,在该研究中,该比例的氧气浓度也最低(0.8 wt%)。燃烧后,进行DC等离子体处理以球化用于3D打印的Ti粉末。使用X射线衍射,扫描电子显微镜,能量色散谱和N / O分析对最终产品进行表征。

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