用作溅射靶材的钛钼核壳粉末的制备和烧结性能

Won Hee Lee, C. Park, Heeyeon Kim, Yuncheol Ha, Jongmin Byun, Young Do Kim
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引用次数: 0

摘要

本研究使用通过高能球磨制造的机械合金(MAed)钛钼粉末制备了芯壳粉末和烧结试样。对烧结、微观结构和机械性能的分析证实了该粉末可用作溅射靶材。为了优化 MAed Ti-Mo 粉末研磨工艺,根据研磨时间对粉末进行了相和元素分析。结果表明,20 小时的研磨时间最适合制造工艺。随后,使用三维混合器碾磨 MAed Ti-Mo 粉末和 MoO 3 粉末,并进行氢还原热处理,以制造核壳粉末。通过 X 射线衍射和扫描电子显微镜进行相和孔隙率分析,分析烧结特性。此外,还通过光学显微镜和电子探针微观结构分析研究了粉末的微观结构。结果发现,钛钼核壳烧结试样具有高密度、均匀的微观结构和优异的硬度特性。这些结果表明,钛钼核壳烧结试样具有优异的烧结性能,适合用作溅射靶材。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of Ti-Mo Core-shell Powder and Sintering Properties for Application as a Sputtering Target
In this study, a core-shell powder and sintered specimens using a mechanically alloyed (MAed) Ti-Mo powder fabricated through high-energy ball-milling are prepared. Analysis of sintering, microstructure, and mechanical properties confirms the applicability of the powder as a sputtering target material. To optimize the MAed Ti-Mo powder milling process, phase and elemental analyses of the powders are performed according to milling time. The results reveal that 20 h of milling time is the most suitable for the manufacturing process. Subsequently, the MAed Ti-Mo powder and MoO 3 powder are milled using a 3-D mixer and heat-treated for hydrogen reduction to manufacture the core-shell powder. The reduced core-shell powder is transformed to sintered specimens through molding and sintering at 1300 and 1400 o C. The sintering properties are analyzed through X-ray diffraction and scanning electron microscopy for phase and porosity analyses. Moreover, the microstructure of the powder is investigated through optical microscopy and electron probe microstructure analysis. The Ti-Mo core-shell sintered specimen is found to possess high density, uniform microstructure, and excellent hardness properties. These results indicate that the Ti-Mo core-shell sintered specimen has excellent sintering properties and is suitable as a sputtering target material.
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