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The production of nanocrystalline cobalt titanide intermetallic compound via mechanical alloying

机译:机械合金化制备纳米晶钛酸钴金属间化合物

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A nanocrystalline cobalt titanide (CoTi) intermetallic compound has been produced by mechanical alloying (MA) of the elemental powders. In all MA experiments, the ball-to-powder weight ratio was 10:1. The phase evolution and microstructural changes of the powders during mechanical alloying were investigated by means of X-ray diffraction, scanning electron microscopy, transmission electron microscopy and microhardness measurements. The results showed that after an optimum mechanical alloying time of 12 h, a CoTi intermetallic phase with the crystallite size of less than 10 nra, the particle size of about 10 μm and the lattice strain of 1.1% was achieved. The study of the mechanism for the formation of the CoTi phase revealed that a composite structure with coarse lamellar-like components was formed with the dissolution of Ti in Co in the early stages of mechanical alloying. The resulting solid solution ultimately provided for the formation of nanocrystalline CoTi phase with the high microhardness value of about 580 Hv.
机译:通过对元素粉末进行机械合金化(MA)制备了纳米晶的钛酸钴(CoTi)金属间化合物。在所有MA实验中,球粉重量比为10:1。通过X射线衍射,扫描电子显微镜,透射电子显微镜和显微硬度测量研究了粉末在机械合金化过程中的相变和显微组织变化。结果表明,经过最佳的机械合金化时间12 h,可得到晶粒尺寸小于10 nra,晶粒尺寸约为10μm,晶格应变为1.1%的CoTi金属间相。对CoTi相形成机理的研究表明,在机械合金化的早期阶段,随着Ti在Co中的溶解,形成了具有粗层状成分的复合结构。最终的固溶体最终提供了具有约580 Hv的高显微硬度值的纳米晶CoTi相的形成。

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