Mo2(Fex, Ni1-x)B2固溶体粉体制备新方法

IF 0.9 4区 材料科学 Q3 MATERIALS SCIENCE, CERAMICS
Xiao-Hui Yang, Ya-Long Wang, Guo-Hua Zhang
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引用次数: 0

摘要

mo2feb2基陶瓷具有优异的机械性能、较高的抗氧化性和热稳定性,在工业制造中具有广阔的应用前景。本研究以B4C粉末为硼源,Mo、Fe、Ni粉末为金属源,Ca粉末为脱碳剂,采用独特的工艺成功制备了Mo2(Fex, Ni1-x)B2三元硼化物固溶体粉末。研究了Fe/Ni比对粉末相组成、形貌演变及平均晶粒尺寸的影响。XRD结果中衍射峰的移位和EDS能谱中Mo、Fe、Ni、B的均匀分布验证了三元硼化物固溶体粉末的成功合成。固溶体粉末的形貌随Fe/Ni比的变化而变化。当Fe/Ni比为10:0、7:3和5:5时,三元固溶体粉末呈现明显的球形晶粒,平均晶粒尺寸分别约为3、1和1 μm。相反,当Fe/Ni比为3:7和0:10时,固溶体粉末呈现球形晶粒(直径约为1 μm)和棱柱形晶粒(长度约为8 μm,直径约为3 μm)的混合形貌,分别对应于Mo2NiB2的方形和正交晶型结构。以超细Mo粉为原料,提高反应动力学,使产物的稳定相为正交相Mo2NiB2。尽管如此,当Fe/Ni比为3:7时,产物仍然由正交和四方Mo2NiB2相组成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Novel Preparation Approach of Mo2(Fex, Ni1–x)B2 Solid Solution Powders

A Novel Preparation Approach of Mo2(Fex, Ni1–x)B2 Solid Solution Powders

Mo2FeB2-based cermets exhibit promising industrial manufacturing applications due to their excellent mechanical properties, higher oxidation resistance, and thermal stability. In this study, ternary boride solid solution powders of Mo2(Fex, Ni1–x)B2 were successfully prepared with a unique technique via employing B4C powder as a boron source, Mo, Fe, and Ni powders as metal sources as well as Ca powder as the decarburization agent. The effect of the Fe/Ni ratio on the phase composition, morphological evolution and average grain size of powders was studied. The shift of diffraction peak in the XRD results and the homogeneous distributions of Mo, Fe, Ni, and B by the EDS energy spectrum validated the successful synthesis of ternary boride solid solution powders. The morphology of solid solution powders varied depending on the Fe/Ni ratio. For compositions with Fe/Ni ratios of 10 : 0, 7 : 3, and 5 : 5, the ternary solid solution powders exhibited pronounced spherical grains with average grain sizes of approximately 3, 1, and 1 μm, respectively. Conversely, when the Fe/Ni ratios were 3 : 7 and 0 : 10, the solid solution powders exhibited mixed morphologies of spherical (with diameters of approximately 1 μm) and prismatic grains (with lengths of about 8 μm and diameters of around 3 μm), corresponding respectively to the tetragonal and orthorhombic crystal structures of Mo2NiB2. Using ultrafine Mo powder as a raw material to boost reaction kinetics resulted in the product's stable phase being orthorhombic Mo2NiB2. Nonetheless, at a Fe/Ni ratio of 3 : 7, the product still consisted of orthorhombic and tetragonal Mo2NiB2 phases.

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来源期刊
Powder Metallurgy and Metal Ceramics
Powder Metallurgy and Metal Ceramics 工程技术-材料科学:硅酸盐
CiteScore
1.90
自引率
20.00%
发文量
43
审稿时长
6-12 weeks
期刊介绍: Powder Metallurgy and Metal Ceramics covers topics of the theory, manufacturing technology, and properties of powder; technology of forming processes; the technology of sintering, heat treatment, and thermo-chemical treatment; properties of sintered materials; and testing methods.
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