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基于机械活化的反应合成W2B合金粉体研究
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四川大学 材料科学与工程学院,四川 成都 610065

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中图分类号:

TF123.3+2

基金项目:

四川大学工科共性学科特色方向(2020SCUNG201);四川省重大科技专项(2019ZDZX001-4)


Reactive Synthesis of W2B Alloy Powder Based on Mechanical Activation
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Affiliation:

College of Materials Science and Engineering, Sichuan University, Chengdu 610065, China

Fund Project:

New functional materials of rare earth vanadium titanium(No.2020SCUNG201);Major science and technology projects in Sichuan Province(No.2019ZDZX001-4)

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    摘要:

    以高纯钨粉和无定形硼粉为原料,采用机械活化结合反应合成的方法,低温高效制备了高纯W2B合金粉末。研究了机械活化时间对粉末的形貌、粒径分布以及比表面积的影响,并阐明相组成与合成温度之间的关系及反应机理。结果表明:机械活化有效细化颗粒,粉末的比表面积和位错密度随着机械活化时间的增加而增大。不同机械活化时间下反应合成后粉末中的W2B的含量随着机械活化时间的增加而增大,机械活化20 h后1150 ℃反应合成粉末的真实密度达到17.01 g/cm3,其W2B相的含量高达96wt%;相比于未机械活化反应合成的W-B粉末,W2B相的含量高出了23wt%。反应合成中B原子向基体W原子中扩散,首先合成低密度WB相,机械活化中引入大量位错缺陷提供了原子扩散的通道,加速WB相向W2B相转变。

    Abstract:

    Using high-purity tungsten powder and amorphous boron powder as raw materials, high-purity W2B alloy powder was efficiently synthesized at low temperatures by mechanical activation combined with reactive synthesis. The effects of mechanical activation time on the morphology, particle size distribution, and specific surface area of the powders were investigated, and the relationship among phase composition, synthesis temperature, and reaction mechanism was elucidated. The results indicate that mechanical activation can effectively refine the particles, and the surface area and dislocation density of the powder increase with the prolongation of the mechanical activation time. The content of the W2B phase in the reaction-synthesized powder increases as the mechanical activation time increases. After 20 h of mechanical activation, the true density of the reaction-synthesized powder reaches 17.01 g/cm3, with the W2B phase content of 96wt%. This powder contains 23wt% more W2B phase compared to the powder without the mechanical activation reaction. During the reactive synthesis, the B atoms diffuse into the W matrix, resulting in the formation of the low-density WB phase. Mechanical activation introduces a significant number of dislocation defects, which creates a channel for atom diffusion and accelerates the transformation from the WB phase to the W2B phase.

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黄伟,李军,刘颖.基于机械活化的反应合成W2B合金粉体研究[J].稀有金属材料与工程,2025,54(5):1335~1343.[Huang Wei, Li Jun, Liu Ying. Reactive Synthesis of W2B Alloy Powder Based on Mechanical Activation[J]. Rare Metal Materials and Engineering,2025,54(5):1335~1343.]
DOI:10.12442/j. issn.1002-185X.20240104

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历史
  • 收稿日期:2024-02-29
  • 最后修改日期:2024-03-19
  • 录用日期:2024-03-22
  • 在线发布日期: 2025-05-23
  • 出版日期: 2025-05-22