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氢化物脱氢法制备Nb-Ti基合金粉末
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北京科技大学 新材料技术研究院 北京材料基因工程高精尖创新中心

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国家自然科学基金项目(51174029, 51574030)和国家重点研发计划项目 (2017YFB0305600, 2017YFB0306000)


Nb-Ti based alloy powder prepared by hydride-dehydride method
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Beijing Advanced Innovation Center for Materials Genome Engineering,Institute for Advanced Materials and Technology,University of Science and Technology Beijing

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National Natural Science foundation of China (51174029, 51574030) and National Key R&D Program of China (2017YFB0305600, 2017YFB0306000)

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    摘要:

    采用氢化-脱氢法制备了微细轻质Nb-Ti基合金粉末,并研究了吸氢/解吸行为。300 ℃时,氢吸收明显,400 ℃时吸氢量达到饱和值1.12 wt.%。氢化后形成二元和三元氢化物(Nb0.803V0.197H, Nb0.696V0.304H, TiHx)。由于氢致脆化效应,吸氢后的粉末破碎后得到细粒径的氢化粉末。在脱氢过程中,氢含量在300 ℃时有效降低至0.001 wt.%,实现了从铌或钛氢化物到单相固溶体合金(β相)的相转变。由于组分元素与氧反应活性高,粉末中氧含量随吸氢或脱氢温度的升高而增加。为了防止杂质氧的污染,氢化和脱氢温度都选择为400℃。实验最终得到了平均粒径16μm,氧含量为2980 ppm的微细Nb基合金粉末,且粉末表面的氧杂质主要以Nb2O5和TiO2的形式存在。

    Abstract:

    Micro-fine lightweight Nb-Ti based alloy powder was fabricated by hydride-dehydride method, and the hydrogen absorption/desorption behavior was investigated. The obvious hydrogen absorption occurs at 300 oC, and the absorbed hydrogen quantity reaches a saturation value of 1.12 wt.% at 400 oC. Binary and ternary hydrides (Nb0.803V0.197H, Nb0.696V0.304H and TiHx) were formed after hydrogenation. Hydrogen-induced embrittlement facilitates the pulverization of the thin alloy plate. During dehydrogenation process, hydrogen content was effectively reduced to 0.001 wt.% at 300 oC. Phase transformation from niobium or titanium hydrides to single phase solid solution alloy (β phase) was achieved. Oxygen content of the powder increases with increasing hydrogenation or dehydrogenation temperature due to the high reactivity of constituent elements with oxygen, both hydrogenation and dehydrogenation temperature of 400 oC is selected in order to prevent severe oxygen intake. Micro-fine Nb-based alloy powder with average particle size of 16 μm and oxygen content of 2980 ppm was obtained. Superfacial contamination of the obtained powder is detected, and oxygen impurity exists in the form of Nb2O5 and TiO2.

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李启军,章林,李兵兵,魏东斌,曲选辉.氢化物脱氢法制备Nb-Ti基合金粉末[J].稀有金属材料与工程,2020,49(1):93~100.[Qijun Li, Lin Zhang, Bingbing Li, Dongbin Wei, Xuanhui Qu. Nb-Ti based alloy powder prepared by hydride-dehydride method[J]. Rare Metal Materials and Engineering,2020,49(1):93~100.]
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  • 收稿日期:2018-08-18
  • 最后修改日期:2018-10-08
  • 录用日期:2018-11-08
  • 在线发布日期: 2020-02-16
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