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二氧化硅溶胶包裹镧镍铝合金的制备
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The Preparation of LaNi4.8Al0.2 Alloy Enwrapped by SiO2 Sol
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国家自然科学基金(50371016);国家自然科学基金委中-英国际合作与交流基金(50611130629)

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    摘要:

    采用气相二氧化硅处理镧镍铝合金,研究二氧化硅溶胶包裹镧镍铝合金的制备方法。对干燥后的样品进行了SEM分析,研究了水含量、镧镍铝合金含量和合金粒度、干燥工艺对样品吸氢性能的影响。结果发现,绝大多数镧镍铝合金颗粒都能被包裹在二氧化硅胶体内;溶胶的粘度随着水含量的增加、时间的延长逐渐降低;水和二氧化硅的含量控制在8:1时,样品的吸氢速度较快;镧镍铝合金含量越低,样品中单位质量的金属吸氢量越高;合金粒度越小,合金颗粒越容易被胶体包裹住,样品的吸氢性能也相对越好;另外,样品干燥过程中并不一定需要有惰性气体保护。在0.2 MPa氢压下,样品的吸氢量和吸氢速度都明显优于LaNi4.8Al0.2合金

    Abstract:

    SiO2 sol was used to enwrap the LaNi4.8Al0.2 alloy to improve the hydriding performance of the alloy. The samples after drying were analyzed by SEM. The effects of preparation parameters on hydriding performance were studied, which include water content, silica content, granularity of the alloy and the drying techniques. Results show that most metal particles are embedded into the silica sol. The sol viscosity is reduced gradually with more water and longer time. When the ratio of water to silica is 8:1, the hydriding speed of the samples is the fastest. The hydrogen absorption capacity per unit mass solid is increased with less LaNi4.8Al0.2 alloy. It is easier for the sol to enwrap the metal when the granularity of metal particles is smaller, and the hydriding performance of the samples is better. Furthermore, the hydrogen absorption capacity and absorption speed of the samples heated and dried in Ar is worse than that heated and dried in air. Thus the hydriding performance is not much relevant with the noble gas protection. The hydrogen absorption capacity and the absorption speed of the samples are obviously superior to that of the LaNi4.8Al0.2 alloy under 0.2 MPa hydrogen pressure.

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钱晓静,黄国强,张 志,邓潇君.二氧化硅溶胶包裹镧镍铝合金的制备[J].稀有金属材料与工程,2010,39(12):2242~2246.[Qian Xiaojing, Huang Guoqiang, Zhang Zhi, Deng Xiaojun. The Preparation of LaNi4.8Al0.2 Alloy Enwrapped by SiO2 Sol[J]. Rare Metal Materials and Engineering,2010,39(12):2242~2246.]
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  • 收稿日期:2009-12-03
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