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Composite structure and hydrogen storage properties in Mg-base alloys

机译:镁基合金的复合结构和储氢性能

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In order to improve the hydrogen absorption/desorption kinetic properties of Mg and Mg-Ni alloys, composite hydrogen storage alloys in the form of powder and film have been synthesized and investigated. For fabricating the composite powder, Mg or Mg-Ni powder was mechanically alloyed with MmNi_(3.5) (CoAlMn)_(1.5) alloy. For the preparation of the film with a composite structure, evaporation deposition and magnetron sputtering methods have been used to fabricate Mg-Ni film with multi-phase structure and Mg/Mm-Ni and Mg-Ni/Mm-Ni multi-layer film. By controlling the fabrication process, the microstructure feature, such as phase constituent, grain size, interlayer distances, interlayer boundary structure, of the composite can be modified. To reveal the influence of the composite structure on the hydrogen absorption/desorption kinetic properties of Mg and Mg-Ni alloys, hydrogen storage properties of the composite were measured with their microstructure features varied systematically. The present work shows that the hydrogen sorption properties of Mg and Mg-Ni-based alloys can be substantially improved by forming composites having proper microstructure features.
机译:为了改善Mg和Mg-Ni合金的氢吸收/解吸动力学性能,已经合成并研究了粉末和薄膜形式的复合储氢合金。为了制造复合粉末,将Mg或Mg-Ni粉末与MmNi_(3.5)(CoAlMn)_(1.5)合金机械合金化。为了制备具有复合结构的膜,已经使用蒸发沉积和磁控溅射方法来制造具有多相结构的Mg-Ni膜以及Mg / Mm-Ni和Mg-Ni / Mm-Ni多层膜。通过控制制造过程,可以改变复合材料的微观结构特征,例如相组成,晶粒尺寸,层间距离,层间边界结构。为了揭示复合材料结构对Mg和Mg-Ni合金氢吸收/解吸动力学特性的影响,对复合材料的储氢性能进行了测量,并观察了其微观结构特征。本工作表明,通过形成具有适当微观结构特征的复合材料,可以大大改善Mg和Mg-Ni基合金的氢吸附性能。

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