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Hydriding behavior of magnesium-based hydrogen storage alloy modified by mechanical ball-milling

机译:机械球磨改性镁基储氢合金的加氢性能

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The structure and effects of mechanical ball-milling on hydriding behavior of LaMg11Ni were studied. Structures of the alloys and the hydrides were determined by X-ray diffraction (XRD). By measuring hydrogen-storage capacity and hydrogen absorption kinetics of the material, hydriding behaviors of LaMg11Ni prepared by different mechanical ball-milling time were compared. In this work, there is a 20 increase of hydrogen absorption capacity after 20 h milling, and the kinetics of hydrogen absorption was markedly improved. Nevertheless, further milling does not make good. When the milling time is too long, the situation will be deteriorated. For example, after 120 h milling, the material has very poor hydrogen-storage capacity and is difficult to activate. Explanation of the phenomenon is proposed on the basis of microstructure analysis. (C) 2003 Published by Elsevier B.V. References: 15
机译:研究了机械球磨对LaMg11Ni氢化行为的结构和影响。通过X射线衍射(XRD)测定合金和氢化物的结构。通过测定材料的储氢容量和吸氢动力学,比较了不同机械球磨时间制备的LaMg11Ni的氢化行为。本工作在研磨20 h后吸氢能力提高了20%,吸氢动力学得到明显改善。然而,进一步的铣削并不能带来好处。当铣削时间过长时,情况会恶化。例如,经过 120 小时的研磨后,该材料的储氢能力非常差,并且难以活化。在微观结构分析的基础上提出了对这一现象的解释。(c) 2003年由Elsevier B.V.出版 [参考文献: 15]

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