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Solid state reaction and formation of nano-phase composite hydrogen storage alloy by mechanical alloying of MmNi(3.5)(CoMnAl)(1.5) and Mg

机译:MmNi(3.5)(CoMnAl)(1.5)和Mg机械合金化的固相反应及纳米相复合储氢合金的形成

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摘要

In this work MmNi(3.5)(CoMnAl)(1.5) and Mg were mechanically alloyed to prepare composite hydrogen storage alloys. The microstructural variation of the alloy resulted from the mechanical alloying was characterized by X-ray diffraction, SEM and TEM analysis. It was found that solid state reaction occurred between MmNi(3.5)(CoMnAl)(1.5) and Mg components, resulting in Mm(2)Mg(17) phase formation. The alloy obtained by ball milling contains homogeneously distributed Mg, MmNi(3.5)(CoMnAl)(1.5) and Mm(2)Mg(17) phases of nanometer size. It was also found that Mg2Ni was formed after the mechanically alloyed samples were annealed. The mechanism of the reaction has been proposed based on the estimation of the heat of formation using Miedema's theory and is in accordance with the experiment result of lattice constant measurement of ball milled sample and its structure variation during annealing. (C) 2003 Kluwer Academic Publishers. [References: 25]
机译:在这项工作中,将MmNi(3.5)(CoMnAl)(1.5)和Mg机械合金化以制备复合储氢合金。通过X射线衍射,SEM和TEM分析表征了机械合金化引起的合金的微观结构变化。发现在Mm​​Ni(3.5)(CoMnAl)(1.5)和Mg组分之间发生固态反应,导致Mm(2)Mg(17)相形成。通过球磨获得的合金包含纳米尺寸的Mg,MmNi(3.5)(CoMnAl)(1.5)和Mm(2)Mg(17)相均匀分布。还发现在对机械合金化的样品进行退火后会形成Mg2Ni。该反应机理是根据米德玛(Miedema)理论估算地层热而提出的,并与球磨样品晶格常数测量及其退火过程中结构变化的实验结果相符。 (C)2003 Kluwer学术出版社。 [参考:25]

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