首页> 外文期刊>Transactions of Nonferrous Metals Society of China >Microstructure of alloy MlNi_(3.75)Co_(0.75)Mn_(0.3)Al_(0.2) (Ml-La-rich mischmetal) during electrochemical hydriding-dehydriding process
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Microstructure of alloy MlNi_(3.75)Co_(0.75)Mn_(0.3)Al_(0.2) (Ml-La-rich mischmetal) during electrochemical hydriding-dehydriding process

机译:MlNi_(3.75)Co_(0.75)Mn_(0.3)Al_(0.2)(富Ml-La的混合金属)电化学加氢-脱水过程中的显微组织

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摘要

Evolution of microstructures of alloy MlNi_(3.75)Co_(0.75)Mn_(0.3)Al_(0.2) (Ml--La-rich mischmetal) during the electrochemical hydriding-dehydriding process was studied by using in-situ X-ray diffraction method. It is indicated that both the crystallite sizes of alpha phase (solid solution phase) and beta phase (hydride phase) decrease with the hydrogen content increasing during this process. beta phase is found to be composed of the plate-like and the needle-like crystallites, while the crystallite size of the former changes more rapidly than that of the later during the hydriding-dehydriding process. It's also clearly found that strains along (110) plane and (001) plane of alpha phase and beta phase are higher in the alpha+beta region than those in the corresponding single phase region. Based on the microstructural studies, mechanism for the hydride growth has also been proposed.
机译:利用原位X射线衍射方法研究了MlNi_(3.75)Co_(0.75)Mn_(0.3)Al_(0.2)(Ml-La-富稀土金属)合金在电化学氢化-脱水过程中的微观组织演变。结果表明,在此过程中,随着氢含量的增加,α相(固溶体相)和β相(氢化物相)的晶粒尺寸均减小。发现β相由板状和针状微晶组成,而在氢化-脱水过程中,前者的晶粒尺寸变化比后者的晶粒尺寸变化更快。还清楚地发现,沿着α相和β相的(110)面和(001)面的应变在α+β区中比在相应的单相区中高。基于微观结构研究,还提出了氢化物生长的机理。

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