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Effect of rapid solidification treatment on structure and electrochemical performance of low-Co AB5-type hydrogen storage alloy
被引:0
|作者:
姚青荣
[1
,2
,3
]
唐莹
[2
]
周怀营
[2
,3
]
邓健秋
[2
,3
]
王仲民
[2
,3
]
潘顺康
[2
,3
]
饶光辉
[2
,3
]
朱其明
[4
]
机构:
[1] School of Materials and Engineering, Central South University
[2] School of Materials Science and Engineering,Guilin University of Electronic Technology
[3] School of Science,Guangxi University for Ationalities
[4] Guangxi Key Laboratory of Information Materials,Guilin University of Electronic Technology
关键词:
hydrogen storage alloy;
electrochemical properties;
rapid solidification;
quenching rate;
rare earths;
D O I:
暂无
中图分类号:
TG139.7 [];
学科分类号:
摘要:
The effect of rapid solidification on structure and electrochemical performance of the LaNi4.5Co0.25Al0.25 hydrogen storage alloy was investigated by X-ray powder diffraction and a simulated battery test, including maximum capacity, cycling stability, self-discharge, and high-rate discharge ability(HRD). All the melt-spun alloys were single-phase with the CaCu5-type structure(space group P6/mmm). In comparison to the as-cast alloy, the rapidly quenched alloys manifested an improved homogeneity of composition and expanded lattice parameters. The electrochemical measurements showed that the activation property, cycling stability and self-discharge of the alloy electrodes were also improved for the rapid solidified alloys. The HRD of the as-cast alloy was better than those of all the rapidly solidified alloys. As the quenching rate increased, the HRD and exchange current density first decreased and then increased.
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页码:526 / 531
页数:6
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