摘要
研究了 Cr部分替代 Mn对 Ti-Zr-V-Mn-Ni贮氢合金相结构、显微组织及电化学性能的影响.结果表明,随着Cr的加入,合金电极的循环稳定性得到明显改善,但电极放电容量有所下降.XRD及 EDS分析表明,合金主要由六方结构的C14 Laves母相和立方结构的TiNi型第二相构成,Cr替代后,合金中出现了立方结构的V-Cr固溶相 金相显微组织显示,铸态和退火态合金均由连续的 C14 Laves相基体以及 TiNi型树枝晶第二相组成.
AB(2) type Ti-Zr-V-Mn-Ni-based Laves phase hydrogen storage alloys have a very high initial electrochemical discharge capacity, but the capacity decreases drastically within several charging-discharging cycles in KOH electrolyte which impede their applications as the negative electrode materials in Ni-MH batteries. In is work, Mn was partially substituted by Cr in the Ti-Zr-V-Mn-Ni hydrogen storage alloy and the effects of Cr substitution on the phase structure, microstructure and electrochemical properties of the alloys have been investigated. It is found that the cycle durability of the alloy electrodes have been greatly improved with Cr substitution despite the decrease of discharge capacities. Based on the XRD and EDS analysis, the alloys are mainly composed of C14 Laves phase matrix with hexagonal structure and TiNi type secondary phase with bcc structure. With Cr substitution, another V-Cr solid solution with bee structure appears. The metallographic observation shows that both the as cast and annealed alloys consist of a continuous C14 Laves phase matrix and TiNi type secondary phase with dendritic structure.
出处
《金属学报》
SCIE
EI
CAS
CSCD
北大核心
2001年第10期1018-1022,共5页
Acta Metallurgica Sinica
基金
2000年度全国优秀博士学位论文基金2000052资助课题
关键词
贮氢合金
相结构
显微组织
电化学性能
锰
铬
钛合金
Ti-based hydrogen storage alloy
phase structure
microstructure
electrochemical property