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1)  Vanadium-base alloys
钒基合金
2)  Ti-V-based alloys
钛钒基合金
1.
Based on a overall review of the research and development of the Ti-V-based hydrogen storage electrode alloys, and the degradation mechanism of the hydrogen storage alloy electrodes, the Ti-V-based alloys were selected as the study objects of this thesis.
在此基础上,确定以钛钒基贮氢电极合金为研究对象,采用XRD/Rietveld、SEM、TEM和AES等材料分析方法以及恒电流充放电、电化学阻抗谱、线性极化、阳极极化和恒电位阶跃等电化学测试技术,对钛钒基合金的成分、相结构与电化学性能三者之间的关系进行了系统的研究,提出贮氢电极合金的“本征/非本征衰退机理”,并以钛钒基合金为实例对该机理进行了验证。
3)  TiVCr based alloys
钛钒铬基合金
1.
The influence of suction cast on phase structures and hydrogen storage properties of TiVCr based alloys has been investigated in this work.
研究了吸铸对钛钒铬基合金结构和贮氢性能的影响。
4)  V-based hydrogen storage alloy
钒基贮氢合金
1.
V-based hydrogen storage alloys V3TiNi0.
以V2O5、TiO2等原料,用自蔓延高温合成法制备了钒基贮氢合金V3TiNi0。
5)  V-based solid solution alloy
钒基固溶体合金
1.
The effects of the rare earth on V-based solid solution alloys have been investigated and the alloys with better integral performances for being used as the anode of MH-Ni have been obtained.
本文选取钒基固溶体合金Ti_(0。
6)  vanadium-based solid solution alloy
钒基固溶体合金
1.
In this pa- per,the characteristic of vanadium-hydrogen reaction is introduced,and the reason why the effective hydrogen storage content of vanadium-based solid solution alloys is low is explained.
钒基固溶体合金是一类重要的贮氢材料。
补充资料:2500kVA电弧炉熔炼钒铁作业(锦州铁合金厂)


2500kVA电弧炉熔炼钒铁作业(锦州铁合金厂)


  2500kVA电弧炉熔炼钒铁作业(锦州铁合金厂)
  
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