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1)  Solid Solution Alloy Containing V
含V固溶体合金
2)  Ti-V-Mn solid solution alloy
Ti-V-Mn体系固溶体合金
3)  solid solution alloy
固溶体合金
1.
Hydrogen storage properties of Ti-V-Fe solid solution alloys were reviewed.
综述了Ti-V-Fe基固溶体合金的储氢研究现状,结果表明合金成分的调整与合金储氢量和平台特性密切相关。
2.
As hydrogen storage alloy or negative electrode materials, three solid solution alloys, Ti-V-Ni、Ti-V-Mn and Ti-V-Cr were reviewed.
介绍了 Ti-V-Ni,Ti-V-Mn 和 Ti-V-Cr 3 种固溶体合金作为储氢合金或电极材料的研究现状。
4)  alloy solid solutions
合金固溶体
5)  V-based solid solution
V基固溶体
1.
Influence of ball-milling with Cu powder on electrochemicalproperties of V-based solid solution type hydrogen storage alloys;
Cu粉复合球磨处理对V基固溶体型贮氢合金电化学性能的影响
2.
Based on XRD and FESEM-EDS analysis, the alloy is mainly composed of V-based solid solution with BCC structure and TiNi-based secondary phase.
本文采用XRD,FESEM-EDS及电化学阻抗谱(EIS)等方法对V基固溶体Ti0。
3.
The result of XRD analysis shows that the alloy is mainly composed of V-based solid solution phase with body-centered-cubic (bcc) structure and C14 Laves phase with hexagonal structure.
X射线衍射分析表明:该合金由体心立方结构(bcc)的V基固溶体主相和少量六方结构的C14型Laves相组成;FESEM及EDS分析表明:V基固溶体主相形成树枝晶,C14型Laves相呈网格状围绕着树枝晶的晶界,元素在两相中的分布呈现镜像关系。
6)  V based solid solutions
V-基固溶体
补充资料:固溶体合金
分子式:
分子量:
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性质:见合金。

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