1)V-based solid solutionV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。
英文短句/例句
1.Hydrogen Storage Properties of V Based Binary Alloys;V基固溶体二元合金的吸放氢特性研究
2.Study on Hydrogen Absorption/Desorption Characteristics of Ti-V-based Solid Solution Type Hydrogen Storage Alloys;Ti-V基固溶体型储氢合金吸放氢性能的研究
3.Study on Structure and Electrochemical Performance of the V-Based Solid Solution Alloy;V基固溶体合金结构和电化学性能研究
4.Study on Electrochemical Characteristics of Ti-V-based Solid Solution Type Hydrogen Storage Alloys;Ti-V基固溶体型储氢合金电化学性能的研究
5.The Effects of Multi-component Alloying and Ball-milling on the Phase Structures and Electrochemical Properties of V-based Solid Solution Hydrogen Storage Electrode Alloys;多元合金化和球磨改性处理对V基固溶体型贮氢电极合金相结构及电化学性能的影响
6.Phase Structures and Electrochemical Properties of Ti-V-Ni V-based Solid Solution Type Alloys;Ti-V-Ni系钒基固溶体型贮氢电极合金的相结构与电化学性能
7.Study on Structure and Electrochemical Performance of Ti-V-Mn Solid Solution Alloy;Ti-V-Mn系固溶体贮氢合金结构和电化学性能研究
8.Study on Structure and Electrochemical Performance of Ti-Zr-V-Mn-Ni Solid Solution Hydrogen Storage AlloyTi-Zr-V-Mn-Ni固溶体贮氢合金结构和电化学性能研究
9.Investigation on Magnetocaloric Properties and Solid Solution Strengthening of Gd-based Solid Solution Alloy;Gd基固溶体的磁热性能与固溶强化研究
10.a solid solution of two simple salts.两种单盐的固体溶体。
11.CORROSION BEHAVIORS OF Ni BASE SOLID SOLUTION-TOUGHENED Cr_(13)Ni_5Si_2 ALLOY IN Cl-CONTAINING SOLUTIONS镍基固溶体增韧Cr_(13)Ni_5Si_2合金在含Cl~-溶液中的腐蚀行为
12.Research on the Electrochemical Properties of V-based Solid Solution-Type Hydrogen Storage Alloys;钒基固溶体型贮氢合金电化学性能的研究
13.Studies on Synthesis of Vanadium Base Solid Solution Hydrogen Alloy and Its Performance;钡基固溶体贮氢合金的制备及性能研究
14.Study on Formation and Effects Mechanism of Solid Solution in Ti/SnO_2-SbO_x Electrode;钛基SnO_2-SbO_x电极固溶体形成作用机制的研究
15.First Principles Calculation of (K_(1-x)Na_x)NbO_3 Solid Solutions(K_(1-x)Na_x)NbO_3基固溶体的第一性原理研究
16.The first-principles study on the elasticity of V-based solid solution hydrogen storage materials钒基固溶体储氢材料弹性性质第一性原理研究
17.Predominance Diagram of Dissolved Species and Pourbaix Diagram of V-H_2O System at High Vanadium Concentration高浓度V-H_2O体系的溶解组分优势区域图和Pourbaix图
18.a solid solution in which alpha iron is the solvent.以α铁为溶剂的固体溶体。
相关短句/例句
V based solid solutionsV-基固溶体
3)Ti-V-based solid solutionTi-V基固溶体
1.Ti-V-based solid solution type hydrogen storage alloys are considered as one of the promising candidates for fuel-cell automobiles due to their large hydrogen storage capacities and good hydrogen sorption kinetics characteristics.Ti-V基固溶体型储氢合金由于较大的储氢量和良好的吸放氢动力学性能而被认为是最有希望成为燃料电池车用储氢材料之一。
2.Ti-V-based solid solution type hydrogen storage alloys have excellent characteristics in gas-solid reaction, including large capacity, fast activation, high diffusion rate of hydrogen and so on.Ti-V基固溶体型储氢合金在气固相条件下,具有吸氢量大、活化容易、昅放氢迅速等优点;但在电化学条件下,活性低,几乎无法充放电。
4)Ti-V BCC alloyTi-V固溶体
5)Solid Solution Alloy Containing V含V固溶体合金
6)CeO2-based solid solutionsCeO2基固溶体
1.CeO2-based solid solutions (Ce0.采用柠檬酸溶胶-凝胶法制备CeO2基固溶体催化剂(Ce0。
延伸阅读
取代固溶体分子式:CAS号:性质:又称取代固溶体。固相溶剂中部分质点被熔质质点取代而成的固态溶液。通常两物质结构类型相同,价数相同,化学性质相似,置换质点大小相似时易于形成置换固溶体。按置换程度可分为连续固溶体和有限固溶体两类。形成无限固溶体时质点大小(离子半径大小)之差一般<15%。例如Cr3+和Al3+可无限置换成铬刚玉,而Mg2+只能有限地置换CaO晶格中的Ca2+,形成有限固溶体。
