1)hydrogen storage electrode alloy贮氢电极合金
1.New type TiV-based hydrogen storage electrode alloy;新型钛钒系贮氢电极合金
2.6 hydrogen storage electrode alloys prepared by both conventional casting and melt-spinning processes at different solidification rate were studied comparatively.研究了单辊快淬快速凝固处理对无Co贮氢电极合金MlNi4。
3.Six series of hydrogen storage electrode alloy RE (NiCoMnTi)5 with a general formula of AαA1-αB5 were prepared where AαA1-α is binary rare earth metal mixture among La, Ce, Pr, Nd, and B is nickel partially substituted by Co, Mn and Ti.制备了6个系列通式为A_αA_(1-α)B_5的RE(NiCoMnTi)_5贮氢电极合金(其中,A_αA_(1-α)为La,Ce,Pr,Nd 4个元素中任意2个的组合),测定了它们在100次循环中的最大放电容量C_(max)及部分合金的晶胞体积V_(cell),结果表明:C_(max)主要由V_(cell)决定,C_(max)先随V_(cell)的增大而增加,在V_(cell)≈85。
英文短句/例句
1.A Study on Amorphous Ce-Mg Hydrogen Storage Electrode Alloys;非晶态Ce-Mg系贮氢电极合金研究
2.An Investigation on the Structural and Electrochemical Properties of the TiV-Based Hydrogen Storage Electrode Alloys;钛钒基贮氢电极合金结构和电化学性能研究
3.An Investigation on the La-Ni-Sn-based AB_(5+x) Type Co-free Hydrogen Storage Electrode Alloys;La-Ni-Sn系AB_(5+x)型无Co贮氢电极合金的研究
4.A Study on the Novel V-Ti-Ni-Zr Based Dual-phase Hydrogen Storage Electrode Alloys;新型V-Ti-Ni-Zr基双相贮氢电极合金研究
5.The Effects of Chemical Composition and Rapid Quenching on the Phase Structure and Electrochemical Properties of Hydrogen Storage Electrode Alloys;合金成分及快凝处理对贮氢电极合金相结构和电化学性能的影响
6.A Study on the Improvement of Cycling Stability of Ball-milled Mg-based Hydrogen Storage Electrode Alloys by Means of Multi-component Alloying;以多元合金化改进球磨Mg基贮氢电极合金循环稳定性的研究
7.Research on the Cycle Stability of Magnisium-Based Hydrogen Storage Electrode Alloys by Multi-Components Alloying;多元合金化改善镁基贮氢电极合金循环稳定性研究
8.The Electrochemical Properties Studies on Microencapsulated La-Mg-Ni-based A_2B_7-type Hydrogen Storage Electrode Alloys;表面包覆La-Mg-Ni系A_2B_7型贮氢电极合金的电化学性能研究
9.An Investigation on the Phase Struture and Electrochemical Properties of the La-Mg-Ni-based A_2B_7-type Hydrogen Storage Electrode Alloys;La-Mg-Ni系A_2B_7型贮氢电极合金的相结构与电化学性能研究
10.The Phase Structures and Electrochemical Properties of La-Mg-Ni-Co Based AB_3-type Hydrogen Storage Alloys;La-Mg-Ni-Co系AB_3型贮氢电极合金的相结构与电化学性能
11.The Phase Structures and Electrochemical Properties of Melt-spun Low-Co and Co-free AB_5-type Hydrogen Storage Alloys;快速凝固AB_5型低Co及无Co贮氢电极合金的相结构与电化学性能
12.Effects of Substitution of Zr or Ti for La on the Structure and Electrochemical Properties of La-Mg-Ni-Co-based Hydrogen Storage Electrode Alloys;Zr、Ti替代La对La-Mg-Ni-Co系贮氢电极合金结构及电化学性能的影响
13.The Phase Structure and Electrochemical Properties of La-Mg-Ni-Co Based Hydrogen Storage Electrode Alloys;La-Mg-Ni-Co系贮氢电极合金的相结构与电化学性能
14.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
15.The Phase Structures and Electrochemical Properties of Low-Co and Co-free AB_5-type Hydrogen Storage Alloys;AB_5型低Co与无Co贮氢电极合金的相结构与电化学性能
16.The Research on Electrochemical Performance of Zr-Cr-Ni AB_2 Laves Phase Hydrogen Storage Alloys;Zr-Cr-Ni系AB_2型Laves相贮氢电极合金的电化学特性研究
17.Microstructure and Electrochemical Properties of V-Ti-Ni-Zr Based Hydrogen Storage Electrode Alloys;V-Ti-Ni-Zr基贮氢电极合金的微结构及电化学性能
18.New Research Progress in Investigation of AB_5 Rare Earth-based Hydrogen Storage Alloys for MH/Ni BatteryNi/MH电池用AB_5型贮氢合金电极研究进展
相关短句/例句
hydrogen storage electrode alloys贮氢电极合金
1.Effects of substitution of Nd for La on properties of La-Mg-Ni system A_2B_7-type hydrogen storage electrode alloys;Nd替代La对La-Mg-Ni系A_2B_7型贮氢电极合金性能的影响
2.4 hydrogen storage electrode alloys were prepared by cold crucible melting under argon gas atmosphere.4贮氢电极合金,采用XRD、三电极体系及SEM研究相结构、电化学性能及电极的表面状态。
3.6) hydrogen storage electrode alloys were prepared by cold crucible levitation melting under argon gas atmosphere.6)贮氢电极合金,采用FESEM,EDS,XRD,p-c-t测试及三电极电化学性能测试研究合金的相成分、相结构、p-c-t曲线和电化学性能。
3)Hydride electrode alloy贮氢电极合金
1.15 hydride electrode alloy were studied systematically.15贮氢电极合金的微结构和电化学性能。
4)hydrogen storage alloy electrode贮氢合金电极
1.Effects of heat treatment on the performance of hydrogen storage alloy electrode;热处理对贮氢合金电极性能的影响
2.The effects of silver additive to La-rich AB5-type hydrogen storage alloy electrodes were investigated using the constant current charge/discharge and pulse-discharge test.用恒电流充放电和脉冲放电方法研究了含银添加剂对富镧AB5型贮氢合金电极电化学性能的影响。
3.The surface treatment of hydrogen storage alloy electrode is an effective method to improve its electrochemical performances.贮氢合金电极的表面处理是改善其电化学性能的有效方法。
5)AB_3-type hydrogen-storage electrode alloysAB3型贮氢电极合金
1.The properties of rare earth Mg-based AB_3-type hydrogen-storage electrode alloys and the influence of the partial substitution of Al for Ni on these properties were discussed by using self-made H-type open glass tri-electrode system after a great deal of experiments.借助于自制的开口式H型玻璃三电极测试体系,并在大量的前期实验工作基础上,研究了新型稀土镁基AB3型贮氢电极合金的性能以及添加Al的作用。
6)Ball-milled Mg-based hydrogen storage electrode alloys球磨Mg基贮氢电极合金
延伸阅读
钛铁贮氢合金分子式:CAS号:性质:一种性能优良、成本低廉的贮氢材料。它吸氢量大,含氢重量比为1.8%,吸放氢迅速,这些优点对其应用十分有利。不足之处是活化困难,须加热到250℃以上作反复的充氢——抽空操作,另外抗中毒能力差。这些缺点可以通过Mn、Co等合金化加以改善。TiFe合金已在氢的贮存净化、氢压机等领域获得应用。
