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1.
Crystallization and Modification in High Magnetic Field of Amorphous Alloys Used for Bipolar Plates;
极板材料非晶合金的晶化与强磁场改性
2.
Progress of materials and its fabricating process for proton exchange membrane fuel cell
PEMFC双极板材料及其制备工艺的发展现状
3.
The effect of electrode material on treatment of simulated phenol wastewater with a three-dimensional electrode reactor
极板材料对三维电极反应器处理苯酚模拟废水的影响
4.
Corrosion Behavior of Metal Bipolar Plate Materials for Proton Exchange Membrane Fuel Cells;
质子交换膜燃料电池金属双极板材料的腐蚀行为研究
5.
A Study on the Graphite/Phenol Formaldehyde Resin Composite Bipolar Plates;
石墨/酚醛树脂复合材料双极板研究
6.
Template-Directed Method Synthesis of Porous Materials for Lithium-Ion Batteries
模板法制备孔状锂离子电池电极材料
7.
Ultimate strength analysis of composite laminated ship panels
复合材料船体层合板的极限强度分析
8.
Negative plates generally used litharge as the lead oxide material.
负极板一般用氧化铅做活动性物质材料。
9.
The mosaic consists of a metal plate covered with insulating material.
嵌镶光电阴极由涂有绝缘材料的金属板组成。
10.
A Study on the Graphite/Polymer Composite Bipolar Plates in PEMFC;
用于PEMFC的石墨/聚合物复合材料双极板研究
11.
Study on the Preparation Sulfur-Free Expanded Graphite/Phenol Formaldehyde Resin Composite Bipolar Plates
无硫膨胀石墨/酚醛树脂复合材料双极板的研制
12.
Template-synthesis and Electrochemical Performance of LiMPO_4 Cathode Materials for Li-ion Secondary Batteries
LiMPO_4电池正极材料的模板合成及电化学性能研究
13.
Macroporous structure Sn-Co alloy Negative Electrode material for lithium-ion battery Prepared by Template - electro-deposition
模板—电沉积法制备孔状结构锡钴负极材料
14.
Research status and development of the electrode materials in resistance welding of galvanized steel sheets
镀锌钢板电阻焊电极材料的研究现状及进展
15.
Template-Assisted Synthesize Nanostructured LiFePO_4 Positive Electrode of Li-Ion Batteries
模板法合成孔状纳米级锂离子电池正极材料LiFePO_4
16.
Properties of Epoxy Resin/Graphite Bipolar Plate Composite
环氧树脂/石墨双极板复合材料的性能分析
17.
Activated carbon as supercapacitor electrode material prepared by template method
模板法制备超级电容器活性炭电极材料
18.
Such additions to the negative paste produced the desired performance with the use of synthetic separators.
这类负极板添加剂随着使用合成材料隔板而产生合乎需要的性能。