1) positive grid alloy
正极合金
1.
Directing against the fatal defects emerged in the later period of battery service life(such as positive material softening,positive grid corrosion,eletrolyte dried up,and etc,we have optimized the battery design structure,curing processing,charging algorithm as well as the positive grid alloy,and the laboratory cyclic life of the battery has achieved 400~600 cycles at DOD .
针对动力电池寿命后期出现的正极活性物质(PAM)软化、正极板栅腐蚀、电解液干涸等各种致命问题,优化了结构设计,并对固化工艺、正极合金、充电方法等进行了改进和完善,使电池的75%放电深度实验室循环寿命达到了400~600次。
2) positive mix
正极合剂
1.
Study on the rapid conductance measurement ofpositive mixture for alkaline Zn/MnO_2 battery;
碱锰电池正极合剂电导快速测定探讨
3) blended cathode
混合正极
1.
Overcharge performance of LiCoO_2-LiMn_2O_4 blended cathode
LiCoO_2-LiMn_2O_4混合正极的过充电性能
4) alloy anode
合金阳极
1.
The research works in the field of inert anode are reviewed,including metal oxide ceramic anode,alloy anode,cermet anode.
综述了国内外近年来在惰性阳极方面所做的研究,包括金属氧化物陶瓷阳极、合金阳极、金属陶瓷阳极。
2.
It indicated that CuO2 and CuAlO2 were formed on the electrode surface and Cu-Al alloy anode opssessed of excellent antcorrupt performance due to spinel-structured CuAlO2 formation on the electrode surface.
结果表明,电极表面生成CuO2及CuAlO2等氧化物,由于电极表面形成具有尖晶石结构的CuAlO2使得Cu-Al合金阳极具有更好的耐腐蚀性能。
5) alloy electrode
合金电极
1.
The alloy electrode Ni S Zr was prepared by electro deposition, and its surface morphology was observed with SEM.
用电沉积方法制备了Ni S Zr合金电极 ,用扫描电镜观察电极的表面形貌 ,通过阴极极化曲线及交流阻抗等电化学技术研究其析氢催化性能。
2.
The content of carbonyl nickel powder used as conduct agent almost does not affect the maximum discharge capacity of this alloy electrode.
研究了粉体粒度、导电镍粉及工作温度对合金电极Ti0 。
3.
On Pt-Rh alloy electrodes, the effect of some operational parameters on the adsorption process of several unsaturated aliphatic acids was respectively examined by fast cathodically potentiodynamic polarization.
研究结果表明 ,在中等表面覆盖率下 ,所研究的不饱和有机酸在Pt-Rh合金电极上吸附速率都遵循Rogynski-Zilidowicz方程 ,Pt电极上吸附速率最大 ,从Pt电极向Rh电极过渡中 ,吸附速率下降 2 0~ 30倍 。
6) electrode alloy
电极合金
1.
Influence of tin and bismuth on structure and properties of Pb-based electrode alloys;
锡铋对铅基电极合金组织结构和性能的影响
2.
30 electrode alloy were studied by XRD, FESEM-EDS and EIS measurements.
30电极合金的微观结构及某些动力学性能,如交换电流密度(i0)、氢的扩散系数(D)等进行了研究。
3.
The effects of rapid quenching on the cycle stability of the H2-storage electrode alloy with AB2 Laves phase were investigated comprehensively.
研究了快淬处理对 AB2 型 Laves 相电极合金循环稳定性的影响,用 XRD 和 SEM 分析了铸态及快淬态合金的相结构,并观察了合金的微观组织形貌。
补充资料:正极
原电池中电子流入的一极。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条