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1)  LR03 alkaline Zn-MnO_2 batteries
LR03碱锰电池
2)  LR03 battery
LR03电池
1.
The factors affected the roll-line quality of LR03 battery;
影响LR03电池滚线质量的几种因素
3)  alkaline Zn/MnO_2 battery
碱锰电池
1.
The influence of binders on the expansion rate of zinc gels in alkaline Zn/MnO_2 battery;
凝胶剂对碱锰电池锌膏膨胀率的影响
2.
Performance of alkaline Zn/MnO_2 battery with steel can electroplating Ni(Bi) and annealing treatment;
钢壳电镀Ni(Bi)及退火处理的碱锰电池的性能
3.
Mechanical and anti-corrosion properties of nickel plated steel strips for cans of alkaline Zn/MnO_2 battery;
碱锰电池钢壳用镀镍钢带的力学和耐腐蚀性能
4)  alkaline Zn/MnO2 battery
碱锰电池
1.
The present status and direction of technological design of alkaline Zn/MnO2 battery were analyzed by dissecting different brands of batteries,observing the internal structures of batteries.
通过剖析不同品牌的电池,观察电池的内部结构,分析了目前碱锰电池工艺设计的现状及趋向;指出了技术改进和提高质量应注重的工作。
2.
The electroplated layer structures of different steel can for mercury-free alkaline Zn/MnO2 battery were tested by electron probe microanalysis(EPMA) technology.
用电子微探分析(EPMA)技术测试了不同无汞碱锰电池钢壳的镀层结构,并用不同镀层结构的钢壳在相同条件下制作了LR03电池,测试了新电及70℃储存7 d后的电池的500 mA大电流连放性能。
5)  alkaline manganese battery
碱锰电池
1.
Organic mercury substituting inhibitors for alkaline manganese battery;
碱锰电池有机代汞缓蚀剂
2.
Improvement of heavy drain discharging property of alkaline manganese battery;
提高碱锰电池大电流放电性能的途径
6)  alkaline manganese dioxide battery
碱锰电池
1.
Study on the effect of heavy-duty discharge performance of mercury-free alkaline manganese dioxide battery——Effect of the physical property of zinc powder;
无汞碱锰电池重负载放电性能的影响因素——锌粉物理特性的影响
2.
The lanthanum was interfused into zinc surface by electrolytic metallizing in NaCl AlCl 3 molten salt without protective atmosphere,and Zn La alloy electrode substituting for mercury of alkaline manganese dioxide battery was prepared.
在NaCl-AlCl3熔盐中,于无保护气氛条件下,用熔盐电渗法进行了锌表面渗镧,并用此技术制备了碱锰电池的代汞锌镧合金电极。
补充资料:碱锰电池
分子式:
CAS号:

性质:以锌粉为负极活性物质,二氧化锰为正极活性物质,含饱和氧化锌的氢氧化钾溶液为电解质的一种碱性干电池。常简称碱锰电池。电池的开路电压1.5V,平均负载电压约为1.25V,稍高于锌/锰干电池的1.20V,低温性能远优于后者。多为圆筒式和纽扣式结构。同样大小的电池,大电流放电时的容量为传统干电池的3倍。用于照相机照明等需用大电流的场合。

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