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1)  sealing battery
密封蓄电池
1.
The basic working principle of the valve control lead-acid sealing battery is briefly introduced here.
简介阀控式铅酸密封蓄电池的基本工作原理;根据阀控式铅酸密封蓄电池的性能与特点,阐明在使用、维护阀控式铅酸密封蓄电池时所必须遵循的技术规范。
2)  sealed lead acid battery
密封铅酸蓄电池
1.
Analysis of failed sealed lead acid battery;
密封铅酸蓄电池失效原因分析
2.
Application of IC-UC3906 in sealed lead acid battery charger;
集成电路UC3906在密封铅酸蓄电池充电器中的应用
3.
This paper presents the voltages variation possibitity of the sealed lead acid battery in different discharges.
指出了在各种放电制下确定所研制的密封铅酸蓄电池电压变化的可能性。
3)  sealed cadmium-nickel rechargeable battery
密封镉镍蓄电池
1.
Influence of temperature on capacity of sealed cadmium-nickel rechargeable battery;
温度对密封镉镍蓄电池容量的影响
4)  sealed lead-acid battery
密封铅酸蓄电池
1.
Methods to identify if sealed lead-acid battery is dangerous goods;
密封铅酸蓄电池是否为危险品的鉴别方法
2.
Development of sealed lead-acid battery for starting application;
24V启动型密封铅酸蓄电池的研制
3.
Since middle 1990s, the sealed lead-acid battery has been applied to motorcycle with motorcycle industry development and shown many advantages, but its performance did not meet the high requirement of motorcycle.
自 1990年代中期以来 ,随着摩托车工业的发展 ,小型密封铅酸蓄电池已开始在摩托车上使用。
5)  sealed lead-acid batteries
密封铅酸蓄电池
1.
Effect of organic additives on the performance of sealed lead-acid batteries;
有机添加剂对密封铅酸蓄电池电性能的影响
2.
This paper describes an improved charging method for sealed lead-acid batteries using the UC3906.
对于密封铅酸蓄电池,我们使用的传统充电电路是恒压限流充电电路。
3.
2Ah sealed lead-acid batteries with grids of four different compositions of alloys were collected and examined.
结果表明,在混合式板栅合金中,正板栅采用低锑合金,负板栅采用铅钙合金,密封铅酸蓄电池的自放电比较小。
6)  VRLA
密封铅蓄电池
1.
Correlation Between Capacity and Conductance of VRLA;
关于阀控密封铅蓄电池容量与电导的相关性
2.
Under condition of that the state-of- charge for VRLA was higher than 50%, the difference of the internal resistance was too small, however the product of it s eletrochemical reactive resistance and electrical double layer capacitance was very sensitive to state.
密封铅蓄电池的荷电态在50%以上时,电池内阻几乎没有变化,但其电化学反应内阻与双层电容之积,却对荷电态很敏感。
补充资料:阴极吸收式密封蓄电池
分子式:
CAS号:

性质:由自放电和充电或过充电在正极(阳极)上产生的氧气,扩散至负极(阴极)而被吸收的密封蓄电池。阴极吸收是镉/镍、锌/银和铅酸等密封蓄电池所依据的原理之一。如在镉/镍蓄电池中,氧气扩散至负极后,通过两个途径被吸收,反应式如下:使镉氧化    2Cd+O2+2H2O=2Cd(OH)2电化学还原    O2+2H2O+4e-=4OH—

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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