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1)  battery internal resistance equivalent model
电池内阻等效模型
2)  equivalent model for internal resistance
内阻等效模型
3)  Battery actual equivalent internal resistance
蓄电池真实的等效内阻
4)  Equivalent resistance model
等效电阻模型
1.
Based on the microflow characteristics of two-dimensional electrophoresis microchip(2D-EMC),an equivalent resistance model of 2D-EMC was constructed to obtain the rational ranges of the voltages applied in each reservoir,and to implement the efficient 2D-EMC separations on microchips.
基于微流控二维电泳芯片(2D-EMC)的流路特点,建立等效电阻模型,以便给出各端电压的合理取值范围,成功实现微流控芯片二维电泳分离。
5)  battery internal resistance
电池内阻
1.
It is demonstrated that the battery performance can be predicted by monitoring the battery internal resistance,with its measuring method given.
文中分析影响电池性能的主要因素,得出可以通过电池内阻预测电池性能的结论,并给出了电池内阻的测试方法。
6)  internal resistance
电池内阻
1.
The components of internal resistance of VRLA battery and its measurement principle and method were analyzed.
分析了阀控铅蓄电池内阻的组成及其测试原理和方法,根据蓄电池内阻与剩余容量的关联性,讨论了利用蓄电池内阻监测其剩余容量的可行性。
2.
The relationship of operating performance of AA size Ni MH cell with its internal resistance during charge,over charge,and high rate discharge are studied using thermocouple method and several other internal resistance measuring methods.
采用多种内阻测量方法和热电偶法,研究了AA型MH-Ni电池在充电、过充电及高倍率放电时电池内阻与电池工作性能的关系。
补充资料:电池内阻
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性质:电池内阻是以下三项电阻的总和:(1)导体(板栅、汇流排、极柱与连接件)的电阻,各种氧化物和盐类及其他化合物的电阻(包括板栅腐蚀层、活性物质的各个界面的接触电阻);(2)极板微孔内和隔板与极板之间的电解液的电阻,隔板造成的电阻;(3)电化学反应过程中的浓差极化与电化学极化电阻。电池内阻r一般可以用下式表示:r=(V0-V)/I。式中V0,电池的开路电压(单位V);V,电池的放电电压(V);I,放电电流(A)。上述三项电阻中(1)与(2)之和是电池的欧姆电阻。

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