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1)  charge and discharge circulation life
充放电循环寿命
2)  17.5 % DOD cycle life
175%放电深度循环寿命
3)  charge-discharge cycle
充放电循环
1.
Study on microstructures of La0.8Nd0.2Ni3.55Co0.75Mn0.4Al0.3alloy during the charge-discharge cycle process;
La_(0.8)Nd_(0.2)Ni_(3.55)Mn_(0.4)Al_(0.3)Co_(0.75)合金在充放电循环下的微结构研究
2.
The experimental results showed that,before practical application, the initia l capacity and comprehensive performance of stored battery can be obviously incr eased after some charge-discharge cycles.
针对电池贮存后容量下降这一现象进行了探讨;结果表明:长期搁置后的蓄电池在使用前进行几次充放电循环,其有效容量和综合性能明显得到提高。
4)  cycle life
循环寿命
1.
Effect of boron on the discharge capacity and cycle life of rare-earth-based AB_5-type hydrogen storage alloy;
硼对稀土系AB_5型贮氢合金电化学容量及循环寿命的影响
2.
Measures on improving cycle life of motive power VRLA batteries;
提高动力用VRLA电池循环寿命的措施
3.
Disscussion on charge acceptance and cycle life of VRLA batteries for electric bicycles;
电动车用VRLA蓄电池的充电接受与循环寿命探讨
5)  cyclic life
循环寿命
1.
The influence on C 5 and C 2 of plate thickness and electrolyte additive has been researched and the effect of different discharge modes on cyclic life were compared.
通过对比不同厚度极板及不同电解液添加剂对电池C5、C2 的影响 ,并对比不同放电方式对电池循环寿命的影响 ,为电动助力车用密封电池的设计开发提供依据 ,并开发出性能优良的电动助力车用蓄电
2.
The cyclic test results showed that the battery with proper density and quantity of electrolyte had excellent performance of capacity and cyclic life.
电池循环试验结果表明:采用恰当的电解液密度和电解液用量,蓄电池具有良好的容量和循环性能,5A100%(DOD)放电的循环寿命超过300次;电池组容量的均匀性与负极活性物质的硫酸盐化是影响蓄电池组循环寿命的重要因素。
6)  cycle lifetime
循环寿命
1.
The cycle lifetime of the AA type nickel-metal hydride battery was studied.
1化合物为负极材料的AA型镍-金属氢化物电池的循环寿命进行了研究,实验发现MmNi3。
2.
The charge-discharge properties and cycle lifetime of Mm xNi 3.
95)合金的充放电特性及循环寿命。
补充资料:充炭黑充油丁苯橡胶
分子式:
分子量:
CAS号:

性质:同时含有炭黑和油的丁苯橡胶。性能和用途与充炭黑丁苯橡胶和充油丁苯橡胶相似。由冷聚丁苯胶乳与炭黑的水分散液和油乳液经混合、凝聚、洗涤、过滤、干燥等步骤制得。

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