氢镍电池

  • 网络ni-mh battery
氢镍电池氢镍电池
  1. 不同SOC下大容量氢镍电池的交流阻抗特性

    AC impedance behaviour of the high capacity Ni-MH battery at different SOC

  2. 混合电动汽车用氢镍电池热控制技术研究

    Study on heat-controlling technology of Ni-MH battery for hybride electric vehicle

  3. AA型氢镍电池的设计

    Design of AA Size Nickel Metal Hydride Battery

  4. 氢镍电池失效的主要原因是:负极成分Mn、Al的溶出及在正极上的沉积;

    The main causes of the fading of MH Ni batteries are as follows : ( 1 ) Dissolved components from MH electrodes .

  5. GEO卫星氢镍电池失效的应力因子及在轨管理

    Stress Factors of Failure and Control in Orbit for NiH_2 Batteries in GEO Satellite Operation

  6. 用不同配方、制造方法制成的泡沫镍正极与同种负极组装成AA型氢镍电池。

    Foamed nickel electrodes made by different compositions and technologies were assembled with the same kind of negative electrodes to get AA size Ni-MH batteries .

  7. 提出合成高电子转移数(NEE)的正极活性物质以降低高密度球形β-Ni(OH)2电极的膨胀,提高镍电极和氢镍电池的整体性能。

    Preparing the positive active material with more Number of Exchanged Electrons ( NEE ) to decrease the expansion of high density spherical β Ni ( OH ) 2 electrode and to increase the property of nickel electrode as well as Ni MH battery were put forward .

  8. 电动车用氢镍电池特性和工况实验分析

    Property and work condition analysis of the Ni-MH batteries for EVs

  9. 氢镍电池电化学浸渍液中钴含量的测定

    Measurement of content of cobalt in impregnating solution of NiMH battery

  10. 氢镍电池柔性负极片的研制

    Development of Flexible Negative Electrodes for MH / Ni Batteries

  11. 氢镍电池用烧结镍基板的研究

    Study on Ni / MH Battery Used Sintered Nickel - base Plate

  12. 氢镍电池材料用氧化锆布膜中铁的测试研究

    Testing Research of the Iron Content in Cloth a Film of Zirconium Oxide

  13. 废旧氢镍电池回收处理中镍元素浸出条件优化

    Optimization of nickel leaching conditions for Ni-MH battery recycling

  14. 含钙添加剂在氢镍电池中的应用

    Application of calcium - containing compounds in Ni-MH battery

  15. 氢镍电池内压的影响因素

    Effect factors of internal pressure of Ni-MH batteries

  16. 太阳能灯专用高温氢镍电池的研制

    Preparation of high-temperature Ni-MH battery for solar lamp

  17. 氢镍电池负极放电储备容量的调节

    Regulation of the Discharge Storage Capacity of Negative Electrodes in MH / Ni Batteries

  18. 单一压力容器氢镍电池电堆的温度场仿真

    The Stack Thermal Modeling of an Individual Pressure Vessel ( IPV ) Ni-H_2 Battery

  19. 电动自行车用氢镍电池

    Development of MH-Ni Battery for Electric Bicycle

  20. 我国镉镍及氢镍电池生产用的机械设备现状及发展

    Status and Prospects of Cd - Ni and MH - Ni Battery Manufacturing Equipments in China

  21. 混合电动车用高功率氢镍电池的研制燃料车内氢气泄漏扩散数值模拟研究

    Study on high power Ni-MH battery for hybrid electric vehicles Numerical investigation on dispersion of hydrogen in hydrogen powered automobiles

  22. 介绍了废锌锰电池、氢镍电池和锂离子电池的再生利用技术发展趋势,并列出了研究结果。

    The development trend of reusing technology for waste Zn / Mn battery , Ni metal hydride battery and lithium ion battery was introduced .

  23. 设计了一种包括太阳电池、再生燃料电池和氢镍电池的复合能源管理监控系统。

    It is to design a kind of hybrid energy management and monitor system including solar panel , regenerative fuel cell and Ni-H battery in this paper .

  24. 其中有碱性锌锰电池、锂一次电池及小型可充电镉镍电池、氢镍电池和锂离子电池。

    Among them , there are alkaline zinc manganese batteries , lithium batteries , small rechargeable cadmium nickel batteries , hydrogen nickel batteries and lithium ion batteries .

  25. 所取得的成果对于未来工程型号上氢镍电池充电控制的设计具有借鉴意义,其潜在的经济效益和社会效益也将逐渐得以展现。

    The result of this study may be referred by the future engineering of charging control for Ni-H2 battery and the potential economical and social benefit will also achieve progressively .

  26. 介绍了绿色二次电池新体系、现有氢镍电池、锂离子电池体系及其相关材料的研究进展。

    R & D of new system of green secondary batteries , existed system of nickel / metal hydride ( MH-Ni ) batteries and Li-ion batteries were introduced in this paper , as well as related materials .

  27. 本文详述了氢镍电池的容量、正、负极板、活性物质用量等设计和工艺参数,并介绍了发泡镍样品电池。

    The technology of cell components including the capacity of MH - Ni battery positive plates , negative plates and the AA size of foamed nickel electrodes in nickel metal hydride battery was satisfied with design demands .

  28. 采用镍电极电化学浸渍工艺,取代目前一直使用的真空化学浸渍工艺,用于氢镍电池、镉镍电池和锌镍电池的制造,可提高电池的工作性能和寿命。

    That an electrochemical impregnation process of nickel electrode is used to manufacture nickel-hydrogen batteries , nickel-cadmium batteries and nickel-zinc batteries instead of vacuum chemical impregnation process is able to improve the performance and operating life of batteries .