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高倍率的英文

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"高倍率"怎么读用"高倍率"造句

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  • r 257

例句与用法

  • High rate vented nickel - cadmium prismatic rechargeable single cells
    镉镍高倍率碱性蓄电池
  • It has the initial capacity of 114mah / g and the third cycling capacity of 113 . 4mah / g
    有良好的循环性能和高倍率充放电特性, licomgmn ; 。
  • We succeeded in making high quality ni - mh battery for meeting the coming environmental demand in the world
    为了迎合世界环境保护的需求。我们成功开了高倍率高容量的镍氢可充电池。
  • The rp 605z s zoom lenses provide ultimate magnification ease and versatility by eliminating the need to frequently change lenses
    Rp605z配备的高倍率多用途变焦镜头,能有效免除频密更换镜头所造成的不便。
  • The demand of the high - rate cylinder nickel metal - hydride batteries is growing in vehicles and high power applications , with the amount of 5 hundred millions annually
    在电动工具市场,高倍率柱状镍氢电池需求量在不断增加,每年消耗约5亿只。
  • The results showed that the electroless nickel plating could increase the discharge capacity , 1c discharge properties and cycle stability obviously , and could also improve the activation
    结果表明,镀镍能明显提高低钴贮氢合金的放电容量、 1c高倍率放电性能及循环稳定性,对活化性能亦有改善。
  • Some performances in ni - mh ca n ' t meet the need of the electrical tools . so the development of high - rate nickel metal - hydride batteries with high performance is very important both in the scientific research and the market applications
    但目前镍氢电池的某些性能尚不能完全满足电动工具的需求,因此研制出综合性能高的高倍率镍氢电池,必将有很高的科研价值和广阔的市场前景。
  • When it is discharged at high - rate , the distributions are also the most uniform at the end of the discharge . this indicates that the positive plate with the red lead has the better discharge performance than the other two kinds of positive plates
    含红丹的正极板在化成初期电流密度和电位的分布最均匀,极化最小,在高倍率放电结束时,其电流密度和电位分布也最均匀,表明含红丹的正极板的放电性能比其它两种正极板好。
  • Combined with development of the products , the research emphasis in this paper is focus on the studies of the high - rate discharging performance at different temperature . 1 . in the research of the discharge performance with high rate , the results of different effects including thickness of positive electrode , materials of hydrogen storage alloy , concentration of the electrolyte and separators
    论文在实现研究目标的过程中,结合产品的研制,重点对电池的高倍率放电性能和温度性能进行了研究:一、在提高电池大电流放电性能的研究中,比较了不同正极板厚度、不同贮氢合金材料、不同浓度电解液及不同材料隔膜等对电池大电流放电平台的影响,并从电极反应动力学和多孔电极的角度分析了极板厚度对电池高倍率放电的影响。
  • The test results of sub - c type showed that middle voltage is higher with 50 u m alloy particle , la - rich alloy has perfect performance at high rate , ce - rich alloy is excellent at high rate and lower temperature , low co alloy is good to decreasing middle voltage except the less recycle life . experiments about the electrolyte showe d that the performance is optimized with contents : koh 78 % , naoh 20 % , lioh 2 % and density 1 . 300 g / cm3
    对贮氢合金材料粒度和成份进行了粒度分布测试、成分分析和xrd扫描,并将材料制备成sc型电池进行大电流测试,结果显示,合金粒度在50 m时,电池放电平台高,富镧合金的大电流性能好,富铈合金有利于电池低温高倍率放电性能,合金中钴含量减少虽对电池的放电平台有利,但循环寿命短。
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