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放电容量

"放电容量"的翻译和解释

例句与用法

  • Its electrochemical properties were studied by means of galvanostatic discharge and linear sweep voltammetry experiments . agcuo _ 2 shows the better discharge property in alkaline electrolyte than emd
    恒电流放电测试结果表明在不同放电制度下, agcuo _ 2的放电容量均远大于emd的理论放电比容量。
  • The addition of calcium hydroxide in zinc electrode can reduce the solubility of zinc oxide and improve discharge capacity , cycling life and utilization of active material
    在氧化锌中加入氢氧化钙能显著降低氧化锌在碱性溶液中的溶解度,明显改善锌电极的放电容量、循环寿命以及活性物质的利用率。
  • Compared with the lithium ion batteries using untreated graphite as anode material , those using modified graphites as anode materials have larger capacity , higher discharge voltage and better cycling capability
    以热处理或掺杂改性石墨为负极的锂离子电池的放电容量增加,放电中值电压升高,循环性能显著提高。
  • By contrasting the lioh or naoh data to koh at 7m and 8m , the change of the li + or na + concentration has little effect on the discharge capacity , internal resistance , voltage plateau and high rate discharge capability
    通过与koh浓度在7m与8m的数据进行对比,结果发现, li或na离子浓度的改变对放电容量、内阻、电压平台以及高倍率性能影响不明显。
  • , the micropores became smaller and fewer , hence the charging - discharging capacity decreased . when httmax = 2000 , the micropores nearly disappeared , the graphite microcrystals were few and small , therefore the charging - discharging capacities reached the minimum
    Htt _ ( max ) = 2000时,微孔几乎消失,而石墨微晶又少又小,因此试样的充、放电容量最低。
  • When 8 % of nano ni ( oh ) 2 was added into spherical ni ( oh ) 2 , the capacity and high - rate performance of mh / ni cell were not improved , however , the performances of self - discharge and cyclic life were improved obviously
    而掺杂8纳米ni ( oh ) _ 2的mh ni电池与球形ni ( oh ) _ 2电池性能相比,在放电容量和倍率放电性能方面没有得到改善,但其自放电性能和循环寿命却有明显提高。
  • Through mass polymerization and temperature elevating or the reaction time increase will improve the discharge capacity ( 90mah / g at first cycle ) and cycle performance ( discharge capacity of 75mah / g at 15th cycle ) of the battery
    采用本体聚合并适当提高聚合的温度或延长聚合时间可以提高电池放电容量(首次90mah / g )和改善电池的循环性能( 15次循环后放电容量约75mah / g ) 。
  • Obviously , it is better than the material prepared by solid - state process : the first discharge capacity is 91mah / g , after 20 cycles the specific capacity is around 81 . 71mah / g . besides , we tried to prepare arrays of nanowires using aao
    本文还探索了利用溶胶凝胶法在模板中合成氟磷酸亚铁钠纳米线,发现该法制备的材料初次放电容量高达119mah / g ,循环20次后的放电比容量为110mah / g 。
  • When the hydrogen storage alloy electrodes are treated by hydrophobic method , preliminary discharge capacity and voltage plateau are improved , however , preliminary discharge capacity and voltage plateau decline with the increase of hydrophobic concentration
    贮氢合金电极在用1 ptfe乳液憎水处理后,初始放电容量、电压平台性能有所改善,但随着浓度的进一步增加,这两种性能反而降低。
  • When reducing the discharge cut - off voltage of the second , the third , the forth step to 850 mv during activation , discharge capacity is improved remarkably , increasing about 24 mah . but middle point voltage decreases and internal resistance increases about 1 mq
    ( 2 )化成时降低电池第二、三、四步放电截止电压到850mv ,能显著提高电池放电容量,提高幅度达24mah左右,但中点电压有所降低、内阻也升高了将近1m ( ) 。
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