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极片的英文

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"极片"怎么读用"极片"造句

英文翻译手机手机版

  • plate
  • pole piece
  • pole shoe

例句与用法

  • When the amount of pvdf and acetylene black is 7 ~ 10 % and 8 % , the positive plate obtained possesses optimum properties in our studies
    本研究中pvdf粘结剂的添加量在7一10 % ,乙炔黑导电剂的添加量在8 %左右,正极极片的性能最佳。
  • There was a shield between the two sections , the plateswere even shorter than the american / european short - plates , and theplates were spaced rather far from the grids
    在两个三极管之间有屏蔽,其屏极片比美国和欧洲的短屏更加短,而且屏极和栅极的距离更加远。
  • The results give that the positive plate takes on preferable charge - discharge properties only when the amount of additive of pvdf and acetylene black is suitable
    结果表明,正极极片中pvdf粘接剂和乙炔黑导电剂的添加量只有适量的时候,正极极片的充放电性能才较好。
  • By testing the battery resistance , we chose the dimension of the square ni / mh battery of the 5 . 7ah capacity as follow : the size of positive was 120mm 72mm , and the size of negative was 121mm 72mm , which presented the low resistance
    通过对电池欧姆内阻的测量,确定了5 . 7ah容量的方形ni / mh电池的最优的极片尺寸,即正极尺寸120mm 72mm ,负极尺寸121mm 72mm 。采用此种极片尺寸的方形ni / mh电池可以有较小的内阻。
  • We think increase of the internal resistance of battery is the main problem to the recycle life deteriorating at high rate , besides the influence of the materials . decomposition occurred on positive and negative electrode at high rate current and the interspaces increased . the restrains of swelling and the increase of an oxygen overvoltage can improve the performance of recycle life
    对于电池性能衰减的原因,认为除了所使用的材料是影响电池性能的重要因素之外,在温度和大电流作用下,电池的正负极材料发生裂解,极片内空隙增大,电池内阻性能恶化是引起电池高倍率循环性能恶化的关键;通过抑制正极析氧和膨胀,并降低负极合金材料的粉化过程,将有望缓解电池内阻特性的恶化,从而提高电池高倍率充放电循环性能。
  • Nano - sacle coo is apt to dissolve in the electrode homogeneously , and better conductive net of coooh come into being , thus contribute a lot to the procedure of the activation . the electrode with nano - scale coo and cnts shows higher discharge voltage and higher discharge capacity . nano - scale additives can improve the specific capacity of the electrode , the volume specific capacity and the mass specific capacity of the electrode with nano - scale coo are 784mah / cm3 and 224mah / g , respectively
    结果表明:添加剂为纳米coo的电极的活化性能最好,纳米coo相对于普通coo能更加均匀的分布在镍电极内,也更易溶解、反应生成coooh导电网路,从而加快了镍电极的活化进程;添加纳米coo和添加cnts的极片具有较高的放电电位和较大的放电容量,纳米添加剂能有效提高镍正极活性物质的放电效率和利用率;纳米添加剂可以有效地提高镍正极片的容量密度,其中添加纳米coo的极片体积容量密度达到784mah cm ~ 3 ,质量容量密度达到224mah g ;添加cnts的极片体积容量密度达到778mah cm ~ 3 ,质量容量密度达到223mah g 。
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