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正极的的英文

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"正极的"怎么读用"正极的"造句

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  • anodal
  • anodic

例句与用法

  • As for al / k2feo4 and zn / k2feo4 , nickel foam and punched silver grid had no apparent difference
    K 。 feo 。正极的容量利用率及自放电率与其纯度密切相关。
  • Current mirror circuits may be found in two basic varieties : the current sinking configuration , where the regulating transistor connects the load to ground ; and the current sourcing configuration , where the regulating transistor connects the load to the positive terminal of the dc power supply
    镜像电流源可能以两种基本的类型出现:调整管连接负载到地的吸电流结构;以及调整管连接负载到直流电源正极的灌电流结构。
  • The utilization of lead acid battery active material is universally very low though its technology has reached the maturation . especially , the utilization of positive active material is much worse . and the performance of the positive pole decides the whole battery performance
    虽然铅酸电池的技术已经比较成熟,但普遍存在活性物质利用率比较低的问题,特别是正极活性物质的利用率更是不理想,正极的性能决定着整个电池的性能。
  • The influences of the calcination temperature and time , the concentration ratio of deionized distilled water to c - v _ 2o _ 5 and the agitation time on the synthesis of a - v _ 2o _ 5 were studied by orthogonal array design and the interactions between the parameters were considered . so the optimum experimental factors were obtained . lithium rechargeable battery positive electrodes based on these optimum conditions could lead to experimental cells with large discharge specific capacity and good cycling performance
    用正交实验研究了煅烧温度、煅烧时间、去离子水与晶态v _ 2o _ 5 ( c - v _ 2o _ 5 )的浓度比和陈化时间对合成a - v _ 2o _ 5的影响,讨论了这些参数间的交互作用,并获得了最优试验参数,以该最优试验参数所制备的a - v _ 2o _ 5为可充锂电池正极的实验电池,具有较大的放电比容量和较好的循环寿命。
  • The charge and discharge performances of different composites were studied by the charge and discharge ; the structures of composites were characterized by sem ; the electrochemical properties of sulfur positive materials were characterized by cyclic voltammetry and eis . we studied the charge process , discharge process , charge - discharge efficiency , self heat , and self - discharge of lithium - sulfur system on system shuttle constant , conduct the mechanism of these processes and simply analyse them
    以充放电技术研究了不同类别复合正极的充放电性能;以扫描电镜技术观测了复合正极的表面形貌;以循环伏安技术和交流阻抗技术研究了复合正极电极的电化学性能;并初步探讨了锂-硫电池体系中充电过程、放电过程、充放电效率、自热和自放电等对体系飞梭常数的影响,推导了这些过程的机理并简要的进行了分析。
  • We have made three - dimension electric conduct grid by hand and we have successfully used it as anode grid in lead - acid battery . this kind of three - dimension electric conduct grid can improve the utilization of pam by 7 - 9 % in different discharge current density and can reduce the plate electrochemical impedance to one tenth of the normal plate . also this kind of grid can improve the marginal reaction current density in a certain degree
    我们通过手工制作了三维导电体板栅,并成功的应用于电池的正极作为正极的板栅,这种三维导电体板栅能够在各种不同的放电电流密度下提高正极活性物质利用率7 9 ,能够使电池正极板的电化学阻抗降低到普通板栅的1 10左右,使正极板的极哈尔滨j _程大学硕十学位论文限反应电流密度略有所提高,但是这种板栅的耐腐蚀性能很不理想,使得所制作电池的寿命很短。
  • By using an oxide that could reversibly intercalate ili instead of 0 . 5 li per 3d - metal , one could increase the specific capacity of the cell by 68 % . in contrast , if one doubles the specific capacity of the negative electrode ( liq - lice ) , one increases the overall specific capacity of the cell by only 12 %
    如果正极的比容量增加一倍,即每个3d金属能嵌入1个理,那么电池的比容在量就能增加68 ;如果负极的比容量增大1倍,那么电池的比容量只增大12 ,所以对埋离于电池的研究主要应放在对正极材料的研究上, limn 。
  • Too much cnts contributed no effect in the improvement of overall performance of the batteries . the batteries with nano - scale coo shows better active properties , the addition of nano - scale coo further the conductivity of the nickel electrode , thus lower the internal resistance of the batteries , higher discharge voltages are achieved accordingly . for the formation of the better conductive net of coooh , the effectivity of discharge rise , that contributes positive effect to the high rate capability of the batteries
    浙江人学硕十学位论文摘要正极添加纳米coo的ni / mh电池具有较好的活化性能,纳米coo更好地增强了镍正极的导电性,进一步减小了电池的内阻;正极添加纳米coo的ni / mh电池还具有较高的放电平台;由于纳米coo的纳米结构,以及相对于普通c00更大的比表面积,会在碱液中溶解形成更均匀致密的co0oh导电网络,从而提高了放电效率,对电池的高倍率性能也有积极的影响。
  • From the experiment we have found out that the carbon fibre can improve the anode performance when it was used as pam additive and meanwhile it can have some benefits to the anode life . when its content at 0 . 2 - 0 . 3 % in pam can achieve its best result and under this situation it can improve the utilization of pam by 5 % at different discharge current . carbon fibre and sulfate sodium is used as complex pam additive and its effect is better than that of carbon fibre which alone is used as additive
    通过实验我们发现,碳纤维作为铅酸电池的正极活性物质添加剂能提高铅酸电池正极的性能,并且对电池正极板的寿命有一定的好处,当碳纤维在正极活性物质中的含量为0 . 2 0 . 3能得到最理想的效果,这个时候能在各种不同的放电电流下提高正极活性物质的利用率5左右,并且能够使极板的电化学阻抗降低。
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