• This paper is about rapid method to remove the impurities in battery electrolyte.

    本文关于液中去除杂质快速方法

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  • Gel battery electrolyte and solid, sealing structure, gel electrolyte, never leakage, to keep the proportion of each part.

    胶体电池电解质固态密封结构凝胶电解液,永不漏液使电池内每一部位比重保持一致。

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  • The invention can be applied to the preparation field of the lithium hexafluorophosphate in a lithium ion battery electrolyte.

    发明应用离子电池电解液中的六氟磷酸锂制备领域

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  • In addition, the battery electrolyte liquid surface plate must be higher than 10-15 millimeter, should add distilled water shortage in time.

    另外蓄电池电解必须高于极板10 - 15毫米不足及时添加蒸馏水

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  • Thus, distinguishes between two kinds of battery electrolyte "fixed" way and provide oxygen to the cathode channel differently, thus the performance of the two kinds of battery also.

    由此看出,电池区别就在于电解液的“固定方式提供氧气到达负极通道的方式有所不同因而两种电池的性能也也

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  • Electrolyte: in gel state, no delamination, battery electrolyte circulation performance is good; The electrolyte density low, slow on board gate corrosion, floating battery life is long.

    电解质:呈凝胶状态电解分层电池循环性能;电解液密度减缓腐蚀,电池寿命

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  • More than 4, playing in the winter time, want to check the height of the electrolyte, assumes that the less time counter, avoid rabbit frozen and then affect Germany sunshine battery electrolyte.

    冬天打的时分检查电解高度假定少了及时抵偿电解液结冰然后影响德国阳光蓄电池功用

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  • Produced in Germany sunshine battery electrolyte dry, thermal runaway, early capacity loss, internal short circuit, which seriously affect the reliability of power supply system. Have a data sheet.

    产生德国阳光蓄电池电解液干涸失控早期容量损失内部短路等问题,进而严重影响到供电系统可靠性资料表。

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  • As well as lithium-iron phosphate, other innovative materials have been used for the three main battery components of anode, cathode and electrolyte.

    与锂-磷酸盐一样,其他新型材料已经到了电池三个主要部件阳极阴极电解液。

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  • Liquid battery: an early prototype battery has been sawed in half to reveal its electrodes and electrolyte, which are liquid during operation.

    液态电池:图为中间切开的这种电池早期原型可以看到两极里面工作电解液。

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  • A battery's electrolyte is the material through which ions (in this case lithium ions) pass from one electrode (the cathode) to another (the anode) inside a battery cell.

    电池电解质能离子(此处为锂离子)自电池内部电极(负极)传递另一个(正极)。

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  • Like a battery, they use positive and negative electrodes separated by an electrolyte.

    燃料电池电池一样,有正电极,两极之间是电解液。

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  • It is possible to make such a battery with a solid electrolyte, but until now that has been done by a process called vacuum deposition.

    固态电解质生产这样电池可能的,目前锂离子电池还是通过真空镀膜的方式来生产。

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  • There is, though, another way to recharge a flow battery: pump out the discharged electrolyte and replace it with a solution that has been recharged elsewhere.

    另外还有一种方法可以使流体电池重新充电:将释放电量电解质溶液抽空,然后重新充入溶液。

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  • When the battery is being charged, positively charged lithium ions break away from the cathode and travel in the electrolyte to the anode, where they meet electrons brought there by a charging device.

    电池充电负极分离的离子经过电解质运动正极,并充电装置提供电子相遇

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  • The more energy packed into a battery, the higher the danger that the liquid electrolyte will catch fire.

    电池存储能量越多,液态电解质着火危险越大

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  • As in a NiCad battery, the NiMH's anode is made of nickel oxyhydroxide immersed in an electrolyte of potassium hydroxide.

    镍镉充电电池一样,金属氢化电池阳极浸泡在氢氧化钾电解质中的羟基氧化镍制作而成。

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  • Based on the calculation results of these parameters, we can choose electrolyte functional composition of lithium ion battery.

    根据这几个参数计算结果选择所需要离子电池电解液功能组分

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  • Heating and burning will melt the battery separator, causing loss of protection function or burning of electrolyte and overheat will cause heating, smoking, deformation or burning of batteries.

    加热焚烧电池造成电池隔离物融化安全功能丧失电解质燃烧过热就会使电池发热冒烟变形或燃烧。

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  • Because in the discharge process of chemical reaction, can make the electrolyte to the vain, also can make bubbles rising along the trough, can make Germany sunshine battery drop down the sink.

    因为放电过程中的化学反响可以使电解液轻贱可以使气泡沿上升,可以使德国阳光蓄电池掉落沿槽下沉

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  • The anode and cathode materials, electrolyte and its additives, structure of battery and manufacture process had important effect on the safety of Li-ion battery.

    负极材料电解液及其添加剂电池结构以及制备工艺条件都离子电池安全性重要影响

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  • Electrode materials, electrolyte and separator are important parts of lithium-ion batteries, which can influence the performance of battery directly.

    电极材料电解质隔膜锂离子电池重要组成部分直接影响电池性能

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  • Membrane while keep the battery in the bulk of the electrolyte, but must make 10% don't enter the electrolyte membrane pore.

    虽然保持电池大部分电解液,必须使10%隔膜孔隙中进入电解液。

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  • The heat causes the battery tovent the organic solvent used as an electrolyte, and the heat (or a nearbyspark) can light it.

    高温导致电池排除作为电解液有机溶剂并且热量或者附近的火星)能够点燃有机溶剂。

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  • When you connect a load on the battery, the metals slowly react and dissolve into the electrolyte, ionize, and the electrolyte portion is getting larger, as the electrodes get thinner.

    连接电池负载时,金属缓慢反应进入电解液,解散电离电解质部分越来越作为电极薄。

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  • The three primary functional components of a lithium ion battery are the anode, cathode, and electrolyte, for which a variety of materials may be used.

    离子电池三个主要功能部分阳极阴极电解液,当然还要使用其它各类材料

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  • However, colloidal electrolyte contains enough water to make a battery run 12 ~ 14 years.

    然而胶体电解液所含水量足以使电池运行12 ~14

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  • In this paper the authors described the characteristics of the rechargeable electrolyte of neutral Mn-Zn battery and its application in dry and wet battery charge and discharge.

    本文提出中性锌—电池可充性电解液配方特点阐述了将用于湿电池干电池的充放电情况。

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  • The battery-maker's dilemma is that the recharging rate depends on the area of contact between electrolyte and electrode.

    蓄电池制造商左右为难充电速度取决于电解质电极之间接触面积

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  • The battery-maker's dilemma is that the recharging rate depends on the area of contact between electrolyte and electrode.

    蓄电池制造商左右为难充电速度取决于电解质电极之间接触面积

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