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电池放电的英文

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"电池放电"怎么读用"电池放电"造句

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  • battery discharge

例句与用法

  • Organic sulfides are to be oxidised to form polymers containing s - s bonds as charging , and polymers will be reduced to their low molecular monomer as discharging
    这类物质在电池充电时,被氧化为含有s - s键的聚合物;在电池放电时, s - s键断裂,聚合物被还原为低分子量的有机硫化合物单体。
  • So , we use a new method to measurement the battery ' s current index . we join a little resistance in the circuit , and use the loop current as the index for the shout current
    包池短路电流的新方法:采地小电阻对电池放电进行电流值采样,把此小电阻放电时的回路电流值,作为碱锰电池的一项电流指标进行检测。
  • 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 ) 。
  • 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 ( ) 。
  • 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。
  • The most important aim of this forum is providing information and opportunities for private enterprises , accelerating the enterprise transformation , promoting the international communication and cooperation of new power to a new step , as a leading orator , our board chairman expressed his particular opinions on " grasp the chances , adjust resource , sostenuto improve the core competition of our company among the new power field "
    4高功率mh ni电池的研究和改进从sc和d型电池入手,对其高功率放电性能和组合电池放电性能加以研究,通过对其正负极材料添加剂隔膜电解液等方面的研究改进,提高其大功率放电性能,进一步适应市场的需要。
  • Firstly , let me introduce the features of this cell . adapted such method to give birth to energy as zinc granules reation with o2 of air , this cell possesses the virture that there is a good relationship between discharging energy and charging energy , which is testified by the test of meters from company and actual experiments . meanwhile , repeat number of charging can be ignored for cell because it get energy again by substituting substance in fuel cell . so , we can get the conclusion that this cell belongs to such type as whose energy rebirthes without history factor which always influnences other types of cells . from the above analysises , it will be easy to get some solution to detect energy of zinc / air fuel cell in related precision
    该公司生产的锌空电池与传统的充电电池有着完全不同的特点。首先,它采用锌粉在反应液中与空气的氧气反应产生电量,经过测试(包括出厂参数测试、现场测试和实验测试) ,电池的放出电量与充入电量有着对使用非常有利的某种关系特点;其次,它采用更换反应液的方式来重新得到电量,这样就使得充电的重复率可不作为电池放电的因素。该锌空电池属于电量可重复植入,但没有产生影响电池放电的传统参数?历史充放电效果因素。
  • Abstract : the rechargeble batteries are used for backup power internal electrically equipments and instruments . but batteries lifetime usually is shorten by overwork and then malfunctions of equipment are induced . to avoid the complexion described above , the protection circuit against overwork is designed . it is based upon the voltage comparator and regulator . it will light up a red led when the volume of the batteries discharged close upon 50 % ; it will switch off the load automatically when it discharged closing to 80 % of their energy capacity , thus overwork of batteries can be avoided and lifetime may be extended
    文摘:用蓄电池做后备电源的系统(或设备) ,常因过放电导致电池提前报废而造成设备故障.根据电池电压随容量变化的规律,利用电压比较器和电压基准源设计制作了电池放电保护电路,当电池放电量接近容量的50 %时,启动预警信号;当电池放电量达到容量的80 %时,电路自动切断负载,防止电池过度放电,延长电池寿命,保证系统(或设备)在供电恢复正常后能正常运行
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