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optimized matching中文是什么意思

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  • The study on optimized matching test of electronic fuel injection system for motorcycle engine idling operation
    摩托车汽油机电喷系统怠速工况的优化匹配研究
  • Patent control technology of dynamic characteristics and waveform, hard arc, stable welding current, little spatter, good welding surface, optimized matching parameters, welding speed increased by 100-200 %
    专利动特性及波控技术,电弧挺度大,焊接过程稳定,飞溅少,成型美观,优化参数匹配,焊速可提高100-200%
  • These methods have many problems to the design and numerical number analogy of electric wire . electric potential and electric eddy-current detector, such as the wire size, the wire core type ( solid core or twisted line ), the wire core conductivity, the magnetic permittivity and the optimize match of the detector's form, are n't made an incisive analysis
    这种方法对电线电位电涡流透视探头的设计和数值模拟中的很多问题,如线径大小,线芯类型(实芯、绞线),线芯电导率,磁导率与探头形状的优化匹配等问题,还不能透彻分析。
  • The author investigated the factors that influence the dynamic stability of speed limiters through both theoretical amilysis and experiments . the structural factors that affect the performances of speed limiters were discovered and corresponding improvements proposed based on optimized match experiments with 495g engines
    通过理论分析和试验现象研究了限速器动力稳定性的影响因素;在与495g型发动机进行优化匹配试验的基础上,找出了影响叉车限速器性能的结构因素。
  • Because of the complexity of blasting process, in order to make the blasting safe, high efficient and economical, some new methods such as the match of rock and explosive based on fuzzy inference, the match of rock and explosive based on fuzzy integrated judge and neural network and the optimizing match of rock and explosive based on fuzzy neural network are studied in this paper
    由于爆炸过程的复杂性,为确保安全、高效、经济起见,本文引入模糊推理和神经网络理论方法,首次提出了基于模糊推理的炸药与岩石智能匹配方法、基于神经网络和模糊综合评判的炸药与岩石智能匹配优化方法和基于模糊神经网络的炸药与岩石智能匹配优化方法。
  • A lot of experiments have been done in the process of exploiture soft packaging li-ion battery about how to choice the rational arts and crafts . the content include : how to deal with the collector, add how much pvdf in the material, how long the material need to stirring and the right viscidity, how much condubtivity agent the electrode need, what theckness is best, choice different collectors, the degree of dryness of the electrode, theckness of pressed model, how much electrolyte will be added, placement how long after added the electrolyte, system of formation how to influnce the battery, in formation the battery need or not need preesure from outside, how to vacuumize and the optimize matching positive pole and negative pole . with these practice make sure the parameter of the positive pole should less than 90 m; according to different vacuumize order the conduc-tivity agent in anode will be 5mass % and 9mass %, respectively, and in cathode the data is 2mass %; every 100mah added to 0.4 ml electrolyte; before formation the battery should be placement 8 hours and the system of formation must be less than 0.01c before the voltage reach to 3.0v; should press in outside when battery in formation; to these batteries which capacity more than 350mah the vacuum time not excess 15s; the optimize matching positive pole and negative pole between 2.10 : 1 and 2.15 : 1 . finally make out the battery which cycling performance and security are all very well
    液态软包装锂离子电池的研究主要是对关键工艺进行了优化设计,具体包括:集流体的处理、pvdf的加入量、浆料搅拌时间和粘度、导电剂的加入量、电极膜的厚度、不同集流体的选择、电极膜的干燥程度、压型的厚度、电解液的加入量、注入电解液后静置时间的长短、化成制度的影响、化成时电池所具有的压力影响、抽真空的处理、正负极活性物质的匹配。最后确定出液态软包装锂离子电池最佳工艺参数:正极膜的厚度小于90m;根据化成时不同抽真空顺序,确定正极膜中的导电剂的加入量分别为5mass%和9mass%;负极膜中导电剂的加入量为2mass%;电解液的加入量为每100mah添加0.4ml;化成前电池的静置时间应当大于8h;电池在3.0v之前采用小于0.01c的化成制度;在化成过程中应当施加一定的外部压力;对于350mah的电池抽真空的延时不应大于15s;而正负极活性物质的质量比应当在2.1:12.15:1之间。
  • A lot of experiments have been done in the process of exploiture soft packaging li-ion battery about how to choice the rational arts and crafts . the content include : how to deal with the collector, add how much pvdf in the material, how long the material need to stirring and the right viscidity, how much condubtivity agent the electrode need, what theckness is best, choice different collectors, the degree of dryness of the electrode, theckness of pressed model, how much electrolyte will be added, placement how long after added the electrolyte, system of formation how to influnce the battery, in formation the battery need or not need preesure from outside, how to vacuumize and the optimize matching positive pole and negative pole . with these practice make sure the parameter of the positive pole should less than 90 m; according to different vacuumize order the conduc-tivity agent in anode will be 5mass % and 9mass %, respectively, and in cathode the data is 2mass %; every 100mah added to 0.4 ml electrolyte; before formation the battery should be placement 8 hours and the system of formation must be less than 0.01c before the voltage reach to 3.0v; should press in outside when battery in formation; to these batteries which capacity more than 350mah the vacuum time not excess 15s; the optimize matching positive pole and negative pole between 2.10 : 1 and 2.15 : 1 . finally make out the battery which cycling performance and security are all very well
    液态软包装锂离子电池的研究主要是对关键工艺进行了优化设计,具体包括:集流体的处理、pvdf的加入量、浆料搅拌时间和粘度、导电剂的加入量、电极膜的厚度、不同集流体的选择、电极膜的干燥程度、压型的厚度、电解液的加入量、注入电解液后静置时间的长短、化成制度的影响、化成时电池所具有的压力影响、抽真空的处理、正负极活性物质的匹配。最后确定出液态软包装锂离子电池最佳工艺参数:正极膜的厚度小于90m;根据化成时不同抽真空顺序,确定正极膜中的导电剂的加入量分别为5mass%和9mass%;负极膜中导电剂的加入量为2mass%;电解液的加入量为每100mah添加0.4ml;化成前电池的静置时间应当大于8h;电池在3.0v之前采用小于0.01c的化成制度;在化成过程中应当施加一定的外部压力;对于350mah的电池抽真空的延时不应大于15s;而正负极活性物质的质量比应当在2.1:12.15:1之间。
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Last modified time:Sat, 16 Aug 2025 00:29:56 GMT

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