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1)  alkaline storage battery
碱性蓄电池
1.
Influence of ambient temperature on charge efficeiency of alkaline storage battery;
温度对碱性蓄电池充电接受能力的影响
2.
Combining the characteristics of the transparent plastic shell of alkaline storage battery the process and method of the product were analysed.
结合碱性蓄电池透明塑料壳的特点,分析了碱性蓄电池透明塑料壳制造的过程与方法,从成型工艺过程及成型工艺条件的选择与控制方面进行了讨论。
3.
The characteristics of particular engineering plastics polysulfone(PSU) are presented, and the PSU shell body and cover of alkaline storage battery are formed by injection molding.
介绍特种工程塑料聚砜(PSU)的特性,采用注射成型工艺制备了碱性蓄电池壳体、壳盖。
2)  alkaline battery
碱性蓄电池
1.
Ni(OH)2 is widely used as an positive active material for rechargeable alkaline battery.
氢氧化镍是碱性蓄电池的正极活性物质,为了改善镍系列电池的性能,合成了掺杂α Ni(OH)2,它具有较高的放电平台,且放电曲线平坦,放电容量高,在碱性溶液中结构稳定。
2.
It was good for using as positive active material of alkaline battery.
适宜于碱性蓄电池的活性物质。
3)  alkaline battery case
碱性蓄电池钢壳
4)  shell and cover of alkaline storage battery
碱性蓄电池壳盖
1.
The effects of materials,forming tech- niques,design of injection-molded products,design of the mould are fully analyzed according to the thermoplas- tics such as E/P,ABS,PA,AS,MBS which are used for producing shell and cover of alkaline storage battery.
介绍了塑料冲击强度的概念,并针对碱性蓄电池壳盖所用的几种热塑性塑料如(乙烯-丙烯)共聚物、(丙烯腈-丁二烯-苯乙烯)共聚物、尼龙、(丙烯腈-苯乙烯)共聚物、(甲基丙烯酸甲酯-丁二烯-苯乙烯)共聚物具体分析了材料、成型工艺、制品设计、模具设计对冲击强度产生的影响,给出了提高冲击强度的方法。
2.
The effects of materials, forming techniques, design of the mould are fully analyzed according to the thermoplastics such as E P, ABS, PA, AS and MBS which are used for producing shell and cover of alkaline storage battery.
讨论注塑制品内应力的分类及产生机理,并针对碱性蓄电池壳盖所用的几种热塑性塑料如(乙烯/丙烯)共聚物、(丙烯腈/丁二烯/苯乙烯)共聚物、尼龙、(丙烯腈/苯乙烯)共聚物、(甲基丙烯酸酯/丁二烯/苯乙烯)共聚物具体分析了材料、成型工艺、模具设计对制品内应力的影响,给出了减小内应力的控制方法,提出了制品内应力的检验及消除方法。
5)  Cd/Ni alkaline battery
镉镍碱性蓄电池
6)  alkalescent fuel battery
碱性燃料蓄电池
1.
As the power of future vehicle,alkalescent fuel battery has a broad developing trend.
碱性燃料蓄电池作为未来汽车的动力 ,具有很广阔的发展前景。
补充资料:碱性蓄电池
分子式:
分子量:
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性质:对于酸性蓄电池(如铅酸蓄电池)而言的一类电解液为碱性水溶液(一般为KOH)的蓄电池。如镍/镉蓄电池、金属氢化物/镍蓄电池、银/锌蓄电池等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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