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1)  conductive ZnO
导电氧化锌
1.
The nano-conductive ZnO were prepared by chemical co-precipitation,a
本文采用化学共沉淀法制备了纳米导电氧化锌粉体,利用化学修饰法对制备的纳米导电氧化锌粉体进行表面改性,增加了其在有机物中相溶性,并采用熔融共混工艺将经修饰的导电氧化锌粉体分散到LLDPE树脂中,制备了纳米导电氧化锌/LLDPE复合材料。
2)  ZAO conductive film
ZAO(掺铝氧化锌)导电膜
3)  zinc oxide resistance
氧化锌电阻
1.
Introduction was made to the basic methods of magnetic blowout in excitation systems,by using zinc oxide resistance as large capacity energy absorbing element to make magnetic blowout switch in quick arc blowout breaking and transferring energy to zinc oxide resistance to carry out energy consumption which can realize synchronous generator quick magnetic blowout.
介绍了在励磁系统中灭磁的基本方式,利用氧化锌电阻作为大容量吸能元件,使灭磁开关快速熄弧开断,并移能到氧化锌阀片中进行能量消耗,可实现同步发电机快速灭磁。
4)  conductive anodizing
导电氧化
1.
In view of the weaknesses of conventional aluminum anodized film such as high electric resistance and poor electromagnetic shielding performance, a conductive anodizing process for aluminum and its alloys was advanced.
为提高铝氧化膜的电磁屏蔽性和耐蚀性 ,提出了一种铝合金导电氧化工艺。
5)  ZnO varistors
氧化锌压敏电阻
6)  ZnO varistor
氧化锌压敏电阻
1.
The electric properties of the ZnO varistors made of the powder are evaluated,which indicates that the compound powder is of minor partice size,even distribution,large surface area,and the nonlinerity factor of the varistors is 78.
采用氨浸法制备了氧化锌压敏陶瓷纳米复合粉体,给出了制备粉体的工艺流程,并利用TEM,XRD,EDS,ASAP200物理吸附仪(BET法)及热重-差热分析仪(TG-DTA)对粉体的性能进行了表征,对用该粉料制作的氧化锌压敏电阻作了初步的电性能检测。
2.
The domestic and oversea present situation of preparation technol og y of ZnO varistor powder is discussed.
综述了ZnO压敏电阻粉体制备的国内外研究现状,对不同制备方法的优缺点进行了评析,指出了目前氧化锌压敏电阻粉体制备中存在的问题,并提出了今后的研究发展方向。
3.
The effect of Nd2O3 on voltage and microstructure of ZnO varistor was studied, and the mechanism of the effect was discussed.
研究了微量Nd2O3添加剂对氧化锌压敏电阻片的压敏电位梯度的影响,并通过SEM测试手段对其微观组织进行了分析。
补充资料:导电
1.让电流通过。一般金属都能导电。
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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