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1)  acetylene black
乙炔炭黑
1.
The application of acetylene black in Zn/MnO_2 battery;
乙炔炭黑在锌锰电池中的应用
2.
The damping property of piezoelectric IIR filled with PZT piezoelectric ceramic powder and acetylene black was investigated.
探讨填充锆钛酸铅(PZT)压电陶瓷粉和乙炔炭黑的压电IIR阻尼性能。
3.
The electrically conductive properties of silicone rubber filled with acetylene black were studied.
乙炔炭黑填充硅橡胶的导电性能进行研究。
2)  acetylene carbon black
乙炔炭黑
1.
Piezoresistivity of cement-based materials with acetylene carbon black;
乙炔炭黑水泥基复合材料的压敏性
2.
The title two-can coatings with low cost and goodconductivity are made with low cost acetylene carbon blackas conductive filler and polyamine from low price and highquality natural cashew oil derivatives as curing agent.
采用未改性的低成本乙炔炭黑为导电填料,以优质价廉的天然腰果壳油衍生物合成的多元胺为固化剂,制备出了成本低、导电性能优良的双组分环氧防静电地坪底涂涂料,并探讨了该涂料的配方设计及其主要成分对涂膜导电性和理化性能的影响。
3)  carbon black
乙炔炭黑
1.
The microwave-absorbing property of polymer filled with inorganic substance with crystal water and carbon black was examined.
研究了含结晶水无机物和乙炔炭黑(CB)填充聚合物复合材料的吸波性能。
2.
The microwave absorbing properties of butadieneacrylonitrile rubber(NBR) filled with polyaniline(PAn)/carbon black(CB)have been studied.
研究了聚苯胺(PAn)和乙炔炭黑(CB)填充于腈橡胶(NBR)的吸波性能。
4)  ACET [ə'set]
乙炔炭黑
5)  carbon black
乙炔碳黑
1.
The microwave-absorbing property of poly vinyl chloride (PVC) filled with inorganic substanceand carbon black (CB) on microwave-absorbing property is examined.
研究了以乙炔碳黑和无机材料填充PVC复合材料的吸波性能。
2.
The composites are prepared by nanometer paraffin/SiO_x and paraffin/SiO_x/carbon black(CB).
以石蜡作为载体,制备了纳米氧化硅及其与乙炔碳黑混合的粉体材料,研究了该复合材料的电磁特性。
6)  acetylene black
乙炔黑
1.
Acetylene black doped NiO_x and its application in an asymmetric hybrid capacitor;
乙炔黑掺杂NiO_x电极及其应用
2.
Properties and Preparation of Acetylene Black Electrode and Its Double-layer Capacitor;
乙炔黑电极材料及其双电层电容器制备与性能研究
3.
Investigating the effects of the absorption of acetylene black on the polymerization of the AN monomer,the polymerization yield and the conductivity of PAN can be increased by adding appropriate amount of acetylene black during its polymerization.
研究了乙炔黑的多孔吸附性对苯胺单体聚合的影响结果发现,适量的乙炔黑混入单体进行聚合有利于聚合产率及产物电导率的提高,这种方法所获得的PAN/C颗粒在悬浮液浇铸制膜工艺中,可避免直接掺混所导致的乙炔黑、PAN颗粒各自抱团、分散不匀的现象。
补充资料:乙炔炭黑
C   分子量12.01
    性质  纯黑色极细粉末。视密度0.02一0.03g/cm3。具有较高的导电性和吸油值。导热性良好。
    生产方法  采用电石法。即先用电石制成乙快气,经净化,使乙炔气在1400℃左右高温下隔绝空气进行裂解,再经冷却、收集而得。
    应用  主要用于干电池、电讯传真纸、电泳底漆及无线电元件的制造。也用于硬质橡胶制品的制造。
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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