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二氧化硅对EP/CB复合材料电性能的影响 被引量:4

Influences of Silica on Electrical Properties of EP/CB Composites
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摘要 以二氧化硅(SiO2)为添加剂,低结构炭黑(CB)为导电填料,环氧树脂(EP)为基体树脂,甲基四氢邻苯二甲酸酐(MeTHPA)为固化剂,采用超声分散溶液混合法制备EP/CB/SiO2复合材料。通过电阻–温度特性测试和扫描电镜等分别对其电性能和微观形貌进行了表征与分析。结果表明,随SiO2含量增加,复合材料的室温体积电阻率先下降后上升,当SiO2质量分数为0.5%时,电阻率达到最小值;含SiO2的EP/CB/SiO2导电复合材料仍具有正温度系数(PTC)和负温度系数(NTC)效应,但其PTC强度小于EP/CB复合材料,NTC效应也弱于EP/CB体系。 With SiO2 as additional agent, low structure carbon black ( CB ) as conductive filler, epoxy resin ( EP ) as matrix resin, MeTHPA as curing agent, the EP / CB / SiO2 composites were prepared by ultrasonic dispersion and solution blending. Its electric properties and morphology were characterized and analyzed by resistance-temperature characteristic test and scanning electron microscopy ( SEM ) .The results showed that the volume resistivity of composites under room temperature decreased with an increase in silica contents and showed a minimum with silica content of 0.5wt%.Resistivity then increased with the addition of excess amount of silica.The EP / CB / SiO2 conductive composites still had PTC( positive temperature coefficient )and NTC( negative temperature coefficient ) efficiency, but its PTC and NTC intensity was less than that of EP / CB composites.
出处 《工程塑料应用》 CAS CSCD 北大核心 2012年第10期84-86,共3页 Engineering Plastics Application
关键词 环氧树脂 炭黑 二氧化硅 导电复合材料 阻温特性 epoxy resin carbon black silica conductive composite resistance-temperature characteristic
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参考文献4

  • 1Zhang W, Blackburn R S, Dehghani-Sanij A A.Effect of silica concentration on electrical conductivity of epoxy resin-carbon black-silica nanocomposites[J].Scripta Materialia, 2007,56 ( 7 ): 581-584.
  • 2Matsumura T, Ochi M, Nagata K.Thermomechanical properties, phase structure, and conductivity of organic / inorganic hybrid material filled with a conductive filler [ J ] .Journal of Applied Polymer Science,2003,90 ( 7 ) : 1 980 -1 984.
  • 3郑君刚,张伟.炭黑/环氧树脂复合材料的导电阈值现象[J].沈阳建筑大学学报(自然科学版),2010,26(1):135-139. 被引量:5
  • 4季铁正.孔德鹏,焦剑.一种测试导电高分子复合材料阻温特性的装置:中国,101140251[P].2008-03-12.

二级参考文献12

  • 1JiWenHU,MingWeiLI,MingQiuZHANG:,GenShuiCHENG,MinZhiRONG.A Novel Method for Preparing Polyurethane Based Conductive Composites with Low Percolation Threshold[J].Chinese Chemical Letters,2004,15(8):1001-1004. 被引量:2
  • 2Hermant M C, Klumperman B, Kyrylyuk A V. Lowering the percolation threshold of single-walled carbon nanotubes using polystyrene/poly(3,4-ethylene- dioxythiophene) : poly ( styrene sulfonate) blends [ J ]. Soft Matter ,2009,5 (4) :878 - 885.
  • 3Ehsan D, Seyed R G, Payam M A. Effect of porosity on response behavior of carbon black-PMMA conductive composite sensors toward organic vapors[J].Olfaetion and electronic nose:proceedings of the 13th International Symposium on Olfaction and Electronic Nose, 2009,1137 : 361 - 364.
  • 4Petrovi Z S, Martinovi B, Divjakovi. Polypropylenecarbon black interaction in conductive composites[J]. Journal of Applied Polymer Science, 2003,49 (9) : 1659 - 1669.
  • 5Kun Dai, Xu Xiangbin, Li Zhongming. Electrically conductive carbon black (CB)filled in situ microfibrillar poly( ethylene terephthalate) ( PET)/polyethylene(PE) composite with a selective CB distribution [J]. Polymer,2007,48 ( 3 ) : 849 - 859.
  • 6Narkis M. Resistivity behavior of filled electrically conductive crosslinked polyethylene[J]. Journal of Applied Polymer Science ,2004,29 : 1639 - 1652.
  • 7Zhang Qinghua, Xiong Hui, Yan Weixia. Electrical conductivity and theological behavior of multiphase polymer composites containing conducting carbon black[J]. Polymer Engineering and Science, 2008, 48( 11 ) :2090 -2097.
  • 8A1-Saleh M H, Sundararaj U. An innovative method to reduce percolation threshold of carbon black filled immiscible polymer blends [ J ]. Composites Part A: Applied Science and Manufacturing, 2008,39 ( 2 ) : 284 - 293.
  • 9Li Bo, Xu Xiangbin, Li Zhongming. Manipulating the conductivity of carbon-black-filled immiscible polymer composites by insulating nanoparticles [J].Journal of Applied Polymer Science,2008,110( 5 ) :3073 - 3079.
  • 10Flandin L,Chang A,Nazarenko D. Effect of strain on the properties of an ethylene-octene elastomer with conductive carbon fillers[J].Journal of Applied Polymer Science ,2000,76:894 - 905.

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