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掺入碳纤维对提高水泥基材料的电导率有很大的作用.综合评述了近十年来碳纤维水泥基复合材料力电、电热性能的研究进展.近年来对碳纤维水泥基材料的研究表明,这类材料受载后电阻率将发生明显变化,试件通电后可以作为发热元件使用,并且其热电效应可以将热能转变成电能.认为今后对碳纤维水泥基复合材料的研究重点应放在提高测量精度和电磁屏蔽等方面,并开发材料的新性能.

参考文献

[1] 姚武,陈兵,吴科如.碳纤维水泥基材料的机敏特性研究[J].复合材料学报,2002(02):49-53.
[2] Chen Puwoei;Chung D D L.Carbon fiber reinforced concrete for smart structures capable of non-destructive flaw detection[J].Smart Materials and Structures,1993(02):22.
[3] Chung D D L.Cement reinforced with short carbon fibers:a multifunctional material[J].Composites Part B:Engineering,2000(31):511.
[4] Bo Wu;Xiao-ji Huang;Jin-zhong Lu .Biaxial compression in carbon-fiber-reinforced mortar, sensed by electrical resistance measurement[J].Cement and Concrete Research,2005(7):1430-1434.
[5] Chung D D L .Damage in cement-based materials,studied by electrical resistance measurement[J].Materials Science and Engineering,2003,R52(01):1.
[6] Wen Sihai;Chung D D L .Uniaxial compression in carbon fiber-reinforced cement,sensed by electrical resistivity measurement in longitudinal and transverse directions[J].Cement and Concrete Research,2001,31:297.
[7] Wen Sihai;Chung D D L .Uniaxial tension in carbon fiber reinforced cement,sensed by electrical resistivity measurement in longitudinal and transverse directions[J].Cement and Concrete Research,2000,30:1289.
[8] Cao Jingyao;Chung D D L .Minor damage of cement mortar during cyclic compression monitored by electrical resistivity measurement[J].Cement and Concrete Research,2001,31:1519.
[9] Jingyao Cao;D. D. L. Chung .Effect of strain rate on cement mortar under compression, studied by electrical resistivity measurement[J].Cement and Concrete Research,2002(5):817-819.
[10] Bontea D-M.;Chung D.D.L .Damage in carbon fiber-reinforced concrete, monitored by electrical resistance measurement[J].Cement and Concrete Research,2000(4):651-659.
[11] 王秀峰,王永兰,金志浩.碳纤维增强水泥复合材料的机敏性[J].硅酸盐学报,1998(02):256-260.
[12] 王秀峰,王永兰,金志浩.碳纤维增强水泥复合材料的电导性能及其应用[J].复合材料学报,1998(03):75-80.
[13] Chen Bing;Wu Keru;Yao Wu .Conductivity of carbon fiber reinforced cement-based composites[J].Cement and Concrete Composites,2004,26:291.
[14] Wen Sihai;Chung D D L .Carbon fiber-reinforced cement as a thermistor[J].Cement and Concrete Research,1999,29:961.
[15] Wen S.;Chung D.D.L. .Seebeck effect in carbon fiber-reinforced cement[J].Cement and Concrete Research,1999(12):1989-1993.
[16] 陈兵,吴科如,姚武.碳纤维机敏水泥基复合材料温阻特性[J].建筑材料学报,2003(03):312-315.
[17] Cao Jingyao;Chung D D L.Role of moisture in the Seebeck effect in cement-based materials[J].Cement and Concrete Research,2004
[18] Sun M;Li Z;Mao Q et al.Thermoelectric percolation phenomena in carbon fiber-reinforced concrete[J].Cement and Concrete Research,1998,28(12):1707.
[19] Sun Mingqing;Li Zhuoqiu;Mao Qizhao et al.A study on thermal self-monitoring of carbon fiber reinforced concrete[J].Cement and Concrete Research,1999,29:769.
[20] Sun Mingqing;Li Zhuoqiu;Liu Qingping et al.A study on thermal self-diagnostic and self-adaptive smart concrete structures[J].Cement and Concrete Research,2000,30:1251.
[21] Wen Sihai;Chung D D L .Enhancing the Seebeck effect in carbon fiber-reinforced cement by using intercalated carbon fibers[J].Cement and Concrete Research,2000,30:1295.
[22] 唐祖全,李卓球,侯作富,徐东亮.导电混凝土电热层布置对路面除冰效果的影响[J].武汉理工大学学报,2002(02):45-48.
[23] 侯作富,李卓球,胡胜良.外部环境对导电混凝土融雪化冰效果的影响[J].武汉理工大学学报(交通科学与工程版),2002(05):581-584.
[24] 唐祖全,李卓球,徐东亮,侯作富.碳纤维导电混凝土电热升降温规律研究[J].华中科技大学学报(城市科学版),2002(03):7-9.
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