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碳纤维增强复合材料(简称CFRP)是一种优良的新型结构材料,同时具有较好的自感知特性,其力阻效应(电阻随应变的变化)明显.本文综述了国内外对碳纤维单丝、CFRP筋材和CFRP板等不同形式材料力阻效应的研究现状,总结了力阻效应灵敏度指标的相关研究成果,并对其变化规律及机理进行了探讨,指出了应用CFRP材料构建智能结构体系需进一步开展的研究工作.

参考文献

[1] 智能复合材料结构体系[M].武汉:武汉理工大学出版社,2005
[2] Xu Z H;Liu Z T.Fatigue damage sensing in smart carbon fiber concrete by electrical resistance measurement[J].Key Engineering Materials,2007:348-349,345-348.
[3] 郑立霞,李卓球,宋显辉,吕泳.连续碳纤维单丝的应变电阻效应[J].功能材料,2008(03):440-442.
[4] 张博明,孙新杨,李嘉.电阻法在单丝碳纤维复合材料体系界面相传载能力评价中的应用[J].哈尔滨工程大学学报,2013(04):455-460.
[5] 乐正想;梅启林;黄志雄 .纳米碳纤维复合材料的电阻-应变传感性能研究[J].功能材料,2007,38(A02):576-577.
[6] C.E. Bakis;A. Nanni;J.A. Terosky .Self-monitoring, pseudo-ductile, hybrid FRP reinforcement rods for concrete applications[J].Composites science and technology,2001(6):815-823.
[7] 欧进萍,王勃,张新越,何政,钱民中.混凝土结构用CFRP筋的感知性能试验研究[J].复合材料学报,2003(06):47-51.
[8] 王勃,欧进萍,张新越,何政.CFRP筋及其加筋混凝土梁感知性能试验与分析[J].哈尔滨工业大学学报,2007(02):220-224.
[9] A. Vavouliotis;A. Paipetis;V. Kostopoulos .On the fatigue life prediction of CFRP laminates using the Electrical Resistance Change method[J].Composites science and technology,2011(5):630-642.
[10] Wang SK;Kowalik DP;Chung DDL .Self-sensing attained in carbon-fiber-polymer-matrix structural composites by using the interlaminar interface as a sensor[J].Smart Materials & Structures,2004(3):570-592.
[11] Wang SK;Wang DJ;Chung DDL;Chung JCH .Method of sensing impact damage in carbon fiber polymer-matrix composite by electrical resistance measurement[J].Journal of Materials Science,2006(8):2281-2289.
[12] 宋显辉,刘冬,吕泳,李卓球.碳纤维树脂基复合材料的传感特性研究[J].工程塑料应用,2007(02):48-51.
[13] 周志勇 .基于树脂基碳纤维智能束的结构应变模态研究[D].武汉理工大学,2012.
[14] 唐健,朱四荣,李卓球.连续碳纤维预浸料敏感层力阻效应的实验研究[J].武汉理工大学学报,2010(18):16-19.
[15] 刘冬 .树脂基碳纤维智能层应变传感特性研究[D].武汉理工大学,2009.
[16] 骆心怡,王开坤,熊克,朱晓荣,李顺林.碳纤维复合材料单向层合板自传感特性[J].北京科技大学学报,2002(06):638-642.
[17] 黄莉,龚学进,孙明清,陈龙.连续碳纤维带树脂基复合材料的传感性能实验研究[J].功能材料,2010(08):1402-1405.
[18] T. Prasse;F. Michel;G. Mook .A comparative investigation of electrical resistance and acoustic emission during cyclic loading of CFRP laminates[J].Composites science and technology,2001(6):831-835.
[19] Chen J;Morozov E V;Shankar K .Progressive failure analysis of perforated aluminium/CFRP fibre metal laminates using a combined elastoplastic damage model and including delamination effects[J].Computers & Structures,2014,114(18):64-79.
[20] Kosuke T;Akira T;Ryosuke M .Simultaneous measurement of multiple electrical resistance changes with strain of CFRP[J].Journal of Solid Mechanics and Materials Engineering,2010,4(04):557-567.
[21] WANG SHOUKAI .Piezoresistivity in Continuous Carbon Fiber Polymer-Matrix Composite[J].Polymer Composites,2000(1):13-19.
[22] Todoroki A;Suzuki K;Mizutani Y et al.Electrical resistance change of CFRP under a compression load[J].Journal of Solid Mechanics and Materials Engineering,2010,4(07):864-874.
[23] Akira TODOROKF;Jyunji YOSHIDA .Electrical resistance change of unidirectional CFRP due to applied load[J].JSME International Journal, Series A. Solid mechanics and material engineering,2004(3):357-364.
[24] Zhu S;Zheng H;Li Z.Two-dimensional strain sensitivity of epoxymatrix carbon fiber smart layer[J].Fourth International Conference on Experimental Mechanics,2009:7522.
[25] 沈烈,益小苏.一个单向碳纤维增强树脂基复合材料导电结构模型[J].复合材料学报,1998(03):66-70.
[26] 朱四荣,郑华升,李卓球.树脂基搭接碳纤维智能层的力阻特性[J].复合材料学报,2010(03):111-115.
[27] 周文松,李惠,欧进萍.无环氧树脂基碳纤维束自监测功能[J].复合材料学报,2005(02):63-66.
[28] 贺福.碳纤维及其应用技术[M].北京:化学工业出版社,2004
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