陈建强等:改性聚酯纤维在混凝土中的分散性及对耐久性的影响 *1609· 扩散系数,提高其抗氮离子侵蚀能力.同时,改性聚酯 (阳知乾,刘加平,吕进.纤维在水泥基复合材料中的分散 纤维与水泥基体界面间的机械啮合力和黏结力能有效 性评价方法综述.新型建筑材料,2008(13):85) 12] 阻止冻融循环过程中表层材料的剥落,大大改善混凝 Weng X Z.Study on anti-aging property of modified polyester fi- ber reinforced conerete.J Build Mater,2010,13(6):749 土的抗冻性 (翁兴中.道面改性聚酯纤维混凝土抗老化试验研究.建筑 材料学报,2010,13(6):749) 参考文献 [13]Cai L,Xu R,Chen T L.Study on concrete impermeability prop- erties of modified polyester fiber.China Coner Cem Prod,2006 Mehta P K,Monteiro P J M.Concrete:Microstructure,Properties (6):46 and Materials.3rd Ed.New York:MeGraw-Hill Education,2006 (蔡路,徐榕,陈太林.改性聚酯纤维混凝土抗渗性能研究 2]Sargaphuti M,Shah S P,Vinson K D.Shrinkage cracking and 混凝土与水泥制品,2006(6):46) durability characteristics of cellulose fiber reinforced concrete. 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Concrete: Microstructure,Properties and Materials. 3rd Ed. New York: McGraw-Hill Education,2006 [2] Sargaphuti M,Shah S P,Vinson K D. Shrinkage cracking and durability characteristics of cellulose fiber reinforced concrete. Mater J,1993,90( 4) : 309 [3] Zhang P,Wittmann F H,Zhao T J,et al. Observation and quantification of water penetration into strain hardening cement - based composites ( SHCC) with multiple cracks by means of neutron radiography. Nucl Instrum Methods Phys Res Sect A, 2010, 620( 2--3) : 414 [4] Gao D Y,Li H,Yang F. Performance of polypropylene--steel hybrid fiber reinforced concrete after being exposed to high temperature. Acta Mater Compos Sin,2013,30( 1) : 187 ( 高丹盈,李晗,杨帆. 聚丙烯--钢纤维增强高强混凝土高温 性能. 复合材料学报,2013,30( 1) : 187) [5] Yuan C F,Gao D Y. Research of the pore structure of polypropylene fiber concrete after high temperature. J Huazhong Univ Sci Technol Nat Sci Ed,2014,42( 4) : 122 ( 元成方,高丹盈. 聚丙烯纤维混凝土高温后的孔隙结构特征 研究. 华中科技大学学报( 自然科学版) ,2014,42( 4) : 122) [6] Wang Y,Niu D T,Miao Y Y,et al. Carbonation of steel fiber reinforced concrete under flexural loading. J Xi'an Univ Archit Technol Nat Sci Ed,2015,47( 1) : 51 ( 王艳,牛荻涛,苗元耀,等. 弯曲荷载作用下钢纤维混凝土 碳化性能. 西安建筑科技大学学报( 自然科学版) ,2015,47 ( 1) : 51) [7] Balaguru P N,Shah S P. Fiber reinforced cement composites. New York: McGraw-Hill Editions,1992 [8] American Concrete Institute Committee. ACI 544. 3R-08 Guide for Specifying,Proportioning,and Production of Fiber Reinforced Concrete. Farmington Hills,2008 [9] Zhang Y,Zhang Y,Liu J,et al. Global development trend of modified polyester fiber. China Text Leader,2006( 1) : 50 ( 张瑜,张彦,刘峻,等. 改性聚酯纤维的国内外开发动态. 纺织导报,2006( 1) : 50) [10] Wu R R. Development of technology of PET fiber modification in China. Polym Bull,2008( 8) : 101 ( 武荣瑞. 我国聚酯纤维改性的技术进展. 高 分 子 通 报, 2008( 8) : 101) [11] Yang Z Q,Liu J P,Lü J. Review on the assessment methods of fibers dispersion in cement-based composites. New Build Mater, 2008( 13) : 85 ( 阳知乾,刘加平,吕进. 纤维在水泥基复合材料中的分散 性评价方法综述. 新型建筑材料,2008( 13) : 85) [12] Weng X Z. Study on anti-aging property of modified polyester fiber reinforced concrete. J Build Mater,2010,13( 6) : 749 ( 翁兴中. 道面改性聚酯纤维混凝土抗老化试验研究. 建筑 材料学报,2010,13( 6) : 749) [13] Cai L,Xu R,Chen T L. Study on concrete impermeability properties of modified polyester fiber. China Concr Cem Prod,2006 ( 6) : 46 ( 蔡路,徐榕,陈太林. 改性聚酯纤维混凝土抗渗性能研究. 混凝土与水泥制品,2006( 6) : 46) [14] Peng S C,Deng K K,Chen M L,et al. Experimental research for improved polyester fiber performance in concrete on crack control and freezing thaw resistance. Earthquake Resistant Eng Retrofitting,2007,29( 1) : 47 ( 彭书成,邓可库,陈美兰,等. 改性聚酯纤维在混凝土中阻 裂增强抗冻试验研究. 工程抗震与加固改造,2007,29( 1) : 47) [15] Zhao Y H,Zhao L D,Fan Y F,et al. High temperature stability and water stability of asphalt mixture modified by polyester fiber. J Build Mater,2008,11( 5) : 550 ( 赵颖华,赵立东,范颖芳,等. 聚酯纤维改性沥青混合料的 高温和水稳定性. 建筑材料学报,2008,11( 5) : 550) [16] Ministry of Housing and Urban-Rural Development of the People's Republic of China,General Administration of Quality Supervision,Inspection and Quarantine of the People's Republic of China. GB /T 50082—2009 Standard for Test Methods of Long-term Performance and Durability of Ordinary Concrete. Beijing: China Architecture & Building Press,2009 ( 中华人民共和国住房与城乡建设部,中国人民共和国质量 监督检验检疫总局. GB/T 50082—2009 普通混凝土长期性 能和耐久性能试验方法标准. 北京: 中国建筑工业出版社, 2009) [17] Wang C,Li K Z,Li H J,et al. CVI treatment of short carbon fibers and their dispersion in CFRC. Acta Mater Compos Sin, 2007,24( 1) : 135 ( 王闯,李克智,李贺军,等. 短切碳纤维的 CVI 处理及其在 CFRC 中的分散性. 复合材料学报,2007,24( 1) : 135) [18] Ministry of Housing and Urban-Rural Development of the People's Republic of China. JGJ/T221—2010 Technical Specification for Application of Fiber Reinforced Concrete. Beijing: China Architecture & Building Press,2010 ( 中国人民共和国住房与城乡建设部. JGJ/T221—2010 纤维 混凝土结构应用技术规程. 北京: 中国建筑工业出版社, 2010) [19] China Association for Engineering Construction Standardization. CECS13: 89 Test Methods Used for Steel Fiber Reinforced Concrete. Beijing: China Planning Press,1991 ( 中国工程建设标准化协会. CECS13: 89 钢纤维混凝土试验 方法. 北京: 中国计划出版社,1991) ·1609·