沈荣熹,崔琪,李清.新型纤维增强水泥基复合材料[M].北京:中国建筑工业出版社,2004. SHEN Rong-xi,GUI Qi,LI Qing. New Type Fiber Reinforced Cement-based Composites[M]. Beijing:China Architecture & Building Press,2004.
[2]
田磊,贡金鑫,魏巍巍.钢筋混凝土构件受扭承载力对比分析[J].建筑科学与工程学报,2010,27(4):57-68. TIAN Lei,GONG Jin-xin,WEI Wei-wei. Comparative Analysis of Torsional Capacity for Reinforced Concrete Members[J].Journal of Architecture and Civil Engineering,2010,27(4):57-68.
[3]
魏巍巍,贡金鑫,田磊. 钢筋混凝土板受冲切承载力对比分析[J].建筑科学与工程学报,2010,27(4):44-56. WEI Wei-wei,GONG Jin-xin,TIAN Lei. Comparative Analysis of Punching Shear Capacity for Reinforced Concrete Slabs[J]. Journal of Architecture and Civil Engineering,2010,27(4):44-56.
[4]
吴桂金,吴思源,马二伟.旧水泥混凝土路面碎石化原位利用技术应用[J].筑路机械与施工机械化, 2011,28(6):64-66,69. WU Gui-jin,WU Si-yuan,MA Er-wei. Application of In-situ Crushing and Recycling Technology in Old Cement Concrete Pavement[J]. Road Machinery & Construction Mechanization,2011,28(6):64-66,69.
[5]
王国锋.沥青混凝土路面施工过程的质量控制[J].筑路机械与施工机械化,2011,28(6):46-48. WANG Guo-feng. Quality Control of Construction of Asphalt Concrete Pavement[J].Road Machinery & Construction Mechanization,2011,28(6):46-48.
[6]
王国锋.沥青混凝土路面早期破坏的原因及修补方法[J].筑路机械与施工机械化,2011,28(5):59-61. WANG Guo-feng. Causes and Repair Methods of Early Damage of Asphalt Concrete Pavement[J]. Road Machinery & Construction Mechanization,2011,28(5):59-61.
[7]
刘少文,申俊敏,周玉民.山西运煤专线水泥混凝土试验路结构分析[J].公路交通科技,2009,26(9):32-36. LIU Shao-wen,SHEN Jun-min,ZHOU Yu-min. Analysis of Cement Concrete Pavement Structure at Testing Segment for Coal Transport Specific Line in Shanxi Province[J]. Journal of Highway and Transportation Research and Development,2009,26(9):32-36.
[8]
郭兰英,朱红兵,董连成.路基路面工程[M].北京:化学工业出版社,2012. GUO Lan-ying,ZHU Hong-bing,DONG Lian-cheng. Subgrade and Pavement Engineering [M].Beijing:Chemical Industry Press,2012.
[9]
方恒亮,赵茂才,张海,等.基于有限元的水泥路面冰冻损伤机理[J]. 公路交通科技,2011,28(8):13-18. FANG Heng-liang,ZHAO Mao-cai,ZHANG Hai,et al. Damage Mechanism of Cement Pavement under Freezing Environment Based on FEM[J].Journal of Highway and Transportation Research and Development,2011,28(8):13-18.
[10]
三田村浩. 高性能低成本ECC合成钢床板的开发与研究,寒地土木研究所130 [R].札幌:寒地土木研究所,2007. MITAMURA H. Development of a High-performance and Economical ECC/Steel Plate Deck, CERICR 130[R]. Sapporo:Civil Engineering Research Institute for Cold Region,2007.
[11]
陈瑜,张大千.水泥混凝土路面磨损机理及其耐磨性[J].混凝土与水泥制品,2004(2):16-19. CHEN Yu,ZHANG Da-qian. Abrasion Mechanisms and Abrasion Resistance of Cement Concrete Pavement[J]. China Concrete and Cement Products,2004(2):16-19.
[12]
ASTM C1018-97,Standard Test Method for Flexural Toughness and First-crack Strength of Fiber Reinforced Concrete[S].
[13]
满都拉,服部九二雄,绪方英彦,等.利用简易磨耗试验机评价铺装混凝土的抗磨耗性[J].日本农业农村工学会论文集,2008,76(3):227-234. MAN Du-la,HATTORI K,OGATA H,et al. Simple Abrasion Test Equipment for Evaluation of Abrasion Resistance of Pavement Concrete[J]. Transactions of The Japanese Society of Irrigation,Drainage and Rural Engineering, 2008,76(3):227-234.
[14]
吴中伟.纤维增强-水泥基材料的未来[J]. 混凝土与水泥制品,1999(1):3-4. WU Zhong-wei. Fiber Reinforcement: Future of Cement Based Materials[J]. China Concrete and Cement Products,1999(1):3-4.
[15]
BANTHIA N,TROTTIER J F. Test Methods for Flexural Toughness Characterization of Fiber Reinforced Concrete:Some Concerns and a Proposition[J].ACI Materials Journal,1995,92(1):48-57.
[16]
丰福俊英. 冲击、冲刷作用下碳纤维补强混凝土的磨损特性 [C]//第12届混凝土工学会年会论文集.东京:日本混凝土工学会,1990:1245-1250. TOFUKU T. Impact of Shock and Tractive Current Action on Abrasion Characteristics of Carbon Fiber Reinforced Concrete[C]//Proceedings of 12th Concrete Engineering Annual Conference. Tokyo:Japan Concrete Institute,1990:1245-1250.
[17]
吕丽华,柳俊哲,李玉顺,等.粉煤灰对混凝土路面耐磨性的影响[J].低温建筑技术,2006(3):13-15. Lü Li-hua,LIU Jun-zhe,LI Yu-sun,et al. Effects of Fly-ash on Resistance to Abrasion of Concrete Pavement[J]. Low Temperature Architecture Technology,2006(3):13-15.