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CFS/GFS层间混杂加固纤维混凝土梁抗弯试验研究
引用本文:郭永昌,黄培彦,李丽娟,朱江,刘锋. CFS/GFS层间混杂加固纤维混凝土梁抗弯试验研究[J]. 华南理工大学学报(自然科学版), 2006, 34(4): 13-18
作者姓名:郭永昌  黄培彦  李丽娟  朱江  刘锋
作者单位:1. 华南理工大学,交通学院,广东,广州,510640
2. 广东工业大学,建设学院,广东,广州,510006
基金项目:中国科学院资助项目;广东省教育厅千百十工程优秀人才培养基金;广东省建设厅资助项目
摘    要:对采用杜拉纤维和钢纤维混杂改性的混凝土梁外贴碳纤维布和玻璃纤维布(CFS/GFS)进行混杂加固抗弯试验,对构件的开裂及发展情况以及构件加固后刚度的变化进行了对比分析研究.试验结果表明,掺入杜拉纤维和钢纤维,可以延缓混凝土构件微裂缝的出现,控制裂纹扩展,提高混凝土材料的强度,这种混杂纤维混凝土梁在试验过程中表现出比单一纤维混凝土梁更为优良的材料性能.采用不同形式的纤维布加固混凝土梁得到的加固效果有较大的不同,按试验方案采用CFS/GFS层间混杂加固纤维混凝土梁是一种有效的加固方法,在保证提高承载力的前提下,既提高了纤维混凝土构件的延性,又可降低加固成本.

关 键 词:混杂纤维混凝土  混杂加固  抗弯性能
文章编号:1000-565X(2006)04-0013-06
收稿时间:2005-09-02
修稿时间:2005-09-02

Experimental Investigation into Flexural Behavior of Fiber-Modified Concrete Beam Strengthened with CFS/GFS
Guo Yong-chang,Huang Pei-yan,Li Li-juan,Zhu Jiang,Liu Feng. Experimental Investigation into Flexural Behavior of Fiber-Modified Concrete Beam Strengthened with CFS/GFS[J]. Journal of South China University of Technology(Natural Science Edition), 2006, 34(4): 13-18
Authors:Guo Yong-chang  Huang Pei-yan  Li Li-juan  Zhu Jiang  Liu Feng
Affiliation:1. College of Traffic and Communications, South China Univ. of Tech. , Guangzhou 510640, Guangdong, China; 2. Faculty of Construction Engineering, Guangdong Univ. of Tech, , Guangzhou 510006, Guangdong, China
Abstract:Test analyses are carried out to reveal the flexural behaviours of polypropylene fiber and steel fiber-modified concrete beams strengthened with mixed carbon fiber sheets(CFS) and glass fiber sheets(GFS).The crack and its development,as well as the rigidity variation after the strengthening are then analyzed.Tested results show that(1) polypropylene fibers and steel fibers can postpone the appearance of microcracks in concrete,control the development of cracks and improve the concrete strength;(2) the concrete beam modified with hybrid fibers are superior to that modified with single fiber;(3) the strengthening effect greatly depends on the strengthened fiber sheets;and(4) the concrete beams strengthened with CFS/GFS is effective and is helpful to improve the toughness,reduce the cost and enhance the load bearing capacity of the beam.
Keywords:hybrid fiber-concrete   hybrid strengthening   flexural behavior
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