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改性竹筋混凝土受弯构件力学性能试验研究
引用本文:邹立华,钟坤禄,谢吉鸿,张天宇,李梁峰,黄凯. 改性竹筋混凝土受弯构件力学性能试验研究[J]. 土木建筑与环境工程, 2015, 37(5): 33-40. DOI: 10.11835/j.issn.1674-4764.2015.05.005
作者姓名:邹立华  钟坤禄  谢吉鸿  张天宇  李梁峰  黄凯
作者单位:1. 福州大学 土木工程学院,福州,350108;2. 福建省建筑科学研究院,福州,350025
基金项目:国家自然科学基金,住房和城乡建设部研究开发项目
摘    要:针对竹筋混凝土结构存在的问题,提出了多种对竹筋的改性方法。在此基础上,对12根采用不同配筋和不同改性方法的受弯构件(11根竹筋混凝土梁和1根钢筋混凝土梁)进行了试验研究,分析了不同改性方法和不同配筋率竹筋混凝土受弯构件的力学性能、破坏形态及其影响因素。研究结果表明:竹筋能有效提高混凝土受弯构件的承载能力;经过适当方法改性后的竹筋能确保竹筋和混凝土之间的有效粘结,其正截面强度计算可以采用平截面假定;竹筋混凝土受弯构件的破坏均为脆性破坏,其破坏形态与其截面配筋率有关。

关 键 词:改性竹筋混凝土  受弯构件  力学性能  平截面假定  脆性破坏
收稿时间:2015-04-21

Experimental analysis of mechanical property of processed bamboo reinforced concrete flexural member
Zou Lihu,Zhong Kunlu,Xie Jihong,Zhang Tianyu,Li Liangfeng and Huang Kai. Experimental analysis of mechanical property of processed bamboo reinforced concrete flexural member[J]. Journal of Civil,Architectrual & Environment Engineering, 2015, 37(5): 33-40. DOI: 10.11835/j.issn.1674-4764.2015.05.005
Authors:Zou Lihu  Zhong Kunlu  Xie Jihong  Zhang Tianyu  Li Liangfeng  Huang Kai
Abstract:To overcome the existing problems of bamboo reinforced concrete structure,several processing methods are proposed to improve the performance of bamboo bar. Experiments on twelve flexural members,including eleven bamboo reinforced concrete beams and one steel reinforced concrete beam,is carried out.The mechanical properties,failure modes and influential factors of flexural beams with different processing methods and reinforcement ratios are studied.The results show that:bamboo could improve effectively the flexural capacity of concrete beam,and the effective bonding between bamboo reinforcement and concrete could be achieved if the bamboo is processed by proper methods.Moreover,the plane-section assumption can be used for bearing capacity calculation of bamboo reinforced concrete beams. The failure mode of bamboo reinforced concrete beams is brittle fracture and the detailed fracture pattern is related to reinforcement ratios.
Keywords:processed bamboo reinforced concrete  flexural members  mechanical properties  plane-section assumption  brittle fracture
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