长江科学院院报 ›› 2015, Vol. 32 ›› Issue (7): 128-132.DOI: 10.3969/j.issn.1001-5485.2015.07.024

• 水工结构与材料 • 上一篇    下一篇

基于MCFT理论的超高韧性水泥基复合材料简支梁抗剪性能研究

杨忠, 刘成建, 张文健, 江德保   

  1. 九江学院 土木工程与城市建设学院,江西 九江 332005
  • 收稿日期:2014-01-03 出版日期:2015-07-01 发布日期:2015-07-07
  • 作者简介:杨忠(1977-),男,湖北黄梅人,讲师,硕士,主要从事结构工程分析与抗震研究,(电话)13767229870(电子信箱)masyang@163.com。
  • 基金资助:
    江西省教育厅科技项目(GJJ13725)

MCFT-based Analysis on the Shear Resistance of Simply-supported Beams Reinforced with Cementitious Composites of Ultra-high Toughness

YANG Zhong, LIU Cheng-jian, ZHANG Wen-jian, JIANG De-bao   

  1. College of Civil Engineering, Jiujiang University, Jiujiang 332005, China
  • Received:2014-01-03 Online:2015-07-01 Published:2015-07-07

摘要: 简要介绍了全新的抗剪分析方法——修正压力场理论(MCFT),并将该理论应用于超高韧性水泥基复合材料梁抗剪性能研究分析中。在此基础上建立了钢筋增强超高韧性水泥基复合材料(UHTCC)梁在弯剪复合作用下的截面分析模型;根据计算模型编制了程序,并利用该程序对UHTCC材料梁进行抗剪承载力的理论计算;同时对UHTCC梁试件进行加载试验,并将理论值与试验值进行了对比,结果显示两者较为吻合,表明MCFT理论能够较好地分析超高韧性水泥基复合材料梁的抗剪性能。进一步研究表明:UHTCC材料简支梁中的箍筋一般能够达到屈服状态,能够承担裂缝间的应力;MCFT理论计算值能反映箍筋受力的实际情况,该理论可用于对UHTCC材料梁抗剪承载力的理论计算。

关键词: 修正的压力场理论, 超高韧性水泥基复合材料, 简支梁, 极限荷载, 箍筋应变

Abstract: MCFT (modified compression field theory) was applied to analyse the shear resistance of ultra-high toughness cementitious composite (UHTCC) beam. A program based on the section analysis model for reinforced UHTCC beam under bending and shearing action was established to predict the shear capacity of simply-supported UHTCC beams. Besides, loading test was conducted on the beam specimens, and the measured test results were compared with the theoretical results calculated by this program. The results were consistent, indicating that MCFT could well analyse the shear resistance of UHTCC beams. Further analysis shows that the reinforcement stirrups could generally reach yield state and are capable of bearing the stress between cracks. The calculation results based on MCFT could reflect the real forces on the reinforcement stirrups.

Key words: MCFT, ultra high toughness cementitious composites, simply supported beam, ultimate load, strain of reinforcement stirrup

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