A STRESS-STRAIN RELATION OF JOINTS CONNECTING CONCRETE-FILLED PVC TUBE COLUMNS WITH CORE STEEL TUBES WRAPPED WITH CFRP STRIPS AND REINFORCED CONNCRETE BEAMS
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摘要: 通过对9个芯钢管连接的聚氯乙烯-碳纤维增强树脂(PVC-CFRP)管混凝土柱-钢筋混凝土梁节点轴压试验,对试件的破坏形态和应力-应变曲线进行了研究,探析了节点高度、芯钢管长度、芯钢管含钢率和节点环箍配箍率的影响。试验结果表明:节点区混凝土发生压溃破坏,而PVC-CFRP管混凝土柱未发生破坏;当节点区混凝土的拉应变达到极限拉应变时,节点应力-应变关系曲线偏离线性增长;随着节点环箍配箍率、芯钢管含钢率的增大以及节点高度的减小,应力-应变关系曲线斜率增大。基于Mander模型,建立了节点核心区应力-应变关系模型,模型计算值与试验值吻合较好。
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关键词:
- PVC-CFRP管混凝土 /
- 梁柱节点 /
- 芯钢管 /
- 应力-应变关系
Abstract: Axial compression tests for 9 joints of PVC tube columns with core steel tubes wrapped with CFRP strips and reinforced conncrete beams were conducted, so as to study their failure modes and stress-strain relations, the effects of joint height, the length of core steel tubes, the steel proportions of core steel tubes, and the stirrup ratios of joints were studied. The experimental results showed that the concrete of joint zones was crushed and destroyed, and the PVC-CFRP tubular confined concrete column was not damaged. When the tensile strain of the joint concrete reached the ultimate tensile strain, the stress-strain curves of the joints deviated from linear growth. The gradients of the stress-strain curves increased with the increase of the stirrup ratios in joints and the steel proportion of core steel tubes increased or with the decrease of the joint height. Based on Mander's model, an accurate model for estimating the stress-strain relations of the joints was constructed, and it agreed well with test data.-
Key words:
- PVC-CFRP confined concrete /
- beam-column joint /
- core steel tube /
- stress-strain relation
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[1] 陈朝晖,魏超,罗绮雯,等.基于内聚力模型的FRP布加固混凝土梁柱子结构受力性能分析[J].建筑结构学报,2019,40(9):122-130. [2] 高键,唐春安,徐涛.FRP加固钢筋混凝土构件疲劳性能的研究现状[J].工业建筑,2011,41(增刊1):689-692,700. [3] ROCHETTE P,LABOSSIERE P.Axial Testing of Rectangular Column Models Confined with Composites[J].Journal of Composite for Construction,2000,4(3):129-136. [4] 邓宗才,高伟男,沈锋.碱、盐环境下不同应力水平FRP筋抗压强度试验与理论研究[J].复合材料学报,2017,34(10):2220-2231. [5] 曹双寅,敬登虎,孙宁.碳纤维布约束加固混凝土偏压柱的试验研究与分析[J].土木工程学报,2006(8):26-32,37. [6] 李耀宗.FRP型材-超高性能混凝土组合梁抗剪性能试验研究[D].郑州:郑州大学,2019. [7] MIRMIRAN A,SHAHAWY M.Behavior of Concrete Columns Confined by Fiber Composites[J].Journal of Structural Engineering,1997,123(5):583-590. [8] 于峰,牛荻涛.PVC-FRP管钢筋混凝土轴压短柱试验研究[J].建筑结构学报,2013,34(6):129-136. [9] 于峰,黎德光,牛荻涛,等.偏心受压PVC-FRP管钢筋混凝土柱承载力分析[J].西安建筑科技大学学报(自然科学版),2014,46(5):660-664,670. [10] 于峰,徐国士,程安春.PVC-CFRP圆管钢筋混凝土柱恢复力模型研究[J].建筑结构学报,2015,36(9):66-72. [11] 麻胜兰,姜绍飞.PVC-CFRP管混凝土轴压中长柱承载力研究[J].土木工程学报,2014,47(1):99-106. [12] 于峰,黎德光,徐国士,等.偏压PVC-FRP管钢筋混凝土柱荷载-挠度关系数值分析[J].玻璃钢/复合材料,2015(8):18-24. [13] 于峰,程安春,黎德光,等.聚氯乙烯-纤维增强材料管钢筋混凝土短柱的偏压有限元分析[J].工业建筑,2015,45(4):83-87. [14] 于峰,徐国士,程安春.低周反复荷载作用下PVC-CFRP管钢筋混凝土柱受剪承载力分析[J].建筑结构学报,2016,37(11):106-112. [15] 吴智林.FRP-PVC管约束钢筋混凝土压弯构件滞回性能研究[D].福州:福州大学,2013. [16] 汤序霖.节点区柱钢管非连续式矩形钢管混凝土柱-梁节点力学性能研究[D].成都:华南理工大学,2014. [17] YU F,FENG C C,LI D G,et al.Finite Element Analysis on Weak PVC-FRP Confined Concrete Column and Strong Joint Strengthened with Core CFST Under Axial Compression[J/OL].Iranian Journal of Science and Technology:Transactions of Civil Engineering,2021(2).https://doi.org/10.1007/s40996-020-00561-z. [18] YU F,BU S S,LI D G,et al.Experimental Investigation and Theoretical Study on Bearing Capacity of Strong PVC-FRP Confined Concrete Column-Weak Joint Strengthened with Core Steel Tube Under Axial Loading[J/OL].Construction and Building Materials,2021,271(3/4).https://doi.org/10.1016/j.conbuildmat.2020.121880. [19] 刘奇奇.PVC-FRP管混凝土柱-钢筋混凝土梁连接方式研究[D].马鞍山:安徽工业大学,2018. [20] MANDER J B,PRIESTLEY M J N,PARK R.Theoretical Stress-Strain Model for Confined Concrete[J].Journal of Structural Engineering,ASCE,1988,114(8):1804-1826. [21] 朱德丰.PVC-FRP管混凝土柱-钢筋混凝土梁节点轴压性能研究[D].马鞍山:安徽工业大学,2018. [22] 李东昂.芯钢管连接的PVC-CFRP管混凝土柱-钢筋混凝土梁节点轴压性能研究[D].马鞍山:安徽工业大学,2019.
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