|本期目录/Table of Contents|

[1]易伟建,古 攀.混凝土梁柱节点带锚固板钢筋锚固性能试验研究[J].建筑科学与工程学报,2024,41(01):83-92.[doi:10.19815/j.jace.2022.03023]
 YI Weijian,GU Pan.Experimental research on anchorage performance of headed reinforcement in concrete beam-column joints[J].Journal of Architecture and Civil Engineering,2024,41(01):83-92.[doi:10.19815/j.jace.2022.03023]
点击复制

混凝土梁柱节点带锚固板钢筋锚固性能试验研究(PDF)
分享到:

《建筑科学与工程学报》[ISSN:1673-2049/CN:61-1442/TU]

卷:
41卷
期数:
2024年01期
页码:
83-92
栏目:
建筑结构
出版日期:
2024-01-20

文章信息/Info

Title:
Experimental research on anchorage performance of headed reinforcement in concrete beam-column joints
文章编号:
1673-2049(2024)01-0083-10
作者:
易伟建1,2,古 攀2
(1. 湖南大学 工程结构损伤诊断湖南省重点实验室,湖南 长沙 410082; 2. 湖南大学 土木工程学院,湖南 长沙 410082)
Author(s):
YI Weijian1,2, GU Pan2
(1. Key Laboratory of Damage Diagnosis for Engineering Structures of Hunan Province, Hunan University, Changsha 410082, Hunan, China; 2. College of Civil Engineering, Hunan University, Changsha 410082, Hunan, China)
关键词:
带锚固板钢筋 锚固长度 承载力 混凝土强度 梁柱节点
Keywords:
headed reinforcement anchorage length bearing capacity concrete strength beam-column joint
分类号:
TU375
DOI:
10.19815/j.jace.2022.03023
文献标志码:
A
摘要:
为研究混凝土梁柱节点带锚固板钢筋锚固性能,共设计33个满足现行规范构造要求的拟梁柱节点试件,通过静载试验分析混凝土强度、锚固长度、锚固板尺寸、箍筋间距等参数对带锚固板钢筋锚固承载力的影响; 通过拟合试验数据得到带锚固板钢筋锚固力经验公式,提出带锚固板钢筋锚固长度设计建议,并基于试验数据库对建议公式以及中国规范公式进行了统计分析。结果表明:混凝土强度、钢筋锚固长度和锚固板面积对带锚固板钢筋锚固承载力有较大的影响,而承载力对箍筋间距不是很敏感; 锚固板分担的锚固力占总锚固力的70%以上,中国规范对锚固板分担占比的规定偏小,对锚固长度的规定偏于不安全; 建议现浇框架中间层梁柱角节点带锚固板钢筋的锚固长度调整为0.45lab(lab为中国规范的基本锚固长度),中间层梁柱边节点的锚固长度可不作调整。
Abstract:
In order to research the anchorage performance of headed reinforcement in concrete beam-column joints, a total of 33 quasi-beam-column joints were designed, which met the structural requirements of current codes. The influence of concrete strength, anchorage length, anchorage plate size, stirrup spacing, and other parameters on the bearing capacity of headed reinforcement was analyzed by the test data. An empirical formula of anchorage force of headed reinforcement was obtained by fitting the experimental data, and the design proposal of anchorage length of the headed reinforcement was put forward. Based on the test database, the proposed formula and the Chinese code formula were statistically analyzed. The results show that the concrete strength, anchorage length, and anchorage plate size have a marked impact on the bearing capacity of headed reinforcement. The bearing capacity is not very sensitive to stirrup spacing, and the anchorage force shared by the anchorage plate accounts for more than 70% of the total anchorage force. The regulation in China code on the proportion of anchorage plate sharing is relatively small.The code regulation on anchorage length may be unsafe. It is suggested that the anchorage length of headed reinforcement in the corner joint of the middle-story beam-column of a cast-in-place frame should be adjusted to 0.45lab(lab is the basic anchoring length in China code), and the anchorage length in the side joint of the middle-story beam-column should not be adjusted.

参考文献/References:

[1] DEVRIES R A.Load distribution between bond and end-bearing for hooked and headed bars in concrete[C]//ASCE.Architectural Engineering Conference:Birth and Life of the Integrated Building.Reston:ASCE,2015:269-278.
[2]郑文忠,苗天鸣,王识宇,等.锚固力在钢筋黏结和端板承压间的分配规律[J].哈尔滨工业大学学报,2018,50(6):152-160.
ZHENG Wenzhong,MIAO Tianming,WANG Shiyu,et al.Distribution regulation of the reinforcement force between bond and headed bars[J].Journal of Harbin Institute of Technology,2018,50(6):152-160.
[3]苗天鸣.带端板钢筋锚固力及端板下局压承载力研究[D].哈尔滨:哈尔滨工业大学,2020.
MIAO Tianming.Research on anchorage force of reinforcement with headed bars and local bearing capacity of concrete under the headed bars[D].Harbin:Harbin Institute of Technology,2020.
[4]陈朝霞,李 雪,戎 贤.HRB500钢筋机械锚固性能的试验研究[J].河北工业大学学报,2011,40(2):97-100.
CHEN Zhaoxia,LI Xue,RONG Xian.Experimental study on machinery anchorage performance of HRB500 steel bar[J].Journal of Hebei University of Technology,2011,40(2):97-100.
[5]CHOI D U,PARK D U,HONG S G,et al.Test of headed reinforcement in pullout[J].KCI Concrete Journal,2002,14(3):102-110.
[6]CHOI D U.Test of headed reinforcement in pullout II:deep embedment[J].International Journal of Concrete Structures and Materials,2006,18(3E):151-159.
[7]ALRASYID H,YOGANATA Y S,SULUCH M,et al.Headed reinforcement in concrete structure:state of the art[C]//AIP Publishing LLC.AIP Conference Proceedings.Palembang:AIP Publishing LLC,2017:020015.
[8]李智斌.带锚固板钢筋机械锚固性能的试验研究[D].天津:天津大学,2007.
LI Zhibin.Experiment study in anchorage behavior of headed reinforcement[D].Tianjin:Tianjin University,2007.
[9]吴广彬,李智斌,王依群,等.带锚固板钢筋机械锚固强度的拉拔试验研究[J].建筑科学,2010,26(5):1-5.
WU Guangbin,LI Zhibin,WANG Yiqun,et al.Experiment study on mechanical anchorage strength of headed reinforcement by pull-out[J].Building Science,2010,26(5):1-5.
[10]DEVRIES R A.Anchorage of headed reinforcement in concrete[M].Austin:The University of Texas at Austin,1996.
[11]BASHANDY T R.Application of headed bars in concrete members[M].Austin:The University of Texas at Austin,1996.
[12]混凝土结构设计规范:GB 50010—2010[S].北京:中国建筑工业出版社,2011.
Code for design of concrete structures:GB 50010—2010[S].Beijing:China Architecture & Building Press,2011.
[13]钢筋锚固板应用技术规程:JGJ 256—2011[S].北京:中国建筑工业出版社,2012.
Technical specification for application of headed bars:JGJ 256—2011[S].Beijing:China Architecture & Building Press,2012.
[14]镦粗直螺纹钢筋接头:JG 171—2005[S].北京:中国建筑工业出版社,2005.
Parallel thread rebar splice with upsetting end:JG 171—2005[S].Beijing:China Architecture & Building Press,2005.
[15]CABR钢筋-锚固板:Q/JKJS 02—2006[S].北京:中国建筑科学研究院结构所,2016.
CABR anchorage plate for rebars:Q/JKJS 02—2006[S].Beijing:Institute of Structure,China Academy of Building Research,2016.
[16]SPERRY J,AL-YASSO S,SEARLE N,et al.Anchorage of high-strength reinforcing bars with standard hooks[R].Lawrence:The University of Kansas Center for Research,Inc.,2015.
[17]彭 检.钢筋混凝土板柱节点抗冲切试验研究[D].长沙:湖南大学,2013.
PENG Jian.Experimental study on punching shear failure of reinforced concrete slabs-column connections[D].Changsha:Hunan University,2013.
[18]易伟建,刘 彪.基于塑性理论的钢筋混凝土板冲切开裂滑移模型[J].西安建筑科技大学学报(自然科学版),2017,49(1):42-47.
YI Weijian,LIU Biao.Crack slip model for punching capacity of reinforced concrete slab based on the plastic theory[J].Journal of Xi'an University of Architecture & Technology(Natural Science Edition),2017,49(1):42-47.
[19]汪 洪,徐有邻,史志华.钢筋机械锚固性能的试验研究[J].工业建筑,1991,21(11):36-40.
WANG Hong,XU Youlin,SHI Zhihua.Experimental research of mechanical anchorage properties of bars in concrete[J].Industrial Construction,1991,21(11):36-40.
[20]王莉荔.500 MPa级热轧带肋钢筋机械锚固性能试验研究[D].郑州:郑州大学,2010.
WANG Lili.Experimental research on mechanical anchorage capability of HRB500 steel bar[D].Zheng-zhou:Zhengzhou University,2010.
[21]刘立新,王莉荔.热轧带肋钢筋机械锚固性能的试验研究[J].建筑结构,2009,39(增1):895-898.
LIU Lixin,WANG Lili.Experimental study on bond-anchorage behavior of hot-rolled ribbed bars in concrete with mechanical anchorage measure[J].Building Structure,2009,39(S1):895-898.
[22]唐翠丽.一种新型钢筋锚固装置的性能研究[D].西安:西安工业大学,2014.
TANG Cuili.Study on properties of a novel reinforcement anchorage device[D].Xi'an:Xi'an Technological University,2014.
[23]李晓清.600 MPa热轧带肋钢筋机械锚固性能试验研究[D].天津:河北工业大学,2016.
LI Xiaoqing.Experimental research on mechanical anchorage property of 600 MPa hot-ribbed steel bar[D].Tianjin:Hebei University of Technology,2016.
[24]程 莉.椭圆型钢筋锚固装置的设计与性能研究[D].西安:西安工业大学,2016.
CHENG Li.Study on design and performance of the elliptic steel anchorage devices[D].Xi'an:Xi'an Technological University,2016.
[25]DEVRIES R A,JIRSA J O,BASHANDY T.Anchorage capacity in concrete of headed reinforcement with shallow embedments[J].ACI Structural Journal,1999,96(5):728-737.
[26]CHUN S C,CHOI C S,JUNG H S.Side-face blowout failure of large-diameter high-strength headed bars in beam-column joints[J].ACI Structural Journal,2017,114(1):161-172.

相似文献/References:

[1]张园园,贡金鑫.混凝土结构钢筋构造对比分析[J].建筑科学与工程学报,2012,29(01):70.
 ZHANG Yuan-yuan,GONG Jin-xin.Comparative Analysis of Rebar Detailing for RC Structures[J].Journal of Architecture and Civil Engineering,2012,29(01):70.
[2]戴绍斌,郑小林,黄 俊,等.组合方形灌浆套筒连接性能试验[J].建筑科学与工程学报,2020,37(02):54.[doi:10.19815/j.jace.2019.01041]
 DAI Shao-bin,ZHENG Xiao-lin,HUANG Jun,et al.Experiment on Behavior of Composite Square Grout-filled Pipe Splice[J].Journal of Architecture and Civil Engineering,2020,37(01):54.[doi:10.19815/j.jace.2019.01041]
[3]易伟建,罗先明.变形钢筋与混凝土黏结性能数值模拟与计算[J].建筑科学与工程学报,2021,38(03):1.[doi:10.19815/j.jace.2021.01048]
 YI Wei-jian,LUO Xian-ming.Numerical Simulation and Calculation of Bond Performance Between Deformed Bar and Concrete[J].Journal of Architecture and Civil Engineering,2021,38(01):1.[doi:10.19815/j.jace.2021.01048]
[4]刘 贝,张继文,李 星,等.钢绞线的黏结性能试验研究[J].建筑科学与工程学报,2023,40(06):91.[doi:10.19815/j.jace.2022.02056]
 LIU Bei,ZHANG Jiwen,LI Xing,et al.Experimental study on bond performance of steel strands[J].Journal of Architecture and Civil Engineering,2023,40(01):91.[doi:10.19815/j.jace.2022.02056]

备注/Memo

备注/Memo:
收稿日期:2023-02-06
基金项目:国家自然科学基金项目(51878260)
作者简介:易伟建(1956-),男,工学博士,教授,博士生导师,E-mail:wjyi@hnu.cn。
更新日期/Last Update: 2024-01-25