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Concrete-Filled Steel Tube Arch Bridges in China 被引量:67
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作者 Jielian Zheng Jianjun wang 《Engineering》 2018年第1期143-155,共13页
In the past 20 years, great progress has been achieved in China in the construction of concrete-filled steel tube (CFST) arch bridges and concrete arch bridges with a CFST skeleton. The span of these bridges has bee... In the past 20 years, great progress has been achieved in China in the construction of concrete-filled steel tube (CFST) arch bridges and concrete arch bridges with a CFST skeleton. The span of these bridges has been increasing rapidly, which is rare in the history of bridge development. The large-scale construction of expressways and high-speed railways demands the development of long-span arch bridges, and advances in design and construction techniques have made it possible to construct such bridges. In the present study, the current status, development, and major innovative technologies of CFST arch bridges and concrete arch bridges with a CFST skeleton in China are elaborated. This paper covers the key con- struction technologies of CFST arch bridges, such as the design, manufacture, and installation of steel tube arch trusses, the preparation and pouring of in-tube concrete, and the construction of the world's longest CFST arch bridge-the First Hejiang Yangtze River Bridge. The main construction technologies of rein- forced concrete arch bridges are also presented, which include cable-stayed fastening-hanging cantilever assembly, adjusting the load by means of stay cables, surrounding the concrete for arch rib pouring, and so forth. In addition, the construction of two CFST skeleton concrete arch bridges-the Guangxi Yongning Yong River Bridge and the Yunnan-Guangxi Railway Nanpan River Bridge--is discussed. CFST arch bridges in China have already gained a world-leading position; with the continuous innovation of key technologies, China will become the new leader in promoting the development of arch bridges. 展开更多
关键词 concrete-filled STEEL tube (CFST) ARCH BRIDGE Steel-reinforced concrete ARCH BRIDGE CABLE-STAYED fastening-hanging cantileverassembly VACUUM-ASSISTED pouring in-tube concrete Adjusting load by stay cables
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新型钢管混凝土柱框架节点低周反复荷载试验研究 被引量:9
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作者 欧谨 黄伟淳 韩晓健 《地震工程与工程振动》 CSCD 北大核心 1999年第3期44-48,共5页
本文介绍了新型钢管混凝土柱框架节点在低周反复荷载作用下的试验结果, 对其抗震性能进行了探讨,
关键词 钢管混凝土柱 节点 低周反复 加载试验 框架
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A review on application of composite truss bridges composed of hollow structural section members 被引量:13
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作者 Zhijuan Tian Yongjian Liu +2 位作者 Lei Jiang Weiqing Zhu Yinping Ma 《Journal of Traffic and Transportation Engineering(English Edition)》 CSCD 2019年第1期94-108,共15页
Composite truss with hollow structural section(HSS) members is deemed as the structure applicable to large-span and heavily-loaded bridges. To promote the application of composite truss bridge with HSS members in Chin... Composite truss with hollow structural section(HSS) members is deemed as the structure applicable to large-span and heavily-loaded bridges. To promote the application of composite truss bridge with HSS members in China, this paper described its structural characteristics and technology in details. Besides, not only were 32 typical design cases of composite truss bridges with HSS members collected, but also the corresponding historical development was summed up. Comparisons on structural components, characteristics and engineering applications were made among composite truss bridges with HSS members in different structural forms. Then, the analysis on the characteristics of composite truss bridges with concrete-filled steel tubular(CFST) chords was conducted, and the challenges on the aspects of complicated joints and interfacial debonding were pointed out. To address these problems, the concrete-filled rectangular hollow section(CFRHS)stiffened with PBLs(Perfobond Ribs) was proposed to improve the reliability of confinement effect in CFST member and force transfer in joints. The advantages on the mechanical properties of CFRHS structure stiffened using PBLs were systematically expounded with respect to the behaviors of steel plate, interface, member and joint. Moreover, the structure design, construction technology, structural calculation and economic efficiency of the practical bridge with CFRHS chords stiffened using PBLs were comprehensively analyzed.The results demonstrated that composite truss bridge with PBL-stiffened CFRHS members was competitive in mechanical performance and construction. 展开更多
关键词 Composite TRUSS bridge Rectangular HOLLOW SECTION concrete-filled Perfobond RIB
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Seismic performance of recycled concrete-filled square steel tube columns 被引量:9
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作者 Chen Zongping Jing Chenggui +1 位作者 Xu Jinjun Zhang Xianggang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2017年第1期119-130,共12页
An experimental study on the seismic performance of recycled concrete-filled square steel tube (RCFST) columns is carried out. Six specimens were designed and tested under constant axial compression and cyclic later... An experimental study on the seismic performance of recycled concrete-filled square steel tube (RCFST) columns is carried out. Six specimens were designed and tested under constant axial compression and cyclic lateral loading. Two parameters, replacement percentage of recycled coarse aggregate (RCA) and axial compression level, were considered in the test. Based on the experimental data, the hysteretic loops, skeleton curves, ductility, energy dissipation capacity and stiffness degradation of RCFST columns were analyzed. The test results indicate that the failure modes of RCFST columns are the local buckling of the steel tube at the bottom of the columns, and the hysteretic loops are full and their shapes are similar to normal CFST columns. Furthermore, the ductility coefficient of all specimens are close to 3.0, and the equivalent viscous damping coefficient corresponding to the ultimate lateral load ranges from 0.323 to 0.360, which demonstrates that RCFST columns exhibit remarkable seismic performance. 展开更多
关键词 recycled concrete-filled square steel tube (RCFST) COLUMN replacement percentage cyclic loading seismicperformance
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钢管填充混凝土后弹性与弹塑性屈曲分析 被引量:9
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作者 郭兰慧 张素梅 KIM Wha-Jung 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2006年第8期1350-1354,共5页
采用有限条法分析了方钢管填充混凝土后的弹性及弹塑性屈曲性能,考虑了钢板受均匀压应力作用和应力梯度变化两种工况,计算了钢板的临界屈曲应力,分析了残余应力对临界屈曲应力的影响.结果表明:当截面相对宽厚比低于30时,钢管内部填充混... 采用有限条法分析了方钢管填充混凝土后的弹性及弹塑性屈曲性能,考虑了钢板受均匀压应力作用和应力梯度变化两种工况,计算了钢板的临界屈曲应力,分析了残余应力对临界屈曲应力的影响.结果表明:当截面相对宽厚比低于30时,钢管内部填充混凝土并不能提高钢管的屈曲承载力;截面宽厚比超过30以后,随着截面宽厚比的增加,钢管内部填充混凝土后对钢管承载力的提高幅度越来越大,承载力提高幅度最大为空钢管承载力的2.58倍;并能有效提高钢板的抗弯屈曲承载力;残余应力的存在使得钢板在弹性和弹塑性阶段的屈曲承载力降低,残余应力越大,临界屈曲应力越低. 展开更多
关键词 方钢管 填充混凝土 弹性屈曲 弹塑性屈曲
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Experimental investigation of axially loaded steel fiber reinforced high strength concrete-filled steel tube columns 被引量:9
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作者 卢亦焱 李娜 +1 位作者 李杉 梁鸿骏 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2287-2296,共10页
An experimental study on the compressive behavior of steel fiber reinforced concrete-filled steel tube columns is presented. Specimens were tested to investigate the effects of the concrete strength, the thickness of ... An experimental study on the compressive behavior of steel fiber reinforced concrete-filled steel tube columns is presented. Specimens were tested to investigate the effects of the concrete strength, the thickness of steel tube and the steel fiber volume fraction on the ultimate strength and the ductility. The experimental results indicate that the addition of steel fibers in concrete can significantly improve the ductility and the energy dissipation capacity of the concrete-filled steel tube columns and delay the local buckling of the steel tube, but has no obvious effect on the failure mode. It has also been found that the addition of steel fibers is a more effective method than using thicker steel tube in enhancing the ductility, and more advantageous in the case of higher strength concrete. An analytical model to estimate the load capacity is proposed for steel tube columns filled with both plain concrete and steel fiber reinforced concrete. The predicted results are in good agreement with the experimental ones obtained in this work and literatures. 展开更多
关键词 concrete-filled steel tube (CFST) zolumns steel fiber high strength concrete axial load DUCTILITY load capacity
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Behavior of concrete and concrete-filled circular steel tubular stub columns at constant high temperatures 被引量:8
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作者 丁发兴 余志武 《Journal of Central South University of Technology》 EI 2006年第6期726-732,共7页
Based on reanalyzing test results of uniaxial compressive behavior of concrete at constant high temperatures in China, with the compressive cube strength of concrete from 20 to 80 MPa, unified formulas for uniaxial co... Based on reanalyzing test results of uniaxial compressive behavior of concrete at constant high temperatures in China, with the compressive cube strength of concrete from 20 to 80 MPa, unified formulas for uniaxial compressive strength, elastic modulus, strain at peak uniaxial compression and mathematical expression for unaxial compressive stress-strain relations for the concrete at constant high temperatures were studied. Furthermore, the axial stress-axial strain relations between laterally confined concrete under axial compression and multiaxial stress-strain relations for steel at constant high temperatures were studied. Finally, based on continuum mechanics, the mechanics model for concentric cylinders of circular steel tube with concrete core of entire section loaded at constant high temperatures was established. Applying elasto-plastic analysis method, a FORTRAN program was developed, and the concrete-filled circular steel tubular (CFST) stub colunms at constant high temperatures were analyzed. The analysis results are in agreement with the experiment ones from references. 展开更多
关键词 concrete concrete-filled steel tubular colunm BEHAVIOR high temperature
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Axial Bearing Capacity of Short FRP Confined Concrete-filled Steel Tubular Columns 被引量:7
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作者 刘兰 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2010年第3期454-458,共5页
The bearing capacity of FRP confined concrete-filled steel tubular (FRP-CFST) columns under axial compression was investigated. This new type of composite column is a concrete-filled steel tube (CFST) confined wit... The bearing capacity of FRP confined concrete-filled steel tubular (FRP-CFST) columns under axial compression was investigated. This new type of composite column is a concrete-filled steel tube (CFST) confined with fiber-reinforced polymer (FRP) wraps. Totally 11 short column specimens were tested to failure under axial compression. The influences of the type and quantity of FRP, the thickness of steel tube and the concrete strength were studied. It was found that the bearing capacity of short FRP-CFST column was much higher than that of comparable CFST column. Furthermore, the formulas for calculating the bearing capacity of the FRP-CFST columns are proposed. The analytical calculated results agree well with the experimental results. 展开更多
关键词 COLUMNS concrete-filled steel tubes (CFST) fiber reinforced polymer (FRP) CONFINEMENT bearing capacity.
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钢管混凝土组合结构全螺栓隔板贯通节点的抗震性能试验研究 被引量:8
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作者 李自林 张聪 +1 位作者 薛江 周晓洁 《工程力学》 EI CSCD 北大核心 2014年第11期116-123,共8页
该文以方形钢管混凝土柱—H型钢梁全螺栓隔板贯通连接节点为研究对象,以梁偏心为参数,进行了2个足尺的节点试件SJ1和SJ2的低周往复荷载试验,研究了该类型节点的破坏机理与抗震性能。通过试验数据处理与分析得出了该节点类型的破坏机理... 该文以方形钢管混凝土柱—H型钢梁全螺栓隔板贯通连接节点为研究对象,以梁偏心为参数,进行了2个足尺的节点试件SJ1和SJ2的低周往复荷载试验,研究了该类型节点的破坏机理与抗震性能。通过试验数据处理与分析得出了该节点类型的破坏机理、滞回曲线、骨架曲线、延性系数、耗能能力及刚度变化规律;通过隔板应变分析验证了试件的破坏机理。试验结果表明:该类型节点具有很好的抗震性能,节点承载力高,滞回曲线饱满,延性系数较大,耗能能力强等特点;主要变形发生在梁端塑性铰区域,隔板与柱连接处容易出现应力集中现象。两组节点在设计时均考虑了抗震设计要求,破坏形式基本相同,以隔板端部梁翼缘及腹板屈曲破坏为主,但由于SJ2梁存在偏心,在荷载作用下节点下隔板与柱连接处被撕裂。 展开更多
关键词 工程结构 钢管混凝土 节点试验 梁柱节点 隔板贯通 抗震性能
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下承式组合梁系杆拱桥荷载试验研究 被引量:8
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作者 郑晓龙 杨建荣 +1 位作者 黄华 周强 《工业安全与环保》 2020年第12期1-6,共6页
为了解下承式组合梁系杆拱桥的工作能力,以某主跨144 m的下承式组合梁系杆拱桥为例,使用Midas/Civil软件创建该桥的空间结构模型,并分别分析其在设计荷载与试验荷载作用下的静力、动力响应。基于荷载等效理论,对该桥施加试验荷载进行荷... 为了解下承式组合梁系杆拱桥的工作能力,以某主跨144 m的下承式组合梁系杆拱桥为例,使用Midas/Civil软件创建该桥的空间结构模型,并分别分析其在设计荷载与试验荷载作用下的静力、动力响应。基于荷载等效理论,对该桥施加试验荷载进行荷载试验,测试该桥的各项力学性能参数,并将其与计算结果进行比较,验证测试方法的可靠性和准确度,评定桥跨结构的施工质量和实际性能,同时可为同类桥梁的检测提供参考。分析结果表明:桥跨结构的挠度校验系数介于0.75~0.85、应变校验系数介于0.71~0.81、索力校验系数介于0.75~0.86,桥跨结构实测频率略大于理论值,冲击系数略小于设计值。表明该结构形式桥梁受力性能良好,结构强度、刚度能满足设计要求。 展开更多
关键词 下承式 系杆拱桥 静载试验 动载试验
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Seismic Behavior of Diaphragm-Through Connections of Concrete-Filled Square Steel Tubular Columns and H-Shaped Steel Beams 被引量:6
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作者 荣彬 陈志华 +1 位作者 Apostolos Fafitis 苗纪奎 《Transactions of Tianjin University》 EI CAS 2013年第3期195-201,共7页
Based on the introductions of a type of diaphragm-through connection between concrete-filled square steel tubular columns (CFSSTCs) and H-shaped steel beams,a finite element model of the connection is developed and us... Based on the introductions of a type of diaphragm-through connection between concrete-filled square steel tubular columns (CFSSTCs) and H-shaped steel beams,a finite element model of the connection is developed and used to investigate the seismic behavior of the connection.The results of the finite element model are validated by a set of cyclic loading tests.The cyclic loading tests and the finite element analyses indicate that the failure mode of the suggested connections is plastic hinge at the beam with inelastic rotation angle exceeding 0.04 rad.The suggested connections have sufficient strength,plastic deformation and energy dissipation capacity to be used in composite moment frames as beam-to-column rigid connections. 展开更多
关键词 concrete-filled square STEEL TUBULAR COLUMN H-shaped STEEL beam diaphragm-through connection seismic behavior load transfer mechanism
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Cyclic behavior of stiffened joints between concrete-filled steel tubular column and steel beam with narrow outer diaphragm and partial joint penetration welds 被引量:5
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作者 Chunyan QUAN Wei WANG +1 位作者 Jian ZHOU Rong WANG 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2016年第3期333-344,共12页
This paper presented an investigation on a stiffened joint in practical engineering which was between concrete-filled steel tubular column and steel beam with narrow outer diaphragm and partial joint penetration welds... This paper presented an investigation on a stiffened joint in practical engineering which was between concrete-filled steel tubular column and steel beam with narrow outer diaphragm and partial joint penetration welds. Through the low-frequency cyclic loading test, the cyclic behavior and failure mode of the specimen were investigated. The results of the test indicated the failure mode and bearing capacity of the specimen which were influenced by the axial compression ratio of the concrete-filled tubular column. On the contrary, the inner diaphragm and inner stiffeners had limited impacts on the hysteretic behavior of the joint. There was no hysteresis damage fracture on the narrow outer diaphragm connected to the concrete-filled steel tubular column with partial joint penetration welds. Due to the excellent ductility and energy dissipating capacity, the proposed joint could be applied to the seismic design of high-rise buildings in highly intensive seismic region, but axial compression ratio should be controlled to avoid unfavorable failure modes. 展开更多
关键词 narrow outer diaphragm concrete-filled tubular column JOINT inner and outer stiffening cyclic behavior
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Effect of contact thermal resistance on temperature distributions of concrete-filled steel tubes in fire 被引量:5
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作者 吕学涛 杨华 张素梅 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2011年第1期81-88,共8页
To predicate the temperature distribution of concrete-filled steel tubes(CFSTs) being exposure to fire,a finite element analysis model was developed using a finite element package,ANSYS.A suggested value of contact th... To predicate the temperature distribution of concrete-filled steel tubes(CFSTs) being exposure to fire,a finite element analysis model was developed using a finite element package,ANSYS.A suggested value of contact thermal resistance was therefore proposed with the supporting of massive numbers of collected test data.Parametric analysis was conducted subsequently towards the cross-sectional temperature distribution of CFST columns in four-side fire,in which the exposure time,width of the cross section,steel ratio were taken into account with considering contact thermal resistance.It was found that contact thermal resistance has little effect on the overall temperature regulation with the exposure time,the width of cross-section or the change of steel ratio.However,great temperature dropping at the concrete adjacent to the contact interface,and gentle temperature increase at steel tube,exist if considering contact thermal resistance.The results of the study are expected to provide theoretical basis for the fire resistance behavior and design of the CFST columns being exposure to fire. 展开更多
关键词 contact thermal resistance temperature distribution concrete-filled steel tube heal transfer
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矩形钢管混凝土双向压弯构件的理论与试验研究 被引量:6
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作者 郭兰慧 张素梅 刘界鹏 《建筑结构》 CSCD 北大核心 2008年第3期22-28,共7页
对9根方形、矩形钢管混凝土在轴压、单向压弯及双向压弯受力状态下的力学性能进行了研究。构件的主要变化参数为加载角度和截面长宽比。试验结果表明:在受力过程中构件存在扭转,构件绕弱轴的跨中挠度和绕强轴的跨中挠度比值随着荷载的... 对9根方形、矩形钢管混凝土在轴压、单向压弯及双向压弯受力状态下的力学性能进行了研究。构件的主要变化参数为加载角度和截面长宽比。试验结果表明:在受力过程中构件存在扭转,构件绕弱轴的跨中挠度和绕强轴的跨中挠度比值随着荷载的增加而增大,说明在受力过程中构件绕弱轴的刚度不断降低。编制了数值分析程序,采用纤维模型法分析矩形钢管混凝土在双向压弯受力状态下的力学性能,分析过程中考虑了截面变形轴扭转对构件力学性能的影响,理论分析结果和试验结果吻合良好。利用所编制的数值分析程序,分析了在不同加载角度和截面长宽比下变形轴扭转对构件力学性能的影响。分析结果表明:加载角度为45°时,扭转对构件承载力的降低幅度最大,达到20%以上;随着截面长宽比的增加,截面变形轴扭转会明显降低构件的承载力,截面长宽比越大,承载力的降低幅度也越大。 展开更多
关键词 矩形钢管混凝土 双向压弯构件 填充混凝土
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Numerical study of axial-loaded circular concrete-filled aluminum tubular slender columns
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作者 Xudong CHEN Jeung-Hwan DOH Sanam AGHDAMY 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2024年第2期272-293,共22页
Aluminum alloys have been widely applied in coastal and marine structures because of their superior sustainability and corrosion resistance.Concrete-filled double-skin aluminum tubular columns(CFDAT)possess higher str... Aluminum alloys have been widely applied in coastal and marine structures because of their superior sustainability and corrosion resistance.Concrete-filled double-skin aluminum tubular columns(CFDAT)possess higher strength and better ductility than traditional reinforced concrete structures.However,few studies have been conducted on numerical simulation methods for circular CFDATs.Specifically,there has been no experimental or numerical study on intermediate-to-slender circular CFDATs.Here,a comprehensive numerical study was conducted on a modeling method for the first time to simulate the axial behavior of a slender circular CFDAT.This study outlines the development of numerical modeling techniques and presents a series of comparative studies using various material nonlinearities,confinement effects,and nonlinearity of the initial geometric imperfections for a slender column.The numerical results were compared with more than 80 previously available stub and slender experimental test results for verification.It was confirmed that the proposed numerical technique was reliable and accurate for simulating the axial behavior of intermediate and slender circular CFDAT.Furthermore,a parametric study was conducted to investigate the effects of geometric and material properties on the axial capacity of the CFDAT.Additionally,the slenderness and strength-to-width ratio of CFDAT were compared with those of concrete-filled double-skin steel tubular columns(CFDST).The simulated axial strengths were compared with those predicted using AS 5100 and AISC 360.New design equations for the CFDATs should be proposed based on AS 5100. 展开更多
关键词 axial behavior ALUMINUM concrete-filled double-skin slender columns numerical modelling
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Push-Over Analysis of the Seismic Behavior of a Concrete-Filled Rectangular Tubular Frame Structure 被引量:2
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作者 聂建国 秦凯 肖岩 《Tsinghua Science and Technology》 SCIE EI CAS 2006年第1期124-130,共7页
To investigate the seismic behavior of concrete-filled rectangular steel tube (CFRT) structures, a push-over analysis of a 10-story moment resisting frame (MRF) composed of CFRT columns and steel beams was conduct... To investigate the seismic behavior of concrete-filled rectangular steel tube (CFRT) structures, a push-over analysis of a 10-story moment resisting frame (MRF) composed of CFRT columns and steel beams was conducted. The results show that push-over analysis is sensitive to the lateral load patterns, so the use of at least two load patterns that are expected to bound the inertia force distributions is recommended. The M-Ф curves and N-M interaction surfaces of the CFRT columns calculated either by Han's formulae or by the USC-RC program (reinforced concrete program put forward by University of Southern Califonia) are suitable for future push-over analyses of CFRT structures. The P-A effect affects the MRF seismic behavior seriously, and so should be taken into account in MRF seismic analysis. In addition, three kinds of RC structures were analyzed to allow a comparison of the earthquake resistance behavior of CFRT structures and RC structures. The results show that the ductility and seismic performance of CFRT structures are superior to those of RC structures. Consequently, CFRT structures are recommended in seismic regions. 展开更多
关键词 concrete-filled rectangular steel tube push-over analysis capacity curve reinforced concrete
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Expansion performance and self-stressing behavior of CFST columns considering concrete creep and shrinkage effect 被引量:5
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作者 Xu Li Zeng Hao Pan Jinlong 《Journal of Southeast University(English Edition)》 EI CAS 2021年第1期52-58,共7页
Expansive concrete is used in the steel tube of Concrete-filled steel tubular(CFST)columns to solve the problem of steel-to-concrete debonding.Self-stress is generated between concrete and steel plate due to concrete ... Expansive concrete is used in the steel tube of Concrete-filled steel tubular(CFST)columns to solve the problem of steel-to-concrete debonding.Self-stress is generated between concrete and steel plate due to concrete expansion,which can effectively improve the mechanical performance of CFST columns.Deformation tests were conducted on concrete and CFST columns,respectively.The free deformation of concrete and circumferential deformation of steel tubes were measured and analyzed.A calculation method was proposed to evaluate the hoop strain,self-stress and creep deformation of the CFST columns.The test and calculation results indicate that the proper addition of expansion agent in the internal concrete can keep concrete expansive and generate self-stresses for a long time.The expansion and self-stresses prevent the debonding between the steel tube and the internal concrete.Increasing the dosage of expansive agents and reducing the curing age both increase the expansive deformation and self-stress of CFST columns.Increasing the tube thickness reduces the expansive deformation and increases the initial self-stress of CFST columns. 展开更多
关键词 concrete-filled steel tubular(CFST) expansive deformation SELF-STRESS CREEP
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Axial Compression Behavior and Analytical Method of L-Shaped Column Composed of Concrete-Filled Square Steel Tubes 被引量:5
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作者 荣彬 陈志华 +1 位作者 APOSTOLOS Fafitis 杨楠 《Transactions of Tianjin University》 EI CAS 2012年第3期180-187,共8页
Based on the characteristics of an L-shaped column composed of concrete-filled square steel tubes, the axial compression experiment and nonlinear finite element analysis were carried out to study the mechanical proper... Based on the characteristics of an L-shaped column composed of concrete-filled square steel tubes, the axial compression experiment and nonlinear finite element analysis were carried out to study the mechanical property of the L-shaped column. The load-displacement curve for the L-shaped column, the deflection and load-strain curves for the mono columns were obtained by the axial compression experiment. The results show that the L-shaped column exhibits a flexural-torsional buckling failure mode. The numerical simulation by the finite element analysis shows that the bearing capacity and failure mode are in accordance with those of the axial compression experiment and the feasi- bility of the finite element analysis is proved. For the calculation of the bearing capacity of the L-shaped column com- posed of concrete-filled square steel tubes, an analytical method is proposed based on the theory of the elastic stability and spatial truss model. The results of the analytical method are in good agreement with those of the axial compression experiment and the finite element analysis. 展开更多
关键词 L-shaped column concrete-filled square steel tube axial compression experiment finite element analy-sis analytical method
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EXPERIMENTAL RESEARCH AND NONLINEAR FINITE ELEMENT ANALYSIS ON NEW TYPE JOINT BETWEEN COLUMN AND STEEL BEAM OF CONCRETE-FILLED RECTANGULAR STEEL TUBULAR 被引量:5
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作者 于旭 宰金珉 刘伟庆 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2009年第1期75-82,共8页
Experimental results of new type joints between the column and the. steel beam of concrete-filled rectangular steel tubular (CFRT) under reversed cyclic loads are presented. The earthquake resistant capacity of the ... Experimental results of new type joints between the column and the. steel beam of concrete-filled rectangular steel tubular (CFRT) under reversed cyclic loads are presented. The earthquake resistant capacity of the joint is influenced by infilled concrete, stiffener length and relative dimensions of column and beam. It is found that the hysteresis curves obtained in the experiment are full and the joints have a good energy dissipation capacity. The nonlinear finite element models are also used to analyze the hysteresis behavior of the joints under reversed cyclic loads using ANSYS 8.0. The influences of the stiffener length and the infilled concrete are analyzed. Analytical results show that the stiffener length and the infilled concrete are critical for the joints. Furthermore, the skeleton curves of the finite element models are in good agreement with those of experiments. 展开更多
关键词 JOINTS cyclic loads finite element method concrete-filled rectangular steel tubular (CFRT)
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Mechanical behavior of concrete filled glass fiber reinforced polymer-steel tube under cyclic loading 被引量:3
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作者 Chun-yang ZHU Ying-hua ZHAO +1 位作者 Shuang GAO Xiao-fei LI 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2013年第11期778-788,共11页
The mechanical behavior of concrete-filled glass fiber reinforced polymer(GFRP)-steel tube structures under combined seismic loading is investigated in this study. Four same-sized specimens with different GFRP layout ... The mechanical behavior of concrete-filled glass fiber reinforced polymer(GFRP)-steel tube structures under combined seismic loading is investigated in this study. Four same-sized specimens with different GFRP layout modes were tested by a quasi-static test system. Finite element analysis(FEA) was also undertaken and the results were presented. Results of the numerical simulation compared well with those from experimental tests. Parametric analysis was conducted by using the FE models to evaluate the effects of GFRP thickness, axial compression rate, and cross sectional steel ratio. The experimental and numerical results show that the technique of GFRP strengthening is effective in improving the seismic performance of traditional concrete-filled steel tubes, with variations related to different GFRP layout modes. 展开更多
关键词 concrete-filled glass fiber reinforced polymer(GFRP)-steel tube SEISMIC Energy dissipation Stiffness degradation
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