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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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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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Bearing capacity of composite columns reinforced by concrete filled steel tube 被引量:1
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作者 韦建刚 ZHU Pu CHEN Bao-chun 《Journal of Chongqing University》 CAS 2013年第1期27-34,共8页
In this study, nine simplified short composite columns consisting of core CFST (concrete filled steel tube) of different diameters and outer reinforced concrete were constructed to study their compressive performance ... In this study, nine simplified short composite columns consisting of core CFST (concrete filled steel tube) of different diameters and outer reinforced concrete were constructed to study their compressive performance under axial or eccentric compression. The failure mode is characterized by the crush of the outer concrete. The bearing capacity increases at first and then decreases with further increase of the position coefficient. It can be concluded that position coefficient is an important structural parameter that has considerable influences on the ultimate bearing capacity of the composite columns. The outer concrete, steel tubes and longitudinal reinforcement are found to work in a cooperative manner under axial or eccentric compression when the position coefficient is about 0.5. An improved bearing capacity algorithm that takes the position coefficient into account has been proposed based on the experimental and simulation results and current technical specification in China. It has been proven to be precise and safe. 展开更多
关键词 concrete filled steel tube composite column position factor TEST FORMULA
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Ductility and Ultimate Capacity of Concrete-Filled Lattice Rectangular Steel Tube Columns
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作者 Chengquan Wang Yun Zou +3 位作者 Tianqi Li Jie Ding Xiaoping Feng Tiange Lei 《Structural Durability & Health Monitoring》 EI 2018年第2期99-110,共12页
A kind of concrete-filled lattice rectangular steel tube(CFLRST)column was put forward.The numerical simulation was modeled to analyze the mechanical characteristic of CFLRST column.By comparing the load-deformation c... A kind of concrete-filled lattice rectangular steel tube(CFLRST)column was put forward.The numerical simulation was modeled to analyze the mechanical characteristic of CFLRST column.By comparing the load-deformation curves from the test results,the rationality and reliability of the finite element model has been confirmed,moreover,the change of the section stiffness and stress in the forcing process and the ultimate bearing capacity of the column were analyzed.Based on the model,the comparison of ultimate bearing capacity and ductility between CFLRST column and reinforced concrete(RC)column were also analyzed.The results of the finite element analysis show that the loading process of CFLRST column consists of elastic stage,yield stage and failure stage.The failure modes are mainly strength failure and failure of elastoplastic instability.CFLRST column has higher bearing capacities in comparison with reinforced concrete columns with the same steel ratio.In addition,the stiffness degeneration of CFLRST column is slower than RC column and CFLRST column has good ductility. 展开更多
关键词 steel-concrete composite structure concrete-filled lattice rectangular steel tube column nonlinear finite element ultimate strength DUCTILITY
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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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Analysis and seismic tests of composite shear walls with CFST columns and steel plate deep beams 被引量:1
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作者 Dong Hongying Cao Wanlin +2 位作者 Wu Haipeng Zhang Jianwei Xu Fangfang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2013年第4期609-624,共16页
A composite shear wall concept based on concrete filled steel tube (CFST) columns and steel plate (SP) deep beams is proposed and examined in this study. The new wall is composed of three different energy dissipat... A composite shear wall concept based on concrete filled steel tube (CFST) columns and steel plate (SP) deep beams is proposed and examined in this study. The new wall is composed of three different energy dissipation elements: CFST columns; SP deep beams; and reinforced concrete (RC) strips. The RC strips are intended to allow the core structural elements - the CFST columns and SP deep beams - to work as a single structure to consume energy. Six specimens of different configurations were tested under cyclic loading. The resulting data are analyzed herein. In addition, numerical simulations of the stress and damage processes for each specimen were carried out, and simulations were completed for a range of location and span-height ratio variations for the SP beams. The simulations show good agreement with the test results. The core structure exhibits a ductile yielding mechanism characteristic of strong column-weak beam structures, hysteretic curves are plump and the composite shear wall exhibits several seismic defense lines. The deformation of the shear wall specimens with encased CFST column and SP deep beam design appears to be closer to that of entire shear walls. Establishing optimal design parameters for the configuration of SP deep beams is pivotal to the best seismic behavior of the wall. The new composite shear wall is therefore suitable for use in the seismic design of building structures. 展开更多
关键词 concrete filled steel tube (CFST) column steel plate (SP) deep beam composite shear wall seismic test calculation and analysis
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Prediction of Axial Capacity of Concrete-Filled Square Steel Tubes Using Neural Networks
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作者 朱美春 王清湘 冯秀峰 《Journal of Southwest Jiaotong University(English Edition)》 2005年第2期151-155,共5页
The application of artificial neural network to predict the ultimate bearing capacity of CFST ( concrete-filled square steel tubes) short columns under axial loading is explored. Input parameters consiste of concret... The application of artificial neural network to predict the ultimate bearing capacity of CFST ( concrete-filled square steel tubes) short columns under axial loading is explored. Input parameters consiste of concrete compressive strength, yield strength of steel tube, confinement index, sectional dimension and width-to-thickness ratio. The ultimate bearing capacity is the only output parameter. A multilayer feedforward neural network is used to describe the nonlinear relationships between the input and output variables. Fifty-five experimental data of CFST short columns under axial loading are used to train and test the neural network. A comparison between the neural network model and three parameter models shows that the neural network model possesses good accuracy and could be a practical method for predicting the ultimate strength of axially loaded CFST short columns. 展开更多
关键词 concrete-filled square steel tubes Neural networks Axial capacity Short columns
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Behavior of High Strength Concrete Filled Square Steel Tube Stub Columns with Inner CFRP Tube Under Biaxial Eccentric Compression 被引量:1
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作者 Zhijian Yang Guochang Li +1 位作者 Yan Lang Zengmei Qiu 《Computer Modeling in Engineering & Sciences》 SCIE EI 2021年第4期273-290,共18页
This paper studies the contribution of CFRP(carbon fiber-reinforced polymer)to the mechanical behavior of high strength concrete-filled square steel tube(HCFST)under biaxial eccentric compression.The new type of compo... This paper studies the contribution of CFRP(carbon fiber-reinforced polymer)to the mechanical behavior of high strength concrete-filled square steel tube(HCFST)under biaxial eccentric compression.The new type of composite member is composed of an inner CFRP tube and an outer steel tube with concrete filled in the two tubes.The finite element analysis was made by ABAQUS on the behavior of high strength concrete filled square steel tubular columns with inner CFRP circular tube subjected to bi-axial eccentric loading.The results obtained from the finite element analysis were verified with the experimental results.In addition,the load-deflection curves in the whole process were calculated and analyzed,which can be divided into three segments:Elastic phase,plastic phase,descending phase.Based on the load-deflection curves,the stresses analysis on the core concrete,CFRP tube and steel tube were conducted.The confinement effect of the CFRP tube improves the ductility of HCFST-CFRP stub column.CFRP ratio and eccentricity affect the ultimate bearing capacity of HCFST stub column.Finally,a calculation formula of ultimate bearing capacity was proposed in the paper. 展开更多
关键词 CFRP tube concrete-filled square steel tube high strength concrete bi-axial bending stub column
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An Experimental Study of Composite Columns Filled with Eucalyptus nitens Timber under Axial Compression
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作者 Yingyao Cheng Xudong Chen +2 位作者 Huaming An Huimin Wang Kai Tao 《Journal of Renewable Materials》 SCIE EI 2023年第2期825-836,共12页
Eucalyptus nitens(E.nitens)has been much used for producing paper but also shows promise for structural applications.In this study,static compressive tests were undertaken to examine its suitability to be used in an i... Eucalyptus nitens(E.nitens)has been much used for producing paper but also shows promise for structural applications.In this study,static compressive tests were undertaken to examine its suitability to be used in an innovative composite column.The composite column was comprised of a rectangular steel tube with E.nitens timber infill.The nonlinear compressive behaviour of the composite column filled with E.nitens wood for both dry and wet conditions was examined.The same tests on rectangular steel tubes and bare dry and wet E.nitens samples were also undertaken as a comparison.For samples with different conditions,the ultimate capacity was evaluated and the effect of each condition on the compressive behaviour of the composite column was clarified.The steel tubes showed greater ductile behaviour,and more ductility was found in the wet samples.The steel tubes with E.nitens timber infill samples exhibited a greater linear elastic range connected with higher maximum loads,while the bare timber samples could support only lower maximum loads.The results from this research were promising for the use of rectangular steel tubes with E.nitens timber infill in structural applications. 展开更多
关键词 Hollow steel tubes EUCALYPTUS high moisture content composite column with timber infill compression
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双壁波纹钢管混凝土构件短柱轴压力学性能
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作者 路博 崔燕 +2 位作者 方勇 王玉银 李豪 《哈尔滨工业大学学报》 EI CAS 北大核心 2025年第1期56-64,共9页
为改善空心钢筋混凝土柱(HRC)的使用与受力性能,提出一种双壁波纹钢管混凝土(CFDCST)构件。本文共进行了4个大尺寸双壁波纹钢管混凝土短柱与2个空心钢筋混凝土短柱的轴压试验,关键试验参数为试件类型与波纹钢管类型。分析构件的破坏模式... 为改善空心钢筋混凝土柱(HRC)的使用与受力性能,提出一种双壁波纹钢管混凝土(CFDCST)构件。本文共进行了4个大尺寸双壁波纹钢管混凝土短柱与2个空心钢筋混凝土短柱的轴压试验,关键试验参数为试件类型与波纹钢管类型。分析构件的破坏模式,对比不同参数下构件的承载力、峰值应变、延性系数等关键力学指标,获得荷载-波纹钢管应变关系曲线以揭示试件的约束机理并验证外波纹钢管类型的影响。试验结果表明:外波纹钢管可为夹层混凝土提供约束作用,且螺旋角越小,外波纹钢管的约束作用越强;内波纹钢管则主要为夹层混凝土内壁提供有效支撑,以保持截面的完整性。名义约束效应系数与空心率相近时,由于咬口滑移影响,大螺旋角双壁波纹钢管混凝土比小螺旋角双壁波纹钢管混凝土的峰值应力、峰值应变与延性系数分别降低15.5%、21.8%与16.7%。在总用钢量相近的情况下,小螺旋角双壁波纹钢管混凝土柱的承载力、峰值应变与延性系数分别比空心钢筋混凝土柱提高10.6%、36.2%与50.0%。基于试验结果,检验了3种典型承载力公式的适用性,并提出了相应设计建议。 展开更多
关键词 组合结构 空心钢筋混凝土 波纹钢管 双壁构件 约束机理
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A simplified model to predict blast response of CFST columns 被引量:1
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作者 ZHANG Jun-hao CHEN Bin JIANG Shi-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第3期683-691,共9页
In order to study the dynamic response of concrete-filled steel tube(CFST) columns against blast loads,a simplified model is established utilizing the equivalent single-degree-of-freedom(SDOF) method,which considers t... In order to study the dynamic response of concrete-filled steel tube(CFST) columns against blast loads,a simplified model is established utilizing the equivalent single-degree-of-freedom(SDOF) method,which considers the non-uniform distribution of blast loads on real column and the axial load-bending moment(P-M) interaction of CFST columns.Results of the SDOF analysis compare well with the experimental data reported in open literature and the values from finite element modeling(FEM) using the program LS-DYNA.Further comparisons between the results of SDOF and FEM analysis show that the proposed model is effective to predict the dynamic response of CFST columns with different blast conditions and column details.Also,it is found that the maximum responses of the columns are overestimated when ignoring the non-uniformity of blast loads,and that neglecting the effect of P-M interaction underestimates the maximum response of the columns with large axial load ratio against close range blast.The proposed SDOF model can be used in the design of the blast-loaded CFST columns. 展开更多
关键词 concrete-filled steel tube (CFST) columns dynamic response single-degree-of-freedom (SDOF) analysis non-uniformblast loads axial load-bending moment (P-M) interaction
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圆钢管型钢再生混凝土组合柱滞回性能非线性有限元分析 被引量:1
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作者 马辉 张国恒 +2 位作者 白恒宇 席嘉诚 赵艳丽 《应用力学学报》 CAS CSCD 北大核心 2024年第1期148-157,共10页
基于圆钢管型钢再生混凝土组合柱低周反复荷载试验研究,采用OpenSees软件对该组合柱进行了滞回性能数值分析,获取了组合柱的滞回曲线及抗震性能指标,并与试验结果进行了比较,验证了组合柱数值模型的合理性。在此基础上,对组合柱的滞回... 基于圆钢管型钢再生混凝土组合柱低周反复荷载试验研究,采用OpenSees软件对该组合柱进行了滞回性能数值分析,获取了组合柱的滞回曲线及抗震性能指标,并与试验结果进行了比较,验证了组合柱数值模型的合理性。在此基础上,对组合柱的滞回性能开展了参数影响分析。结果表明:再生骨料取代率从0增大到100%,组合柱的峰值荷载下降了7.78%,延性略有降低;提高再生混凝土强度、型钢强度及圆钢管强度,对于提升组合柱的承载力及刚度是有利的,但却使组合柱的脆性增大;随着轴压比的增大,组合柱的承载力呈现先上升后下降的趋势,而延性逐渐变差;型钢配钢率从5.54%增至9.99%,组合柱的峰值荷载提高了24.34%,但对于改善组合柱的延性不明显;增大钢管壁厚对组合柱的承载力和延性均是有利的。 展开更多
关键词 钢管再生混凝土 型钢再生混凝土 组合柱 滞回性能 有限元分析
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开槽侧板加强型连接梁柱节点子结构抗连续倒塌性能研究
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作者 张旺 王岩 +3 位作者 刘红波 熊清清 贾世杨 苏天成 《建筑结构》 北大核心 2024年第14期23-30,共8页
为了优化侧板加强型节点的抗连续倒塌性能,提出了一种开槽侧板加强型梁柱连接节点形式。通过静力加载试验,得到了新型节点子结构的破坏模式、竖向抗力发展机制、应变分布、延性水平和动力承载力等。试验结果表明:钢梁翼缘在盖板附近首... 为了优化侧板加强型节点的抗连续倒塌性能,提出了一种开槽侧板加强型梁柱连接节点形式。通过静力加载试验,得到了新型节点子结构的破坏模式、竖向抗力发展机制、应变分布、延性水平和动力承载力等。试验结果表明:钢梁翼缘在盖板附近首先开裂并向腹板外排螺栓中部延伸贯穿,导致竖向承载力快速下降为峰值荷载的20%左右。相比传统侧板加强型和圆弧扩盖板型梁柱节点,新型节点的峰值承载力分别提高了62.1%和19.6%,塑性弦转角分别提高了203.6%和25.8%。通过有限元分析得到了试件的断裂路径发展过程,进一步地通过参数化分析发现:扩大过焊孔构造对改善峰值后塑性弦转角及残余强度提升无明显作用;随着螺栓群远离钢梁翼缘起始断裂位置,最小残余强度比不断增大,但峰值后塑性弦转角呈先增大后减小的趋势;当螺栓群内移45mm时,峰值后塑性弦转角及最小残余强度比分别达到0.149rad和0.88,提高了38.2%和200.8%。 展开更多
关键词 钢管混凝土组合柱 梁柱节点 抗连续倒塌性能 延性评估 参数化分析
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内置蜂窝芯-钢管暗柱冷弯型钢组合墙体抗剪性能研究
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作者 钱浩凯 王春刚 +1 位作者 张壮南 刘淦 《建筑钢结构进展》 CSCD 北大核心 2024年第12期51-61,共11页
基于蜂窝夹心冷弯薄壁型钢组合墙体的优势,提出了一种内置蜂窝芯-钢管暗柱冷弯型钢组合墙体,实现了框架柱与墙体的一体化设计。为了研究该组合墙体的抗剪性能,采用ABAQUS软件建立了组合墙体的有限元模型,并分析了两端暗柱对组合墙体破... 基于蜂窝夹心冷弯薄壁型钢组合墙体的优势,提出了一种内置蜂窝芯-钢管暗柱冷弯型钢组合墙体,实现了框架柱与墙体的一体化设计。为了研究该组合墙体的抗剪性能,采用ABAQUS软件建立了组合墙体的有限元模型,并分析了两端暗柱对组合墙体破坏模式和受力机理的影响;通过改变内置蜂窝芯与钢管暗柱的连接方式、自攻螺钉布置和暗柱与边立柱壁厚比等参数进行了墙体抗剪性能的变参数分析。研究结果表明:两端增设钢管暗柱可以更好地发挥蜂窝芯的抗剪作用,抗剪承载力提升了22.50%;通过加强内置蜂窝芯与暗柱的连接可以有效提高墙体的抗剪承载力和刚度,且在墙体宽度方向上进行连接整体效果最佳;加密导轨处的螺钉可以有效提高墙体的抗剪性能;在一定范围内降低暗柱与边立柱壁厚比可以改善墙体延性,但对抗剪承载力影响不大。此外,采用“等安全系数”原理,初步确定多遇地震作用下墙体的抗剪承载力设计值。 展开更多
关键词 冷弯型钢组合墙体 钢管暗柱 内置蜂窝芯 抗剪性能 有限元分析
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钢管混凝土叠合柱-H型钢梁外套筒式连接节点抗震性能试验与有限元研究
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作者 李晨帆 杨锋 张新华 《建筑钢结构进展》 CSCD 北大核心 2024年第7期33-41,共9页
以钢管混凝土叠合柱为研究对象,设计了一种高强对穿螺栓连接的外套筒式梁柱节点。为了研究该新型节点的抗震性能和破坏机理,对3个缩尺比为1∶2的节点进行了拟静力试验。观察节点损伤过程及破坏模式,分析了梁端荷载-位移滞回曲线、骨架... 以钢管混凝土叠合柱为研究对象,设计了一种高强对穿螺栓连接的外套筒式梁柱节点。为了研究该新型节点的抗震性能和破坏机理,对3个缩尺比为1∶2的节点进行了拟静力试验。观察节点损伤过程及破坏模式,分析了梁端荷载-位移滞回曲线、骨架曲线、节点延性及耗能能力,采用ABAQUS软件建立有限元模型,研究套筒宽厚比和加强肋板厚度对节点抗震性能影响。试验及有限元研究结果表明:节点滞回曲线饱满,延性系数介于3.13~4.19之间,等效黏滞阻尼系数介于0.211~0.296之间,节点域的变形较大且耗能能力较强;随着套筒厚度增大,核心区混凝土开裂减少,破坏位置由节点外移至梁端截面;减小套筒宽厚比和增大加强肋板厚度可以有效提高节点刚度。为保证外套筒式节点达到刚性节点要求,建议套筒宽厚比不大于25,加强肋板厚度不小于梁翼缘厚度。 展开更多
关键词 钢管混凝土叠合柱 外套筒式连接节点 高强对穿螺栓 抗震性能
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HDFRC-钢管-混凝土叠合柱的轴压性能
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作者 彭彪 胡红松 吉云鹏 《建筑材料学报》 EI CAS CSCD 北大核心 2024年第11期986-995,共10页
提出了一种新型高延性纤维混凝土(HDFRC)-钢管-混凝土(HDCSTC)叠合柱,研究了螺杆列数、螺杆强度和螺母类型对HDCSTC叠合柱轴压性能的影响.结果表明:增加螺杆列数能够有效改善试件的峰值后延性;螺杆强度增加,对1列螺杆试件的延性无显著影... 提出了一种新型高延性纤维混凝土(HDFRC)-钢管-混凝土(HDCSTC)叠合柱,研究了螺杆列数、螺杆强度和螺母类型对HDCSTC叠合柱轴压性能的影响.结果表明:增加螺杆列数能够有效改善试件的峰值后延性;螺杆强度增加,对1列螺杆试件的延性无显著影响,对2列螺杆试件的延性影响较大;吊环螺母能够与外侧高延性纤维混凝土建立有效拉结,改善试件的峰值后性能;HDCSTC叠合柱具有与钢筋混凝土柱同等优异的轴压性能,且施工方便无技术限制,值得推广使用. 展开更多
关键词 钢管-混凝土叠合柱 高延性纤维混凝土 轴压性能 延性
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花瓣形钢管混凝土柱轴压受力机理和承载力研究
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作者 张涛 甘丹 +2 位作者 李扬 黄辉辉 黄尚斌 《建筑钢结构进展》 CSCD 北大核心 2024年第3期70-79,共10页
花瓣形钢管混凝土柱具有造型美观的优点,为具体研究其受力机理和承载力,定义了其截面组成,提出了截面偏移比和截面对称系数以反映花瓣形截面性质,提出在花瓣柱中设置十字形加劲肋以增强其组合效应。基于某工程中墩柱和有限元模型,研究... 花瓣形钢管混凝土柱具有造型美观的优点,为具体研究其受力机理和承载力,定义了其截面组成,提出了截面偏移比和截面对称系数以反映花瓣形截面性质,提出在花瓣柱中设置十字形加劲肋以增强其组合效应。基于某工程中墩柱和有限元模型,研究了花瓣形钢管混凝土短柱在轴压荷载作用下的受力机理,分析了加劲肋厚度、混凝土强度、钢材强度、加劲肋开孔直径和间距等参数对轴压性能的影响,研究了加劲肋厚度与钢管壁厚的匹配关系。根据理论分析和大量有限元参数分析结果,建议了加劲肋厚度与钢管壁厚之比和钢管名义径厚比的取值范围,提出了花瓣形钢管混凝土短柱的轴压承载力计算式。 展开更多
关键词 花瓣形钢管混凝土柱 组合效应 多腔钢管混凝土 加劲肋 有限元分析
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Seismic behavior of thin-walled circular and stiffened square steel tubed-reinforced-concrete columns 被引量:4
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作者 GAN Dan ZHOU XuHong +1 位作者 LIU JiePeng LI Jiang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2019年第3期511-520,共10页
Steel tubed-reinforced-concrete(TRC) columns have been gradually used in the construction of high-rise buildings recently because of their high axial load-carrying capacities and excellent seismic behavior. Existing s... Steel tubed-reinforced-concrete(TRC) columns have been gradually used in the construction of high-rise buildings recently because of their high axial load-carrying capacities and excellent seismic behavior. Existing studies about their seismic behavior were focused on columns with relatively thick tubes, i.e., diameter-to-thickness/width-to-thickness(D/t) ratios were below 100,while little is known about thin-walled TRC columns, especially for square TRC columns. Considering the infilled concrete of square TRC columns is non-uniformly and non-effectively confined, accordingly, stiffened square TRC columns are usually adopted in practice. Thus, two thin-walled circular TRC columns(D/t=120) and two stiffened square ones with diagonal stiffeners in plastic hinge regions(D/t=106) were tested under a constant axial compression combined with cyclic lateral loading.Both the circular and stiffened square TRC columns had the same cross sectional area, tube thickness, reinforcing bar ratio and column height. Flexural failure occurred for all the four specimens. Test results showed the strengths of the stiffened square TRC columns were a little higher in comparison to their circular counterparts; the ductility and energy dissipation capacities were excellent for both the stiffened and circular TRC columns, indicating very good confinement was gained from the yielded steel tubes of the plastic hinge regions at the peak loads. And shear stresses(35–90 MPa) in the sheared plates showed their moderate contribution of carrying lateral loads. Finally, cross sectional capacity analysis results demonstrated the method for TRC columns is acceptable for the stiffened square TRC columns. 展开更多
关键词 steel tubed-reinforced-concrete column concrete filled steel tube composite column cyclic behavior steel JACKET
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钢管高强混凝土组合柱的轴压性能有限元分析
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作者 范光召 《石油化工设计》 CAS 2024年第4期6-9,I0001,共5页
为了研究钢管高强混凝土组合柱的轴压性能,利用几个已有组合柱的试验数据,对ABAQUS软件的参数进行标定,完成了数值模拟与参数分析。分析结果表明,所选参数能够较好地模拟钢管高强混凝土组合柱的轴向受力性能。文中给出了箍筋间距、钢管... 为了研究钢管高强混凝土组合柱的轴压性能,利用几个已有组合柱的试验数据,对ABAQUS软件的参数进行标定,完成了数值模拟与参数分析。分析结果表明,所选参数能够较好地模拟钢管高强混凝土组合柱的轴向受力性能。文中给出了箍筋间距、钢管套箍指标、含钢率以及管内混凝土强度4个参数对组合柱轴压性能的影响,以供设计参考。 展开更多
关键词 高强混凝土 钢管混凝土组合柱 轴压性能 ABAQUS软件 有限元参数分析
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组合T形截面钢管混凝土柱正截面受压承载力试验研究 被引量:60
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作者 徐礼华 杜国锋 +1 位作者 温芳 徐浩然 《土木工程学报》 EI CSCD 北大核心 2009年第6期14-21,共8页
在总结分析各种异形钢管混凝土柱工程应用的基础上,提出矩形钢管混凝土组合焊接T形柱(WeldedRectangular Composite T-shaped Concrete-Filled Steel Tubular Column,简称WRC-T钢管混凝土柱)。考虑约束效应系数、长径比、肢长腹比等参... 在总结分析各种异形钢管混凝土柱工程应用的基础上,提出矩形钢管混凝土组合焊接T形柱(WeldedRectangular Composite T-shaped Concrete-Filled Steel Tubular Column,简称WRC-T钢管混凝土柱)。考虑约束效应系数、长径比、肢长腹比等参数的影响,设计制作34个WRC-T钢管混凝土柱试件;通过轴心受压试验,考察试件的破坏形态,实测试件的荷载-纵向应变曲线、强度承载力和稳定承载力,分析各参数对此类试件轴心受压力学性能的影响。通过试验数据回归分析,参考国内外相关规范的计算条文,提出WRC-T钢管混凝土柱轴心受压强度承载力和稳定承载力的实用计算公式。研究表明,WRC-T钢管混凝土柱的两个组成部分能很好地协同工作,力学性能好;长径比L/i≤14.4的试件可视为短柱,长径比14.4<L/i≤33.6的可视为中长柱。文中所提强度承载力和稳定承载力公式的计算结果与试验值符合良好,可供工程设计参考。 展开更多
关键词 T形钢管混凝土 组合柱 轴心受压 强度 稳定
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