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Bi-directional interaction of joint shear strength in non-seismically designed corner RC beam-column connections under seismic loading 被引量:1
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作者 Mohammad Amir Najafgholipour Negin Ahmadi rad Akanshu Sharma 《Earthquake Engineering and Engineering Vibration》 2025年第1期135-153,共19页
Non-seismically designed(NSD)beam-column joints are susceptible to joint shear failure under seismic loads.Although significant research is available on the seismic behavior of such joints of planar frames,the informa... Non-seismically designed(NSD)beam-column joints are susceptible to joint shear failure under seismic loads.Although significant research is available on the seismic behavior of such joints of planar frames,the information on the seismic behavior of joints of space frames(3D joints)is insufficient.The 3D joints are subjected to bi-directional excitation,which results in an interaction between the shear strength obtained for the joint in the two orthogonal directions separately.The bi-directional seismic behavior of corner reinforced concrete(RC)joints is the focus of this study.First,a detailed finite element(FE)model using the FE software Abaqus,is developed and validated using the test results from the literature.The validated modeling procedure is used to conduct a parametric study to investigate the influence of different parameters such as concrete strength,dimensions of main and transverse beams framing into the joint,presence or absence of a slab,axial load ratio and loading direction on the seismic behavior of joints.By subjecting the models to different combinations of loads on the beams along perpendicular directions,the interaction of the joint shear strength in two orthogonal directions is studied.The comparison of the interaction curves of the joints obtained from the numerical study with a quadratic(circular)interaction curve indicates that in a majority of cases,the quadratic interaction model can represent the strength interaction diagrams of RC beam to column connections with governing joint shear failure reasonably well. 展开更多
关键词 beam-column joints joint shear failure bidirectional loading interaction curve finite element study
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Seismic performance of interior precast concrete beam-column connections with T-section steel inserts under cyclic loading 被引量:16
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作者 Rattapon Ketiyot Chayanon Hansapinyo 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第2期355-369,共15页
An experimental investigation was conducted to study the performance of precast beam-column concrete connections using T-section steel inserts into the concrete beam and joint core,under reversed cyclic loading.Six 2/... An experimental investigation was conducted to study the performance of precast beam-column concrete connections using T-section steel inserts into the concrete beam and joint core,under reversed cyclic loading.Six 2/3-scale interior beam-column subassemblies,one monolithic concrete specimen and five precast concrete specimens were tested.One precast specimen was a simple connection for a gravity load resistant design.Other precast specimens were developed with different attributes to improve their seismic performance.The test results showed that the performance of the monolithic specimen M1 represented ductile seismic behavior.Failure of columns and joints could be prevented,and the failure of the frame occurred at the flexural plastic hinge formation at the beam ends,close to the column faces.For the precast specimens,the splitting crack along the longitudinal lapped splice was a major failure.The precast P5 specimen with double steel T-section inserts showed better seismic performance compared to the other precast models.However,the dowel bars connected to the steel inserts were too short to develop a bond.The design of the precast concrete beams with lap splice is needed for longer lap lengths and should be done at the beam mid span or at the low flexural stress region. 展开更多
关键词 precast concrete beam-column connection cyclic loading
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Pushover analysis of reinforced concrete frames considering shear failure at beam-column joints 被引量:4
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作者 Y.C.Sung T.K.Lin +1 位作者 C.C.Hsiao M.C.Lai 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2013年第3期373-383,共11页
Since most current seismic capacity evaluations of reinforced concrete (RC) frame structures are implemented by either static pushover analysis (PA) or dynamic time history analysis, with diverse settings of the p... Since most current seismic capacity evaluations of reinforced concrete (RC) frame structures are implemented by either static pushover analysis (PA) or dynamic time history analysis, with diverse settings of the plastic hinges (PHs) on such main structural components as columns, beams and walls, the complex behavior of shear failure at beam-column joints (BCJs) during major earthquakes is commonly neglected. This study proposes new nonlinear PA procedures that consider shear failure at BCJs and seek to assess the actual damage to RC structures. Based on the specifications of FEMA-356, a simplified joint model composed of two nonlinear cross struts placed diagonally over the location of the plastic hinge is established, allowing a sophisticated PA to be performed. To verify the validity of this method, the analytical results for the capacity curves and the failure mechanism derived from three different full-size RC frames are compared with the experimental measurements. By considering shear failure at BCJs, the proposed nonlinear analytical procedures can be used to estimate the structural behavior of RC frames, including seismic capacity and the progressive failure sequence of joints, in a precise and effective manner. 展开更多
关键词 RC frame beam-column joint pushover analysis capacity curve plastic hinge performance-based seismic evaluation
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Dynamic Responses of Cellular Metal-Filled Steel Beam-Column Joint Under Impact Loading 被引量:6
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作者 DING Kewei LIU Jianhua +1 位作者 REN Jianwei MA Wei 《Journal of Shanghai Jiaotong university(Science)》 EI 2020年第3期384-393,共10页
Taking the excellent energy absorption performances of cellular structures into consideration,three beam-column steel joints are proposed to analyze the effect of cellular metallic fillers on impact mechanical respons... Taking the excellent energy absorption performances of cellular structures into consideration,three beam-column steel joints are proposed to analyze the effect of cellular metallic fillers on impact mechanical responses of beam-column joints.Based on the existing experimental results,the finite element models of the associated joints are established by using finite element method software.The deformation mode,the bearing capacity and energy absorption performance of various joints subjected to impact loadings with the loading velocities from 10 to 100 m/s are analyzed,respectively.The dynamic responses of cellular metal-filled beamcolumn joints are quantitatively analyzed by means of displacements of central region,nominal impacting stress and energy absorption efficiency.The results can be concluded that the filling of cellular filler weakens the stress concentration on joints,alleviates the occurrence of tearing in connection region among column and beam,and reduces the displacement caused by impact loading.Energy absorption efficiency of filled joints subjected to impact loading increases as the impacting velocity increases,and the cellular metallic filler improves their impact resistance of beam-column joints.The energy absorption efficiency of fully filled joints is superior to that of others.This study can provide a reference for steel structural design and post-disaster repair under extreme working conditions. 展开更多
关键词 steel beam-column joint cellular metal material impact loading dynamic responses impact energy absorption
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Influence of the column-to-beam flexural strength ratio on the failure mode of beam-column connections in RC frames 被引量:2
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作者 Gong Maosheng Zuo Zhanxuan +2 位作者 Sun Jing He Riteng Zhao Yinan 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2021年第2期441-452,共12页
The column-to-beam flexural strength ratio(CBFSR)has been used in many seismic codes to achieve the strong column-weak beam(SCWB)failure mode in reinforced concrete(RC)frames,in which plastic hinges appear earlier in ... The column-to-beam flexural strength ratio(CBFSR)has been used in many seismic codes to achieve the strong column-weak beam(SCWB)failure mode in reinforced concrete(RC)frames,in which plastic hinges appear earlier in beams than in columns.However,seismic investigations show that the required limit of CBFSR in seismic codes usually cannot achieve the SCWB failure mode under strong earthquakes.This study investigates the failure modes of RC frames with different CBFSRs.Nine typical three-story RC frame models with different CBFSRs are designed in accordance with Chinese seismic codes.The seismic responses and failure modes of the frames are investigated through time-history analyses using 100 ground motion records.The results show that the required limit of the CBFSR that guarantees the SCWB failure mode depends on the beam-column connection type and the seismic intensity,and different types of beam-column connections exhibit different failure modes even though they are designed with the same CBFSR.Recommended CBFSRs are proposed for achieving the designed SCWB failure mode for different types of connections in RC frames under different seismic intensities.These results may provide some reference for further revisions of the SCWB design criterion in Chinese seismic codes. 展开更多
关键词 strong column-weak beam column-to-beam flexural strength ratio reinforced concrete frame structure beam-column connection failure mode
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A review of flexibility-based finite element method for beam-column elements 被引量:1
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作者 李爽 翟长海 谢礼立 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2009年第1期81-86,共6页
For material nonlinear problem,elements derived with the flexibility-based method are more accurate than classical elements derived with the stiffness-based method. A review of the current state of the art of the flex... For material nonlinear problem,elements derived with the flexibility-based method are more accurate than classical elements derived with the stiffness-based method. A review of the current state of the art of the flexibility-based finite element method is provided to enhance the robustness of structure analysis. The research on beam-column elements is the mainstream in the research on flexibility-based finite element method at present. The original development of flexibility-based finite element method is reviewed, and the further development of this method is then presented in several specific aspects, such as geometrically nonlinear analysis and dynamic analysis. The further research needed to be carried out in the future is finally discussed. 展开更多
关键词 flexibility-based finite element beam-column element MATERIAL geometrically dynamic analysis
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Seismic Behaviour of Beam-Column Joints of Precast and Partial Steel Reinforced Concrete 被引量:1
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作者 Wanpeng Cheng Licheng Wang +1 位作者 Yupu Song Jun Wang 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2015年第2期108-117,共10页
A beam-column joint of precast and partial steel reinforced concrete( PPSRC) is proposed for precast reinforced concrete frames. The PPSRC consists of partial steel and reinforced concrete. The partial steel is locate... A beam-column joint of precast and partial steel reinforced concrete( PPSRC) is proposed for precast reinforced concrete frames. The PPSRC consists of partial steel and reinforced concrete. The partial steel is located in the core joint region and the connections between concrete members. This paper presents an experimental study of a series of PPSRC specimens. These specimens are tested under low cyclic loading.Experimental results demonstrate that the bearing capacity of the PPSRC specimens is 3 times that of the ordinary reinforced concrete( RC) beam-column joints. The strength and stiffness degradation rates are slower compared with that of the RC beam-column joints. In addition,the strength of the core joint region and the connections is higher than other parts of the PPSRC specimens. Beam failure occurs firstly for the PPSRC specimens,followed by column failure and connections failure. The failure of the core joint region occurs finally.Test results show that the seismic performance of the PPSRC is better than that of the ordinary RC beam-column joints. 展开更多
关键词 preeast and partial steel reinforced concrete (PPSRC) beam-column joints low cyclic test hysteretic curve degradations of strength and stiffness DUCTILITY
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Analytical Investigation into the Rotational Performance of Glulam Bolted Beam-Column Connections under Coupled Bending Moment and Shear Force
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作者 Xiaofeng Zhang Lisheng Luo +2 位作者 Youfu Sun Xinyue Cui Yongqiang Zhang 《Journal of Renewable Materials》 SCIE EI 2023年第4期2033-2054,共22页
Considering the glulam beam-column connection form and the number of bolts,monotonic loading test and finite element analysis was carried out on 9 connection specimens in 3 groups to study the rotational performance a... Considering the glulam beam-column connection form and the number of bolts,monotonic loading test and finite element analysis was carried out on 9 connection specimens in 3 groups to study the rotational performance and failure mode of the connection.The test results revealed that compared with U-shaped connectors,T-shaped connectors can effectively improve the ductility of connections,and the increase in the number of bolts can reduce the initial stiffness and ductility of connections.By theoretical analysis,formulas for calculating the initial stiffness and ultimate moment of connections were deduced.Subsequently,the moment-rotation theoretical model of connections was established based on the formulas,which were validated according to the test data and simulation results.The proposed model can not only improve the current theoretical system of heavy-duty glulam beam-column structure but also provide a theoretical basis for calculating the mechanical properties of the glulam beam-column connection. 展开更多
关键词 beam-column connection mechanical properties STIFFNESS ultimate moment
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Design on the Prestressed Concrete Frame Beam-column
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作者 ZHANG Taiyue ZHANG Weiguo +1 位作者 WANG Sihai GUO Yiqing 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第6期1397-1403,共7页
A bidirectional ribbed concrete beam slab structure was widly adopted for the upper space of industrial buildings.To maintain ample space and minimize the presence of conventional columns,a bidirectional prestressed c... A bidirectional ribbed concrete beam slab structure was widly adopted for the upper space of industrial buildings.To maintain ample space and minimize the presence of conventional columns,a bidirectional prestressed concrete beam is often employed.The intersection node of the prestressed concrete frame beam column was characterized by a high density of steel reinforcement,significant structural loads,and complex construction requirements.To ensure the quality,safety,and progress of prestressed frame beamcolumn intersection nodes during construction,this article proposed a new technology for constructing such nodes,which includes setting the tensioning and haunching ends of nodes at different positions,using ABAQUS finite element software to optimize the design of cross-sectional dimensions,conducting stress analysis simulations. 展开更多
关键词 prestressed concrete beam-column intersection node finite element analysis optimal design digital simulation
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Analysis of nonlinear stability and post-buckling for Euler-type beam-column structure
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作者 朱媛媛 胡育佳 程昌钧 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2011年第6期719-728,共10页
Based on the assumption of finite deformation, the Hamilton variational principle is extended to a nonlinear elastic Euler-type beam-column structure located on a nonlinear elastic foundation. The corresponding three-... Based on the assumption of finite deformation, the Hamilton variational principle is extended to a nonlinear elastic Euler-type beam-column structure located on a nonlinear elastic foundation. The corresponding three-dimensional (3D) mathematical model for analyzing the nonlinear mechanical behaviors of structures is established, in which the effects of the rotation inertia and the nonlinearity of material and geometry are considered. As an application, the nonlinear stability and the post-buckling for a linear elastic beam with the equal cross-section located on an elastic foundation are analyzed. One end of the beam is fully fixed, and the other end is partially fixed and subjected to an axial force. A new numerical technique is proposed to calculate the trivial solution, bifurcation points, and bifurcation solutions by the shooting method and the Newton- Raphson iterative method. The first and second bifurcation points and the corresponding bifurcation solutions are calculated successfully. The effects of the foundation resistances and the inertia moments on the bifurcation points are considered. 展开更多
关键词 beam-column structure Hamilton variational principle nonlinear stability shooting method Newton-Raphson iterative method POST-BUCKLING
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Finite Element Modeling of Stability of Beam-Column Supports for Field Fabricated Spherical Storage Pressure Vessels
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作者 Oludele Adeyefa Oluleke Oluwole 《Engineering(科研)》 2013年第5期475-480,共6页
Spherical pressure vessels in large sizes are generally supported on legs or columns evenly spaced around the circumference. The legs are attached at or near the equator of the sphere. This research work focussed on f... Spherical pressure vessels in large sizes are generally supported on legs or columns evenly spaced around the circumference. The legs are attached at or near the equator of the sphere. This research work focussed on flexural-torsional buckling of beam-column supports of field fabricated spherical pressure vessels using finite element analysis. Flexuraltorsional buckling is an important limit state that must be considered in structural steel design and it occurs when a structural member experiences significant out-of-plane bending and twisting. This research has therefore considered the total potential energy equation for the flexural-torsional buckling of a beam-column element. The energy equation was formulated by summing the strain energy and the potential energy of the external loads. The finite element method was applied in conjunction with the energy method to analyze the flexural-torsional buckling of beam-column supports. To apply the finite element method, the displacement functions are assumed to be cubic polynomials, and the shape functions used to derive the element stiffness and element geometric stiffness matrices. The element stiffness and geometric stiffness matrices were assembled to obtain the global stiffness matrices of the structure. The final finite element equation obtained was in the form of an eigenvalue problem. The flexural-torsional buckling loads of the structure were determined by solving for the eigenvalue of the equation. The resulting eigenvalue equation from the finite element analysis was coded using FORTRAN 90 programming language to aid in the analysis process. To validate FORTRAN 90 coding developed for the finite element analysis and the methodology, the results given by the software were compared to existing solutions and showed no significant difference P > 0.05. 展开更多
关键词 Field-fabricated SPHERICAL STORAGE Pressure TANK beam-column Support FEM
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Finite Element Analysis (FEA) for the Beam-Column Joint Subjected to Cyclic Loading Was Performed Using ANSYS
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作者 B. Venkatesan R. Ilangovan +2 位作者 P. Jayabalan N. Mahendran N. Sakthieswaran 《Circuits and Systems》 2016年第8期1581-1597,共17页
This paper analyses the seismic performance of exterior beam-column joints strengthened with unconventional reinforcement detailing. The beam-column joint specimens were tested with reverse cyclic loading applied at t... This paper analyses the seismic performance of exterior beam-column joints strengthened with unconventional reinforcement detailing. The beam-column joint specimens were tested with reverse cyclic loading applied at the beam end. The samples were divided into two groups based on the joint reinforcement detailing. The first group (Group A) of three non-ductility specimens had joint detailing in accordance with the construction code of practice in India IS456-2000, and the second group (Group B) of three ductility specimens had joint reinforcement detailed as per IS13920-1993, with similar axial load cases as the first group. The experimental studies are proven with the analytical studies carried out by finite element models using ANSYS. The results show that the hysteresis simulation is satisfactory for both un-strengthened and ferrocement strengthened specimens. Furthermore, when ferrocement strengthening is employed, the strengthened beam-column joints exhibit better structural performance than the un-strengthened specimens of about 31.56% and 38.98 for DD-T1 and DD-T2 respectively. The analytical shear strength predictions were in line with the test results reported in the literature, thus adding confidence to the validity of the proposed models. 展开更多
关键词 beam-column Joints Cyclic Load FERROCEMENT DUCTILITY Hysteresis Curve ANSYS
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考虑黏结滑移影响的叠合梁-现浇柱子结构承载性能多参数分析
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作者 张望喜 叶缘 +2 位作者 周靓 杨学峰 易伟建 《重庆大学学报》 北大核心 2025年第3期94-106,共13页
利用ABAQUS接口User Element(UEL)子程序,建立了分离式自计算单元长度的界面黏结单元BS1,该单元能按指定的黏结滑移关系工作。基于简化的Eligehausen黏结滑移本构,对叠合梁-现浇柱子结构试验开展了数值模拟,结果与试验吻合良好。同时,... 利用ABAQUS接口User Element(UEL)子程序,建立了分离式自计算单元长度的界面黏结单元BS1,该单元能按指定的黏结滑移关系工作。基于简化的Eligehausen黏结滑移本构,对叠合梁-现浇柱子结构试验开展了数值模拟,结果与试验吻合良好。同时,验证了单元自计算长度的准确性,对比时间效率提高了25%。基于上述验证,建立30个叠合梁-现浇柱子结构模型,采用叠合梁现浇层厚度、T型翼缘板宽度、力作用方向等参数进行分析。结果表明,采用90°弯钩锚固和锚固板锚固的2种子结构,承载性能相差不大,延性相差约12%,宜优先选择90°弯钩锚固形式;承载力分析表明我国规范中对于叠合梁的T型翼缘板的宽度规定较国外规范更加可靠;地震作用下,力作用方向的改变,子结构前后承载力相差12%,变形能力相差55%,这种差异值得深入讨论。研究结果为考虑黏结滑移的装配式混凝土结构的数值分析提供了可靠参考。 展开更多
关键词 界面单元 叠合梁-现浇柱子结构 黏结滑移 锚固形式 多参数分析
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钢结构稳定性的新诠释 被引量:30
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作者 饶芝英 童根树 《建筑结构》 CSCD 北大核心 2002年第5期12-14,共3页
在材料和截面层次上刚度达到零定义了传统的强度极限状态 ,而在构件和结构 (子结构 )层次上的刚度等于零即达到了稳定极限状态。这种层次的区分清晰地表达了强度问题和稳定问题的区别和内在联系 ,解释了具有正刚度的构件或结构在荷载作... 在材料和截面层次上刚度达到零定义了传统的强度极限状态 ,而在构件和结构 (子结构 )层次上的刚度等于零即达到了稳定极限状态。这种层次的区分清晰地表达了强度问题和稳定问题的区别和内在联系 ,解释了具有正刚度的构件或结构在荷载作用下产生失稳的原因 ,引入了荷载的负刚度概念 ,并提出了荷载负刚度的计算公式 ,有助于工程师理解稳定的基本概念和掌握结构稳定的计算方法。此外 。 展开更多
关键词 钢结构 稳定性 刚度 强度 极限状态
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低周反复荷载下预压装配式预应力混凝土框架抗震性能试验研究 被引量:5
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作者 徐远征 柳炳康 +1 位作者 欧国浩 陈国林 《合肥工业大学学报(自然科学版)》 CAS CSCD 北大核心 2006年第1期84-87,共4页
文章通过对一榀预压装配式预应力混凝土框架在低周反复荷载作用下的试验,深入研究了预压装配式预应力混凝土框架的裂缝分布、破坏形态、滞回曲线及位移延性等抗震性能。研究结果表明,预压装配式预应力混凝土框架具有良好的抗震性能。
关键词 预压装配式 预应力混凝土框架 破坏形态 抗震性能 延性
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全装配式预制混凝土结构梁柱组合件抗震性能试验研究 被引量:105
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作者 赵斌 吕西林 刘丽珍 《地震工程与工程振动》 CSCD 北大核心 2005年第1期81-87,共7页
采用足尺模型对比试验方法对现浇高强混凝土梁柱组合件、预制混凝土结构高强混凝土后浇整体式梁柱组合件和高强预制混凝土结构全装配式梁柱组合件在低周反复荷载作用下的开裂破坏形态、滞回特性、骨架曲线、强度与刚度退化特性、耗能能... 采用足尺模型对比试验方法对现浇高强混凝土梁柱组合件、预制混凝土结构高强混凝土后浇整体式梁柱组合件和高强预制混凝土结构全装配式梁柱组合件在低周反复荷载作用下的开裂破坏形态、滞回特性、骨架曲线、强度与刚度退化特性、耗能能力、节点核心区域的剪切变形、梁端与柱端的转动变形等抗震性能指标进行了系统研究。结果表明:高强预制混凝土结构后浇整体式梁柱组合件与现浇高强混凝土结构梁柱组合件具有相同的抗震能力,全装配式预制混凝土梁柱组合件的抗震性能和主要抗震性能指标与现浇高强混凝土梁柱组合件和预制混凝土结构后浇整体式梁柱组合件存在明显的差异。对于实际工程应用,应采取必要措施增加全装配式节点的耗能能力。 展开更多
关键词 抗震性能 预制混凝土结构 梁柱组合件 全装配式节点 低周反复荷载试验
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十字形内芯全钢防屈曲支撑构件及子系统足尺试验 被引量:26
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作者 马宁 吴斌 +4 位作者 赵俊贤 李惠 欧进萍 杨蔚彪 吴勇 《土木工程学报》 EI CSCD 北大核心 2010年第4期1-7,共7页
以北京某办公楼实际工程为依托,对内芯为十字形的全钢防屈曲支撑进行支撑构件及子系统足尺试验研究,以了解其性能及合理构造。首先根据性能要求进行初步设计。继而在MTS上对设计的第一根构件进行单轴拉压试验,由于加工精度不足引起的偏... 以北京某办公楼实际工程为依托,对内芯为十字形的全钢防屈曲支撑进行支撑构件及子系统足尺试验研究,以了解其性能及合理构造。首先根据性能要求进行初步设计。继而在MTS上对设计的第一根构件进行单轴拉压试验,由于加工精度不足引起的偏心等原因,出现绕弱轴弯曲,试验终止。改进设计制作第二根构件进行试验,内芯在其与外套管点焊位置断裂,表明内芯屈服段除必要的板件之间的连接焊缝外,不应出现额外焊缝连接接头。采用在下端加劲肋处局部加厚方式限制外套管下滑,设计了第三根构件并安装到加载框架上进行子系统足尺试验,完成加载制度时支撑完好,且滞回曲线饱满稳定,受压强度提高系数及累积延性系数均满足规程要求。试验证明,改进后的十字形内芯全钢防屈曲支撑具有良好的延性及耗能能力。 展开更多
关键词 十字形内芯 全钢防屈曲支撑 足尺试验 支撑构件试验 子系统试验 滞回特性
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覆冰荷载作用下500kV输电杆塔结构破坏机理试验分析 被引量:12
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作者 谢强 孙力 《高电压技术》 EI CAS CSCD 北大核心 2010年第12期3090-3096,共7页
为考察高压输电塔结构在极限覆冰工况下的破坏模式和倒塌机理,以冰灾中破坏的典型500kV输电塔为原型,设计了一组单、双塔段子结构,模拟覆冰下荷载,进行了静力加载试验,对结构受力过程、破坏形态和应变及变形的发展情况等做了分析。基于... 为考察高压输电塔结构在极限覆冰工况下的破坏模式和倒塌机理,以冰灾中破坏的典型500kV输电塔为原型,设计了一组单、双塔段子结构,模拟覆冰下荷载,进行了静力加载试验,对结构受力过程、破坏形态和应变及变形的发展情况等做了分析。基于通用有限元程序ANSYS,采用壳单元建立了加载塔段结构的实体模型,对试验全过程进行了模拟并与试验结果进行了比较。试验和有限元分析结果表明,主材构件的屈曲是输电塔结构在覆冰荷载作用下的基本破坏特征,斜材内力相对较小,但交叉斜撑面外变形较大。研究表明过大的交叉斜撑面外变形会显著地弱化主材的侧向约束,导致其计算长度增大,屈曲模态呈现出明显的弯扭失稳形式,从而显著地降低其承载能力,因此约束交叉斜撑的面外变形是提高整体结构抗冰承载力的一个主要途径。 展开更多
关键词 输电塔 塔段结构 覆冰荷载 静力试验 破坏机理 有限元分析
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预期损伤部位采用FRC梁柱组合件层间剪力-变形计算模型研究 被引量:1
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作者 王英俊 梁兴文 《工程力学》 EI CSCD 北大核心 2019年第6期79-91,共13页
通过分析梁柱组合件层间变形与梁端变形、柱端变形和节点核心区剪切变形之间的关系,梁端、柱端弯矩与曲率之间的三折线关系及节点核心区剪力与柱顶剪力之间的关系,提出预期损伤部位采用纤维增强混凝土(FRC)梁柱组合件层间剪力-变形计算... 通过分析梁柱组合件层间变形与梁端变形、柱端变形和节点核心区剪切变形之间的关系,梁端、柱端弯矩与曲率之间的三折线关系及节点核心区剪力与柱顶剪力之间的关系,提出预期损伤部位采用纤维增强混凝土(FRC)梁柱组合件层间剪力-变形计算模型;以节点核心区剪切破坏为主要破坏模式,分析 FRC 梁柱组合件在开裂点、屈服点和峰值点处的层间剪力、梁端变形、柱端变形和节点核心区剪切变形及各部分变形引起的层间变形占层间总变形中的比例及变化规律。将模型计算结果与试验结果进行比较,结果表明:提出的层间剪力-变形理论计算模型可较好地反映FRC梁柱组合件在地震作用下的层间剪力-变形关系。 展开更多
关键词 纤维增强混凝土 梁柱组合件 层间变形 梁端变形 柱端变形 节点剪切变形
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防屈曲支撑固接节点受力性能的子系统试验
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作者 赵俊贤 王湛 +7 位作者 林傅雄 韩伟 陈若冰 曾毅发 杨曌懿 卢星屹 廖张迪 张昱博 《土木工程学报》 EI CSCD 北大核心 2014年第S1期83-89,共7页
防屈曲支撑作为一种有效的耗能减震构件在地震高烈度区的工程结构中已被广泛应用。保证防屈曲支撑节点的稳定性是其设计的关键,然而已有研究和设计方法并没有关注支撑-结构之间的相互作用对防屈曲支撑节点稳定性的影响。为此,设计一根... 防屈曲支撑作为一种有效的耗能减震构件在地震高烈度区的工程结构中已被广泛应用。保证防屈曲支撑节点的稳定性是其设计的关键,然而已有研究和设计方法并没有关注支撑-结构之间的相互作用对防屈曲支撑节点稳定性的影响。为此,设计一根两端固接连接的足尺防屈曲支撑试件并对其进行子系统试验,支撑采用单斜布置形式。试验结果表明,结构层间变形会引起支撑节点以及约束构件发生平面内刚体转动,导致支撑轴力作用线与节点轴线之间产生相对转角,其幅值与层间变形角相当,是导致节点弯矩产生的根源。在支撑节点截面面积为屈服段面积5倍和层间变形角为3.5%的情况下,节点根部弯曲正应力已超过100MPa,其不利影响不容忽视。最后,根据试验结果给出若干关于防屈曲支撑节点稳定性设计及研究的建议。 展开更多
关键词 防屈曲支撑 节点 受力性能 稳定性 子系统试验
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