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Ductility demands on buckling-restrained braced frames under earthquake loading 被引量:13
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作者 Larry A.Fahnestock Richard Sause +1 位作者 James M.Ricles Le-Wu Lu 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2003年第2期255-268,共14页
Accurate estimates of ductility demands on buckling-restrained braced frames(BRBFs)are crucial to performance-based design of BRBFs.An analytical study on the seismic behavior of BRBFs has been conducted at the ATLSS ... Accurate estimates of ductility demands on buckling-restrained braced frames(BRBFs)are crucial to performance-based design of BRBFs.An analytical study on the seismic behavior of BRBFs has been conducted at the ATLSS Center,Lehigh University to prepare for an upcoming experimental program.The analysis program DRAIN-2DX was used to model a one-bay,four-story prototype BRBF including material and geometric nonlinearities.The buckling- restrained brace(BRB)model incorporates both isotropic and kinematic hardening.Nonlinear static pushover and time- history analyses were performed on the prototype BRBF.Performance objectives for the BRBs were defined and used to evaluate the time-history analysis results.Particular emphasis was placed on global ductility demands and ductility demands on the BRBs.These demands were compared with anticipated ductility capacities.The analysis results,along with results from similar previous studies,are used to evaluate the BRBF design provisions that have been recommended for codification in the United States.The results show that BRB maximum ductility demands can be as high as 20 to 25.These demands significantly exceed those anticipated by the BRBF recommended provisions.Results from the static pushover and time- history analyses are used to demonstrate why the ductility demands exceed those anticipated by the recommended provisions. The BRB qualification testing protocol contained in the BRBF recommended provisions is shown to be inadequate because it requires only a maximum ductility demand of at most 7.5.Modifications to the testing protocol are recommended. 展开更多
关键词 BUILDINGS buckling-restrained braced frames buckling-restrained braces structural response seismic response ductility demand seismic codes and standards
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Shaking table test and numerical analysis of a 1:12 scale model of a special concentrically braced steel frame with pinned connections 被引量:7
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作者 Yu Haifeng Zhang Wenyuan +1 位作者 Zhang Yaochun Sun Yusong 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2010年第1期51-63,共13页
This paper describes shaking table tests of a 1:12 scale model of a special concentrically braced steel frame with pinned connections, which was fabricated according to a one-bay braced frame selected from a typical ... This paper describes shaking table tests of a 1:12 scale model of a special concentrically braced steel frame with pinned connections, which was fabricated according to a one-bay braced frame selected from a typical main factory building of a large thermal power plant. In order to investigate the seismic performance of this type of structure, several ground motion accelerations with different levels for seismic intensity Ⅷ, based on the Chinese Code for Seismic Design of Buildings, were selected to excite the model. The results show that the design methods of the members and the connections are adequate and that the structural system will perform well in regions of high seismicity. In addition to the tests, numerical simulations were also conducted and the results showed good agreement with the test results. Thus, the numerical model is shown to be accurate and the beam element can be used to model this structural system. 展开更多
关键词 concentrically braced steel frame pinned connections shaking table test numerical analysis seismic performance
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Experimental study on the seismic response of braced reinforced concrete frame with irregular columns 被引量:6
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作者 Xiao Jianzhuang Li Jie Chen Jun 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2011年第4期487-494,共8页
A 15-storey K-braced reinforced concrete model frame with irregular columns, i.e., T-shaped, L-shaped, as well as +-shaped columns, was constructed and tested on the six-degree-of-freedom shaking table at the State Ke... A 15-storey K-braced reinforced concrete model frame with irregular columns, i.e., T-shaped, L-shaped, as well as +-shaped columns, was constructed and tested on the six-degree-of-freedom shaking table at the State Key Laboratory for Disaster Reduction in Civil Engineering in Tongji, China. Two types of earthquake records, El-Centro wave (south-north direction) and Shanghai artificial wave (SHAW) with various peak accelerations and principal-secondary sequences, were input and experimentally studied. Based on the shaking table tests and theoretical analysis, several observations can be made. The failure sequence of the model structure is brace→beam→column→joints, so that the design philosophy for several lines of defense has been achieved. Earthquake waves with different spectrums not only influence the magnitude and distribution of the earthquake force and the storey shear force, but also obviously affect the magnitude of the displacement response. The aftershock seismic response of previously damaged reinforced concrete braced frames with irregular columns possesses the equivalent elastic performance characteristic. Generally speaking, from the aspects of failure features and drift ratio, this type of reinforced concrete structure provides adequate earthquake resistance and can be promoted for use in China. 展开更多
关键词 seismic response reinforced concrete braced frame irregular columns
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Peak displacement patterns for the performance-based seismic design of steel eccentrically braced frames 被引量:1
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作者 Ali Fakhraddini Hamed Saffari Mohammad Javad Fadaee 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2019年第2期379-393,共15页
Performance-based seismic design(PBSD) aims to assess structures at different damage states. Since damage can be directly associated to displacements, seismic design with consideration of displacement seems to be logi... Performance-based seismic design(PBSD) aims to assess structures at different damage states. Since damage can be directly associated to displacements, seismic design with consideration of displacement seems to be logical. In this study, simple formulae to estimate the peak floor displacement patterns of eccentrically braced frames(EBFs) at different performance levels subjected to earthquake ground motions are proposed. These formulae are applicable in a PBSD and especially in direct displacement-based design(DDBD). Parametric study is conducted on a group of 30 EBFs under a set of 15 far field and near field accelerograms which they scaled to different amplitudes to adapt various performance levels. The results of thousands of nonlinear dynamic analyses of EBFs have been post-processed by nonlinear regression analysis in order to recognize the major parameters that influence the peak displacement pattern of these frames. Results show that suggested displacement patterns have relatively good agreement with those acquired by an exact nonlinear dynamic analysis. 展开更多
关键词 performance-based SEISMIC DESIGN direct displacement-based DESIGN DISPLACEMENT pattern eccentrically braced frameS steel building
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Optimization of design parameters for controlled rocking steel braced dual-frames
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作者 Sobhan Ghasemi M.Firoozi Nezamabadi +1 位作者 Abdolreza S.Moghadam Mahmood Hosseini 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2022年第4期1053-1068,共16页
A controlled rocking concentrically steel braced frame(CR-CSBF)is introduced as an alternative to conventional methods to prevent major structural damage during large earthquakes.It is equipped with elastic post-tensi... A controlled rocking concentrically steel braced frame(CR-CSBF)is introduced as an alternative to conventional methods to prevent major structural damage during large earthquakes.It is equipped with elastic post-tensioned(PT)cables and replaceable devices or fuses to provide overturning resistance and dissipate energy,respectively.Although CR-CSBFs are not officially legalized in globally valid codes for new buildings,it is expected to be presented in them in the near future.The main goal of this study is to determine the optimal design parameters consist of the yield strength and modulus of elasticity of the fuse,the initial force of the PT cable,and the gravity load on the rocking column,considering different heights of the frame,spanning ratios and ground motion types for dual-configuration CR-CSBF.Nonlinear time-history analyses are performed in OpenSees.This study aims to define the optimal input variables as effective design parameters of CR-CSBFs by comparing four seismic responses consisting of story drift,roof displacement,roof acceleration and base shear,and also using the Euclidean metric optimization method.Despite the previous research,this study is innovative and first of its kind.The results demonstrate that the optimal design parameters are variable for various conditions. 展开更多
关键词 self-centering rocking steel braced frame design parameters OPTIMIZATION low damage
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Nonlinear Seismic Response of Steel Concentrically Braced Frames Using Endurance Time Analysis Method
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作者 Mohammad Amin Hariri Ardebili Yashar Zarringhalam Masoud Mirtaheri Mahmood Yahyai 《Journal of Civil Engineering and Architecture》 2011年第9期847-855,共9页
In present paper application of Endurance Time Analysis (ETA) method in nonlinear seismic assessment of steel concentrically braced frames is studied. In this method structure is subjected to a set of predesigned in... In present paper application of Endurance Time Analysis (ETA) method in nonlinear seismic assessment of steel concentrically braced frames is studied. In this method structure is subjected to a set of predesigned increasing acceleration functions and various responses of the structure are recorded during synthetic seismic excitation. The averages of maximum values for various responses in Nonlinear Time-History Analyses (NTHA) extracted from real ground motions are expected to be close to those obtained from ETA up to equivalent target time. For this purpose a set of 9, 11, 13 and 15 stories steel frames were designed and plastic hinge method was selected as source of nonlinearity in all cases. Responses were compared based on interstory drift ratio and story shear in two methods and results show satisfactory consistency between two methods. Finally, it was concluded that the ETA method can be used as alternative method in nonlinear seismic analysis of concentrically braced steel frames. 展开更多
关键词 Endurance time analysis concentrically braced frames nonlinear seismic assessment.
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Behavior of ductile steel X-braced RC frames in seismic zones
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作者 Eber Alberto Godínez-Domínguez Arturo Tena-Colunga 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2019年第4期845-869,共25页
A satisfactory ductile performance of moment-resisting reinforced concrete concentric braced frame structures (RC-MRCBFs) is not warranted by only following the provisions proposed in Mexico’s Federal District Code (... A satisfactory ductile performance of moment-resisting reinforced concrete concentric braced frame structures (RC-MRCBFs) is not warranted by only following the provisions proposed in Mexico’s Federal District Code (MFDC-04). The nonlinear behavior of low to medium rise ductile RC-MRCBFs using steel X-bracing susceptible to buckling is evaluated in this study. The height of the studied structures ranges from 4 to 20 stories and they were located for design in the lakebed zone of Mexico City. The design of RC-MRCBFs was carried out considering variable contribution of the two main lines of defense of the dual system (RC columns and steel braces). In order to observe the principal elements responsible for dissipating the earthquake input energy, yielding mappings for diff erent load-steps were obtained using both nonlinear static and dynamic analyses. Some design parameters currently proposed in MFDC-04 as global ductility capacities, overstrength reduction factors and story drifts corresponding to diff erent limit states were assessed as a function of both the considered shear strength and slenderness ratios for the studied RC-MRCBFs using pushover analyses. Additionally, envelopes of response maxima of dynamic parameters were obtained from the story and global hysteresis curves. Finally, a brief discussion regarding residual drifts, residual drift ratios, mappings of residual deformations in steel braces and residual rotations in RC beams and columns is presented. From the analysis of the obtained results, it is concluded that when a suitable design criterion is considered, good structural behavior of RC-MRCBFs with steel-X bracing can be obtained. It is also observed that the shear strength balance has an impact in the height-wise distribution of residual drifts, and an important “shake-down” eff ect is obtained for all cases. There is a need to improve design parameters currently proposed in MFDC to promote an adequate seismic performance of RC-MRCBFs. 展开更多
关键词 RC braced-frames seismic design nonlinear dynamic analyses steel-X BRACING OVERSTRENGTH collapse mechanism story DRIFTS residual DRIFTS
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Seismic response of high-rise steel framed buildings with Chevron-braced designed according to Venezuelan codes
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作者 Ronald Ugel Juan Carlos Vielma +2 位作者 Reyes Herrera Sigrit Perez Alex Barbat 《Natural Science》 2012年第8期694-698,共5页
The object of this study is to determine the seismic response of regular high-rise steel buildings with chevron-braced frames. Mechanics models of three buildings of 14, 18 and 20 stories are studied, all of them with... The object of this study is to determine the seismic response of regular high-rise steel buildings with chevron-braced frames. Mechanics models of three buildings of 14, 18 and 20 stories are studied, all of them with similar geometric characteristics in plant and elevation. These models are realized using prescriptions and parameters from venezuelan design codes. The seismic action is carry on through varius synthetic design spectrum compatible accelerograms defined by the seismic codes in this study, with three levels of intensity corresponding to three specific Limit States. Dynamic analysis is used to compute parameters of ductility, over strength and maximum displacements. From these results it can be concluded that chevron-braced frames presented a good overall performance and non V-braced frames show greater damage due to dynamic actions, validating non linear dynamic analysis as a very powerful tool to seismic-resistance design and chevron-braced frames as a very useful choice in improving the response of tall steel structures. since this lateral bracing system is absent from Venezuelan seismic codes. 展开更多
关键词 framed Steel BUILDINGS CHEVRON braced frameS Non Linear Analysis Over Strength SEISMIC Response
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Parametric Study on Cable-Stayed and Knee-Braced Steel Portal Frames
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作者 唐柏鉴 王飞 马珺 《Journal of Donghua University(English Edition)》 EI CAS 2014年第4期474-483,共10页
To improve wind resistance capacity of cable-braced steel portal frames,a double-braced portal frame was proposed by adding two pre-stressed knee braces to a cable-braced portal frame. To study the reasonable range of... To improve wind resistance capacity of cable-braced steel portal frames,a double-braced portal frame was proposed by adding two pre-stressed knee braces to a cable-braced portal frame. To study the reasonable range of application and method of cable parameter determination for this novel structure,the influences of load condition, span, base constraint, and cable parameters on structural performance were investigated by using the finite element code SAP2000. The results show that pre-stressed knee braces can effectively resist both uplifted and lateral wind loads,so this cablestayed and knee-braced steel portal frame is suitable for large wind.When the vertical load is comparable with the wind load,this novel type of portal frames is suitable for a medium span( 21-48 m). The cables in the cable brace can be determined by structural vertical stiffness,and the cables in the knee brace can be designed as the same as those in the cable-stayed part for the reason that their cross sectional area has only a weak effect on the structure. If no cable fails,the pretension variation of the cable does not affect the stiffness of the portal frame. The cable in the cable brace,working together with the cables in the knee braces,can ease uneven distribution of internal force,and their pretensions can be determined according to actual engineering projects. 展开更多
关键词 portal frame PRESTRESS knee brace cable brace parametric analysis
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Seismic retrofitting of reinforced concrete frame structures using GFRP-tube-confined-concrete composite braces 被引量:1
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作者 Nasim S. Moghaddasi B Zhang Yunfeng Hu Xiaobin 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2012年第1期91-105,共15页
This paper presents a new type of structural bracing intended for seismic retrofitting use in framed structures. This special composite brace, termed glass-fiber-reinforced-polymer (GFRP)-tube-confined-concrete comp... This paper presents a new type of structural bracing intended for seismic retrofitting use in framed structures. This special composite brace, termed glass-fiber-reinforced-polymer (GFRP)-tube-confined-concrete composite brace, is comprised of concrete confined by a GFRP tube and an inner steel core for energy dissipation. Together with a contribution from the GFRP-tube confined concrete, the composite brace shows a substantially increased stiffness to control story drift, which is often a preferred feature in seismic retrofitting. An analysis model is established and implemented in a general finite element analysis program - OpenSees, for simulating the load-displacement behavior of the composite brace. Using this model, a parametric study of the hysteretic behavior (energy dissipation, stiffness, ductility and strength) of the composite brace was conducted under static cyclic loading and it was found that the area ratio of steel core to concrete has the greatest influence among all the parameters considered. To demonstrate the application of the composite brace in seismic retrofitting, a three-story nonductile reinforced concrete (RC) frame structure was retrofitted with the composite braces. Pushover analysis and nonlinear time-history analyses of the retrofitted RC frame structure was performed by employing a suite of 20 strong ground motion earthquake records. The analysis results show that the composite braces can effectively reduce the peak seismic responses of the RC frame structure without significantly increasing the base shear demand. 展开更多
关键词 brace composite confined concrete glass-fiber-reinforced polymer frame nonlinear analysis RETROFIT seismic
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跨层X形中心支撑-HPEC截面组合框架抗震性能试验研究及抗侧刚度计算
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作者 辛力 黄华 +2 位作者 陈震 刘源 叶艳霞 《工程力学》 北大核心 2026年第3期136-150,共15页
结合钢-HPEC(hollow-core partially encased composite)拼接梁以及中段部分包覆钢-混凝土组合支撑(middle partially encased composite brace)良好的力学性能,提出了跨层X形中心支撑-HPEC截面组合框架。为研究该组合框架的抗震性能,... 结合钢-HPEC(hollow-core partially encased composite)拼接梁以及中段部分包覆钢-混凝土组合支撑(middle partially encased composite brace)良好的力学性能,提出了跨层X形中心支撑-HPEC截面组合框架。为研究该组合框架的抗震性能,设计了2榀组合框架模型,对其进行水平低周往复荷载试验,并使用ABAQUS软件进行了模拟。结果表明:该组合框架具有良好的抗震性能和耗能能力;试件的破坏模式为支撑构件受压失稳,支撑退出工作时纯框架结构未出现明显损伤;MPEC支撑混凝土的填充能够提高构件的刚度和受压性能,减弱因纯钢支撑受压失稳所造成的框架刚度下降;MPEC支撑的耗能能力受H形钢翼缘厚度的影响较大。所提出的分析方法和计算公式,能够准确预测该组合框架的初始抗侧刚度,并为跨层X形中心支撑-HPEC截面组合框架的研究和设计提供思路和基础。 展开更多
关键词 跨层X形中心支撑框架 中段部分包覆钢-混凝土组合支撑 拟静力试验 抗震性能 抗侧刚度
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转K6转向架交叉杆疲劳寿命分析
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作者 王蒙 朱涛 +1 位作者 王超 肖守讷 《机械设计与制造》 北大核心 2026年第1期84-88,共5页
以仿真、台架试验、线路试验相结合的方法对重载货车转K6转向架交叉杆结构进行疲劳寿命评估。首先,建立了交叉杆结构有限元模型,基于弹性有限元理论,以标准疲劳试验载荷转化的多级载荷时间历程为输入,采用基于名义应力法的多事件准静态... 以仿真、台架试验、线路试验相结合的方法对重载货车转K6转向架交叉杆结构进行疲劳寿命评估。首先,建立了交叉杆结构有限元模型,基于弹性有限元理论,以标准疲劳试验载荷转化的多级载荷时间历程为输入,采用基于名义应力法的多事件准静态叠加计算方法和Miner累积损伤理论对结构进行寿命评估;然后,将仿真结果与标准载荷台架试验结果进行对比,表明在两种分析方法下,结构标准350万次循环载荷作用产生的损伤值均较低;最后,基于交叉杆线路实测结构动应力响应和结构固有模态,通过时域-频域加速度谱分析,表明振动对结构产生影响甚小。研究结果表明:按照损伤等效原则,从准静态与动态振动响应角度均证明了转K6转向架交叉杆结构安全服役寿命满足16年检修周期要求,实际运用中可考虑延长检修周期。 展开更多
关键词 交叉杆 准静态叠加 模态振动 疲劳寿命
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消能支撑减震钢框架结构的失效模式控制设计方法
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作者 朱小龙 蒲武川 庾鸿 《建筑科学》 北大核心 2026年第1期1-10,共10页
屈曲约束支撑(BRB)可以通过消能作用减轻结构地震响应,但同时会改变结构内力分布,可能导致极限状态下结构失效模式的变化,合理评价消能支撑对结构失效模式的影响有重要意义。考虑BRB消能及其内力对梁、柱抗弯承载力的影响,推导整体梁铰... 屈曲约束支撑(BRB)可以通过消能作用减轻结构地震响应,但同时会改变结构内力分布,可能导致极限状态下结构失效模式的变化,合理评价消能支撑对结构失效模式的影响有重要意义。考虑BRB消能及其内力对梁、柱抗弯承载力的影响,推导整体梁铰失效模式和局部层失效模式的极限状态方程,提出基于失效模式控制的BRB减震钢框架结构的设计流程。以5层3跨减震平面钢框架为例,开展基于失效模式控制的梁、柱强度的优化设计,并通过弹塑性时程响应分析比较减震结构的塑性铰分布特征。结果表明,按新方法设计的结构更易形成全梁铰模式,可达到更好的失效模式控制效果。 展开更多
关键词 钢框架结构 屈曲约束支撑 失效模式控制 非线性分析
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屈曲约束支撑钢框架结构四水准抗震性能研究
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作者 闫傲 池沛 +2 位作者 罗来勇 晁贝贝 詹辅庆 《振动与冲击》 北大核心 2026年第1期257-267,共11页
随着第五代《中国地震动参数区划图》颁布实施,我国抗震设防体系由原有的三水准设防进一步完善为四水准体系。为系统评估屈曲约束支撑钢框架结构在不同地震水准下的抗震性能,设计一栋按8度设防的9层原型结构,基于OpenSees平台建立非线... 随着第五代《中国地震动参数区划图》颁布实施,我国抗震设防体系由原有的三水准设防进一步完善为四水准体系。为系统评估屈曲约束支撑钢框架结构在不同地震水准下的抗震性能,设计一栋按8度设防的9层原型结构,基于OpenSees平台建立非线性数值模型。通过弹塑性时程分析,考察结构的峰值响应、残余变形以及支撑的响应特性。在此基础上,进一步开展基于增量动力分析的地震易损性分析,以量化不同地震强度下结构的损伤概率。结果表明:结构能够实现三水准设防目标,在极罕遇地震作用下,基底剪力相较罕遇地震增加约60%,最大层间位移角达到罕遇地震限值的1.60倍,整体侧向变形为其2.24倍;残余位移角自设防地震起显著增大,均值约为0.25%,罕遇地震和极罕遇地震下残余变形由底部楼层向上扩展,多数楼层超过0.50%修复阈值;结构的峰值侧移随地震动增强趋于集中,但残余侧移趋于均匀;支撑自设防地震起开始发挥耗能作用,在前三个水准地震下无失效风险,在极罕遇地震下失效风险亦较低;在极罕遇地震作用下,结构完全损伤的超越概率显著高于罕遇地震,达到32.61%,面临较高的倒塌风险。 展开更多
关键词 屈曲约束支撑 钢框架 时程分析 抗震性能 极罕遇地震
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Y型双肢连梁偏心支撑组合框架力学性能试验研究
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作者 吴桢灏 庄亮东 王巍 《工程力学》 北大核心 2026年第3期249-263,288,共16页
既有研究表明:传统的Y型单肢连梁偏心支撑组合框架(简称“SY-EBCF”)是一种具有较高耗能效率的消能减震结构体系;但连梁的引入会压缩建筑空间,降低建筑功能。该文在SY-EBCF形式的基础上,提出了Y型双肢连梁偏心支撑组合框架(简称“DY-EBC... 既有研究表明:传统的Y型单肢连梁偏心支撑组合框架(简称“SY-EBCF”)是一种具有较高耗能效率的消能减震结构体系;但连梁的引入会压缩建筑空间,降低建筑功能。该文在SY-EBCF形式的基础上,提出了Y型双肢连梁偏心支撑组合框架(简称“DY-EBCF”),通过增加连梁数目,减小连梁尺寸,既能保证偏心支撑能够提供足够的承载力和刚度,又能最大限度的降低连梁对下部空间的占用。为研究DY-EBCF的力学性能,该文设计并制作了一个DY-EBCF试件,并对其开展了拟静力试验,分析了试件的失效模式、滞回曲线和截面应变发展规律。试验结果表明:连梁主要依靠腹板剪切变形耗散能量,在其失效退出工作前,DY-EBCF试件的滞回曲线饱满且稳定;拆除失效连梁后,试件的残余变形角为0.002 rad,小于规范限值(0.005 rad);余下的组合框架部分水平承载力虽降低至未拆卸连梁时的1/2,但结构仍具有稳定承载的能力。对比了DY-EBCF和SY-EBCF的试验结果,证明了DY-EBCF在耗能能力、刚度和变形能力方面具有更好的抗震性能。 展开更多
关键词 Y型偏心支撑组合框架 双肢连梁 建筑使用空间 试验研究 力学性能
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Elastoplastic analysis of knee bracing frame 被引量:1
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作者 黄真 李庆松 陈龙珠 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2005年第8期784-789,共6页
The knee bracing steel frame (KBF) is a new kind of energy dissipating frame, which combines excellent ductility and lateral stiffness. As the structural fuse of the frame, the knee element will yield first during a s... The knee bracing steel frame (KBF) is a new kind of energy dissipating frame, which combines excellent ductility and lateral stiffness. As the structural fuse of the frame, the knee element will yield first during a severe earthquake so that no damage occurs to the major structural members and the rehabilitation is easy and economical. To help fully understand the relations be- tween its seismic performance and the structural parameters, systematic elastoplastic analysis of the KBF structure with finite element method was conducted in this work. Finally, general design recommendations were made according to the results of the analysis. 展开更多
关键词 Steel frame Knee bracing frame Elastoplastic analysis
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Comparative study on wheel-rail dynamic interactions of side-frame cross-bracing bogie and sub-frame radial bogie 被引量:4
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作者 Chunlei Yang Fu Li +2 位作者 Yunhua Huang Kaiyun Wang Baiqian He 《Journal of Modern Transportation》 2013年第1期1-8,共8页
Improving freight axle load is the most effective method to improve railway freight capability; based on the imported technologies of railway freight bogie, the 27 t axle load side-frame cross-bracing bogie and sub-fr... Improving freight axle load is the most effective method to improve railway freight capability; based on the imported technologies of railway freight bogie, the 27 t axle load side-frame cross-bracing bogie and sub-frame radial bogie are developed in China. In order to analyze and compare dynamic interactions of the two newly developed heavy-haul freight bogies, we establish a vehi- cle-track coupling dynamic model and use numerical calculation methods for computer simulation. The dynamic performances of the two bogies are simulated separately at various conditions. The results show that at the dipped joint and straight line running conditions, the wheel-rail dynamic interactions of both bogies are basically the same, but at the curve negotiation condition, the wear and the lateral force of the side-frame cross-bracing bogie are much higher than that of the sub-frame radial bogie, and the advantages become more obvious when the curve radius is smaller. The results also indicate that the sub- frame radial bogie has better low-wheel-rail interaction characteristics. 展开更多
关键词 Heavy haul Side-frame cross-bracing bogie .Sub-frame radial bogie . Wheel-rail dynamic interaction
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Shaking table experimental study of recycled concrete frame-shear wall structures 被引量:8
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作者 Zhang Jianwei Cao Wanlin +2 位作者 Meng Shaobin Yu Cheng Dong Hongying 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第2期257-267,共11页
In this study, four 1/5 scaled shaking table tests were conducted to investigate the seismic performance of recycled concrete frame-shear wall structures with different recycled aggregates replacement rates and concea... In this study, four 1/5 scaled shaking table tests were conducted to investigate the seismic performance of recycled concrete frame-shear wall structures with different recycled aggregates replacement rates and concealed bracing detail. The four tested structures included one normal concrete model, one recycled coarse aggregate concrete model, and two recycled coarse and fi ne aggregate concrete models with or without concealed bracings inside the shear walls. The dynamic characteristics, dynamic response and failure mode of each model were compared and analyzed. Finite element models were also developed and nonlinear time-history response analysis was conducted. The test and analysis results show that the seismic performance of the recycled coarse aggregate concrete frame-shear wall structure is slightly worse than the normal concrete structure. The seismic resistance capacity of the recycled concrete frame-shear wall structure can be greatly improved by setting up concealed bracings inside the walls. With appropriate design, the recycled coarse aggregate concrete frame-shear wall structure and recycled concrete structure with concealed bracings inside the walls can be applied in buildings. 展开更多
关键词 recycled concrete frame-shear wall concealed bracings shaking table test nonlinear time-history response analysis
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某设置屈曲约束支撑的多塔结构抗震性能分析
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作者 白亚琼 詹延杰 +2 位作者 乔洋 张凯 范新杰 《工程与试验》 2026年第1期98-103,共6页
屈曲约束支撑通过提高结构抗扭刚度有效改善了结构扭转效应,其轻量化设计在保证结构整体抗扭能力的同时还降低了结构自重。本工程设定中震不屈服的性能目标,采用动力弹塑性时程分析方法对屈曲约束支撑在中震作用下的性能目标进行校核,... 屈曲约束支撑通过提高结构抗扭刚度有效改善了结构扭转效应,其轻量化设计在保证结构整体抗扭能力的同时还降低了结构自重。本工程设定中震不屈服的性能目标,采用动力弹塑性时程分析方法对屈曲约束支撑在中震作用下的性能目标进行校核,符合预设的性能要求。通过对比分析多遇地震作用下结构的层间位移比、楼层剪力等计算结果,表明屈曲约束支撑能够为结构提供有效的抗侧刚度。通过对结构罕遇地震作用下的动力弹塑性分析,表明结构构件能够满足极限承载力要求,屈曲约束支撑屈服耗能满足大震不倒的设防目标。工程实践表明,该技术既解决了关键技术问题,又降低了工程造价,取得了良好的结构抗震性能和经济效益。 展开更多
关键词 高层建筑 屈曲约束支撑 抗震性能 抗扭刚度 多塔结构 框架-剪力墙结构
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刚度控制对自复位屈曲约束支撑框架抗震性能的影响 被引量:3
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作者 谢钦 周臻 黄林杰 《东南大学学报(自然科学版)》 北大核心 2025年第2期435-443,共9页
在自复位屈曲约束支撑(SC⁃BRB)中引入橡胶夹层端板使橡胶垫刚度与套管刚度串联,在不削减钢构件尺寸的前提下通过改变橡胶垫厚度可以实现对支撑初始刚度的灵活控制。为了研究刚度控制对SC⁃BRB框架性能的影响,对支撑的三线性旗帜形滞回性... 在自复位屈曲约束支撑(SC⁃BRB)中引入橡胶夹层端板使橡胶垫刚度与套管刚度串联,在不削减钢构件尺寸的前提下通过改变橡胶垫厚度可以实现对支撑初始刚度的灵活控制。为了研究刚度控制对SC⁃BRB框架性能的影响,对支撑的三线性旗帜形滞回性能和采用不同方法(基于力和基于位移的设计方法)设计的SC⁃BRB框架抗震性能开展数值分析。结果表明:刚度控制避免了因改变强度比β导致的支撑塑性阶段最大承载力增大,但不会改变β对支撑耗能能力和自复位性能的影响;刚度控制与参数β相结合,可减小基于力的方法设计的SC⁃BRB框架的最大层间位移角,但对基于位移的方法设计的SC⁃BRB框架的位移响应影响很小;通过刚度控制减小自复位系统的第一刚度,可以减小SC⁃BRB框架地震时的最大楼层加速度。 展开更多
关键词 自复位 三线性模型 刚度控制 支撑框架 抗震性能
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