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Mathematical modeling and full-scale shaking table tests for multi-curve buckling restrained braces 被引量:8
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作者 C. S. Tsai Yungchang Lin +1 位作者 Wenshin Chen H. C. Su 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2009年第3期359-371,共13页
Buckling restrained braces (BRBs) have been widely applied in seismic mitigation since they were introduced in the 1970s. However, traditional BRBs have several disadvantages caused by using a steel tube to envelope... Buckling restrained braces (BRBs) have been widely applied in seismic mitigation since they were introduced in the 1970s. However, traditional BRBs have several disadvantages caused by using a steel tube to envelope the mortar to prevent the core plate from buckling, such as: complex interfaces between the materials used, uncertain precision, and time consumption during the manufacturing processes. In this study, a new device called the multi-curve buckling restrained brace (MC-BRB) is proposed to overcome these disadvantages. The new device consists of a core plate with multiple neck portions assembled to form multiple energy dissipation segments, and the enlarged segment, lateral support elements and constraining elements to prevent the BRB from buckling. The enlarged segment located in the middle of the core plate can be welded to the lateral support and constraining elements to increase buckling resistance and to prevent them from sliding during earthquakes. Component tests and a series of shaking table tests on a full-scale steel structure equipped with MC-BRBs were carried out to investigate the behavior and capability of this new BRB design for seismic mitigation. The experimental results illustrate that the MC-BRB possesses a stable mechanical behavior under cyclic loadings and provides good protection to structures during earthquakes. Also, a mathematical model has been developed to simulate the mechanical characteristics of BRBs. 展开更多
关键词 buckling restrained brace energy absorption passive control earthquake energy plasticity model structural control multi-curve BRB
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Ductility demands on buckling-restrained braced frames under earthquake loading 被引量:11
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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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Machine Learning-Based Seismic Fragility Analysis of Large-Scale Steel Buckling Restrained Brace Frames 被引量:2
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作者 Baoyin Sun Yantai Zhang Caigui Huang 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第11期755-776,共22页
Steel frames equipped with buckling restrained braces(BRBs)have been increasingly applied in earthquake-prone areas given their excellent capacity for resisting lateral forces.Therefore,special attention has been paid... Steel frames equipped with buckling restrained braces(BRBs)have been increasingly applied in earthquake-prone areas given their excellent capacity for resisting lateral forces.Therefore,special attention has been paid to the seismic risk assessment(SRA)of such structures,e.g.,seismic fragility analysis.Conventional approaches,e.g.,nonlinear finite element simulation(NFES),are computationally inefficient for SRA analysis particularly for large-scale steel BRB frame structures.In this study,amachine learning(ML)-based seismic fragility analysis framework is established to effectively assess the risk to structures under seismic loading conditions.An optimal artificial neural network model can be trained using calculated damage and intensity measures,a technique which will be used to compute the fragility curves of a steel BRB frame instead of employing NFES.Numerical results show that a highly efficient instantaneous failure probability assessment can be made with the proposed framework for realistic large-scale building structures. 展开更多
关键词 Machine learning Monte Carlo simulation regression method fragility analysis buckling restrained braces
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Assessment of buckling-restrained braced frame reliability using an experimental limit-state model and stochastic dynamic analysis 被引量:1
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作者 Blake M.Andrews Junho Song Larry A.Fahnestock 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2009年第3期373-385,共13页
Buckling-restrained braces (BRBs) have recently become popular in the United States for use as primary members of seismic lateral-force-resisting systems. A BRB is a steel brace that does not buckle in compression b... Buckling-restrained braces (BRBs) have recently become popular in the United States for use as primary members of seismic lateral-force-resisting systems. A BRB is a steel brace that does not buckle in compression but instead yields in both tension and compression. Although design guidelines for BRB applications have been developed, systematic procedures for assessing performance and quantifying reliability are still needed. This paper presents an analytical framework for assessing buckling-restrained braced frame (BRBF) reliability when subjected to seismic loads. This framework efficiently quantifies the risk of BRB failure due to low-cycle fatigue fracture of the BRB core. The procedure includes a series of components that: (1) quantify BRB demand in terms of BRB core deformation histories generated through stochastic dynamic analyses; (2) quantify the limit-state of a BRB in terms of its remaining cumulative plastic ductility capacity based on an experimental database; and (3) evaluate the probability of BRB failure, given the quantified demand and capacity, through structural reliability analyses. Parametric studies were conducted to investigate the effects of the seismic load, and characteristics of the BRB and BRBF on the probability of brace failure. In addition, fragility curves (i.e., conditional probabilities of brace failure given ground shaking intensity parameters) were created by the proposed framework. While the framework presented in this paper is applied to the assessment of BRBFs, the modular nature of the framework components allows for application to other structural components and systems. 展开更多
关键词 risk and reliability analysis buckling-restrained brace stochastic dynamic analysis first-order reliability method cumulative plastic ductility capacity
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Stability Performance of Buckling-Restrained Brace with Brace Joints
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作者 贾明明 张素梅 吕大刚 《Transactions of Tianjin University》 EI CAS 2010年第2期81-88,共8页
The stability and ductility of four buckling-restrained braces (BRBs) with brace joints were studied. The load-carrying element of BRB was fabricated with steel (Chinese Q235), and a layer of colloidal silica sheet (0... The stability and ductility of four buckling-restrained braces (BRBs) with brace joints were studied. The load-carrying element of BRB was fabricated with steel (Chinese Q235), and a layer of colloidal silica sheet (0.5 mm in thickness) or four layers of plastic film (0.2 mm in thickness) were used as unbonding materials to provide space to prevent the buckling of inner core in higher modes and facilitate its lateral expansion in case of compression. Based on the equation of BRBs with brace joints of different restrained stiffnesses, the buckling load is calculated considering the initial geometric imperfections and residual stress, and the theoretical values agree well with the experiment results. It is concluded that the buckling load and ductility of BRBs are influenced greatly by the restrained stiffness of brace joints. If the restrained stiffness is deficient, the unstrained segment of BRBs with less stiffness will buckle firstly. As a result, the ultimate load of BRBs decreases, and the maximum compression load is reduced to about 65% of the maximum tension load; the stiffness also degenerates, and there is a long decreasing stage on the back-bone curve in compression phase; the ductility decreases, i.e., the ultimate tension ductility and ultimate compression ductility are approximately 15 and 1.3 respectively, and the cumulative plastic ductility is only approximately 200. If the restrained stiffness of joint is large enough, the stability will be improved as follows: the yielding strength and ultimate strength of BRBs are nearly the same, and there is an obvious strain intensification in both tension and compression phases; the ductility of brace also increases obviously, i.e., the ultimate tension ductility and ultimate compression ductility are both approximately 14, and the cumulative plastic ductility reaches 782. 展开更多
关键词 性能稳定 支撑 屈曲 关节
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An Efficient Method for Local Buckling Analysis of Stiffened Panels 被引量:2
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作者 WANG Xinwei YUAN Zhangxian 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2019年第1期17-25,共9页
The local buckling of stiffened panels is one of possible failure modes and concerned by engineers in the preliminary design of lightweight structures. In practice,a simplified model,i.e.,a rectangular plate with elas... The local buckling of stiffened panels is one of possible failure modes and concerned by engineers in the preliminary design of lightweight structures. In practice,a simplified model,i.e.,a rectangular plate with elastically restrained along its unloaded edges,is established and the Ritz method is usually employed for solutions. To use the Ritz method,however,the loaded edges of the plate are usually assumed to be simply supported. An empirical correction factor has to be used to account for clamped loaded edges. Here,a simple and efficient method,called the quadrature element method(QEM),is presented for obtaining accurate buckling behavior of rectangular plates with any combinations of boundary conditions, including the elastically restrained conditions. Different from the conventional high order finite element method(FEM),non-uniformly distributed nodes are used,and thus the method can achieve an exponential rate of convergence. Formulations are worked out in detail. A computer program is developed. Improvement of solution accuracy can be easily achieved by changing the number of element nodes in the computer program. Several numerical examples are given. Results are compared with either existing solutions or finite element data for verifications. It is shown that high solution accuracy is achieved. In addition,the proposed method and developed computer program can allow quick analysis of local buckling of stiffened panels and thus is suitable for optimization routines in the preliminary design stage. 展开更多
关键词 LOCAL buckling QUADRATURE ELEMENT METHOD elastically restrained stiffened PANEL
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火灾下LYP160屈曲约束支撑抗震性能研究
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作者 何文福 李志威 +3 位作者 胡宝琳 胡吴彪 丁振坤 田华 《上海大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第2期318-331,共14页
为研究屈曲约束支撑(buckling-restrained brace,BRB)及其体系在高温工况的抗震性能,对BRB芯材低屈服点LYP160钢材分别进行了常温和高温材料力学性能试验.通过与试验结果比较,建立了BRB热-力耦合精细化有限元分析模型,验证了该模型的准... 为研究屈曲约束支撑(buckling-restrained brace,BRB)及其体系在高温工况的抗震性能,对BRB芯材低屈服点LYP160钢材分别进行了常温和高温材料力学性能试验.通过与试验结果比较,建立了BRB热-力耦合精细化有限元分析模型,验证了该模型的准确性;对火灾下LYP160屈曲约束支撑的温度场、滞回曲线、骨架曲线和耗能能力等性能进行了对比分析;对不同工况(3种火灾工况和常温工况)下8层配置屈曲约束支撑钢框架(BRB structure,BS)和原结构(original structure,OS)分别进行了弹塑性动力时程分析.研究结果表明:3种火灾工况下BS的平均层间位移角较于OS分别降低了30.4%、33.2%和42%;OS柱塑性铰损坏严重,且更多出现在柱上,BS整体损坏程度较OS轻,更为安全可靠. 展开更多
关键词 屈曲约束支撑 低屈服点钢 火灾 有限元 抗震性能
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四川大学博物馆结构设计重难点分析研究
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作者 张蜀泸 姚丽 +1 位作者 张志军 朱思其 《建筑结构》 北大核心 2024年第11期100-106,共7页
四川大学博物馆采用钢框架结构体系,并设置屈曲约束支撑改善结构的抗震性能。介绍了四川大学博物馆的结构设计参数及抗震性能目标。针对结构设计中的重难点,开展了屈曲约束支撑的工作机理分析、框架柱计算长度与穿层柱分析、东侧大悬挑... 四川大学博物馆采用钢框架结构体系,并设置屈曲约束支撑改善结构的抗震性能。介绍了四川大学博物馆的结构设计参数及抗震性能目标。针对结构设计中的重难点,开展了屈曲约束支撑的工作机理分析、框架柱计算长度与穿层柱分析、东侧大悬挑空间的相关分析。利用反应谱分析及时程分析探究了屈曲约束支撑工作机理,分析结果表明,屈曲约束支撑能够有效改善钢结构产生塑性铰的状况,起到保护主体钢框架的作用。针对东侧大悬挑空间的功能要求,设计采用了屋顶桁架结合钢拉杆吊挂东侧大楼梯的结构形式,通过结构防连续倒塌分析、楼板应力分析、楼盖舒适度分析、关键节点有限元分析等确保该部位结构设计安全合理。对整体结构受力机理和薄弱部位进行了研究,提出了重点部位的设计原则和加强措施。 展开更多
关键词 四川大学博物馆 钢框架结构 屈曲约束支撑 性能化设计 空间悬挑 关键节点
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LY160钢屈曲约束支撑框架抗震性能研究
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作者 何文福 杨作栋 +3 位作者 胡宝琳 胡吴彪 丁振坤 田华 《工程抗震与加固改造》 北大核心 2024年第2期33-43,共11页
屈曲约束支撑(BRB)因其性能优越已在工程中广泛应用,目前工程中使用的BRB芯材多为Q235B钢,为研究软钢BRB框架的受力性能,设计了一榀LY160钢BRB框架进行低周反复试验。试验结果表明:LY160钢BRB框架滞回曲线饱满,耗能系数高达1.54,等效黏... 屈曲约束支撑(BRB)因其性能优越已在工程中广泛应用,目前工程中使用的BRB芯材多为Q235B钢,为研究软钢BRB框架的受力性能,设计了一榀LY160钢BRB框架进行低周反复试验。试验结果表明:LY160钢BRB框架滞回曲线饱满,耗能系数高达1.54,等效黏滞阻尼达到了0.255。为了进一步研究LY160钢BRB框架结构体系抗震性能,分别运用ABAQUS与PERFORM-3D对框架试验进行模拟,并将两个模拟结果与试验结果进行对比,分析了两个软件模拟计算的优缺点,验证了数值模拟的准确性。在此基础上,采用PERFORM-3D建立6层BRB框架结构(BRBS)模型并与无控框架结构(UCS)模型以及普通支撑框架结构(NBS)模型进行对比,BRBS的层间位移角、层剪力最高可分别降低34.47%、31.29%,远超NBS的19.39%和17.31%,且BRBS的塑性耗能几乎全为BRB提供,很好地保护了主体结构,具有较为稳定、良好的抗震性能。 展开更多
关键词 屈曲约束支撑 低周反复加载试验 有限元分析 抗震性能 结构响应
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模块化防屈曲钢板墙抗震性能
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作者 金华建 孙飞飞 +4 位作者 李国强 李可军 常明媛 陈明玲 陈韬 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期25-35,共11页
考虑经济性和便利性,提出了模块化防屈曲钢板墙及其常用模数,然后基于已有的防屈曲钢板墙的简化计算模型,推导了在不同墙数量情况下,模块化防屈曲钢板墙充分发挥抗震性能时,周边梁的承载力和刚度需求,并提出了周边梁的设计方法.进而,对... 考虑经济性和便利性,提出了模块化防屈曲钢板墙及其常用模数,然后基于已有的防屈曲钢板墙的简化计算模型,推导了在不同墙数量情况下,模块化防屈曲钢板墙充分发挥抗震性能时,周边梁的承载力和刚度需求,并提出了周边梁的设计方法.进而,对模块化防屈曲钢板墙和整体墙进行了对比验证试验及其有限元模拟分析.研究结果表明:模块化防屈曲钢板墙能够达到与整体钢板墙相同的抗震性能,且周边梁未发生明显转动和破坏,说明所提出的周边梁设计方法是合理的;在层间位移角为1/50时,防屈曲钢板墙上下周边梁均未进入塑性,且承载力和初始刚度等的有限元值与试验值误差小于6%,从而进一步验证了其抗震性能. 展开更多
关键词 模块化防屈曲钢板墙 周边梁需求 设计方法 试验验证 有限元分析
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新型GFRP-钢屈曲约束支撑设计与受力性能分析
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作者 熊仲明 郑坤 +2 位作者 陈帜 谯鸿程 阿鑫 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期156-166,共11页
为发展轻质、耐腐蚀的屈曲约束支撑,以玻璃纤维(GFRP)拉挤型材和缠绕工艺构造支撑约束构件,H型钢为内芯,提出一种新型GFRP-钢屈曲约束支撑.通过理论分析与数值模拟,探究了支撑内芯的屈曲模态发展规律;结合GFRP的各向异性和层合板结构特... 为发展轻质、耐腐蚀的屈曲约束支撑,以玻璃纤维(GFRP)拉挤型材和缠绕工艺构造支撑约束构件,H型钢为内芯,提出一种新型GFRP-钢屈曲约束支撑.通过理论分析与数值模拟,探究了支撑内芯的屈曲模态发展规律;结合GFRP的各向异性和层合板结构特性,建立了GFRP约束构件的设计参数计算公式;分析了支撑间厚比、翼缘和腹板宽厚比及纤维角度对GFRP约束构件与内芯相互作用特征的影响规律,并给出了合理取值;通过算例分析,验证了该设计方法的可靠性.结果表明:H型钢内芯依次发生翼缘局部屈曲、绕弱轴整体屈曲、腹板局部屈曲和绕强轴整体屈曲,且整体屈曲模态较低,而局部屈曲模态较高;间厚比和宽厚比均会影响内芯的屈曲模态发展,进而改变约束构件的受力状态,间厚比宜为0.125 0~0.50,宽厚比宜小于6.29;GFRP约束构件主应力方向接近45°,为充分发挥纤维纵向承载能力,纤维宜按45°相互垂直交叉布置. 展开更多
关键词 玻璃纤维 屈曲约束支撑 受力性能 设计方法
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型钢组合加固震损RC框架抗震性能试验研究
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作者 褚云朋 龚寅东 +2 位作者 梁锋 蓝迪 易港鑫 《建筑结构》 北大核心 2024年第11期124-132,118,共10页
震损RC框架需在震后得到快速修复,考虑采用加强局部构造及提高整体结构抗震能力的方法,以恢复甚至提高震损框架的抗震能力。结合框架在地震作用下的受力特性及破坏模式,先对柱采取外包角钢与缀条的局部加固,后对整体框架分别采取薄壁钢... 震损RC框架需在震后得到快速修复,考虑采用加强局部构造及提高整体结构抗震能力的方法,以恢复甚至提高震损框架的抗震能力。结合框架在地震作用下的受力特性及破坏模式,先对柱采取外包角钢与缀条的局部加固,后对整体框架分别采取薄壁钢板剪力墙、斜支撑、V形屈曲约束支撑方式进行加固,并对加固后试件进行低周往复加载试验。结果表明:组合加固后试件抗震性能改善明显,将原框架的“强梁弱柱”转为符合抗震要求的“强节点弱构件,强柱弱梁”破坏。破坏时支撑及薄壁钢板先破坏,能有效避免主体框架过早破坏。试件加固后承载能力、初始刚度、延性及累积耗能均比未加固试件提高显著,且承载力及刚度退化均较缓慢,最后破坏为累积损伤所致。采用V形屈曲约束支撑加固的试件由于其具有多重耗能能力,其抗震性能及延性均好于其他两种组合加固方式的试件,综合考虑试件加固后的抗震性能及破坏模式,建议选用此种方法加固。 展开更多
关键词 震损RC框架 组合加固 V形屈曲约束支撑 抗震性能 破坏模式
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防屈曲耗能支撑与框架节点的连接设计
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作者 张磊 王婷 《粉煤灰综合利用》 CAS 2024年第3期120-124,共5页
防屈曲耗能支撑作为一种新型的消能减震元件,已被广泛、成功地应用于既有框架结构的抗震加固中。为使结构在地震作用下表现出良好的抗震效果,需保证防屈曲钢支撑与框架具备优良的协同工作性能,因此支撑与框架之间的连接性能尤为重要。... 防屈曲耗能支撑作为一种新型的消能减震元件,已被广泛、成功地应用于既有框架结构的抗震加固中。为使结构在地震作用下表现出良好的抗震效果,需保证防屈曲钢支撑与框架具备优良的协同工作性能,因此支撑与框架之间的连接性能尤为重要。防屈曲钢支撑与框架节点之间的连接方法有焊缝连接、螺栓连接以及销轴连接。通过对节点板-框架连接处和节点板-支撑连接处进行受力分析,破坏形态分析,完善了加支撑框架节点处的计算公式。 展开更多
关键词 防屈曲耗能支撑 框架结构 协同工作 连接性能 连接方法
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两边连接木盖板屈曲约束钢板剪力墙抗侧力性能试验研究
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作者 李奉阁 杨东霖 赵科 《建筑结构》 北大核心 2024年第10期53-58,共6页
从环保角度提出一种钢木组合形式的两边连接防屈曲钢板剪力墙。基于已有的研究成果,设计两个试件,一个是没有木盖板约束的钢板剪力墙,另一个是覆盖木板作为钢板面外屈曲约束的钢板剪力墙。对试件采用位移控制加载方式进行拟静力试验,得... 从环保角度提出一种钢木组合形式的两边连接防屈曲钢板剪力墙。基于已有的研究成果,设计两个试件,一个是没有木盖板约束的钢板剪力墙,另一个是覆盖木板作为钢板面外屈曲约束的钢板剪力墙。对试件采用位移控制加载方式进行拟静力试验,得到试件的滞回曲线。根据试验结果,分析了试件的骨架曲线、刚度退化和耗能能力。试验结果表明,木盖板抑制钢板屈曲效果较好,能够有效减小鼓曲声音;与无木盖板试件相比,有木盖板试件具有更高的承载力和更强的耗能能力。在试件破坏后,对试件进行拆卸,发现钢板腹部木盖板覆盖区域能够保持平整,拆卸后的木盖板在加载后也能保持完整。采用软件ABAQUS进行有限元分析,模拟结果和试验结果吻合,验证了模型的可行性。 展开更多
关键词 两边连接 钢木组合结构 抗侧力性能 试验研究 防屈曲钢板剪力墙
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Experimental study of the pinned double rectangular tube assembled buckling-restrained brace 被引量:1
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作者 Zi-qin JIANG Yan-lin GUO +2 位作者 Ai-lin ZHANG Chao DOU Cai-xia ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2017年第1期20-32,共13页
目的:通过双矩管装配式防屈曲支撑的滞回试验研究,探讨防屈曲支撑可能存在的破坏模式及各设计参数对支撑耗能性能的影响,验证支撑端部构造细节的合理性,提出支撑设计建议。创新点:1.试验研究铰接双矩管装配式防屈曲支撑的滞回性能;2.获... 目的:通过双矩管装配式防屈曲支撑的滞回试验研究,探讨防屈曲支撑可能存在的破坏模式及各设计参数对支撑耗能性能的影响,验证支撑端部构造细节的合理性,提出支撑设计建议。创新点:1.试验研究铰接双矩管装配式防屈曲支撑的滞回性能;2.获得4种支撑破坏模式。方法:通过对7根铰接双矩管装配式防屈曲支撑的滞回性能试验,研究支撑外围盖板厚度、内核加强翼板高度和外围槽钢翼缘高度等参数对防屈曲支撑破坏机理及耗能性能的影响。结论:1.外围盖板厚度太薄,支撑易发生端部折曲破坏;2.端部转动受限制的支撑,其滞回性能优于纯铰接防屈曲支撑,但支撑连接节点处的附加弯矩不容忽视;3.支撑均表现出优良的屈曲耗能性能,验证了试验试件端部构造细节的合理性。 展开更多
关键词 双矩管装配式防屈曲支撑 端部构造 滞回性能 破坏模式 高强螺栓
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可修复钢制屈曲约束支撑力学性能试验与数值模拟研究
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作者 熊琛 吴迪晟 +2 位作者 管民生 刘尤森 杜宏彪 《工程力学》 EI CSCD 北大核心 2024年第6期145-153,共9页
提出了一种可修复钢制屈曲约束支撑(RBRB),该支撑可通过核心板的局部替换实现支撑修复。RBRB各部件采用螺栓连接,无须拆除屈曲约束盖板即可实现核心板修复替换,修复过程简单。设计了两种不同核心板宽度的RBRB试件,并开展低周往复加载试... 提出了一种可修复钢制屈曲约束支撑(RBRB),该支撑可通过核心板的局部替换实现支撑修复。RBRB各部件采用螺栓连接,无须拆除屈曲约束盖板即可实现核心板修复替换,修复过程简单。设计了两种不同核心板宽度的RBRB试件,并开展低周往复加载试验,讨论了其滞回性能、失效模式以及累计塑性变形能力。试验结果表明RBRB滞回曲线较为饱满,具有稳定的滞回性能与良好的累计塑性变形能力。RBRB试件在核心板修复后滞回性能与修复替换前保持一致,表明其可修复性较好。对试件开展了数值模拟研究,并与试验结果进行对比,结果显示数值模拟的破坏形式及滞回曲线与试验结果吻合良好。 展开更多
关键词 屈曲约束支撑 可修复 拟静力试验 滞回性能 有限元分析
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设置多级屈服耗能BRB的桥梁排架墩等能量设计方法
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作者 秦洪果 裴银海 +2 位作者 范向鑫 李萍 石岩 《工程科学与技术》 EI CAS CSCD 北大核心 2024年第2期246-256,共11页
传统防屈曲支撑(BRB)被广泛用于桥梁排架墩的减震控制,但其屈服后刚度较低和变形能力较小,难以有效控制强震下的峰值位移和残余位移。为此,将传统单一材料组成的BRB核心变形段替换为两种具有不同屈服点的材料,使其整体力学特性呈分级屈... 传统防屈曲支撑(BRB)被广泛用于桥梁排架墩的减震控制,但其屈服后刚度较低和变形能力较小,难以有效控制强震下的峰值位移和残余位移。为此,将传统单一材料组成的BRB核心变形段替换为两种具有不同屈服点的材料,使其整体力学特性呈分级屈服的多线性,形成多级屈服耗能的防屈曲支撑(MSBRB)。将MSBRB作为保险丝构件应用于排架墩以提升其抗震性能,采用等能量的设计方法,以设置MSBRB排架墩体系的能力曲线为设计目标,考虑体系在逐渐增强的地震动荷载作用下的塑性发展机制和能力曲线特征,在中国公路抗震设计规范基础上发展了三阶段的抗震设计流程。最后,结合一排架墩设计案例并通过非线性时程分析证明了所提出设计方法的可行性和准确性。结果表明:设计方法可以较好地预测不同地震水平下MSBRB排架墩体系的性能状态,设计值与模拟值最大误差不超过6%,能达到不同地震水平的设计目标;设置MSBRB能显著降低排架墩的墩顶位移,E2地震作用水平下可使排架墩保持弹性状态,在更强的地震水平下也可有效降低排架墩的损伤,说明MSBRB可更为高效地提升排架墩抗震性能,实现排架墩的损伤控制。 展开更多
关键词 排架墩 基于等能量的设计方法 结构保险丝 多级防屈曲支撑 能量修正系数
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首钢冬奥广场N3-2转运站抗震加固设计
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作者 张主温 李洪光 +3 位作者 陈罡 邓尤贵 李京晶 李慧 《建筑结构》 北大核心 2024年第14期140-146,共7页
首钢冬奥广场N3-2转运站拟改造为办公性质的民用建筑,并要求保留原有工业风貌。根据检测鉴定报告结果,既有构筑物综合安全性等级为C_(eu)级,在后续使用年限内综合抗震能力不满足要求,必须采取加固措施。本工程采用屈曲约束支撑既解决了... 首钢冬奥广场N3-2转运站拟改造为办公性质的民用建筑,并要求保留原有工业风貌。根据检测鉴定报告结果,既有构筑物综合安全性等级为C_(eu)级,在后续使用年限内综合抗震能力不满足要求,必须采取加固措施。本工程采用屈曲约束支撑既解决了改造后建筑高度超限的问题;同时提高结构的阻尼比,减小了地震作用,一定程度上降低了结构的加固量,提高工程经济效益。框架柱采用外包型钢法加固,既解决了柱轴压比超限的问题,也提高了柱承载力。通过以上措施,将工业构筑物改造为民用建筑,同时又实现了保留原有工业风貌,对加固改造工程有一定的借鉴意义。 展开更多
关键词 首钢冬奥广场 加固改造 消能减震 屈曲约束支撑
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广州南沙国际金融论坛永久会址主体结构设计
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作者 朱亮 刘冰 +1 位作者 程睿 黄玮嘉 《建筑结构》 北大核心 2024年第13期16-22,42,共8页
广州南沙国际金融论坛永久会址属于大型复杂会议类建筑,具有大底盘双塔、钢屋盖连体、大开洞、竖向质心偏移、大跨结构等多项不规则项。介绍了结构重力体系和抗侧体系的选型思路,主体结构选用混凝土框架+屈曲约束支撑体系,外表皮采用空... 广州南沙国际金融论坛永久会址属于大型复杂会议类建筑,具有大底盘双塔、钢屋盖连体、大开洞、竖向质心偏移、大跨结构等多项不规则项。介绍了结构重力体系和抗侧体系的选型思路,主体结构选用混凝土框架+屈曲约束支撑体系,外表皮采用空间钢结构。重点分析了单塔与整体结构的差异以及钢屋盖对下部双塔的影响。通过弹塑性分析,对大震作用下各个时程点的损伤水平进行评估,对大开洞的楼板进行了地震及温度作用下的楼板应力分析;对大跨桁架进行了抗连续倒塌分析。结果表明结构可满足大震不倒的要求,支撑承载力能充分发挥,大底盘结构具有良好的基座支撑特性。 展开更多
关键词 广州南沙国际金融论坛永久会址 大底盘双塔 钢屋盖连体 混凝土框架+屈曲约束支撑体系
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碟簧-钢绞线组合自复位防屈曲支撑滞回性能
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作者 鲁军凯 戴首昆 +4 位作者 许国山 李文鹏 李金平 李毅飞 许兴哲 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第7期83-94,共12页
为解决传统自复位防屈曲支撑变形能力不足的问题,提出一种碟簧-钢绞线组合自复位防屈曲支撑(Disc Spring-Steel Tendon Self-centering Buckling-restrained Brace,DT-SCB).DT-SCB采用串联的钢绞线及碟簧组成的复位系统提供复位能力,通... 为解决传统自复位防屈曲支撑变形能力不足的问题,提出一种碟簧-钢绞线组合自复位防屈曲支撑(Disc Spring-Steel Tendon Self-centering Buckling-restrained Brace,DT-SCB).DT-SCB采用串联的钢绞线及碟簧组成的复位系统提供复位能力,通过两个并联的一字型内芯耗散地震能量.介绍了DT-SCB构造、各阶段工作机理及恢复力模型.建立有限元模型,研究复位比率αsc、钢绞线与碟簧组刚度比K1、复位元件与耗能系统刚度比K2等参数对支撑滞回性能、自复位效果及耗能能力的影响.研究结果表明:提出的DT-SCB恢复力模型与模拟结果吻合较好,所有DT-SCB支撑在最大加载位移(2.5%轴向应变)内未发生明显破坏,支撑滞回曲线呈旗帜型特征,且具有稳定的耗能能力.相比于传统基于钢绞线的自复位防屈曲支撑,DT-SCB具有更强的变形能力.DT-SCB最大残余变形随复位比率αsc提高显著减小,而刚度比K1的增加会削弱复位比率对支撑残余变形的控制效果.钢绞线与碟簧组刚度比过大(K1≥2.0)会导致碟簧组提前被压平,进而降低支撑的变形能力.DT-SCB耗能能力受刚度比K2影响较大,其等效黏滞阻尼比随刚度比K2的增大而降低.罕遇地震下支撑-框架结构非线性时程分析结果表明,DT-SCB可以有效减少结构的最大层间位移角及残余层间位移角,提高结构抗震性能. 展开更多
关键词 自复位防屈曲支撑 碟簧 钢绞线 数值模拟 滞回性能
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