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Nonlinear Behavior of Reinforced Concrete Slit Shear Walls under Seismic Actions *
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作者 戴航 陈忠范 +1 位作者 关国雄 张佑启 《Journal of Southeast University(English Edition)》 EI CAS 1998年第1期86-92,共7页
A reinforced concrete slit shear wall is a new breed of earthquake resistant structure recently proposed by the authors. In this paper, the seismic responses of the slit shear walls under the shake of earthquake exci... A reinforced concrete slit shear wall is a new breed of earthquake resistant structure recently proposed by the authors. In this paper, the seismic responses of the slit shear walls under the shake of earthquake excitation have been dealt with. Based on a simplified structural model, which is shown to have a sufficient accuracy for the real slit shear wall structure, the analysis focuses on the influence of nonlinear behavior of the connecting beams between the slits on the dynamic performance of the whole slit shear wall structure. It has been found that the yielding of connecting beams in a slit shear wall can provide significant improvement in reducing the structural responses, and by choosing an appropriate strength value for the connecting beams, it is possible to optimize the seismic response of the slit shear wall. 展开更多
关键词 seismic response slit shear wall reinforced concrete connecting beam
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Post-fire cyclic behavior of reinforced concrete shear walls 被引量:5
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作者 刘桂荣 宋玉普 曲福来 《Journal of Central South University》 SCIE EI CAS 2010年第5期1103-1108,共6页
The effects of fire exposure,reinforcement ratio and the presence of axial load under fire on the seismic behavior of reinforced concrete(RC) shear walls were investigated.Five RC shear walls were tested under low cyc... The effects of fire exposure,reinforcement ratio and the presence of axial load under fire on the seismic behavior of reinforced concrete(RC) shear walls were investigated.Five RC shear walls were tested under low cyclic loading.Prior to the cyclic test,three specimens were exposed to fire and two of them were also subjected to a constant axial load.Test results indicate that the ultimate load of the specimen with lower reinforcement ratio is reduced by 15.8%after exposure to elevated temperatures.While the reductions in the energy dissipation and initial stiffness are 59.2%and 51.8%,respectively,which are much higher than those in the ultimate load.However,this deterioration can be slowed down by properly increasing reinforcement due to the strength and stiffness recovery of steel bars after cooling.In addition,the combined action of elevated temperatures and axial load results in more energy dissipation than the action of fire exposure alone. 展开更多
关键词 shear wall reinforced concrete post-fire seismic behavior low cyclic loading
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Nonlinear Finite Element Analysis of Mechanical Performance of Reinforced Concrete Short-Limb Shear Wall 被引量:1
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作者 XUELi-min 《Wuhan University Journal of Natural Sciences》 EI CAS 2005年第3期562-565,共4页
On the basis of test, nonlinear finite element analysis of reinforcedconcrete (R. C) short-limb shear walls under monotonic horizontal load are carried out by ANSYSprogram in order to understand the evolution of crack... On the basis of test, nonlinear finite element analysis of reinforcedconcrete (R. C) short-limb shear walls under monotonic horizontal load are carried out by ANSYSprogram in order to understand the evolution of cracking, deformation and failure course of thespecimens. At the same time, the results of numerical calculation are compared with the results oftest. The results indicate that, under monotonic horizontal load the failures of the specimens withflange wall and without flange wall all occur at the intersections of lintel bottom and limb ofwall, the failures also occur at the bottom of limb; the load-displacement curve of wall withoutflange is steeper than that of wall with flange, and the ductility is worse than that of wall withflange; the results, such as cracking, deformation, yield load and so on of finite element analysisagree well with the results of test. These results provide theoretical basis of study andapplication of R. C short-limb shear wall. 展开更多
关键词 reinforced concrete short-limb shear wall mechanical performance finiteelement method NONLINEAR
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Performance index limits of high reinforced concrete shear wall components 被引量:1
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作者 劳晓春 韩小雷 《Journal of Central South University》 SCIE EI CAS 2011年第4期1248-1255,共8页
The deformation performance index limits of high reinforced concrete (RC) shear wall components based on Chinese codes were discussed by the nonlinear finite element method. Two typical RC shear wall specimens in th... The deformation performance index limits of high reinforced concrete (RC) shear wall components based on Chinese codes were discussed by the nonlinear finite element method. Two typical RC shear wall specimens in the previous work were first used to verify the correctness of the nonlinear finite element method. Then, the nonlinear finite element method was applied to study the deformability of a set of high RC shear wall components designed according to current Chinese codes and with shear span ratio λ≥2.0. Parametric studies were made on the influence of shear span ratio, axial compression ratio, ratio of flexural capacity to shear capacity and main flexural reinforcement ratio of confined botmdary members. Finally, the deformation performance index and its limits of high RC shear wall components under severe earthquakes were proposed by the finite element model results, which offers a reference in determining the performance status of RC shear wall components designed based on Chinese codes. 展开更多
关键词 reinforced concrete shear wall components performance index limits nonlinear finite element method Chinese codes
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Experimental studies on behavior of fully grouted reinforced-concrete masonry shear walls 被引量:3
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作者 Zhao Yan Wang Fenglai 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2015年第4期743-757,共15页
An experimental study is conducted on fully grouted reinforced masonry shear walls (RMSWs) made from concrete blocks with a new configuration. Ten RMSWs are tested under reversed cyclic lateral load to investigate the... An experimental study is conducted on fully grouted reinforced masonry shear walls (RMSWs) made from concrete blocks with a new configuration. Ten RMSWs are tested under reversed cyclic lateral load to investigate the influence of different reinforcements and applied axial stress values on their seismic behavior. The results show that flexural strength increases with the applied axial stress, and shear strength dominated by diagonal cracking increases with both the amount of horizontal reinforcement and applied axial stress. Yield displacement, ductility, and energy dissipation capability can be improved substantially by increasing the amount of horizontal reinforcement. The critical parameters for the walls are derived from the experiment: displacement ductility values corresponding to 15% strength degradation of the walls reach up to 2.6 and 4.5 in the shear and flexure failure modes, respectively; stiffness values of flexure- and shear-dominated walls rapidly degrade to 17%–19% and 48%–57% of initial stiffness at 0.50 D<sub>max</sub> (displacement at peak load). The experiment suggests that RMSWs could be assigned a higher damping ratio (~14%) for collapse prevention design and a lower damping value (~7%) for a fully operational limit state or serviceability limit state. 展开更多
关键词 reinforced-concrete masonry shear wall shear strength DUCTILITY stiffness degradation energy dissipation equivalent viscous damping ratio
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Analysis on Construction Quality Control Technology of Reinforced Concrete Shear Wall Structure
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作者 Ting Zhou 《Frontiers Research of Architecture and Engineering》 2018年第4期117-121,共5页
In the process of continuous development of construction enterprises, new requirements have been put forward for construction projects. By strengthening the construction quality control of reinforced concrete shear wa... In the process of continuous development of construction enterprises, new requirements have been put forward for construction projects. By strengthening the construction quality control of reinforced concrete shear wall structure, the construction level of reinforced concrete can be continuously improved, the construction quality can be guaranteed, and the construction project can be successfully completed, which is worthy of extensive application and promotion in construction enterprises, thus providing a broader development space for construction enterprises. 展开更多
关键词 reinforced concrete shear wall structure Construction QUALITY Control technology
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Progressive collapse resisting capacity of reinforced concrete load bearing wall structures 被引量:1
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作者 Alireza Rahai Alireza Shahin Farzad Hatami 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2730-2738,共9页
Reinforced concrete(RC) load bearing wall is widely used in high-rise and mid-rise buildings. Due to the number of walls in plan and reduction in lateral force portion, this system is not only stronger against earthqu... Reinforced concrete(RC) load bearing wall is widely used in high-rise and mid-rise buildings. Due to the number of walls in plan and reduction in lateral force portion, this system is not only stronger against earthquakes, but also more economical. The effect of progressive collapse caused by removal of load bearing elements, in various positions in plan and stories of the RC load bearing wall system was evaluated by nonlinear dynamic and static analyses. For this purpose, three-dimensional model of 10-story structure was selected. The analysis results indicated stability, strength and stiffness of the RC load-bearing wall system against progressive collapse. It was observed that the most critical condition for removal of load bearing walls was the instantaneous removal of the surrounding walls located at the corners of the building where the sections of the load bearing elements were changed. In this case, the maximum vertical displacement was limited to 6.3 mm and the structure failed after applying the load of 10 times the axial load bored by removed elements. Comparison between the results of the nonlinear dynamic and static analyses demonstrated that the "load factor" parameter was a reasonable criterion to evaluate the progressive collapse potential of the structure. 展开更多
关键词 reinforced concrete(rc) load bearing wall structure progressive collapse fiber sections nonlinear analysis load factor method
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High-Rise Residential Reinforced Concrete Building Optimisation
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作者 Haibei Xiong Miguel Angel Hidalgo Calvo 《Open Journal of Civil Engineering》 2015年第4期437-450,共14页
In the last few decades structure optimisation has become a main task in a civil engineering project. As a matter of fact, due to the complexity and particularity of every structure, the great amount of variables and ... In the last few decades structure optimisation has become a main task in a civil engineering project. As a matter of fact, due to the complexity and particularity of every structure, the great amount of variables and design criteria to considerate and many other factors, a general optimisation’s method is not simple to formulate. As a result, this paper focuses on how to provide a successful optimisation method for a particular building type, high-rise reinforced concrete buildings. The optimization method is based on decomposition of the main structure into substructures: floor system, vertical load resisting system, lateral load resisting system and foundation system;then each of the subsystems using the design criteria established at the building codes is improved. Due to the effect of the superstructure optimisation on the foundation system, vertical and lateral load resisting system is the last to be considered after the improvement of floor. Finally, as a case example, using the method explained in the paper, a 30-story-high high-rise residential building complex is analysed and optimised, achieving good results in terms of structural behaviour and diminishing the overall cost of the structure. 展开更多
关键词 STRUCTURE Optimisation HIGH-RISE RESIDENTIAL reinforced concrete Buildings shear-wall STRUCTURE Deep PILES Post GROUTING
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Experimental and analytical study on seismic behavior of steel-concrete multienergy dissipation composite shear walls 被引量:5
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作者 Dong Hongying Cao Wanlin +2 位作者 Wu Haipeng Qiao Qiyun Yu Chuanpeng 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2015年第1期125-139,共15页
In this paper, a steel-concrete multi-energy dissipation composite shear wall, comprised of steel-reinforced concrete (SRC) columns, steel plate (SP) deep beams, a concrete wall and energy dissipation strips, is p... In this paper, a steel-concrete multi-energy dissipation composite shear wall, comprised of steel-reinforced concrete (SRC) columns, steel plate (SP) deep beams, a concrete wall and energy dissipation strips, is proposed. In order to study the multi-energy dissipation behavior and restorability after an earthquake, two stages of low cyclic loading tests were carded out on ten test specimens. In the first stage, test on five specimens with different number of SP deep beams was carried out, and the test lasted until the displacement drift reached 2%. In the second stage, thin SPs were welded to both sides of the five specimens tested in the first stage, and the same test was carried out on the repaired specimens (designated as new specimens). The load-bearing capacity, stiffness, ductility, hysteretic behavior and failure characteristics were analyzed for both stages and the results are discussed herein. Extrapolating from these results, strength calculation models and formulas are proposed herein and simulations using ABAQUS carried out, they show good agreement with the test results. The study demonstrates that SRC columns, SP deep beams, concrete wall and energy dissipation strips cooperate well and play an important role in energy dissipation. In addition, this study shows that the shear wall has good recoverability after an earthquake, and that the welding of thin SP's to repair a deformed wall is a practicable technique. 展开更多
关键词 steel reinforced concrete steel plate deep beam multi energy dissipation composite shear wall seismic behavior
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纤维织物增强高延性混凝土加固RC短柱抗剪性能试验研究 被引量:1
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作者 邓明科 雷恒 +2 位作者 张雨顺 郭莉英 张伟 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期79-89,共11页
为研究纤维织物增强高延性混凝土(TR-HDC)加固钢筋混凝土短柱的抗剪性能,设计了6根钢筋混凝土柱,包括2个对比柱和4个TR-HDC加固柱.通过低周反复荷载试验,对比分析剪跨比、纤维织物层数对试件破坏形态、变形、承载力和耗能能力的影响.结... 为研究纤维织物增强高延性混凝土(TR-HDC)加固钢筋混凝土短柱的抗剪性能,设计了6根钢筋混凝土柱,包括2个对比柱和4个TR-HDC加固柱.通过低周反复荷载试验,对比分析剪跨比、纤维织物层数对试件破坏形态、变形、承载力和耗能能力的影响.结果表明:采用TR-HDC加固钢筋混凝土短柱,可显著提高其抗剪承载力;TR-HDC与原混凝土柱协同工作性能良好,加固后的混凝土柱的变形、承载力和耗能能力明显提高;增加纤维织物的层数对钢筋混凝土短柱的抗剪承载力提高幅度较小,但可大幅增强柱的耗能和变形能力;剪跨比较大时,更有利于发挥TR-HDC加固材料的力学性能.基于桁架-拱模型,提出TR-HDC加固钢筋混凝土短柱的抗剪承载力计算方法,计算结果较准确. 展开更多
关键词 低周反复荷载 纤维织物增强高延性混凝土 加固 rc短柱 抗剪承载力
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拉-压变轴力下小剪跨比RC剪力墙受剪试验研究
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作者 黄健康 程小卫 +1 位作者 李易 孙亚 《工程力学》 EI CSCD 北大核心 2024年第S01期228-237,共10页
近年来,高层建筑中底部剪力墙因受拉,处于拉-压变轴力和水平荷载耦合受力的问题得到了广泛的关注。为了研究拉-压变轴力下小剪跨比钢筋混凝土(RC)剪力墙的受剪性能,该文完成了3个剪跨比为1.0的RC剪力墙在拉-压变轴力下的往复受剪试验,... 近年来,高层建筑中底部剪力墙因受拉,处于拉-压变轴力和水平荷载耦合受力的问题得到了广泛的关注。为了研究拉-压变轴力下小剪跨比钢筋混凝土(RC)剪力墙的受剪性能,该文完成了3个剪跨比为1.0的RC剪力墙在拉-压变轴力下的往复受剪试验,研究参数为拉-压变轴力变化幅值和加载路径。结果表明:不同加载路径下RC墙均在压剪方向发生剪压破坏,压剪方向极限位移角为1.2%~1.4%;拉-压变轴力变化幅值改变墙体拉剪和压剪承载力,加载路径对墙体的拉剪强度有一定的影响,但对压剪强度影响很小;拉-压变轴力下剪力墙的滞回曲线呈现明显不对称现象,拉-压变轴力的变化幅值对滞回曲线的形状影响较小,但加载路径改变滞回曲线的形状;拉-压变轴力的变化幅值将增加剪力墙拉剪与压剪刚度的差别,在双肢墙结构中可能导致更多的剪力从受拉墙体转移到受压墙体;基于OpenSees建立了可准确模拟拉-压变轴力下RC剪力墙受剪行为的有限元模型。 展开更多
关键词 钢筋混凝土剪力墙 拉-压变轴力 往复受剪试验 破坏模式 承载力
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Performance evaluation of low-rise infilled reinforced concrete frames designed by considering local effects on column shear demand
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作者 Jarun SRECHAI Wongsa WARARUKSAJJA +1 位作者 Sutat LEELATAVIWAT Suchart LIMKATANYU 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2023年第5期686-703,共18页
The interactions between reinforced concrete(RC)frames and infill walls play an important role in the seismic response of frames,particularly for low-rise frames.Infill walls can increase the overall lateral strength ... The interactions between reinforced concrete(RC)frames and infill walls play an important role in the seismic response of frames,particularly for low-rise frames.Infill walls can increase the overall lateral strength and stiffness of the frame owing to their high strength and stiffness.However,local wall-frame interactions can also lead to increased shear demand in the columns owing to the compressive diagonal strut force from the infill wall,which can result in failure or in serious situations,collapse.In this study,the effectiveness of a design strategy to consider the complex infill wall interaction was investigated.The approach was used to design example RC frames with infill walls in locations with different seismicity levels in Thailand.The performance of these frames was assessed using nonlinear static,and dynamic analyses.The performance of the frames and the failure modes were compared with those of frames designed without considering the infill wall or the local interactions.It was found that even though the overall responses of the buildings designed with and without consideration of the local interaction of the infill walls were similar in terms the overall lateral strength,the failure modes were different.The proposed method can eliminate the column shear failure from the building.Finally,the merits and limitations of this approach are discussed and summarized. 展开更多
关键词 reinforced concrete frames infill wall seismic design method shear failure wall-frame interaction
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Effect of Eccentric Shear Stiffness of Walls on Structural Response of RC Frame Buildings
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作者 Muhammad Umair Saleem 《Open Journal of Civil Engineering》 2017年第4期527-538,共12页
Current research study consists of determining the optimum location of the shear wall to get the maximum structural efficiency of a reinforced concrete frame building. It consists of a detailed analysis and design rev... Current research study consists of determining the optimum location of the shear wall to get the maximum structural efficiency of a reinforced concrete frame building. It consists of a detailed analysis and design review of a seven-story reinforced concrete building to understand the effect of shear wall location on the response of reinforced concrete structures when subjected to different earthquake forces. Three trail locations of shear walls are selected and their performance is monitored in terms of structural response under different lateral loads. Required objectives are achieved by obtaining design and construction drawings of an existing reinforced concrete structure and modeling it on Finite Element Method (FEM) based computer software. The structure is redesigned and discussed with four different configurations (one without shear wall and three with shear walls). Main framing components (Beams, Columns and Shear walls) of the superstructure are designed using SAP 2000 V. 19.0 whereas substructure (foundation) of RC building was?designed using SAFE. American Concrete Institute (ACI) design specifications were used to calculate the cracked section stiffness or non-linear geometrical properties of the cracked section. Uniform Building Code (UBC-97) procedures were adopted to calculate the lateral earthquake loading on the structures. Structural response of the building was monitored at each story level for each earthquake force zone described by the UBC-97. The earthquake lateral forces were considered in both X and Y direction of the building. Each configuration of shear wall is carefully analyzed and effect of its location is calibrated by the displacement response of the structure. Eccentricity to the lateral stiffness of the building is imparted by changing the location of shear walls. Results of the study have shown that the location of shear wall significantly affects the lateral response of the structure under earthquake forces. It also motivates to carefully decide the center of lateral stiffness of building prior to deciding the location of shear walls. 展开更多
关键词 reinforced concrete BUILDINGS COMPUTER aided Modelling shear walls Stiff-ness Deformations
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Structural Analysis of a RC Shear Wall by Use of a Truss Model
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作者 Panagis G. Papadopoulos Periklis E. Lamprou 《Open Journal of Civil Engineering》 CAS 2022年第3期320-352,共33页
Purpose of present work is to develop a reliable and simple method for structural analysis of RC Shear Walls. The shear wall is simulated by a truss model as the bar of a truss is the simplest finite element. An itera... Purpose of present work is to develop a reliable and simple method for structural analysis of RC Shear Walls. The shear wall is simulated by a truss model as the bar of a truss is the simplest finite element. An iterative method is used. Initially, there are only concrete bars. Repeated structural analyses are performed. After each structural analysis, every concrete bar exceeding tensile strength is replaced by a steel bar. For every concrete bar exceeding compressive strength, first its section area is increased. If this is not enough, a steel bar is placed at the side of it. For every steel bar exceeding tensile or compressive strength, its section area is increased. After the end of every structural analysis, if all concrete and steel bars fall within tensile and compressive strengths, the output data are written and the analysis is terminated. Otherwise, the structural analysis is repeated. As all the necessary conditions (static, elastic, linearized geometric) are satisfied and the stresses of ALL concrete and steel bars fall within the tensile and compressive strengths, the results are acceptable. Usually, the proposed method exhibits a fast convergence in 4 - 5 repeats of structural analysis of the RC Shear Wall. 展开更多
关键词 reinforced concrete shear wall Structural Analysis Truss Model Iterative Method Computer Program Boundary Columns and Beam Grid of Horizontal and Diagonal reinforcing Steel Bars
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Collapse Patterns and Their Discrimination of Reinforced Concrete Shear Wall Under Combined Stresses of Compression and Shear due to Strong Earthquake 被引量:1
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作者 ZHA Zhixiang LIU Xila XU Bo 《Journal of Shanghai Jiaotong university(Science)》 EI 2020年第4期495-508,共14页
The collapse patterns of reinforced concrete(RC)shear walls under seismic load are proposed.The crack distribution and propagation of shear walls are specifically based on the failure criterions of Mohr-Coulomb with t... The collapse patterns of reinforced concrete(RC)shear walls under seismic load are proposed.The crack distribution and propagation of shear walls are specifically based on the failure criterions of Mohr-Coulomb with tension cutoff.Three zones and five different corresponding failure modes of RC shear walls are determined according to the transfer path of shear stress in shear wall.These failure modes of shear walls under seismic load are verified by many experimental results and can be utilized in collapsing analysis for frame-shear wall structure. 展开更多
关键词 reinforced concrete(rc) shear walls collapsing patterns seismic load
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不同双轴加载路径下T形截面RC剪力墙抗震性能试验研究 被引量:2
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作者 王斌 吴梦臻 +2 位作者 史庆轩 蔡文哲 王朋 《工程力学》 EI CSCD 北大核心 2023年第7期145-157,共13页
为了探究复杂多维地震作用下带翼缘剪力墙的损伤机理和抗震性能,进行了5个T形截面RC剪力墙的水平单、双轴拟静力试验,研究双轴加载对T形墙破坏模式、滞回性能、承载力、延性与耗能能力的影响,考察T形墙在不同双轴加载路径下的受力机理... 为了探究复杂多维地震作用下带翼缘剪力墙的损伤机理和抗震性能,进行了5个T形截面RC剪力墙的水平单、双轴拟静力试验,研究双轴加载对T形墙破坏模式、滞回性能、承载力、延性与耗能能力的影响,考察T形墙在不同双轴加载路径下的受力机理和多维抗震性能。结果表明:T形墙在单、双轴加载下的破坏均发生在墙肢自由端底部,双轴加载加剧了裂缝的开展和混凝土的剥落,且对翼缘的损伤影响更大;T形墙两正交方向的受力行为存在明显的相关性,双轴耦合受力产生的内力重分布和局部附加应力会改变T形墙的局部受力机理和整体性能,表现为一个方向受荷时,其正交方向在位移不变的情况下荷载会产生突变;相较于单轴加载,双轴加载下T形墙各方向承载力平均降低了6.90%,极限变形能力平均降低了11.28%,单个方向破坏时的累积耗能减小,且双轴耦合效应按“十”字形、“8”字形、矩形加载路径的顺序依次增强。鉴于地震动的随机性以及结构响应的多维耦合性会显著改变带翼缘RC剪力墙在实际地震作用下的抗震能力,建议在剪力墙结构抗震设计时合理考虑承载力的折减并适当减小层间位移角限值。 展开更多
关键词 T形截面 rc剪力墙 拟静力试验 双轴加载 耦合作用 加载路径 抗震性能
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弯剪耦合破坏T形截面RC剪力墙抗震性能试验研究
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作者 王斌 张黎鹏 +3 位作者 吴梦臻 蔡文哲 史庆轩 李涵 《振动与冲击》 EI CSCD 北大核心 2023年第24期308-316,共9页
针对T形截面RC(reinforced concrete)剪力墙潜在的翼缘受拉方向受剪控制破坏和翼缘受压方向受弯控制破坏共存的现象,对两个弯剪耦合控制和一个受弯控制T形墙进行了拟静力试验,对比分析了T形墙的裂缝分布形态和破坏机理,考察了剪跨比和... 针对T形截面RC(reinforced concrete)剪力墙潜在的翼缘受拉方向受剪控制破坏和翼缘受压方向受弯控制破坏共存的现象,对两个弯剪耦合控制和一个受弯控制T形墙进行了拟静力试验,对比分析了T形墙的裂缝分布形态和破坏机理,考察了剪跨比和水平钢筋配筋率对T形墙抗震性能的影响。结果表明:弯剪耦合控制T形墙的破坏集中于腹板自由端,且破坏区域沿斜向贯穿整个边缘约束区;减少水平钢筋配筋率会加剧T形墙斜裂缝和竖向错动裂缝的开展,并导致形心轴附近产生“分缝”现象,以此抵消剪切效应增强引起的变形能力降低;减小剪跨比会大幅降低T形墙的延性和耗能能力降低,并导致剪切变形占比增大至50%。各国规范对于T形墙受剪承载力的计算存在明显差异和不足,为实现“强剪弱弯”的抗震设计目标,安全起见应保证T形墙的受剪承载力至少高于受弯承载力15%;虽然弯剪耦合破坏T形墙在翼缘受拉方向的变形能力较差,但仍满足我国抗震规范关于罕遇地震下层间位移角限值的要求。 展开更多
关键词 rc剪力墙 T形截面 拟静力试验 抗震性能 受剪性能 受剪承载力
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Limit Analysis for Reinforced Concrete Rectangular Members Under Bending, Shear and Torsion 被引量:1
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作者 陈溪 刘西拉 《Journal of Shanghai Jiaotong university(Science)》 EI 2014年第2期129-138,共10页
The ultimate strength of reinforced concrete(RC) rectangular members subjected to combined bending,shear and torsion is obtained from the limit analysis proposed in the present paper. Based on a warped failure surface... The ultimate strength of reinforced concrete(RC) rectangular members subjected to combined bending,shear and torsion is obtained from the limit analysis proposed in the present paper. Based on a warped failure surface determined by external loads, and a reasonable assumed stress distribution balancing external loads but not violating the yield condition, the bending-shear-torsion interaction can be derived from equilibrium conditions.According to the definition of lower-bound theorem in limit analysis, the calculated ultimate loads will be carried safely by the structure. The present method is a simple approach to obtain carrying capacities for RC elements under complex external loads. After comparing with the test results, a good agreement has been observed. The present method can be extended to explain the failure mechanism of RC members subjected to axial loads, and it is possible to develop a simple unified theory of RC members for engineering. 展开更多
关键词 reinforced concrete(rc) beam rectangular section limit analysis BENDING shear TORSION
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足尺RC剪力墙倒塌试验和数值模拟研究 被引量:1
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作者 曾德民 马泽昊 +1 位作者 王心宇 杨参天 《地震工程与工程振动》 CSCD 北大核心 2023年第4期97-103,共7页
钢筋混凝土(RC)剪力墙是我国工程结构中的重要抗震抗倒塌构件,其抗倒塌性能是研究结构抗震抗倒塌性能的关键。以一足尺RC剪力墙试件作为研究对象,对其进行了拟静力倒塌试验,基于损伤特征,提出了适用于该类构件的组合建模模拟方法。结果... 钢筋混凝土(RC)剪力墙是我国工程结构中的重要抗震抗倒塌构件,其抗倒塌性能是研究结构抗震抗倒塌性能的关键。以一足尺RC剪力墙试件作为研究对象,对其进行了拟静力倒塌试验,基于损伤特征,提出了适用于该类构件的组合建模模拟方法。结果表明:剪力墙试件的破坏模式为弯曲破坏,当试件位移角达到1/39时,试件底部有5根纵筋和1根箍筋发生断裂,底部混凝土被压溃,试件水平承载力下降至峰值承载力的12.5%,构件发生倒塌;基于组合建模方法,对该试件进行模拟,该方法可以较好地模拟试件的受力特征、变形能力和滞回行为,数值模拟所得的屈服、峰值和极限承载力与试验结果的相对误差不超过2.71%。 展开更多
关键词 钢筋混凝土剪力墙 拟静力试验 抗震性能 倒塌 数值模拟
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考虑黏结滑移与剪切效应的不均匀冻融损伤RC剪力墙数值模型
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作者 荣先亮 卢博辽 +3 位作者 张琦玉 黄炜元 郑山锁 张艺欣 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第9期56-68,共13页
为了合理评估严寒环境下在役钢筋混凝土(RC)剪力墙的抗震性能,采用相对动弹性模量为冻融损伤系数,结合修正Petersen模型构建了不均匀冻融损伤模型;基于经过准确性验证的既有公式建立了完好RC剪力墙剪切恢复力模型,进而通过分析冻融损伤R... 为了合理评估严寒环境下在役钢筋混凝土(RC)剪力墙的抗震性能,采用相对动弹性模量为冻融损伤系数,结合修正Petersen模型构建了不均匀冻融损伤模型;基于经过准确性验证的既有公式建立了完好RC剪力墙剪切恢复力模型,进而通过分析冻融损伤RC剪力墙实测剪应变和剪力受参数影响的变化趋势,采用多参数回归建立了冻融损伤RC剪力墙剪切恢复力模型;基于既有材性实测数据建立了不均匀冻融损伤黏结强度模型,同时结合既有钢筋黏结滑移模型通过理论推导建立了不均匀冻融损伤纵筋滑移模型;结合所建立的不均匀冻融损伤模型、冻融损伤剪切滞回模型、冻融损伤不均匀的黏结强度-滑移模型,提出了冻融损伤剪力墙构件数值模型.最后采用8个不同参数冻融损伤RC剪力墙的拟静力实测数据对本文所提的数值模型的准确性进行了验证.结果表明:本文建立的数值模型可较准确地模拟冻融损伤RC剪力墙低周往复下的力-变形关系,可用于冻融环境下RC剪力墙的抗震性能评估. 展开更多
关键词 rc剪力墙 不均匀冻融损伤模型 剪切恢复力模型 不均匀冻融损伤黏结滑移模型 OPENSEES 钢筋混凝土
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