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Shear resistance performance of steel-concrete-steel composite shear wall 被引量:3
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作者 韦芳芳 查斌 +1 位作者 赵海波 马欣 《Journal of Southeast University(English Edition)》 EI CAS 2012年第1期73-78,共6页
For a deeper understanding of the shear resistance performance of the steel-concrete-steel composite shear wall, the main influence factors such as the thicknesses of the steel plates and the concrete, the strength gr... For a deeper understanding of the shear resistance performance of the steel-concrete-steel composite shear wall, the main influence factors such as the thicknesses of the steel plates and the concrete, the strength grades of the concrete and the span-depth ratios of the composite wall, which have impacts on the shear resistance performance of the composite shear wail, are analyzed by the numerical simulation method. Meanwhile, the simplified calculation formulae of the initial elastic lateral-resisting stiffness and the shear bearing capacity of the composite shear wall are also proposed. The research shows that with the increase in the thicknesses of the steel plates and the concrete and the increase in the strength grades of the concrete, the shear performance of the shear wall improves obviously; the span-depth ratios of the composite wall have a significant effect on the initial elastic lateral- resisting stiffness, but a small effect on the shear bearing capacity. Comparing the results of the simplified calculation formulae with those of the nonlinear finite element method, it is obvious that the presented formulae are reasonable and meet the real force state of the structure. These conclusions can serve as a preliminary design reference for the steel-concrete- steel composite shear wall. 展开更多
关键词 steel-concrete-steel composite shear wall shearresistance performance influence factor calculation formula
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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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Analysis and seismic tests of composite shear walls with CFST columns and steel plate deep beams 被引量:1
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作者 Dong Hongying Cao Wanlin +2 位作者 Wu Haipeng Zhang Jianwei Xu Fangfang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2013年第4期609-624,共16页
A composite shear wall concept based on concrete filled steel tube (CFST) columns and steel plate (SP) deep beams is proposed and examined in this study. The new wall is composed of three different energy dissipat... A composite shear wall concept based on concrete filled steel tube (CFST) columns and steel plate (SP) deep beams is proposed and examined in this study. The new wall is composed of three different energy dissipation elements: CFST columns; SP deep beams; and reinforced concrete (RC) strips. The RC strips are intended to allow the core structural elements - the CFST columns and SP deep beams - to work as a single structure to consume energy. Six specimens of different configurations were tested under cyclic loading. The resulting data are analyzed herein. In addition, numerical simulations of the stress and damage processes for each specimen were carried out, and simulations were completed for a range of location and span-height ratio variations for the SP beams. The simulations show good agreement with the test results. The core structure exhibits a ductile yielding mechanism characteristic of strong column-weak beam structures, hysteretic curves are plump and the composite shear wall exhibits several seismic defense lines. The deformation of the shear wall specimens with encased CFST column and SP deep beam design appears to be closer to that of entire shear walls. Establishing optimal design parameters for the configuration of SP deep beams is pivotal to the best seismic behavior of the wall. The new composite shear wall is therefore suitable for use in the seismic design of building structures. 展开更多
关键词 concrete filled steel tube (CFST) column steel plate (SP) deep beam composite shear wall seismic test calculation and analysis
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Lateral load-carrying capacity analyses of composite shear walls with double steel plates and filled concrete with binding bars 被引量:1
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作者 周德源 刘凌飞 朱立猛 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期2083-2091,共9页
A method is developed to predict the lateral load-carrying capacity of composite shear walls with double steel plates and filled concrete with binding bars(SCBs). Nonlinear finite element models of SCBs were establish... A method is developed to predict the lateral load-carrying capacity of composite shear walls with double steel plates and filled concrete with binding bars(SCBs). Nonlinear finite element models of SCBs were established by using the finite element tool, Abaqus. Tie constraints were used to connect the binding bars and the steel plates. Surface-to-surface contact provided by the Abaqus was used to simulate the interaction between the steel plate and the core concrete. The established models could predict the lateral load-carrying capacity of SCBs with a reasonable degree of accuracy. A calculation method was developed by superposition principle to predict the lateral load-carrying capacity of SCBs for the engineering application. The concrete confined by steel plates and binding bars is under multi-axial compression; therefore, its shear strength was calculated by using the Guo-Wang concrete failure criterion. The shear strength of the steel plates of SCBs was calculated by using the von Mises yielding criterion without considering buckling. Results of the developed method are in good agreement with the testing and finite element results. 展开更多
关键词 composite shear wall double steel plate binding bar lateral load-carrying capacity nonlinear finite element analysis
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Formwork lateral pressure of precast normal-concrete composite shear walls infilled with self-compacting concrete
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作者 YAO Rong YE Yan-hua 《Journal of Chongqing University》 CAS 2018年第2期39-48,共10页
Wall cracking and mold expanding due to concrete vibrations can be effectively solved through the application of precast normal-concrete composite shear walls infilled with self-compacting concrete(SCC). However, the ... Wall cracking and mold expanding due to concrete vibrations can be effectively solved through the application of precast normal-concrete composite shear walls infilled with self-compacting concrete(SCC). However, the high liquidity of SCC will induce a higher lateral pressure. Therefore, it is important to obtain a better understanding of the template lateral pressure. In this work, nine composite shear walls were experimentally investigated, focusing on the effects of two parameters, i.e., the casting rate and the section width of the formwork. The time-varying pressure was monitored during the SCC pouring. It is found that the increase of casting rate from 3.2 m/h to 10.3 m/h resulted in a higher maximum lateral pressure. The higher casting rate led to a longer time required for the lateral pressure to drop to a steady value. There was no correlation between the section width and the rate of decrease in the initial formwork pressure and stable value. Based on the test results, a formula considering the effect of casting speed for the calculation of SCC formwork pressure was established to fill the gap in the current standards and for engineering applications. 展开更多
关键词 FORMWORK LATERAL pressure SELF-COMPACTING concrete(SCC) composite shear wall CASTING rate
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Shear-resistant behavior of light composite shear wall
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作者 李升才 董毓利 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2768-2775,共8页
Shear test results for a composite wall panel in a light composite structure system are compared with test results for shear walls in Japan.The analysis results show that this kind of composite wall panel works very w... Shear test results for a composite wall panel in a light composite structure system are compared with test results for shear walls in Japan.The analysis results show that this kind of composite wall panel works very well,and can be regarded as a solid panel.The composite wall panel with a hidden frame is essential for bringing its effect on shear resistance into full play.Comprehensive analysis of the shear-resistant behavior of the composite wall panel suggests that the shear of the composite shear wall panel can be controlled by the cracking strength of the web shearing diagonal crack. 展开更多
关键词 composite shear wall shear test hidden frame shear design cracking strength shearing diagonal crack
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Shear deformable finite beam elements for composite box beams 被引量:2
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作者 Nam-Il Kim Dong-Ho Choi 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2014年第2期223-240,共18页
The shear deformable thin-walled composite beams with closed cross-sections have been developed for coupled flexural, torsional, and buckling analyses. A theoretical model applicable to the thin-walled laminated compo... The shear deformable thin-walled composite beams with closed cross-sections have been developed for coupled flexural, torsional, and buckling analyses. A theoretical model applicable to the thin-walled laminated composite box beams is presented by taking into account all the structural couplings coming from the material anisotropy and the shear deformation effects. The current composite beam includes the transverse shear and the restrained warping induced shear deformation by using the first-order shear deformation beam theory. Seven governing equations are derived for the coupled axial-flexural-torsional-shearing buckling based on the principle of minimum total potential energy. Based on the present analytical model, three different types of finite composite beam elements, namely, linear, quadratic and cubic elements are developed to analyze the flexural, torsional, and buckling problems. In order to demonstrate the accuracy and superiority of the beam theory and the finite beam elements developed by this study,numerical solutions are presented and compared with the results obtained by other researchers and the detailed threedimensional analysis results using the shell elements of ABAQUS. Especially, the influences of the modulus ratio and the simplified assumptions in stress-strain relations on the deflection, twisting angle, and critical buckling loads of composite box beams are investigated. 展开更多
关键词 Thin-walled composite box beam Deflection Twisting angle Buckling load shear deformation
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Effect of fiber angle on LYP steel shear walls behavior 被引量:2
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作者 Farzad Hatami Ali Ghamari Farshad Hatami 《Journal of Central South University》 SCIE EI CAS 2014年第2期768-774,共7页
Steel shear wall(SSW) was properly determined using numerical and experimental approaches.The properties of SSW and LYP(low yield point) steel shear wall(LSSW) were measured.It is revealed that LSSW exhibits higher pr... Steel shear wall(SSW) was properly determined using numerical and experimental approaches.The properties of SSW and LYP(low yield point) steel shear wall(LSSW) were measured.It is revealed that LSSW exhibits higher properties compared to SSW in both elastic and inelastic zones.It is also concluded that the addition of CFRP(carbon fiber reinforced polymers) enhances the seismic parameters of LSSW(stiffness,energy absorption,shear capacity,over strength values).Also,stress values applied to boundary frames are lower due to post buckling forces.The effect of fiber angle was also studied and presented as a mathematical equation. 展开更多
关键词 carbon fiber reinforced polymers fiber angle low yield point steel shear wall post buckling composite
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L形内置钢板混凝土组合剪力墙抗剪性能分析 被引量:2
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作者 姜绍飞 韩育昌 刘越生 《建筑钢结构进展》 CSCD 北大核心 2024年第1期54-64,共11页
为揭示L形内置钢板混凝土组合剪力墙的工作机理并提出其抗剪承载力计算公式,首先建立了非线性有限元模型,并通过试验结果进行了验证。在此基础上研究了高宽比、轴压比、钢板厚度、混凝土强度、翼缘长度等参数对剪力墙抗剪性能的影响。最... 为揭示L形内置钢板混凝土组合剪力墙的工作机理并提出其抗剪承载力计算公式,首先建立了非线性有限元模型,并通过试验结果进行了验证。在此基础上研究了高宽比、轴压比、钢板厚度、混凝土强度、翼缘长度等参数对剪力墙抗剪性能的影响。最后,提出了剪力墙的抗剪承载力计算公式。结果表明:剪力墙在受力过程中,腹板是主要受力构件;随着高宽比的减小,剪力墙的抗剪承载力和初始抗侧刚度增大;随着轴压比的增大,剪力墙的抗剪承载力增大,但当轴压比超过0.5时,抗剪承载力开始降低;将所提出的剪力墙抗剪承载力计算公式与现有的计算公式相比,计算结果误差较小,可以为工程应用提供参考。 展开更多
关键词 组合剪力墙 数值分析 参数化分析 抗剪承载力
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装配式轻钢框架-轻钢骨架轻混凝土墙板结构抗震性能 被引量:5
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作者 曹万林 杨兆源 《北京工业大学学报》 CAS CSCD 北大核心 2024年第2期165-179,共15页
为研究装配式轻钢框架-轻钢骨架轻混凝土墙板结构抗震性能,对1个足尺轻钢框架结构试件和3个足尺轻钢框架-轻钢骨架轻混凝土墙板结构试件进行了低周反复荷载下的抗震性能试验及理论分析,试件变量包括:2种装配构造,即内嵌式装配墙板、外... 为研究装配式轻钢框架-轻钢骨架轻混凝土墙板结构抗震性能,对1个足尺轻钢框架结构试件和3个足尺轻钢框架-轻钢骨架轻混凝土墙板结构试件进行了低周反复荷载下的抗震性能试验及理论分析,试件变量包括:2种装配构造,即内嵌式装配墙板、外贴式装配墙板;2种轻钢骨架轻混凝土墙板,即框架式轻钢骨架轻混凝土墙板、桁架式轻钢骨架轻混凝土墙板。研究了各试件的破坏特征和损伤演化过程,分析了结构滞回特性、承载力、变形能力、刚度退化、耗能性能和应变。结果表明:装配式轻钢框架-轻钢骨架轻混凝土墙板结构共同工作性能良好,其水平承载力相比轻钢框架提高了204.7%~210.4%,抗侧刚度提高了257.3%~512.5%,结构变形及耗能能力有显著提高;内嵌墙板的自攻钉连接构造以及外贴墙板的螺栓连接构造传力性能可靠,结构具备2道抗震防线的受力特征;基于简化塑性分析模型以及拉压杆软化桁架模型,对试件承载力进行了计算,计算结果与试验符合较好。 展开更多
关键词 装配式组合结构 轻钢框架 轻钢骨架轻混凝土墙板 抗震性能 低周反复荷载试验 承载力计算
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焊接多腔双钢板-混凝土组合剪力墙抗震性能分析 被引量:1
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作者 丁发兴 蔡勇强 +3 位作者 王莉萍 孙浩 吕飞 黄修文 《华南理工大学学报(自然科学版)》 EI CSCD 北大核心 2024年第1期15-25,共11页
大多数双钢板-混凝土组合剪力墙采用螺栓连接或焊接肋的方式使钢板和混凝土协同工作。然而,这种连接方式可能导致整体性和塑性变形效率较低,且制作复杂,焊接多腔双钢板-混凝土组合剪力墙能够有效地避免这些问题。为了深入研究焊接多腔... 大多数双钢板-混凝土组合剪力墙采用螺栓连接或焊接肋的方式使钢板和混凝土协同工作。然而,这种连接方式可能导致整体性和塑性变形效率较低,且制作复杂,焊接多腔双钢板-混凝土组合剪力墙能够有效地避免这些问题。为了深入研究焊接多腔双钢板-混凝土组合剪力墙的抗震性能,基于约束混凝土真三轴塑性-损伤本构模型和钢材弹塑性混合强化-韧性损伤本构模型,建立了组合剪力墙的精细化三维实体-壳模型,将模拟所得的滞回曲线、骨架曲线、刚度退化曲线、弹性刚度、承载力、累积耗能、等效阻尼粘滞系数和延性系数与已有拟静力试验结果相比较,发现两者吻合较好。分析结果表明:轴压比对组合剪力墙模型算例刚度和承载力的影响较小,而随剪跨比增大,组合剪力墙模型算例的刚度和承载力呈线性降低;轴压比对组合剪力墙模型算例总塑性耗能的影响较小,而剪跨比的影响较大,剪力墙总塑性耗能随剪跨比增大而降低;轴压比和剪跨比都不会改变算例各部件的耗能分配机制,即组合剪力墙模型算例以外钢板和内隔板耗能为主。 展开更多
关键词 双钢板-混凝土组合剪力墙 抗震性能 塑性耗能 有限元分析
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带PBL剪力键的钢芯板混凝土组合剪力墙低周往复加载试验研究
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作者 袁涛涛 蔡玉军 +1 位作者 聂少锋 隋璐 《建筑科学与工程学报》 CAS 北大核心 2024年第5期42-51,共10页
为研究带PBL剪力键的钢芯板混凝土组合剪力墙的抗震性能,对1个型钢混凝土组合剪力墙和4个钢芯板混凝土组合剪力墙进行了循环往复加载试验;观察带PBL剪力键的钢芯板混凝土组合剪力墙在水平循环荷载下的破坏全过程,并分析该类剪力墙的滞... 为研究带PBL剪力键的钢芯板混凝土组合剪力墙的抗震性能,对1个型钢混凝土组合剪力墙和4个钢芯板混凝土组合剪力墙进行了循环往复加载试验;观察带PBL剪力键的钢芯板混凝土组合剪力墙在水平循环荷载下的破坏全过程,并分析该类剪力墙的滞回特征、变形能力、承载能力、耗能性能、刚度和强度退化能力。结果表明:钢芯板混凝土组合剪力墙的破坏模式主要为弯曲型破坏,滞回曲线较为饱满;配置钢芯板的剪力墙承载力、延性性能和耗能能力较优;PBL剪力键的构造方式可保证钢芯板与混凝土之间的黏结性能完好,PBL剪力键平放会导致剪力墙出现沿PBL剪力键的水平通缝,影响剪力墙承载能力的发挥,建议采用PBL剪力键竖放的构造形式。 展开更多
关键词 钢芯板混凝土组合剪力墙 PBL剪力键 抗震性能 拟静力试验
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自攻螺钉与拉铆钉混合连接受剪承载性能试验
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作者 褚云朋 伏金蓉 +1 位作者 钟志豪 陈晓强 《工程科学与技术》 EI CAS CSCD 北大核心 2024年第4期88-97,共10页
为改善自攻螺钉连接的构件在地震作用下易发生拉脱导致结构严重破坏的缺点,提升冷弯薄壁型钢组合墙体抗破坏能力,分析了组合墙体层间连接处的传力机理,针对自攻螺钉的破坏模式,提出拉铆钉与自攻螺钉混合连接。为研究混合连接的抗剪性能... 为改善自攻螺钉连接的构件在地震作用下易发生拉脱导致结构严重破坏的缺点,提升冷弯薄壁型钢组合墙体抗破坏能力,分析了组合墙体层间连接处的传力机理,针对自攻螺钉的破坏模式,提出拉铆钉与自攻螺钉混合连接。为研究混合连接的抗剪性能,共进行了48组连接接头抗剪性能试验,包含冷弯薄壁型钢结构常用的5种连接板厚度,不同搭接板厚比(变化范围1.0~2.0),包含纯自攻螺钉连接、纯拉铆钉连接及混合连接的连接方式。观察混合连接的破坏模式,自攻螺钉未发现拉脱破坏,其破坏模式主要表现为:板承压破坏与螺钉倾斜组合破坏、铆钉剪断破坏及板承压与铆钉部分剪断组合破坏3种;相较单一连接方式,混合连接荷载–位移曲线表现出更长的塑性阶段;当板厚比大于1.5且组合板厚小于3.0mm,混合连接的承载力及延性较单一连接增长明显;利用现有计算方法对混合连接的承载力进行累加计算,与试验结果对比,计算结果偏保守。研究发现:混合连接能较好地弥补拉铆钉和自攻螺钉受剪过程中的缺陷,有效改善自攻螺钉拉脱破坏,从而提升连接的承载力及延性;板厚和板厚比是影响混合连接破坏模式及承载力的重要因素,与单一连接相比,板厚比越大,承载力提升越大;排布方式对混合连接的力学性能及破坏机理影响有限;在本文试验工况下,结合混合连接的破坏模式,在现有计算方法的基础上,提出改善后的计算方法,其计算结果更合理。 展开更多
关键词 拉铆钉连接 拉铆钉-螺钉混合连接 组合墙体 受剪性能 抗剪承载力计算方法
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自攻钉集块连接混凝土复合剪力墙抗震性能试验
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作者 曹万林 谢晖 +2 位作者 杨兆源 董宏英 刘亦斌 《结构工程师》 2024年第2期136-147,共12页
提出了适用于装配式混凝土复合剪力墙结构的自攻钉集块连接构造,为研究自攻钉集块连接混凝土复合剪力墙的抗震性能,设计制作了3个剪跨比为1.39的足尺剪力墙试件,进行了低周反复荷载试验,主要变量包括自攻钉集块连接构造、自攻钉集块与... 提出了适用于装配式混凝土复合剪力墙结构的自攻钉集块连接构造,为研究自攻钉集块连接混凝土复合剪力墙的抗震性能,设计制作了3个剪跨比为1.39的足尺剪力墙试件,进行了低周反复荷载试验,主要变量包括自攻钉集块连接构造、自攻钉集块与后浇条带组合连接构造以及L形边框构造柱。分析了试件破坏模式、承载力、滞回特性、刚度及退化、变形能力、耗能性能和应变特征等。结果表明:自攻钉集块连接构造装配便捷,受力性能可靠;采用自攻钉集块与后浇条带组合连接构造试件的承载力及刚度相比自攻钉集块连接构造分别提高了8.54%和6.03%;设置L形边框构造柱的试件承载力、刚度及耗能分别提高了67.48%、129.33%和277.93%。自攻钉集块连接复合剪力墙具有良好的抗震性能,满足装配式低层住宅混凝土复合剪力墙结构的抗震设计要求,可用于实际工程。 展开更多
关键词 装配式混凝土结构 复合剪力墙 自攻钉集块连接 抗震性能 试验研究
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低周反复荷载下T型双波纹钢板混凝土组合剪力墙受力性能试验研究
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作者 陈宗平 莫琳琳 +1 位作者 许新颖 唐际宇 《工程力学》 EI CSCD 北大核心 2024年第6期87-104,共18页
为研究低周反复荷载下T型双波纹钢板混凝土组合剪力墙的受力性能,对5个T型双波纹钢板混凝土组合剪力墙进行了低周反复加载试验。基于试验数据,分析了T型组合剪力墙的破坏模式、滞回曲线、变形能力及耗能能力,重点研究了边缘约束条件、... 为研究低周反复荷载下T型双波纹钢板混凝土组合剪力墙的受力性能,对5个T型双波纹钢板混凝土组合剪力墙进行了低周反复加载试验。基于试验数据,分析了T型组合剪力墙的破坏模式、滞回曲线、变形能力及耗能能力,重点研究了边缘约束条件、波纹类型以及轴压比不同变化参数对T型组合剪力墙抗震性能指标的影响规律。研究结果表明:T型双波纹钢板混凝土组合剪力墙破坏模式主要有压屈破坏和压弯破坏两种;设置边缘约束构件是提高T型双波纹钢板混凝土组合剪力墙承载能力和变形能力的关键因素;纵向窄波纹钢板对内部混凝土的约束能力更强,在低周反复荷载下两者协同工作性更优,而横向窄波纹钢板试件强度退化最严重;采用全截面塑性设计方法进行T型双波纹钢板混凝土组合剪力墙正截面承载力计算,试验值与计算值吻合良好;T型双波纹钢板混凝土组合剪力墙具有较好的承载能力和变形能力,可适用于高层及超高层建筑结构中。 展开更多
关键词 T型组合剪力墙 双波纹钢板 低周反复荷载 钢板类型 承载力计算
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装配式带夹芯保温槽型玻璃钢-钢板-槽钢-混凝土组合剪力墙轴压性能研究
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作者 刘学春 王晶 陈学森 《建筑结构》 北大核心 2024年第20期66-75,共10页
提出一种装配式带夹芯保温槽型玻璃钢-钢板-槽钢-混凝土组合剪力墙,设计3个具有不同配筋形式和混凝土种类的墙板试件进行轴心受压试验,获得墙板在轴压作用下的破坏模式、荷载-位移曲线、荷载-应变曲线、承载力储备系数、延性系数、材料... 提出一种装配式带夹芯保温槽型玻璃钢-钢板-槽钢-混凝土组合剪力墙,设计3个具有不同配筋形式和混凝土种类的墙板试件进行轴心受压试验,获得墙板在轴压作用下的破坏模式、荷载-位移曲线、荷载-应变曲线、承载力储备系数、延性系数、材料利用率等性能指标。通过ABAQUS有限元分析软件对墙板进行参数化分析,研究内嵌钢板强度和厚度对其轴压性能的影响。结果表明,墙板具有良好的承载力储备能力和延性性能;混凝土中掺入1%体积比的钢纤维可显著提高墙板内混凝土的抗拉性能,使混凝土强度得到更加充分的利用,布置钢筋可以显著提高墙板延性;墙板的承载力和延性随内嵌钢板厚度和强度的增加而增大,强度为Q355、厚度为4、6mm时,墙板材料利用率更高。提出适用于该类墙板的轴压承载力设计公式,考虑钢板屈曲和截面组合效应的墙板轴心受压承载力设计公式计算结果较精确。 展开更多
关键词 钢板-混凝土组合剪力墙 夹芯保温 轴压性能 轴压承载力设计公式 结构保温一体化
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混合联肢部分外包组合剪力墙基于两阶段耗能的塑性设计方法研究 被引量:1
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作者 石韵 刘万鹏 +2 位作者 苏明周 周巧玲 刘少博 《工程力学》 EI CSCD 北大核心 2024年第2期137-150,共14页
混合联肢部分外包组合剪力墙结构是一种典型的两阶段耗能结构体系。依据现行设计规范设计的混合联肢部分外包组合剪力墙结构对结构弹塑性阶段的整体性能缺乏考虑,在设防地震和罕遇地震作用下结构的屈服顺序难以控制。基于混合联肢部分... 混合联肢部分外包组合剪力墙结构是一种典型的两阶段耗能结构体系。依据现行设计规范设计的混合联肢部分外包组合剪力墙结构对结构弹塑性阶段的整体性能缺乏考虑,在设防地震和罕遇地震作用下结构的屈服顺序难以控制。基于混合联肢部分外包组合剪力墙结构体系“小震不坏,中震可修,大震不倒”的三水准抗震设防性能目标,提出结构两阶段耗能的塑性设计方法。以目标位移和理想破坏模式作为预测结构弹塑性受力状态性能目标,针对不同地震水准下的性能目标,考虑耦连比对结构合理耗能机制的影响,将结构的能力曲线等效为三线型,改进了传统基于能量平衡的塑性设计方法,保证结构在设防地震及罕遇地震下实现理想屈服顺序,避免薄弱层产生。采用建议的设计方法设计了一个12层结构算例,并采用ABAQUS对算例进行推覆分析和弹塑性时程分析。结果表明,采用基于两阶段耗能的塑性设计方法预测的中震及大震下结构顶点位移角与数值分析结果误差分别为0.5%和12.1%,最大层间位移角满足结构弹塑性层间位移角的要求。算例结构能够实现“强节点弱构件、强墙肢弱连梁”合理的屈服顺序,保证结构预期的失效机制和不同地震水准作用下的性能目标,验证了基于两阶段耗能的塑性设计方法的有效性。 展开更多
关键词 结构工程 混合联肢墙 塑性设计 部分外包组合剪力墙 两阶段耗能 性能目标 耦连比
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超高性能混凝土预制板-叠合剪力墙抗震性能研究
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作者 常亚峰 尹文哲 +3 位作者 侯亚鹏 曹小杉 师俊平 梁兴文 《地震工程与工程振动》 CSCD 北大核心 2024年第3期96-107,共12页
通过对1片现浇混凝土剪力墙和4片超高性能混凝土(ultra-high performance concrete, UHPC)预制板-叠合剪力墙抗震性能试验,研究了其滞回性能、抗弯承载力、延性、刚度和耗能能力等指标,分析了高宽比、聚乙烯泡沫(expanded polystyrene, ... 通过对1片现浇混凝土剪力墙和4片超高性能混凝土(ultra-high performance concrete, UHPC)预制板-叠合剪力墙抗震性能试验,研究了其滞回性能、抗弯承载力、延性、刚度和耗能能力等指标,分析了高宽比、聚乙烯泡沫(expanded polystyrene, EPS)芯模置换和竖向钢筋连接方式对其抗震性能的影响。结果表明:与现浇混凝土剪力墙相比,UHPC预制板-叠合墙具有优异的抗震性能,最大受弯承载力增大;UHPC预制板和钢筋桁架可较好地与空腔内现浇混凝土协同工作;UHPC叠合墙的滞回曲线、骨架曲线和刚度退化曲线与现浇混凝土剪力墙趋势基本一致;在本试验剪力墙的高宽比范围内,高宽比越小,UHPC预制板-叠合墙的受弯承载力和刚度越大,耗能越差;EPS芯模置换可提高叠合剪力墙屈服后的耗能能力,降低了UHPC叠合墙的延性;仅采用暗柱竖向钢筋与底座进行连接,对UHPC叠合墙的受弯承载力和耗能影响较小,但却可以很大程度方便施工。 展开更多
关键词 UHPC预制板 叠合剪力墙 抗震性能 置换芯模 连接钢筋
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装配式复合模壳剪力墙体系结构性能分析
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作者 符宇欣 王凯 李伟兴 《建筑结构》 北大核心 2024年第12期118-124,共7页
装配式复合模壳剪力墙体系是近年来快速发展的一项新技术,可在剪力墙、梁、柱等构件中应用。以实际项目为例,采用三种不同的建模方法,研究模壳剪力墙体系与现浇剪力墙在结构刚度、基底剪力、构件内力等方面的差异,并对模壳剪力墙体系进... 装配式复合模壳剪力墙体系是近年来快速发展的一项新技术,可在剪力墙、梁、柱等构件中应用。以实际项目为例,采用三种不同的建模方法,研究模壳剪力墙体系与现浇剪力墙在结构刚度、基底剪力、构件内力等方面的差异,并对模壳剪力墙体系进行大震弹塑性损伤分析。研究结果表明,模壳剪力墙体系的结构性能稍优于现浇剪力墙体系,安全冗余度较好。同时,通过对钢筋混凝土材料自重及周期折减系数等参数的调整,提出合理、可行的模壳剪力墙体系设计方法,为类似项目提供参考。 展开更多
关键词 装配式复合模壳剪力墙体系 结构性能 构件内力 弹塑性分析
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纤维增强水泥基复合材料(ECC)面层加固砌体墙的压剪性能研究
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作者 刘海平 董方园 +1 位作者 蒋芳明 余江滔 《工程力学》 EI CSCD 北大核心 2024年第12期201-214,共14页
为研究纤维增强水泥基复合材料(engineered cementitious composites,ECC)加固砌体结构后的压剪性能,对1片未加固砌体墙和6片ECC面层加固砌体墙进行了对角加载试验,分析了单、双面加固形式和面层厚度对墙体抗剪承载力的影响。进行了ECC... 为研究纤维增强水泥基复合材料(engineered cementitious composites,ECC)加固砌体结构后的压剪性能,对1片未加固砌体墙和6片ECC面层加固砌体墙进行了对角加载试验,分析了单、双面加固形式和面层厚度对墙体抗剪承载力的影响。进行了ECC加固砌体墙有限元模拟,与试验结果对比并进行参数分析。结果表明:ECC面层可显著提升砌体墙的抗剪承载力和变形性能,改善墙体的抗震性能;面层厚度、砂浆强度、ECC抗拉强度参数对墙体承载力影响显著,可为实际工程设计参数选取提供理论基础。提出了满足现有规范对墙体变形限值要求的ECC材料延伸率需求,以期为ECC加固砌体结构基于性能的抗震设计提供初步的理论支撑。 展开更多
关键词 砌体墙 纤维增强水泥基复合材料 加固 抗剪性能 延伸率需求
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