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1.
为进一步改善混凝土核心简的抗震性能,本文提出了钢管混凝土叠合柱边框内藏钢桁架组合核心筒.进行了2个1/6缩尺的核心筒模型在低周反复荷载下的抗震性能试验研究,1个为钢管混凝土叠合柱边框毛组合核心筒,1个为钢管混凝土叠合柱边框内藏钢桁架组合核心筒.通过试验,对比分析了2个核心简的承载力、延性、刚度及其衰减、滞回特性、耗能能力及破坏特征,给出了钢管混凝土叠合柱边框内藏钢桁架组合核心筒的承载力计算模型,计算结果与实测值符合较好.研究表明,钢管混凝土叠合柱边框内藏钢桁架组合核心筒与钢管混凝土叠合柱边框组合核心筒相比,其抗震性能明显提高.  相似文献   

2.
在大连国际会议中心核心筒墙体抗震设计中,采用了一种钢管混凝土叠合边框墙肢内藏钢板、连梁内藏钢桁架的组合双肢剪力墙。为研究其抗震性能,进行了1个1/7缩尺的这种新型组合双肢剪力墙模型的低周反复荷载试验,分析了其承载力、延性、刚度及其退化、滞回特性、耗能能力和破坏特征,重点研究了钢管混凝土叠合边框、墙肢内藏钢板、连梁内藏钢桁架之间的共同工作性能。研究表明:内藏钢板-钢桁架可显著提高钢管混凝土叠合边框双肢剪力墙的承载力和延性性能;钢管混凝土叠合边框可充分发挥其承载力高、不易开裂、延性好的优势。文中提出了该新型组合双肢剪力墙的承载力计算模型,计算结果与实测结果符合较好。  相似文献   

3.
进行了1个1/7缩尺、剪跨比为2.0的带矩形钢管混凝土叠合柱边框内藏钢桁架深连梁联肢剪力墙模型的低周反复荷载试验。分析了该剪力墙的承载力、延性、滞回特性、耗能能力等抗震性能,研究了内藏钢桁架对该联肢剪力墙抗震性能的影响。试验研究表明:内藏钢桁架深连梁联肢剪力墙具有较好的延性;内藏钢桁架混凝土连梁对提高剪力墙的承载力及延性作用显著;带钢管混凝土叠合柱的翼墙可充分发挥钢管混凝土叠合柱抗压能力强、承载力高、不易开裂、延性好的优势;该新型组合剪力墙实现了"强墙肢、弱连梁"的延性屈服机制。  相似文献   

4.
提出了钢管混凝土边框内藏斜撑肋钢板组合中高剪力墙.为研究这种组合剪力墙的抗震性能,进行了5个不同构造的中高剪力墙模型低周反复荷载试验.分析了试件的损伤特征、承载力、耗能、滞回特性,提出了正截面抗弯承载力计算模型,计算结果与试验符合较好.研究表明:钢管混凝土边框内藏钢板组合剪力墙具有较高的承载力和良好的耗能性能;钢管混凝土边框内藏带斜撑肋钢板中高剪力墙,适于在墙体厚度小于钢管尺寸或内藏钢板厚度较薄的“强边框、弱墙体”情况下应用,可明显减轻钢管混凝土边框底部的损伤,延缓墙体性能退化,提高组合剪力墙的抗震能力.  相似文献   

5.
钢管混凝土叠合边框内藏钢桁架剪力墙振动台试验研究   总被引:1,自引:0,他引:1  
进行了4个钢管混凝土叠合边框剪力墙模型的模拟地震振动台试验,包括:1个高宽比为1.6的钢管混凝土叠合边框剪力墙,1个高宽比为1.6的钢管混凝土叠合边框内藏钢桁架剪力墙,1个高宽比为3.0的为钢管混凝土叠合边框剪力墙,1个高宽比为3.0的钢管混凝土叠合边框内藏钢桁架剪力墙。试验中输入Taft地震波,测试了各试件在不同峰值加速度下的时程地震反应及其动力特性,分析了剪力墙损伤过程及破坏特征。研究表明,钢管混凝土叠合边框内藏钢桁架剪力墙比普通钢管混凝土叠合柱边框剪力墙承载力高、刚度退化慢、延性好、抗震耗能能力强。  相似文献   

6.
内藏分块钢板双肢剪力墙是由钢管混凝土边框、型钢混凝土叠合暗柱、墙肢内藏分块钢板、连梁内藏钢板、混凝土墙体、混凝土连梁等构件组成。对4个1∶5缩尺,剪跨比为1.68,轴压比为0.3的组合双肢剪力墙试件进行了低周反复荷载试验。研究不同内藏钢板布置形式、不同钢板用钢量对试件抗震性能的影响,考察了内藏分块钢板双肢剪力墙的破坏形态、滞回特性、刚度、变形及耗能能力,分析了剪力墙各部件在水平荷载作用下的合理屈服破坏顺序。试验结果表明:4个试件均发生弯剪型破坏,内藏分块钢板双肢剪力墙相比于钢管混凝土边框双肢剪力墙整体抗侧刚度大,具有较强的耗能能力、变形能力及延性,对抗震有利;分块钢板参数选择对双肢剪力墙抗震性能影响明显。  相似文献   

7.
提出了钢管混凝土边框内藏钢板-钢撑组合剪力墙。为研究这种新型组合剪力墙的抗剪性能,在已有相关低矮剪力墙抗震性能试验基础上,进行了2个新的不同构造低矮剪力墙模型低周反复荷载试验。比较分析了两个试件的滞回特性、承载力、刚度、耗能和破坏特征,提出了抗剪承载力计算公式,计算与实测符合较好。研究表明:钢管混凝土边框,对墙体主斜裂缝发展有明显约束作用;不同构造剪力墙,墙体裂缝开展与损伤过程有明显差异;边框、钢板-钢撑和墙体的设计参数应合理匹配,以提高剪力墙的延性和抗震耗能能力。  相似文献   

8.
圆钢管混凝土边框内藏桁架剪力墙是一种新型组合剪力墙.为了解这种剪力墙的抗震性能,进行了 3个1/5缩尺试件的低周反复荷载试验.3个试件中,1个为圆钢管混凝土柱框架结构,1个为圆钢管混凝土边框-钢桁架结构,1个为圆钢管混凝土边框内藏钢桁架剪力墙.基于试验,对比分析了各试件的承载力、刚度及其退化过程、滞回特性、耗能能力及破...  相似文献   

9.
大连国际会议中心结构的竖向承载和水平抗侧力体系主要由数个钢管混凝土叠合柱边框组合核心筒构成,保障核心筒钢管混凝土边框柱与混凝土基础的可靠锚固性能是其抗震设计的关键技术之一。以该工程核心筒边框柱-混凝土基础为原型,设计了2个不同柱脚埋深的1/5缩尺的钢管混凝土柱脚-钢筋混凝土基础组合试件,并对其进行了锚固工作性能试验。试验采用单向重复荷载,重点研究了柱脚埋深对组合试件的锚固承载力和延性性能的影响。试验结果表明:增大柱脚埋深能有效提高其锚固承载力和延性性能;2个试件原型的构造做法均可满足设计要求,其锚固是可靠的。  相似文献   

10.
提出了钢管混凝土边框内藏分块钢板组合双肢剪力墙,为研究分块钢板布置型式对其抗震性能的影响,进行了3个1/15缩尺的不同分块钢板布置型式的双肢剪力墙试件的模拟地震振动台比较试验,试件1为钢管混凝土边框双肢剪力墙,试件2为钢管混凝土边框内藏分块钢板双肢剪力墙,试件3为钢管混凝土边框内藏整块钢板双肢剪力墙。台面输入EL-Centro地震波。试验研究了不同峰值加速度输入下试件的加速度、位移地震反应,分析了钢管、钢板、混凝土的损伤演化过程以及双肢墙震后自振频率衰减特征。结果表明:内藏分块钢板双肢剪力墙与无内藏钢板双肢剪力墙相比,抗侧刚度大,承载力高,性能退化慢;与内藏整块钢板双肢剪力墙相比,抗侧刚度略小,承载力略低,性能退化慢,延性性能好。钢管混凝土边框组合双肢剪力墙可用于抗震设计。  相似文献   

11.
The end diaphragm of bridges are normally designed to resist lateral seismic forces imposed on the superstructure in earthquake prone regions. Using ductile diaphragms with high deformation capacity could reduce the seismic demands on the substructure and prevent costly damage under strong ground motions. The end diaphragms of steel tub girder bridges with high lateral stiffness and dominant shear behavior have a potential to be used as ductile fuse elements. In this study, a steel plate shear diaphragm(SPSD) is introduced as an external end diaphragm of tub girder steel bridges to reduce the seismic demands imposed on the substructure. Quasi static nonlinear analyses were conducted to evaluate responses of sixteen SPSDs with different boundary conditions, aspect ratios and diaphragm plate thicknesses. Moreover, nonlinear time history analyses were performed using three different ground motions corresponding to DBE and MCE level spectrums. Cyclic and time history analyses proved the proper behavior of SPSD and its efficiency to reduce seismic demands by more than 25%.  相似文献   

12.
Six cyclic tests were conducted on three full‐scale subassemblies to investigate the behavior of interior beam‐to‐column post‐tensioned (PT) connections. Strands were placed along each side of the steel beam web, passing through the steel column to provide precompression between the beams and a column. Top and bottom energy‐dissipating (ED) bars, passing through the column and welded to the beam, were used to increase the moment capacity and ED capacity of the connection. One of the subassemblies also had a composite concrete slab with discontinuity at the column centerline to eliminate restraint from the metal deck, reinforcement, and welded wire mesh. The objectives of this paper were to investigate the following: the durability of the connection by loading each specimen twice, the ED capacity of the ED bar, and the effects that the type of ED bar and type of composite slab have on the self‐centering behavior of the connection. The experimental results showed that: (1) the connection could sustain severe inelastic cyclic loading at least twice without strength degradation, (2) the ED capacity of the bar was much larger than that dissipated by a single AISC loading protocol, and (3) a specimen with a discontinuous composite slab, which opened freely at the centerline of the column, ensured the same self‐centering hysteretic behavior as the bare steel specimen. However, the decompression moment of the PT connection decreased significantly at each interstory drift, resulting in an early opening of a gap at the beam–column interface. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

13.
为研究带空心钢球的钢管混凝土柱的抗震性能,以空心率和含钢率为参数,设计制作9个内置空心钢球的圆截面钢管混凝土柱和3个薄壁圆截面钢管混凝土柱,并进行拟静力试验,结合破坏形态通过延性系数和累积耗能等参数探讨了试件的抗震性能。研究结果表明:含钢率对内置空心钢球的薄壁圆形钢管混凝土柱极限荷载,峰前耗能的影响较大,空心率对试件延性系数,峰后耗能的影响显著;内置空心钢球的薄壁圆形钢管混凝土柱较实心薄壁圆形钢管混凝土柱极限荷载有所降低;试件水平荷载时程曲线的"V"字形波动的折线可以较直观的反映出结构损伤破坏过程,并在曲线数形与试验现象关联上和滞回曲线形成较好的一致性;可以通过优化内置空心钢球的大小和壁厚设计钢管混凝土柱,并取得与实心钢管混凝土柱同样的抗震性能,为同类钢管混凝土组合结构的设计提供了依据。  相似文献   

14.
对一榀单跨两层半刚接框架-斜加劲钢板剪力墙结构进行了低周反复荷载试验,分析结构破坏模式和耗能机理,得到了承载力、延性、刚度、耗能能力等指标.结果表明:该种结构具有良好的延性和耗能性能,安全储备高;半刚框架和墙板协同工作良好;斜加劲肋的设置缓解了钢板沿拉力带方向的面外变形,提高了墙体的弹性屈曲倚载及初始刚度,减轻了滞回曲...  相似文献   

15.
Probabilistic risk analysis is an effective tool for risk-informed decision-making related to the building facilities. All sources of the uncertainties should be considered in seismic risk assessment framework. Not only the levels of these uncertainties but also the effects on the performance of the buildings should be clearly identified. This paper aims to assess the impacts of the potential uncertainties on the seismic risk of steel frame equipped with steel panel wall (SPWF). Firstly, the performance limits of the SPWF structures are determined according to cyclic test results of two SPWF specimens. Then a validated numerical model of a 12-story SPWF building is modeled and used to perform the nonlinear time-history analysis, and the record-to-record uncertainty is identified by a set of ground motions derived from SAC project. Furthermore, comparisons are made on fragility curves for the building with or without considering the combining uncertainties in structural system, in defining performance limits and modeling technology. Finally, the annual probability and probability in 50 years for each performance limit is calculated and compared. The impacts of such uncertainties on seismic risk of SPWF building are quantified for risk-informed evaluation of the SPWF buildings.  相似文献   

16.
为验证新型装配式圆钢管柱-钢梁节点的破坏模式及抗震性能,进行了3个十字形节点的低周反复循环加载试验。研究了不同试件节点的破坏模式、滞回性能、延性及耗能性能等。试验结果表明:试件的位移延性系数为3.38~3.44,能量耗散系数为1.72~2.25,节点具有良好的滞回性能、延性及耗能能力,满足现行规范设计要求。建议在采用新型装配式节点时,梁柱连接处可同时采用加强型连接或骨式连接,以获得良好的抗震性能。  相似文献   

17.
Steel fiber reinforced cementitous composites(SFRCC)is a promising material with high strength in both compression and tension compared with normal concrete.The ductility is also greatly improved because of 6%volume portion of straight steel fibers.A steel beam-column connection with Steel fiber reinforced cementitous composites(SFRCC) slab diaphragms is proposed to overcome the damage caused by the weld.The push-out test results suggested that the application of SFRCC promises larger shear forces transferred through headed studs allocated in a small area in the slab. Finite element models were developed to simulate the behavior of headed studs.The failure mechanism of the grouped arrangement is further discussed based on a series of parametric analysis.In the proposed connection,the SFRCC slab is designed as an exterior diaphragm to transfer the beam flange load to the column face.The headed studs are densely arranged on the beam flange to connect the SFRCC slab diaphragms and steel beams.The seismic performance and failure mechanism of the SFRCC slab diaphragm beam-column connection were investigated based on the cyclic loading test.Beam hinge mechanism was achieved at the end of the SFRCC slab diaphragm by using sufficient studs and appropriate rebars in the SFRCC slab.  相似文献   

18.
A ductile Vierendeel frame can be constructed by incorporating steel panel dampers (SPDs) into a moment‐resisting frame (MRF). Thus, the stiffness, strength, and ductility of the lateral force–resisting system can be enhanced. The proposed 3‐segment SPD possesses a center inelastic core (IC) and top and bottom elastic joints. This paper discusses the mechanical properties, capacity design method, and buckling‐delaying stiffeners for the SPDs through the use of cyclic loading tests on 2 specimens. Tests confirm that SPDs' cyclic force vs deformation relationships can be accurately predicted using either the Abaqus or PISA3D model analyses. The paper also presents the capacity design method for boundary beams connected to the SPDs of a typical SPD‐MRF. The seismic performance of an example 6‐story SPD‐MRF is evaluated using nonlinear response history analysis procedures and 240 ground accelerations at 3 hazard levels. Results indicate that under 80 maximum considered earthquake ground accelerations, the mean‐plus‐one standard deviation of the shear deformation of the ICs in the SPDs is 0.055 rad, substantially less than the 0.11 rad deformational capacity observed from the SPD specimens. The experimental cumulative plastic deformation of the proposed SPD is 242 times the yield deformation and is capable of sustaining a maximum considered earthquake at least 8 times before failure. This paper introduces the method of using one equivalent beam‐column element for effective modeling of the 3‐segment SPD. The effects of the IC's relative height and stiffness on the overall SPD's elastic and postelastic stiffness, elastic deformation limits, and inelastic deformational demands are discussed.  相似文献   

19.
采用大型通用非线性有限元软件ABAQUS 6.10分别对方钢管混凝土框架-十字加劲薄钢板剪力墙和非加劲薄钢板剪力墙进行了数值分析,对二者的受力特征、刚度、极限承载力、剪力分配及柱子的受力特征进行了研究.结果表明:当肋板刚度比为30时,十字加劲肋能够提高钢板剪力墙结构的弹性屈曲荷载、极限承载力、初始刚度,降低柱子轴压比对剪力初始分配的影响;在加载的初始阶段(顶点侧移角小于0.2%),钢板剪力墙承担了大部分剪力,随后墙板承担剪力的比例逐渐下降,框架承担的比例逐渐上升,当顶点侧移角达到1%时,框架和钢板剪力墙承担剪力的比例保持不变;方钢管混凝土框架-薄钢板剪力墙的滞回环饱满,滞回性能稳定.由于薄钢板墙拉力场作用,方钢管混凝土柱壁易与混凝土发生分离,在设计时应予以注意.  相似文献   

20.
钢管-钢管混凝土复合拱桥动力特性分析   总被引:13,自引:0,他引:13  
福建省福鼎市山前大桥是一座应用钢管-钢管混凝土复合拱桥概念设计成的试验桥,本文以它作为研究对象,进行了动力特性的测试和计算,并讨论了主要结构参数对其动力特性的影响,为此类桥梁的设计提供参考。  相似文献   

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