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1.
通过低周反复加载试验对6个锚定式方钢管混凝土柱-H形钢梁节点进行了试验研究,研究了不同轴压比情况下节点的破坏模式、延性、耗能性能、强度及刚度退化等。试验结果表明,破坏之前节点具有良好的滞回性能、延性及耗能能力,满足现行抗震规范的要求。锚定式方钢管混凝土梁柱节点可以用于拉力较小的节点。文中提出了有关的设计建议。  相似文献   

2.
钢管混凝土柱-钢筋混凝土环扁梁节点性能试验研究   总被引:1,自引:0,他引:1  
本文进行了钢管混凝土柱-钢筋混凝土环扁梁节点的静载和低周反复荷载试验,分析了节点的破坏形态、承载能力、延性、耗能能力等性能。本次试验结果显示,钢管混凝土核心区未发生屈服破坏情况,塑性铰产生于扁梁和环扁梁交界处(静载)和环扁梁上(低周反复荷载),环扁梁与钢管混凝土柱间未发生明显滑移现象;试验节点连接可靠,具有较好的承载力、延性以及耗能能力,能够满足延性抗震设计要求。  相似文献   

3.
两层两跨方钢管混凝土框架抗震性能试验研究   总被引:1,自引:0,他引:1  
为了研究采用穿芯高强螺栓-端板节点的方钢管混凝土框架的抗震性能,对一榀两层两跨的方钢管混凝土柱-钢梁框架进行了竖向荷载和低周反复水平荷载作用下的抗震性能试验研究,观测了框架的破坏形态,得到了框架试件的荷载-位移滞回曲线、骨架曲线,分析了方钢管混凝土框架的破坏机制、滞回性能、延性、耗能能力、强度及刚度退化等力学性能。结果表明:框架试件基本实现了梁铰破坏机制,具有良好的变形性能和耗能能力,位移延性系数为5.86~6.42,等效黏滞阻尼系数达到0.454,均满足延性框架的抗震要求。框架试件的强度和刚度退化较为平缓,具有较强的抗侧移能力。  相似文献   

4.
为了研究不同约束机理的配钢形式对钢与混凝土组合异形柱-钢梁空间中节点抗震性能的影响,设计了4个型钢混凝土异形柱-钢梁空间中节点,并对其进行了低周反复加载试验,在联合钢管混凝土异形柱-钢梁空间中节点抗震性能成果的基础上,对比分析了相关节点在破坏形态、滞回曲线、耗能能力及变形性能方面的差异。研究结果表明:配型钢的空间中节点主要发生剪切斜压破坏,同时具有黏结裂缝的破坏形态,而配钢管的空间中节点则发生了核心区的剪切破坏;钢管节点试件的标准化滞回曲线包围了型钢节点试件,且其抗剪承载能力更好、初始刚度和耗能能力更大,但延性性能没有足够的优势。  相似文献   

5.
为研究高轴压比下波纹侧板-方钢管混凝土柱的抗震性能,设计了轴压比为0.8和1.0的两个试件进行低周往复荷载试验,得到了高轴压比下波纹侧板-方钢管混凝土柱的滞回曲线、骨架曲线和承载能力,计算出位移延性系数、刚度退化和累计耗能等抗震性能指标。研究结果表明:试件的破坏形态为弯剪破坏,剪切破坏发生在波纹侧板及核心混凝土,方钢管主要破坏特征为受压鼓曲和受拉断裂;试件的滞回曲线比较饱满,耗能性能良好,刚度退化稳定;随着轴压比的增大,试件的位移延性系数变小。总体来看,波纹侧板-方钢管混凝土柱在高轴压比下仍然能保持较好的抗震性能,可为后续的理论研究及实际工程应用提供依据。  相似文献   

6.
为研究外方内圆复式钢管混凝土柱-钢梁节点的累积耗能性能,对6个组合节点试件和1个方钢管混凝土柱-钢梁节点对比试件进行了低周往复荷载作用下的试验研究和参数分析,探讨了节点的各项耗能指标及影响参数。结果表明:此类组合节点试件具有良好的滞回耗能能力,其中锚固腹板加肋和竖向肋板外伸长度120mm的节点试件累积耗能能力较好,且累积损伤对节点滞回耗能影响不明显;其余节点试件的梁端位移角达到1/23时,试件开始有累积损伤,滞回耗能下降幅度不超过10%,累积损伤对其影响不严重;复式钢管混凝土柱-钢梁节点的累积耗能各项指标均优于方钢管混凝土柱-钢梁节点;节点试件的累积耗能随着梁柱弯矩比的增大而有所提高,随竖向肋板外伸长度和梁柱线刚度比的增大也有所提高,但有一定限值。  相似文献   

7.
方钢管混凝土框架内隔板节点抗震性能的试验研究   总被引:15,自引:3,他引:12  
本文设计了一榀三层两跨的方钢管混凝土框架模型,梁柱节点采用内隔板节点型式。采用拟静力试验方法,对方钢管混凝土框架施加低周反复水平荷载,研究了方钢管混凝土框架内隔板节点的荷载一位移曲线、节点延性、节点破坏机制和破坏特点等抗震性能。研究结果表明,方钢管混凝土框架内隔板节点的抗震性能较好。  相似文献   

8.
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   

9.
以某实际工程为背景,通过实验研究了不同形式大尺寸方钢管混凝土柱-H型钢梁连接节点的受力特性及耗能性能。节点试验包括两类4个构件,分别为内隔板节点和贯通隔板节点。试验中分别测得了各试件的弹性极限荷载和位移、屈服荷载和位移、破坏荷载及位移,以及节点在低周往复加载下耗能性能,并且绘制了滞回曲线、骨架曲线,得到了各项延性、耗能指标。研究结果表明,内隔板形式节点的承载力和耗能性能优于贯通隔板形式的节点。构件的焊缝没有开裂,表明采用药芯焊的一级焊缝承载能力很强。  相似文献   

10.
纤维增强混凝土十字形柱中节点试验研究   总被引:3,自引:0,他引:3  
本文通过对6个1/2缩尺的十字形柱中节点试件进行反复荷载试验,对比此类节点的破坏过程及破坏特点,分析滞回特征、位移延性、刚度退化、承载力、耗能能力,研究纤维对十字形柱中节点抗震性能的增强作用。试验研究表明:节点核心区使用纤维混凝土可以显著改善节点混凝土剥落状态、提高位移延性和承载力、减缓刚度退化。  相似文献   

11.
本文进行了2种矩形钢管混凝土柱与钢梁连接节点——翼缘全螺栓(BFP)连接节点与外加强环(WFP-BW)连接节点在柱端低周反复荷载作用下的抗震性能试验,分析比较了这2类节点与焊接翼缘板(WFP)连接节点在不同轴压比下的滞回性能、强度与刚度退化、延性比与耗能比、破坏机理与破坏特征,得出了一些有参考价值的结论。  相似文献   

12.
为了提高装配式剪力墙的抗震性能,提出并设计了一片暗柱内置H型钢装配式内藏钢桁架混凝土剪力墙及一片暗柱内置圆钢管装配式内藏钢桁架混凝土剪力墙,其中H型钢竖向连接采用顶底角钢复合连接,圆钢管竖向连接采用端板焊接.通过对试件进行低周反复加载试验,得到剪力墙试件的破坏模式、滞回曲线、承载力、延性、残余变形、刚度退化和耗能能力等...  相似文献   

13.
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   

14.
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   

15.
This paper presents an experimental investigation on the seismic behavior of H‐beam to circular tubular column connections stiffened by an outer ring diaphragm. An innovative three‐dimensional (3D) connection subassembly testing system was first described. Specimens representative of two‐dimensional (2D) interior columns, 3D interior and exterior columns in a steel building frame were then tested to failure under unidirectional or bidirectional cyclic loads. Various specimen parameters are used to evaluate their effects on connection behavior. Test results indicate significantly different failure modes for 2D and 3D weak panel connections, with panel shear buckling and local distortion of outer diaphragm occurring only for 3D connections. The weak beam connections unexceptionally exhibited final fracture at the junction between diaphragm and beam flange. In contrast with weak beam connections, weak panel connections demonstrated better seismic performance and ductility. As a result, a seismic design philosophy considering panel zone yielding before beam flexural yielding is proposed. Based on experiment observations, small diaphragm width and simplified fillet welding are found to be feasible especially for weak beam connections, improving architectural appearance and facilitating construction. Strength evaluations also suggest that current AIJ design provisions may be appropriate when applied to panel zones in 3D connections. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

16.
一般采用梁柱焊接节点钢框架结构在遭遇强烈地震地震作用下,结构倒塌破坏可能由于是耗能能力不足所导致。以某钢框架结构为算例,选取20条实际地震动记录,对结构进行易损性分析,对比不同损伤指标和不同梁端构造形式的钢框架结构抗震性能差异。研究显示:对梁柱焊接的普通钢框架结构,其倒塌破坏是由于结构耗能能力不足所导致的,评价结构抗震性能不仅需考虑结构变形能力,尚需同时考虑结构耗能能力;对于改进形式的钢框架结构,结构耗能能力得到显著提高,使得位移首超破坏先于累积损伤破坏,此时基于变形的评价结果更加可靠。  相似文献   

17.
This paper presents the development, experimental testing, and numerical modelling of a new hybrid timber‐steel moment‐resisting connection that is designed to improve the seismic performance of mid‐rise heavy timber moment‐resisting frames (MRF). The connection detail incorporates specially designed replaceable steel links fastened to timber beams and columns using self‐tapping screws. Performance of the connection is verified through experimental testing of four 2/3 scale beam‐column connections. All 4 connection specimens met the acceptance criteria specified in the AISC 341‐10 provisions for steel moment frames and exhibit high strength, ductility, and energy dissipation capacity up to storey drifts exceeding 4%. All of the timber members and self‐tapping screw connections achieved their design objective, remaining entirely elastic throughout all tests and avoiding brittle modes of failure. To assess the global seismic performance of the newly developed connection in a mid‐rise building, a hybrid timber‐steel building using the proposed moment‐resisting connection is designed and modelled in OpenSees. To compare the seismic performance of the hybrid MRF with a conventional steel MRF, a prototype steel‐only building is also designed and modelled in OpenSees. The building models are subject to a suite of ground motions at design basis earthquake and maximum credible earthquake hazard levels using non‐linear time history analysis. Analytical results show that drifts and accelerations of the hybrid building are similar to a conventional steel building while the foundation forces are significantly reduced for the hybrid structure because of its lower seismic weight. The results of the experimental program and numerical analysis demonstrate the seismic performance of the proposed connection and the ability of the hybrid building to achieve comparable seismic performance to a conventional steel MRF.  相似文献   

18.
Research on seismic behavior and shear strength of SRHC frame columns   总被引:1,自引:1,他引:0  
The seismic behavior of steel reinforced high strength and high performance concrete(SRHC)frame columns was investigated through pseudo-static experiments of 16 frame columns with various shear span ratios,axial compression ratios,concrete strengths,steel ratios and stirrup ratios.Three kinds of failure mechanisms are presented and the characteristics of experimental hysteretic curves and skeleton curves with different design parameters are discussed.The columns’ductility and energy dissipation were quantitatively evaluated based on seismic resistance.The research results indicate that SRHC frame columns can withstand extreme bearing capacity,but the abilities of ductility and energy dissipation are inferior because of SRHC’s natural brittleness.As a result,the axial load ratio should be restricted and some construction measures adopted,such as increasing the stirrup ratio.This research established effect factors on the bearing capacity of SPHC columns.Finally,an algorithm for obtaining ultimate bearing capacity using the flexural failure mode is established based on a modified planesection assumption.The authors also established equations to determine shearing baroclinic failure and shear bond failure based on the accumulation of the axial load force distribution ratio.The calculated results of shear bearing capacity for different failure modes were in good agreement with the experimental results.  相似文献   

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