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1.
钢管混凝土短柱隔震装置的试验与隔震结构仿真分析   总被引:3,自引:0,他引:3  
本文阐述了钢管混凝土短柱装置的工作原理,给出了装置的构造,对隔震装置的试验结果进行了详细分析,并对传统结构模型与隔震结构模型的对比实验作了仿真计算与分析.从计算结果可知,钢管混凝土基底隔震装置具有良好的隔震性能和推广使用价值。  相似文献   

2.
短柱隔震模型与非隔震模型模拟地震振动台对比试验研究   总被引:1,自引:0,他引:1  
本文取一栋四层转混住宅的标准单元为模型。在两种情况下:即房屋模型底部加设钢管混凝土短柱隔震支座和不加设钢管混凝土短柱隔震支座,分别进行了模拟地震动台试验。通过试验结果的对比,了解了钢管混凝土短柱支座隔震模型的隔震效果及其抗震性能。  相似文献   

3.
摩擦-钢管混凝土短柱复合隔震支座性能试验与隔震分析   总被引:3,自引:0,他引:3  
作者在钢管混凝土柱支座隔震房屋实验研究中发现,隔震支座中上盖与底座的接触无论如何处理,摩擦力总是存在的.因此,隔震支座实际上是摩擦耗能与钢管混凝土耗能复合减震系统。本文通过对单个和一组隔震支座的实验研究,确定了短柱支座的恢复力模型,采用了高阶单步算法分析了装有此类支座隔震结构的地震反应,验证了复合隔震支座良好的隔震性能及隔震效果。  相似文献   

4.
作者在钢管混凝土柱支座隔震房屋实验研究中发现,隔震支座中上盖与底座的接触无论如何处理,摩擦力总是存在的。因此,隔震支座实际是摩擦耗能与钢管混凝土耗能复合减震系统。本文通过对单个和一组隔震支座的实验研究,确定了短柱支座的恢复力模型,采用了高阶单步算法分析了装有此类支座隔震结构的地震反应,验证了复合隔震支座的良好的隔震性能及隔震效果。  相似文献   

5.
变刚度钢管混凝土短柱隔震装置的试验分析与研究   总被引:2,自引:1,他引:1  
对变刚度钢管混凝土短柱隔震装置在低周反复荷载试验中所出现的问题进行了阐述,指出了产生问题的原因,给出了较理想的装置形式。同时,为提高装置的隔震性能,笔者提出了第二梯队支座的概念,经过理论分析与试验证,说明带有第二梯队座的变刚度钢管混凝土短柱隔震装置具有良好的隔震性能。  相似文献   

6.
本文用钢管混凝土柱作为结构底层耗能柱、用承重墙和隔震器控制结构底层倒塌破坏,从而提出了一种新的耗能-隔震柔性底层结构体系。通过本文12根钢管混凝土柱和文献[7]中7根钢管混凝土柱的低周疲劳实验,初步确定了钢管混凝土柱地震损伤模型的参数;通过两个钢管混凝土-钢筋混凝土三层框架模型和一个纯钢筋混凝土三层框架模型的拟动力实验,研究和比较了两类结构体系的地震损伤。  相似文献   

7.
钢管混凝土短柱支座隔震性能研究   总被引:3,自引:0,他引:3  
本文提出一种钢管混凝土短柱隔震支座座,通过伪静力试验测定了短柱支座的恢复力特性,给出了有关恢复力的某些特征参数的表达式;对一座廿层砌体主房屋进行了非线性地震反应分析,考察了短柱支座的特性及其隔震效果;通过模型振动台试验,进一步验证了短柱支座的耳震效果和计算模型的准确性。  相似文献   

8.
变刚度钢管混凝土短柱隔震装置的性能研究   总被引:7,自引:1,他引:6  
本文对变刚度钢管混土短柱震的滞回收性进行了理论分析和试验验证。对装置的隔震作用以及耗能特性进行了讨论通过低周反复荷载试验,证了分析的正确性。同时,试验还证明,变刚度钢管混凝土短柱震装置能很好的地耗散能量,从而减小地震反应,作者认为,该是一种价格性能比较优越的隔震装置,在工程实践中将有广阔的应用与推广前景。  相似文献   

9.
本文通过一座三层的耗能-隔震柔性底层钢管混凝土结构模型和一座三层普通钢筋混凝上结构模型的振动台实验,着重研究了耗能-隔震柔性底层钢管混凝上结构的抗震性能和减震效果,并与普通的钢筋混凝土结构的实验进行了分析比较,研究了两种结构体系在地震作用下的耗能分布和地震累积损伤情况。实验结果表明,耗能-隔震柔性底层能够有效地吸收地震输入的大部分能量,防止和减小了上部结构的地震破坏.文中还讨论了耗能-隔震柔性底层结构中钢管混凝土柱与橡胶隔震器之间的轴力分配以及在水平变形下的稳定性问题.  相似文献   

10.
本文用钢管混凝土柱作为结构底层耗能柱、用承重重墙和隔器控制结构层倒塌破坏,从而提出了一种新的耗能-隔震柔性底层结构体系。  相似文献   

11.
设置防屈曲支撑的钢管混凝土框架是一种新型钢管混凝土减震结构。采用有限元软件Opensees对设置防屈曲支撑的单层单跨钢管混凝土减震框架进行数值模拟,研究了框架梁柱线刚度比、防屈曲支撑初始刚度以及钢管混凝土柱轴压比等设计参数对该减震结构抗震性能的影响。研究结果表明:1数值模拟和试验结果吻合较好,验证了有限元模型的正确性;2梁柱线刚度比在0.1~0.3之间变化时,钢管混凝土减震框架的抗震性能较好;3BRB耗能支撑的初始刚度K1在40~80kN/mm变化时,减震框架的耗能减震效应较明显;4在合理的钢管混凝土柱轴压比范围内,当轴压比较大时,在钢管混凝土框架中设置防屈曲支撑能明显地提高结构的耗能能力和改善结构的强度退化现象。  相似文献   

12.
底部加强型多腔钢管混凝土巨型柱抗震性能试验研究   总被引:2,自引:0,他引:2  
为适应巨型框架结构发展,提出了一种底部加强型多腔钢管混凝土巨型柱。为了比较它与相应普通多腔钢管混凝土巨型柱抗震性能的差异,进行了6个1/25缩尺的巨型柱模型在轴向压力或轴向拉力下的低周反复荷载试验研究。6个模型中:按底部截面构造区分,3个试件为底部加强型巨型柱模型,3个试件为相应普通巨型柱模型;按轴力作用方向区分,4个试件为轴压试件,轴压比分别为0.5、0.25,2个试件为轴拉试件,轴拉比为0.2。比较分析了各试件的承载力、刚度及其退化过程、延性、滞回特性、耗能和破坏特征。研究表明:底部加强型巨型柱与普通巨型柱相比,承载力、延性、耗能能力明显提高,刚度退化速度减慢,工作性能较稳定;轴压试件与轴拉试件相比,轴压试件抗震性能相对较好。  相似文献   

13.
针对钢筋混凝土梁与钢管混凝土柱的穿筋连接形式,研究了钢管开穿筋小孔及加固对钢管混凝土柱抗震性能的影响。对于未开孔、开孔和开孔并加固三种情况,进行了3个直径为610 mm的足尺钢管混凝土柱试件的低周反复荷载试验。试验结果表明:未开孔试件在距根部100 mm处发生钢管屈曲破坏;开孔试件的破坏主要是开孔处屈曲撕裂,开孔对钢管混凝土柱初期刚度和峰值承载力影响不大,但在峰值承载力后受孔边撕裂破坏影响,开孔试件的刚度和强度退化较快、延性和耗能能力降低;开孔并加固试件的破坏位置上移至加固段上部约90 mm处,与未开孔试件表现出相似的抗震性能。  相似文献   

14.
为研究不同形式的中心支撑对钢管混凝土结构抗连续倒塌性能的影响,基于纤维梁模型建立5种钢管混凝土框架-中心支撑结构数值模型,在合理选取钢材和混凝土材料本构模型的基础上,计算不同失效工况下结构的抗连续倒塌非线性动力响应,通过非线性静力加载获得结构的整体刚度和极限承载力。研究结果表明:设置中心支撑均可以提高结构的整体刚度和抗倒塌承载能力,其中对边柱失效工况的提升效果好于中柱失效工况;设置中心支撑提供了新的荷载传递路径,可以有效减小失效柱相邻构件的分配内力;X型支撑在不同失效工况下都能显著提升框架刚度和承载能力,降低失效节点的竖向位移,反斜支撑框架表现出更好的延性和极限承载能力,研究结果可为建筑结构抗连续倒塌设计提供参考。  相似文献   

15.
Results are presented of an investigation, the objective of which was to determine the relationship between the stiffness variability of the bearings of an isolation system and the response variability of the structure. The system is modeled as a rigid, rectangular structure that is free to translate and rotate. The isolation system consists of N isolation bearings arranged in a rectangular pattern, each with a stiffness ki that is an independent, normally distributed, random variable. Response spectrum analysis is used to obtain the analytical solution for the structure response. Approximate closed‐form expressions are obtained for the variance of the centreline displacement, rotation, corner displacement and base shear, that are in terms of the variability of the isolator stiffness, aspect ratio of the structure, and the number and layout of isolation bearings. Results show that the standard deviation of the centreline displacement and base shear decrease with increasing number of isolation bearings, and are independent of the aspect ratio and layout of isolators, and in all cases are less than 1/4 the standard deviation of the isolator stiffness. The standard deviation of the corner displacement is a function of all of the system parameters, and is bounded below by the standard deviation of the centreline displacement and above by the standard deviation of a bar aligned perpendicular to the direction of ground motion with m isolation bearings distributed along the length. The approximate expressions are shown to be in good agreement with the results of Monte Carlo simulations. The results should be of use to designers of isolated structures and manufacturers of isolation systems, in assessing the significance of stiffness variability on the response of the isolated structure. Copyright © 2000 John Wiley & Sons, Ltd.  相似文献   

16.
提出了连排钢管混凝土柱带钢板耗能键组合剪力墙,它由钢管混凝土连排柱、柱间钢板耗能键、钢板耗能键外包混凝土条带三种单元组合而成。进行了4个不同设计参数试件的低周反复荷载试验研究。分析了各试件的承载力、刚度及其退化过程、滞回特性、延性和破坏特征,探讨了分灾耗能机制。研究表明:连排钢管混凝土柱带钢板耗能键组合剪力墙,承载力较大,后期刚度较稳定;混凝土条带在开裂与闭合过程中消耗地震能量,钢板耗能键通过弯剪变形消耗地震能量,钢管与混凝土条带共同工作协同耗能,具有良好的抗震耗能机制;这种新型组合剪力墙具有较强综合抗震耗能能力。  相似文献   

17.
西方嵩层框支剪力墙结构地震反应分析的超元法,即将每榀框支墙中的上部剪力墙和落地墙简化处理成等效柱,底部框架简化处理成等代柱,楼板视为深梁,将连续分布的质量离散化,建立二维空间结构的“串并联质点系”振动模型,采用超级单元进行结构的地震作用计算及内力分析,此法计算简便并适用于结构竖向变刚度和考虑楼板变形等情况。  相似文献   

18.
This paper presents a passive vertical quasi‐zero‐stiffness vibration isolator intended for relatively small objects. The present isolator has features of compactness, long stroke, and adjustability to various load capabilities. To realize these features, we use constant‐force springs, which sustain constant load regardless of their elongation, and propose a variable ellipse curve mechanism that is inspired by the principle of ellipsographs. The variable ellipse curve mechanism can convert the restoring force of the horizontally placed constant‐force springs to the vertical restoring force of the vibration isolator. At the same time as converting the direction, the vertical restoring force can be adjusted by changing the ratio of the semi‐minor axis to the semi‐major one of the ellipse. In this study, a prototype of a class of quasi‐zero‐stiffness vibration isolator with the proposed variable ellipse curve mechanism is created. Shaking table tests are performed to demonstrate the efficacy of the present mechanism, where the prototype is subjected to various sinusoidal and earthquake ground motions. It is demonstrated through the shaking table tests that the prototype can reduce the response acceleration within the same specified tolerance even when the mass of the vibration isolated object is changed. Copyright © 2017 John Wiley & Sons, Ltd.  相似文献   

19.
Because a conventional isolation system with constant isolation frequency is usually a long‐period dynamic system, its seismic response is likely to be amplified in earthquakes with strong long‐period wave components, such as near‐fault ground motions. Seismic isolators with variable mechanical properties may provide a promising solution to alleviate this problem. To this end, in this work sliding isolators with variable curvature (SIVC) were studied experimentally. An SIVC isolator is similar to a friction pendulum system (FPS) isolator, except that its sliding surface has variable curvature rather being spherical. As a result, the SIVC's isolation stiffness that is proportional to the curvature becomes a function of the isolator displacement. By appropriately designing the geometry of the sliding surface, the SIVC is able to possess favorable hysteretic behavior. In order to prove the applicability of the SIVC concept, several prototype SIVC isolators, whose sliding surfaces are defined by a sixth‐order polynomial function, were fabricated and tested in this study. A cyclic element test on the prototype SIVC isolators and a shaking table test on an SIVC isolated steel frame were all conducted. The results of both tests have verified that the prototype SIVC isolators do indeed have the hysteretic property of variable stiffness as prescribed by the derived formulas in this study. Moreover, it is also demonstrated that the proposed SIVC is able to effectively reduce the isolator drift in a near‐fault earthquake with strong long‐period components, as compared with that of an FPS system with the same friction coefficient. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

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