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1.
一种SMA复合摩擦阻尼器的设计与性能研究   总被引:1,自引:0,他引:1  
利用形状记忆合金(SMA)的超弹性特性,将SMA丝与摩擦阻尼器复合,提出了一种SMA复合摩擦阻尼器,给出了SMA复合摩擦阻尼器的工作机理和设计方法,建立了其理论模型,确定了SMA复合摩擦阻尼器的力-位移滞回曲线,并对一SMA复合摩擦阻尼器控震单自由度体系在地震作用下的动力响应进行了数值模拟。结果表明,提出的SMA复合摩擦阻尼器具有优良的耗能减振性能。  相似文献   

2.
新型形状记忆合金阻尼器的试验研究   总被引:23,自引:5,他引:23  
本文在对形状记忆合金(SMA)的力学性能研究的基础上,设计和制造出一种性能良好的SMA阻尼器,介绍了其工作原理及有关试验结果,将该阻尼器安装在斜拉桥模型上,进行了斜拉桥模型振动试验。试验结果表明该阻尼器的耗能效果明显,在工程结构振动控制方面具有比较好的应用前景。  相似文献   

3.
大尺寸超弹性形状记忆合金(Shape Memory Alloy,简称SMA)螺旋弹簧是一种可用于结构减振控制的阻尼器。然而,迄今为止这种超弹性阻尼器在土木工程结构隔震领域的研究较少。本文提出了一种SMA弹簧-摩擦支座(SMA Spring-Friction Bearing,简称SFB)并研究了其隔震性能。首先,在考虑材料内部相变过程的SMA本构关系模型的基础上,针对超弹性SMA弹簧的恢复力性能建立了一种便于工程应用的新的宏观现象模型。随后,推导了SFB隔震结构体系运动方程,利用MATLAB程序进行了结构地震响应的数值模拟。最后,将SFB隔震体系的地震响应与具有相同结构参数的纯摩擦支座(Pure Friction Bearing,简称PFB)隔震体系和摩擦摆(Friction Pendulum System,简称FPS)隔震体系的地震响应进行了对比分析。研究结果表明,SFB对上部结构具有良好的加速度减振效果,同时,该支座较其它两种滑动支座在降低隔震层位移峰值响应和抑制隔震支座残余位移两方面具有明显的优势。  相似文献   

4.
介绍了形状记忆合金(SMA)超弹性阻尼减振的机理,综述了国内外形状记忆合金(SMA)减振装置用于工程结构振动控制的最新进展。大量的研究结果表明形状记忆合金阻尼减振技术在土木工程结构振动控制方面具有比较好的应用前景。  相似文献   

5.
形状记忆合金超弹性阻尼性能的试验研究   总被引:6,自引:3,他引:6  
本文分析了形状记忆合金(SMA)超弹性阻尼减振的机理,通过试验研究了温度、加载频率、循环次数及预变形等因素对SMA超弹性阻尼的影响。研究结果表明,利用SMA的超弹性阻尼特性可以研制出性能良好的耗能减振装置,在工程结构振动控制方面具有比较好的应用前景。  相似文献   

6.
高柔结构在地震或风荷载作用下会产生很大的振动,本文提出一种控制高柔结构振动的新方法--摆、油阻尼器体系,并在振动台进行了模拟试验,结果表明:该方法可使结构振动位移幅值减小50%,在试验中变换了体系的各有关参数,研究了摆长,质量比,碰击间隙对减振效果的影响,文中详细研究了油阻尼器的工作过程及减振机理,从理论上初步分析了摆,油阻尼器体系减振原因,提出了可供实际设计参考的方法和原则。  相似文献   

7.
惯容器是一种新型的振动控制装置,该装置可以将螺杆的轴向运动转换为黏滞材料和旋转质量的高速旋转运动,使阻尼器的阻尼效应和质量效应得到放大。基于惯容器原理以及电涡流原理,提出一种新型的拉索式旋转电涡流阻尼器,为结构被动控制提供了新的设计思路。为研究这种新型惯容系统的减振机理,对安装拉索式旋转电涡流阻尼器单层框架的力学模型进行了探讨。推导出了配置惯容系统单质点体系的动力表达式,并基于此表达式探讨在频域内该惯容系统关键参数对单质点体系位移、速度和加速度响应的影响。结果表明:这种拉索式旋转电涡流阻尼器可以起到放大质量的效果,惯容系统可以有效地减少单质点体系的位移、速度和加速度响应幅值。  相似文献   

8.
研究采用阻尼器对连体高层结构的地震响应进行振动控制。首先从结构动力方程出发,推导了在主塔与连廊之间设置有黏滞阻尼器的有控结构的基本振动控制方程;进而通过数值模拟,以某实际工程为原型,尝试将连廊与主塔间的斜撑利用黏滞阻尼器进行替换,分别在不同地震激励下比较了有控结构和无控结构的地震响应。分析结果表明,采用黏滞阻尼器可以有效降低结构的层剪力、结构位移、加速度等地震响应;同时能量分析的结果也表明本文采用的减振方案在不同地震激励下都可以有效耗散地震能量,由此得出结论采用黏滞阻尼器提高连体高层结构的抗震安全性是可行的。  相似文献   

9.
高层建筑利用悬吊质量摆的减震研究   总被引:12,自引:0,他引:12  
本文研究了高层建筑利用悬吊质量摆的减振作用,首次提出了利用摆减小高层建筑多个振型反应的方法。文中给出了具有不同悬吊方式的摆-高层建筑结构体系的力学模型及振动方程,利用数值分析方法探讨了摆的不同悬吊方式及摆与结构的质量比等因素对结构地震反应的影响,给出了对于实际工程应用具有参考意义的结果。  相似文献   

10.
在对NiTi形状记忆合金(SMA)的力学性能试验研究的基础上,设计了一种新型SMA阻尼器,根据形状记忆合金丝的超弹性分段线性恢复力模型建立了阻尼器的理论模型,并通过阻尼器的性能试验研究验证了理论模型的正确性,试验结果表明这种阻尼器具有较好的耗能能力。  相似文献   

11.
A new seismic design manner, namely building mass damper (BMD), which is inspired from a combination of mid‐story isolation and tuned mass damper design concepts, recently attracts immense attention. It is mainly because that the use of partial structural mass of the building as an energy absorber in the BMD design can overcome the drawback of limited response reduction due to insufficient added tuned mass in the conventional tuned mass damper design. In this study, an optimum BMD (OBMD) design approach, namely optimum dynamic characteristic control approach, based on a simplified 3‐lumped‐mass structure model is proposed to seismically protect both the superstructure (or tuned mass) and the substructure (or primary structure), respectively, above and below the control layer. A series of sensitivity analyses and experimental studies on different parameters, including mass, frequency, and damping ratios, of a building model designed with a BMD system were conducted. The test results verify the practical feasibility of the BMD concept as well as the effectiveness of the proposed OBMD design. Furthermore, by comparing with the numerical results of a mid‐story isolated counterpart, it is demonstrated that the proposed OBMD design can have a comparable and even better control performance.  相似文献   

12.
The dynamic response of tall civil structures due to earthquakes is very important to civil engineers. Structures exposed to earthquakes experience vibrations that are detrimental to their structural components. Structural pounding is an additional problem that occurs when buildings experience earthquake excitation. This phenomena occurs when adjacent structures collide from their out‐of‐phase vibrations. Many energy dissipation devices are presently being used to reduce the system response. Tuned mass dampers (TMD) are commonly used to improve the response of structures. The stiffness and damping properties of the TMD are designed to be a function of the natural frequency of the building to which it is connected. This research involves attaching adjacent structures with a shared tuned mass damper (STMD) to reduce both the structures vibration and probability of pounding. Because the STMD is connected to both buildings, the problem of tuning the STMD stiffness and damping parameters becomes an issue. A design procedure utilizing a performance function is used to obtain the STMD parameters to result in the best overall system response. Copyright © 2001 John Wiley & Sons, Ltd.  相似文献   

13.
以一座矮塔斜拉桥为研究对象,分析碰撞调谐质量阻尼器对于该结构的抑震效果。首先介绍了新型碰撞调谐质量阻尼器(Pounding Tuned Mass Damper,PTMD)的减震机理及基于接触单元的非线性碰撞力模型;之后,通过ANSYS软件中的APDL语言实现了PTMD减震系统的时域分析方法,并通过三条实际地震记录验证了PTMD的抑震效果。数值分析结果表明:(1)传统调谐质量阻尼器(tuned mass damper,TMD)及新型PTMD对于矮塔斜拉桥的位移、加速度及塔身弯矩响应均有较好的抑制效果;(2)PTMD相比传统TMD多了一种碰撞耗能模式,其减震效果略高于传统TMD。  相似文献   

14.
Multiple tuned mass dampers (MTMDs) consisting of many tuned mass dampers (TMDs) with a uniform distribution of natural frequencies are considered for attenuating undesirable vibration of a structure. The MTMD is manufactured by keeping the stiffness and damping constant and varying the mass. The structure is represented by its mode‐generalized system in the specific vibration mode being controlled using the mode reduced‐order method. The optimum parameters of the MTMD are investigated to delineate the influence of the important parameters on the effectiveness and robustness of the MTMD by conducting a numerical searching technique in two directions. The parameters include: the frequency spacing, average damping ratio, mass ratio and total number. The criterion selected for the optimization is the minimization of the maximum value of the dynamic magnification factor (DMF) of the structure with MTMD (i.e. Min.Max.DMF). In this paper, for the sake of comparison, the MTMD(II), which is made by keeping the mass constant and varying the stiffness and damping coefficient, and a single TMD are also taken into account. It is demonstrated that the optimum frequency spacing of the MTMD is the same as that of the MTMD(II) and the optimum average damping ratio of the MTMD is a little larger than that of the MTMD(II). It is also found that the optimum MTMD is more effective than the optimum MTMD(II) and the optimum single TMD with equal mass. Copyright © 2000 John Wiley & Sons, Ltd.  相似文献   

15.
土木工程结构鲁棒控制的发展   总被引:1,自引:0,他引:1  
评述了结构控制的发展,指出发展结构鲁棒控制策略的重要性。重点评述了结构双重调谐质量阻尼器(DTMD)和多重双重调谐质量阻尼器(MDTMD)的控制策略,提出了需进一步发展主动双重调谐质量阻尼器(ADTMD)和主动多重双重调谐质量阻尼器(AMDTMD)控制策略、此外,评述了结构鲁棒控制的设计准则与高层建筑和大跨桥梁在风与地震作用下的统一自适应主动鲁棒控制策略。  相似文献   

16.
利用形状记忆合金(SMA)材料的超弹性,本文提出了一种放大位移型SMA阻尼器,建立了装有该阻尼器的框架有限元模型并对该框架的地震反应实施了模拟减震控制。分不安装阻尼器、安装不放大位移阻尼器和安装放大2倍层间位移阻尼器三种工况,输入El Centro和Taft地震动,对比研究了阻尼器的减震控制效果。分析结果表明:(1)放大位移型SMA阻尼器的控制效果优于不放大位移型SMA阻尼器;(2)该放大位移型SMA阻尼器对位移的控制效果优于对加速度的控制效果。  相似文献   

17.
The main intention of the present study is to reduce wind, wave, and seismic induced vibrations of jackettype offshore wind turbines (JOWTs) through a newly developed vibration absorber, called tuned liquid column gas damper (TLCGD). Using a Simulink-based model, an analytical model is developed to simulate global behavior of JOWTs under different dynamic excitations. The study is followed by a parametric study to explore efficiency of the TLCGD in terms of nacelle acceleration reduction under wind, wave, and earthquake loads. Study results indicate that optimum frequency of the TLCGD is rather insensitive to excitation type. In addition, while the gain in vibration control from TLCGDs with higher mass ratios is generally more pronounced, heavy TLCGDs are more sensitive to their tuned frequency such that ill-regulated TLCGD with high mass ratio can lead to destructive results. It is revealed that a well regulated TLCGD has noticeable contribution to the dynamic response of the JOWT under any excitation.  相似文献   

18.
提出了一种附加位移放大杠杆的新型钢弹簧浮置板道床隔振装置并进行了理论分析,给出了该装置基于位移放大倍数的阻尼力和耗能计算公式。同时设计制作了附加3倍位移放大的新型钢弹簧浮置板道床隔振装置并进行了地铁振动测试,试验结果表明:该装置隔振效果显著。通过建立新型钢弹簧浮置板道床隔振系统有限元分析模型,数值模拟结果与实测振动数据可进行较好的吻合,结果表明:新型钢弹簧浮置板道床隔振系统能有效地减小结构的动力响应。  相似文献   

19.
考虑到多维地震输入对网架结构的不利影响,基于形状记忆合金超弹性,研制出一种兼具自复位、高耗能及放大功能于一体的形状记忆合金复合黏滞阻尼器(Hybrid Shape Memory Alloy Viscous Dampers,简称HSMAVD),并通过试验研究该阻尼器在循环荷载作用下的力学性能;然后以平面四角锥网架模型为基础,将该阻尼器替换部分网架结构杆件,并分析该阻尼器减震控制效果。结果表明形状记忆合金与黏滞阻尼器复合后具有良好的协同工作能力,可有效发挥形状记忆合金的超弹性和黏滞阻尼器的速度相关特性,使其具有稳定的滞回性能和良好的耗能能力;采用阻尼杆件替换原杆件的方法既能对结构进行有效的减震控制,又不改变原有的结构形式,是一种优越的减震控制方法,并为HSMAVD被动控制系统在结构抗震中的实际应用提供新思路。  相似文献   

20.
展猛    王社良  赵云 《世界地震工程》2018,34(4):024-30
将形状记忆合金(Shape memory alloy,简称"SMA")与压电摩擦阻尼器复合设计了一种半主动混合阻尼器,对SMA丝进行了材性试验,分析了循环圈数、加载速率和应变幅值对SMA丝力学性能的影响。基于试验数据,以速度方向和应变值作为神经元输入,建立了SMA的BP神经网络本构模型,并利用T-S模糊逻辑求解压电陶瓷驱动器输出电压,对1个2层的钢框架结构进行了无控、SMA被动控制和混合控制MATLAB仿真分析。结果表明:SMA的BP网络模型预测的应力误差大多集中在20 MPa以内,且误差较大点主要集中在加载的初始段和卸载的结束段等数值较小的点,BP神经网络能够较好地预测SMA丝的本构曲线。相比SMA被动控制,混合阻尼器可以更加有效地降低结构的动力反应。  相似文献   

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