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带预应力橡胶支座相邻隔震结构碰撞分析 被引量:5

Pounding of adjacent isolated-structures with prestressed rubber bearings
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摘要 普通橡胶支座(RB)隔震结构在强震作用下因水平位移过大而容易与相邻结构产生碰撞。应用非线性Hertz-damp碰撞单元,建立了带预应力隔震支座(PRB)的相邻结构碰撞模型,推导了其动力碰撞方程。在此基础上,研究预应力隔震支座对相邻隔震结构碰撞的影响,分析了其碰撞响应的影响因素。研究表明:与普通橡胶隔震支座相比,预应力橡胶隔震支座能有效减小隔震结构的水平位移,从而减小相邻结构的碰撞响应。 Base-isolated structures with general rubber bearings may impact adjacent buildings easily due to the excessive horizontal displacements under strong earthquake.Here,using nonlinear pounding element,a pounding model of adjacent isolated structures with prestressed rubber bearings (PRBs)was built,and the pounding dynamic equation was deduced.On this basis,the influence of prestressed rubber bearings (PRBs)on the pounding of adjacent isolated structures was studied,and the influencing factors of pounding is analysed.The results showed that compared to general RB,PRB can reduce effectively the horizontal displacements of isolated structures,and diminish the pounding responses of adjacent structures.
出处 《振动与冲击》 EI CSCD 北大核心 2014年第9期131-136,共6页 Journal of Vibration and Shock
基金 国家自然科学基金资助项目(51108091)
关键词 相邻结构 预应力支座 碰撞 非线性 adjacent structurs pounding nonlinear
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参考文献14

  • 1Bertero V V. Observations on structural pounding [ J ]. Proceedings International Conference on Mexico Earthquakes,ASCE, 1987:264 - 278.
  • 2Rosenblueth E, Meli R. The 1985 earthquake: Ca-uses and effects in Mexico City [ J]. Concrete International, 1986, 8: 23 - 34.
  • 3Nagarajaiah S, Sun X H. Base-isolated FCC building: Impact response in Northridge earthquake [ J ]. Journal of Structural Engineering, 2001, 127 (9) : 1063 - 1075.
  • 4Matsagar V A, Jangid R S. Seismic response of base-isolated structures during impact with adjacent structures [ J ]. Engineering Structures, 2003, 25 : 1311 - 1323.
  • 5Panayiotis C P, Petros K. On poundings of a seismically isolated building with adjacent structures during strong earthquakes [ J ]. Earthquake Engineering Structural dynamics, 2010, 39:933 - 940.
  • 6Zou L H, Huang K, Zhang W, et al. Prestress rubber isolator and its mechanical properties [ J ]. Advanced Materials Research, 2011, 163 - 167 : 4405 -4414.
  • 7邹立华,饶宇,黄凯,郭润,许志旭.预应力厚层橡胶支座隔震性能研究[J].建筑结构学报,2013,34(2):76-82. 被引量:19
  • 8Anagnostopoulos S A. Pounding of buildings in series during earthquakes [ J ]. Earthquake Engineering and Structural Dynamics 1988, 16(3) : 443 -456.
  • 9Davis R O. Pounding of buildings modelled by an impact oscillator [ J ]. Earthquake Engineering and Structural Dynamics, 1992, 21 (3) :253 - 274.
  • 10Marhefka D W, Orin D E. A compliant contact model with nonlinear damping for simulation of robotic systems [ J ]. IEEE Transactions on Systems, Man, and Cybernetics-Part A : Systems and Hu-Mans, 1999, 29 : 566 - 572.

二级参考文献14

  • 1崔艺斌,张富有.带限位钢棒隔震橡胶垫基本特性研究[J].河海大学学报(自然科学版),2007,35(3):302-304. 被引量:6
  • 2魏陆顺,周福霖,任珉,刘文光,谭平,黄襄云,陈建秋.三维隔震(振)支座的工程应用与现场测试[J].地震工程与工程振动,2007,27(3):121-125. 被引量:41
  • 3彭天波,李建中,范立础.双曲面球型减隔震支座的竖向位移分析[J].同济大学学报(自然科学版),2007,35(9):1181-1185. 被引量:26
  • 4周福霖.工程结构减震控制[M]北京:地震出版社,199766-67.
  • 5Iizuka M. A macroscopic model for prediction large deformation behaviors of laminated rubber bearings[J].Engineering Structures,2000,(04):323-334.
  • 6Kang B S,Kang G J,Moon B Y. Hole and lead plug effect on fiber reinforced elastomeric isolator for seismic isolation[J].Journal of Materials Processing Technology,2003,(01):592-597.
  • 7Ismail M,Rodellar J,Ikhouane F. An innovative isolation device for aseismic design[J].Engineering Structures,2009,(04):1168-1183.
  • 8Kasalanati A,Constantinou M C. Testing and modeling of prestressed isolators[J].Journal of Structural Engineering ASCE,2005,(06):857-866.
  • 9Lindley P B. Natural rubber structural bearings[A].Detroit:American Concrete Institute,1981.353-378.
  • 10Gent A N. Eclectic stability of rubber compression springs[J].Journal of Mechanical Engineering Science,1964,(04):318-326.

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