399
Views
32
CrossRef citations to date
0
Altmetric
Original Articles

Innovative Superelastic Isolation Device

&
Pages 72-89 | Published online: 01 Apr 2011

References

  • ABAQUS . 2003 . Analysis User's Manual Version 6.4 , Pawtucker, Rhode Island, , USA : Hibbitt, Karlsson & Sorensen Inc .
  • Attanasi , G. , Auricchio , F. and Fenves , G. L. 2009a . Feasibility investigation of superelastic effect devices for seismic isolation applications . Journal of Materials Engineering and Performance , 18 : 729 – 737 .
  • Attanasi , G. , Auricchio , F. and Fenves , G. L. 2009b . Feasibility assessment of an innovative isolation bearing system with shape memory alloys . Journal of Earthquake Engineering , 13 : 18 – 39 .
  • Attanasi , G. , Auricchio , F. and Urbano , M. 2011a . Theoretical and experimental investigation on SMA superelastic springs,” accepted for publication at . Journal of Materials Engineering and Performance , doi: 10.1007/s11665-011-9831-5
  • Attanasi , G. , Auricchio , F. and Urbano , M. 2011b . Theoretical and experimental investigation on SMA superelastic springs part 1 – basics on spring mechanics and numerical response evaluation . submitted ,
  • Attanasi , G. , Auricchio , F. and Urbano , M. 2011c . Theoretical and experimental investigation on SMA superelastic springs part 2 – experimental tests . submitted ,
  • Auricchio , F. and Taylor , R. 1996 . Shape-memory alloys: modeling and numerical simulations of the finite-strain superelastic behaviour . Computer Methods in Applied Mechanics and Engineering , 143 : 175 – 94 .
  • Auricchio , F. and Taylor , R. 1997 . Shape-memory alloys: macromodeling and numerical simulations of the superelastic behaviour . Computer Methods in Applied Mechanics and Engineering , 146 : 281 – 312 .
  • Bondonet , G. and Filiatrault , A. Elabotation d'un isolateur parasismique a la base pour les ponts et viaducs au Canada . Research Report 11 . 1997 . Ecole Polytechnique de Montreal
  • Cardone , D. , Canio , G. D. , Dolce , M. , Marnetto , R. , Moroni , C. , Nicoletti , M. , Nigro , D. , Pizzari , A. , Ponzo , F. , Renzi , E. and Santarsiero , G. 2003 . “ Comparison of different passive control techniques through shaking table tests ” . In 8th World Seminar on Seismic Isolation, Energy Dissipation and Active Vibration Control of Structure Yerevan, , Armenia
  • Casciati , F. , Faravelli , L. and Hamdaoui , K. 2007 . Performance of a base isolator with shape memory alloy bars . Earthquake Engineering and Engineering Vibration , 6 : 401 – 408 .
  • CEN . 2004 . Eurocode 8: Design of Structures for Earthquake Resistance—Part 1: General Rules, Seismic Actions and Rules for Buildings , Brussels, Belgium : EN 1998-1:2004, Comité Européen de Normalisation .
  • Choi , E. , Nam , T. , Oh , J. and Cho , B. 2006 . An isolation bearing for highway bridges using shape memory alloys . Materials Science and Engineering A , 438 : 1081 – 1084 .
  • Chopra , A. K. 2006 . Dynamics of Structures. Theory and Applications to Earthquake Engineering , 3rd , Upper Saddle River, NJ : Prentice-Hall .
  • Christopoulos , C. and Filiatrault , A. 2006 . Principles of Passive Supplemental Damping and Seismic Isolation , Pavia, , Italy : IUSS Press .
  • Constantinou , M. , Mokha , A. and Reinhorn , A. 1990 . Teflon bearings in base isolation II: modeling . Journal of Structural Engineering , 116 : 455 – 474 .
  • DesRoches , R. and Smith , B. 2003 . Shape memory alloys in seismic resistant design and retrofit: a critical review of their potential and limitations . Journal of Earthquake Engineering , 7 : 1 – 15 .
  • Dolce , M. and Cardone , D. 2001 . Mechanical behaviour of shape memory alloys for seismic applications 1. martensite and austenite NiTi bars subjected to torsion . International Journal of Mechanical Sciences , 43 : 2631 – 2656 .
  • Dolce , M. , Cardone , D. and Croatto , F. 2005 . Frictional behavior of Steel-PTFE interfaces for seismic isolation . Bulletin of Earthquake Engineering , 3 : 75 – 99 .
  • Dolce , M. , Cardone , D. and Marnetto , R. 2000 . Implementation and testing of passive control devices based on shape memory alloys . Earthquake Engineering & Structural Dynamics , 29 : 945 – 968 .
  • Dolce , M. , Cardone , D. and Palermo , G. 2007a . Seismic isolation of bridges using isolation systems based on flat sliding bearings . Bulletin of Earthquake Engineering , 5 : 491 – 509 .
  • Dolce , M. , Cardone , D. and Ponzo , F. C. 2007b . Shaking-table tests on reinforced concrete frames with different isolation systems . Earthquake Engineering & Structural Dynamics , 36 : 573 – 596 .
  • Higashino , M. , Hamaguchi , H. , Minewaki , S. and Aizawa , S. 2003 . Basic characteristics and durability of low-friction sliding bearing for base isolation . Earthquake Engineering and Engineering Seismology , 4 : 9 – 105 .
  • Jangid , R. S. 2000 . Optimum frictional elements in sliding isolation systems . Computers & Structures , 76 : 651 – 661 .
  • Liu , H. , Wang , X. and Liu , J. 2008 . The shaking table test of an SMA strands-composite bearing . Engineering and Engineering Vibration , 28 : 152 – 156 .
  • Lubliner , J. and Auricchio , F. 1996 . Generalized plasticity and shape memory alloy . International Journal of Solids and Structures , 33 : 991 – 1003 .
  • Makris , N. and Chang , S. 2000 . Effect of viscous, viscoplastic and friction damping on the response of seismic isolated structures . Earthquake Engineering & Structural Dynamics , 29 : 85 – 107 .
  • Mokha , A. , Constantinou , M. and Reinhorn , A. 1990 . Teflon bearings in base isolation I: testing . Journal of Structural Engineering , 116 : 438 – 454 .
  • Naeim , F. and Kelly , J. M. 1999 . Design of Seismic Isolated Structures. From Theory to Practice , New York : John Wiley and Sons .
  • Priestley , M. J. N. , Calvi , G. M. and Kowalsky , M. J. 2007 . Displacement-Based Seismic Design of Structures , Pavia, , Italy : IUSS Press .
  • Skinner , R. I. , Robinson , W. H. and McVerry , G. H. 1993 . An Introduction to Seismic Isolation , Chichester, , UK : John Wiley and Sons .
  • Song , G. , Ma , N. and Li , H.-N. 2006 . Applications of shape memory alloys in civil structures . Engineering Structures , 28 : 1266 – 1274 .
  • Toi , Y. , Lee , J.-B. and Taya , M. 2004 . Finite element analysis of superelastic, large deformation behavior of shape memory alloy helical springs,” . Computers and Structures , 82 ( 20–21 ) : 1685 – 1693 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.