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Erschienen in: Meccanica 4-5/2018

31.10.2017

Development and theoretically evaluation of an STF–SF isolator for seismic protection of structures

verfasst von: Minghai Wei, Gang Hu, Lixiao Li, Haitao Liu

Erschienen in: Meccanica | Ausgabe 4-5/2018

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Abstract

This study deals with the mechanical behavior of a shear thickening fluid–sliding friction (STF–SF) isolator, and investigates the feasibility of its application in anti-seismic engineering from a theoretical perspective. The STF–SF isolator is composed of a conventional sliding friction (SF) material and a smart shear thickening fluid (STF) material. When the excitation energy is small, the SF material keeps the structure static or only has a small vibration. However, when the excitation energy is large, the STF material results a huge damping force and dissipation of the external energy, eventually reducing the relative motion between the base and the upper structure. To better understand this phenomenon, a mechanistic study of the STF–SF isolator is proceeded by an analytical model which is derived from flow momentum equations. After that, the seismic protective effect of the STF–SF isolator is evaluated at harmonic excitation with different accelerations through a single degree of freedom (SDOF) structure. Furthermore, the effects of layer gap, layer number and friction coefficient of the STF–SF isolator on the seismic protective effect are investigated. The results show that the STF–SF isolator can significantly decrease both the displacement response and the acceleration response of the SDOF structure. This theoretical study indicates the STF–SF isolator can be used in anti-seismic engineering.

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Literatur
1.
Zurück zum Zitat Skinner RI, Robinson WH, McVerry GH (1993) An introduction to seismic isolation. Wiley, New York Skinner RI, Robinson WH, McVerry GH (1993) An introduction to seismic isolation. Wiley, New York
2.
Zurück zum Zitat Kelly JM (1999) The role of damping in seismic isolation. Earthq Eng Struct Dyn 28:1717–1720CrossRef Kelly JM (1999) The role of damping in seismic isolation. Earthq Eng Struct Dyn 28:1717–1720CrossRef
3.
Zurück zum Zitat Abdalla JA, Petrovski JT, Mohamedzein EA (2008) Vibration characteristics of a far field earthquake and its shaking effects on Dubai emerging skyscrapers. In: The 14th world conference on earthquake engineering, Beijing, China Abdalla JA, Petrovski JT, Mohamedzein EA (2008) Vibration characteristics of a far field earthquake and its shaking effects on Dubai emerging skyscrapers. In: The 14th world conference on earthquake engineering, Beijing, China
4.
Zurück zum Zitat Satish N, Sriram N, Erik J (2008) Structural control benchmark problem: phase II-nonlinear smart base-isolated building subjected to near-fault earthquakes. Struct Control Health Monit 15:653–656CrossRef Satish N, Sriram N, Erik J (2008) Structural control benchmark problem: phase II-nonlinear smart base-isolated building subjected to near-fault earthquakes. Struct Control Health Monit 15:653–656CrossRef
5.
Zurück zum Zitat Jangid RS, Kelly JM (2010) Base isolation for near-fault motion. Earthq Eng Struct Dyn 30:691–707CrossRef Jangid RS, Kelly JM (2010) Base isolation for near-fault motion. Earthq Eng Struct Dyn 30:691–707CrossRef
6.
Zurück zum Zitat Mazza F, Vulcano A (2012) Effects of near-fault ground motions on the nonlinear dynamic response of base-isolated r.c. framed buildings. Earthq Eng Struct Dyn 41:211–232CrossRef Mazza F, Vulcano A (2012) Effects of near-fault ground motions on the nonlinear dynamic response of base-isolated r.c. framed buildings. Earthq Eng Struct Dyn 41:211–232CrossRef
7.
Zurück zum Zitat Shih M-C, Wang T-Y (2008) Active control of electro-rheological fluid embedded pneumatic vibration isolator. Integr Comput Aided Eng 15:267–276 Shih M-C, Wang T-Y (2008) Active control of electro-rheological fluid embedded pneumatic vibration isolator. Integr Comput Aided Eng 15:267–276
8.
Zurück zum Zitat Li Y, Li J, Tian T, Li W (2013) A highly adjustable magnetorheological elastomer base isolator for applications of real-time adaptive control. Smart Mater Struct 22:095020ADSCrossRef Li Y, Li J, Tian T, Li W (2013) A highly adjustable magnetorheological elastomer base isolator for applications of real-time adaptive control. Smart Mater Struct 22:095020ADSCrossRef
9.
Zurück zum Zitat Yang J, Sun S, Tian T, Li W, Du H, Alici G, Nakano M (2016) Development of a novel multi-layer MRE isolator for suppression of building vibrations under seismic events. Mech Syst Singal Process 70–71:811–820CrossRef Yang J, Sun S, Tian T, Li W, Du H, Alici G, Nakano M (2016) Development of a novel multi-layer MRE isolator for suppression of building vibrations under seismic events. Mech Syst Singal Process 70–71:811–820CrossRef
10.
Zurück zum Zitat Mekaouche A, Chapelle F, Balandraud X (2016) Using shape memory alloys to obtain variable compliance maps of a flexible structure: concept and modeling. Meccanica 51:1287–1299CrossRef Mekaouche A, Chapelle F, Balandraud X (2016) Using shape memory alloys to obtain variable compliance maps of a flexible structure: concept and modeling. Meccanica 51:1287–1299CrossRef
11.
Zurück zum Zitat Oh H-U, Onoda J, Minesugi K (2004) Semiactive isolator with liquid-crystal type ER fluid for momentum-wheel vibration isolation. J Vib Acoust 126:272–277CrossRef Oh H-U, Onoda J, Minesugi K (2004) Semiactive isolator with liquid-crystal type ER fluid for momentum-wheel vibration isolation. J Vib Acoust 126:272–277CrossRef
12.
Zurück zum Zitat Stelzer GJ, Schulz MJ, Kim J, Allemang RJ (2003) A magnetorheological semi-active isolator to reduce noise and vibration transmissibility in automobiles. J Intell Mater Syst Struct 14:743–765CrossRef Stelzer GJ, Schulz MJ, Kim J, Allemang RJ (2003) A magnetorheological semi-active isolator to reduce noise and vibration transmissibility in automobiles. J Intell Mater Syst Struct 14:743–765CrossRef
13.
Zurück zum Zitat York D, Wang X, Gordaninejad F (2007) A new MR fluid-elastomer vibration isolator. J Intell Mater Syst Struct 18:1221–1225CrossRef York D, Wang X, Gordaninejad F (2007) A new MR fluid-elastomer vibration isolator. J Intell Mater Syst Struct 18:1221–1225CrossRef
14.
Zurück zum Zitat Wang W, Song Y (2012) Nonlinear vibration semi-active control of automotive steering using magneto-rheological damper. Meccanica 47:2027–2039MathSciNetCrossRefMATH Wang W, Song Y (2012) Nonlinear vibration semi-active control of automotive steering using magneto-rheological damper. Meccanica 47:2027–2039MathSciNetCrossRefMATH
15.
Zurück zum Zitat Yu Y, Li Y, Li J (2015) Parameter identification and sensitivity analysis of an improved LuGre friction model for magnetorheological elastomer base isolator. Meccanica 50:2691–2707CrossRef Yu Y, Li Y, Li J (2015) Parameter identification and sensitivity analysis of an improved LuGre friction model for magnetorheological elastomer base isolator. Meccanica 50:2691–2707CrossRef
16.
Zurück zum Zitat Nurul AAW, Mazlan SA, Kamaruddin S, Nik INI, Choi SB, Amirul HRS (2016) Fabrication and investigation on field-dependent properties of natural rubber based magneto-rheological elastomer isolator. Smart Mater Struct 25:107002ADSCrossRef Nurul AAW, Mazlan SA, Kamaruddin S, Nik INI, Choi SB, Amirul HRS (2016) Fabrication and investigation on field-dependent properties of natural rubber based magneto-rheological elastomer isolator. Smart Mater Struct 25:107002ADSCrossRef
17.
Zurück zum Zitat Yu Y, Li Y, Li J, Gu X (2016) A hysteresis model for dynamic behaviour of magnetorheological elastomer base isolator. Smart Mater Struct 25:055029ADSCrossRef Yu Y, Li Y, Li J, Gu X (2016) A hysteresis model for dynamic behaviour of magnetorheological elastomer base isolator. Smart Mater Struct 25:055029ADSCrossRef
18.
Zurück zum Zitat Attanasi G, Auricchio F, Fenves GL (2009) Feasibility assessment of an innovative isolation bearing system with shape memory alloys. J Earthq Eng 13:18–39CrossRef Attanasi G, Auricchio F, Fenves GL (2009) Feasibility assessment of an innovative isolation bearing system with shape memory alloys. J Earthq Eng 13:18–39CrossRef
19.
Zurück zum Zitat Jeong H-K, Han J-H, Youn S-H, Lee J (2014) Frequency tunable vibration and shock isolator using shape memory alloy wire actuator. J Intell Mater Syst Struct 25:908–919CrossRef Jeong H-K, Han J-H, Youn S-H, Lee J (2014) Frequency tunable vibration and shock isolator using shape memory alloy wire actuator. J Intell Mater Syst Struct 25:908–919CrossRef
21.
Zurück zum Zitat Gur S, Mishra SK, Chakraborty S (2014) Performance assessment of buildings isolated by shape-memory-alloy rubber bearing: comparison with elastomeric bearing under near-fault earthquakes. Struct Control Health Monit 21:449–465CrossRef Gur S, Mishra SK, Chakraborty S (2014) Performance assessment of buildings isolated by shape-memory-alloy rubber bearing: comparison with elastomeric bearing under near-fault earthquakes. Struct Control Health Monit 21:449–465CrossRef
22.
Zurück zum Zitat Lee BW, Kim CG (2012) Computational analysis of shear thickening fluid impregnated fabrics subjected to ballistic impacts. Adv Compos Mater 21:177–192CrossRef Lee BW, Kim CG (2012) Computational analysis of shear thickening fluid impregnated fabrics subjected to ballistic impacts. Adv Compos Mater 21:177–192CrossRef
23.
Zurück zum Zitat Waitukaitis SR, Jaeger HM (2012) Impact-activated solidification of dense suspensions via dynamic jamming fronts. Nature 487:205–209ADSCrossRef Waitukaitis SR, Jaeger HM (2012) Impact-activated solidification of dense suspensions via dynamic jamming fronts. Nature 487:205–209ADSCrossRef
24.
Zurück zum Zitat Pinto F, Meo M (2016) Design and manufacturing of a novel shear thickening fluid composite (STFC) with enhanced out-of-plane properties and damage suppression. Appl Compos Mater 24:1–18 Pinto F, Meo M (2016) Design and manufacturing of a novel shear thickening fluid composite (STFC) with enhanced out-of-plane properties and damage suppression. Appl Compos Mater 24:1–18
25.
Zurück zum Zitat Majumdar A, Butola BS, Srivastava A, Bhattacharjee D, Biswas I, Laha A, Arora S, Ghosh A (2016) Improving the impact resistance of p-aramid fabrics by sequential impregnation with shear thickening fluid. Fiber Polym 17:199–204CrossRef Majumdar A, Butola BS, Srivastava A, Bhattacharjee D, Biswas I, Laha A, Arora S, Ghosh A (2016) Improving the impact resistance of p-aramid fabrics by sequential impregnation with shear thickening fluid. Fiber Polym 17:199–204CrossRef
26.
Zurück zum Zitat Park JL, Yoon BI, Paik JG, Kang TJ (2012) Ballistic performance of p-aramid fabrics impregnated with shear thickening fluid; Part II—effect of fabric count and shot location. Text Res J 82:542–557CrossRef Park JL, Yoon BI, Paik JG, Kang TJ (2012) Ballistic performance of p-aramid fabrics impregnated with shear thickening fluid; Part II—effect of fabric count and shot location. Text Res J 82:542–557CrossRef
27.
Zurück zum Zitat Wei M, Hu G, Jin L, Lin K, Zou D (2016) Forced vibration of a shear thickening fluid sandwich beam. Smart Mater Struct 25:055041ADSCrossRef Wei M, Hu G, Jin L, Lin K, Zou D (2016) Forced vibration of a shear thickening fluid sandwich beam. Smart Mater Struct 25:055041ADSCrossRef
28.
Zurück zum Zitat Iyer SS, Vedad-Ghavami R, Lee H, Liger M, Kavehpour HP, Candler RN (2013) Nonlinear damping for vibration isolation of microsystems using shear thickening fluid. Appl Phys Lett 102:251902ADSCrossRef Iyer SS, Vedad-Ghavami R, Lee H, Liger M, Kavehpour HP, Candler RN (2013) Nonlinear damping for vibration isolation of microsystems using shear thickening fluid. Appl Phys Lett 102:251902ADSCrossRef
29.
Zurück zum Zitat Fischer C, Braun SA, Bourban PE, Michaud V, Plummer CJG, Manson JAE (2006) Dynamic properties of sandwich structures with integrated shear-thickening fluids. Smart Mater Struct 15:1467–1475ADSCrossRef Fischer C, Braun SA, Bourban PE, Michaud V, Plummer CJG, Manson JAE (2006) Dynamic properties of sandwich structures with integrated shear-thickening fluids. Smart Mater Struct 15:1467–1475ADSCrossRef
30.
Zurück zum Zitat Jiang WF, Gong XL, Xuan SH, Jiang WQ, Ye F, Li XF, Liu TX (2013) Stress pulse attenuation in shear thickening fluid. Appl Phys Lett 102:101901ADSCrossRef Jiang WF, Gong XL, Xuan SH, Jiang WQ, Ye F, Li XF, Liu TX (2013) Stress pulse attenuation in shear thickening fluid. Appl Phys Lett 102:101901ADSCrossRef
31.
Zurück zum Zitat Lee YS, Wetzel ED, Wagner NJ (2003) The ballistic impact characteristics of Kevlar (R) woven fabrics impregnated with a colloidal shear thickening fluid. J Mater Sci 38:2825–2833ADSCrossRef Lee YS, Wetzel ED, Wagner NJ (2003) The ballistic impact characteristics of Kevlar (R) woven fabrics impregnated with a colloidal shear thickening fluid. J Mater Sci 38:2825–2833ADSCrossRef
32.
Zurück zum Zitat Park Y, Kim Y, Baluch AH, Kim C-G (2015) Numerical simulation and empirical comparison of the high velocity impact of STF impregnated Kevlar fabric using friction effects. Compos Struct 125:520–529CrossRef Park Y, Kim Y, Baluch AH, Kim C-G (2015) Numerical simulation and empirical comparison of the high velocity impact of STF impregnated Kevlar fabric using friction effects. Compos Struct 125:520–529CrossRef
33.
Zurück zum Zitat Fischer C, Bennani A, Michaud V, Jacquelin E, Manson JAE (2010) Structural damping of model sandwich structures using tailored shear thickening fluid compositions. Smart Mater Struct 19:035017ADSCrossRef Fischer C, Bennani A, Michaud V, Jacquelin E, Manson JAE (2010) Structural damping of model sandwich structures using tailored shear thickening fluid compositions. Smart Mater Struct 19:035017ADSCrossRef
34.
Zurück zum Zitat Zhang XZ, Li WH, Gong XL (2008) The rheology of shear thickening fluid (STF) and the dynamic performance of an STF-filled damper. Smart Mater Struct 17:035027ADSCrossRef Zhang XZ, Li WH, Gong XL (2008) The rheology of shear thickening fluid (STF) and the dynamic performance of an STF-filled damper. Smart Mater Struct 17:035027ADSCrossRef
35.
Zurück zum Zitat Zhou H, Yan LX, Jiang WQ, Xuan SH, Gong XL (2014) Shear thickening fluid–based energy-free damper: design and dynamic characteristics. J Intell Mater Syst Struct 27:1–13 Zhou H, Yan LX, Jiang WQ, Xuan SH, Gong XL (2014) Shear thickening fluid–based energy-free damper: design and dynamic characteristics. J Intell Mater Syst Struct 27:1–13
36.
Zurück zum Zitat Yeh FY, Chang KC, Chen TW, Yu CH (2014) The dynamic performance of a shear thickening fluid viscous damper. J Chin Inst Eng 37:983–994CrossRef Yeh FY, Chang KC, Chen TW, Yu CH (2014) The dynamic performance of a shear thickening fluid viscous damper. J Chin Inst Eng 37:983–994CrossRef
37.
Zurück zum Zitat Mostaghel N, Davis T (1997) Representations of Coulomb friction for dynamic analysis. Earthq Eng Struct Dyn 26:541–548CrossRef Mostaghel N, Davis T (1997) Representations of Coulomb friction for dynamic analysis. Earthq Eng Struct Dyn 26:541–548CrossRef
38.
Zurück zum Zitat Ismail M, Casas JR (2016) Evaluation and refinement of closely spaced buildings’ performance under near-fault ground motions. Struct Infrastruct Eng 12:21–44CrossRef Ismail M, Casas JR (2016) Evaluation and refinement of closely spaced buildings’ performance under near-fault ground motions. Struct Infrastruct Eng 12:21–44CrossRef
39.
Zurück zum Zitat China Standard, GB 20688.3-2006 (2006) Rubber bearing-Part 3: Elastomeric seismic-protection isolators of buildings., Beijing China Standard, GB 20688.3-2006 (2006) Rubber bearing-Part 3: Elastomeric seismic-protection isolators of buildings., Beijing
40.
Zurück zum Zitat Standard China (2006) JT/T 663-2006. Series of elastomeric pad bearings for highway bridges, Beijing Standard China (2006) JT/T 663-2006. Series of elastomeric pad bearings for highway bridges, Beijing
41.
Zurück zum Zitat Standard China (2010) GB 50011-2010. Code for seismic design of buildings, Beijing Standard China (2010) GB 50011-2010. Code for seismic design of buildings, Beijing
Metadaten
Titel
Development and theoretically evaluation of an STF–SF isolator for seismic protection of structures
verfasst von
Minghai Wei
Gang Hu
Lixiao Li
Haitao Liu
Publikationsdatum
31.10.2017
Verlag
Springer Netherlands
Erschienen in
Meccanica / Ausgabe 4-5/2018
Print ISSN: 0025-6455
Elektronische ISSN: 1572-9648
DOI
https://doi.org/10.1007/s11012-017-0785-z

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