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      KCI등재 SCIE SCOPUS

      Experimental investigation on hysteretic behavior of rotational friction dampers with new friction materials

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      https://www.riss.kr/link?id=A103565470

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      다국어 초록 (Multilingual Abstract)

      Friction dampers are displacement dependent energy dissipation devices which dissipate earthquake energy through friction mechanism and widely used in improving the seismic behavior of new structures and rehabilitation of existing structures. In this paper, the cyclic behavior of a friction damper with different friction materials is investigated through experimental tests under cyclic loading. The damper is made of steel plates, friction pads, preloaded bolts and hard washers. The paper aims at investigating the hysteretic behavior of three friction materials under cyclic loading to be utilized in friction damper. The tested friction materials are: powder lining, super lining and metal lining. The experimental results are studied according to FEMA-356 acceptance criteria and the most appropriate friction material is selected by comparing all friction materials results.
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      Friction dampers are displacement dependent energy dissipation devices which dissipate earthquake energy through friction mechanism and widely used in improving the seismic behavior of new structures and rehabilitation of existing structures. In this ...

      Friction dampers are displacement dependent energy dissipation devices which dissipate earthquake energy through friction mechanism and widely used in improving the seismic behavior of new structures and rehabilitation of existing structures. In this paper, the cyclic behavior of a friction damper with different friction materials is investigated through experimental tests under cyclic loading. The damper is made of steel plates, friction pads, preloaded bolts and hard washers. The paper aims at investigating the hysteretic behavior of three friction materials under cyclic loading to be utilized in friction damper. The tested friction materials are: powder lining, super lining and metal lining. The experimental results are studied according to FEMA-356 acceptance criteria and the most appropriate friction material is selected by comparing all friction materials results.

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      참고문헌 (Reference)

      1 Seyed Mehdi Zahrai, "Using friction dampers in retrofitting a steel structure with masonry infill panels" 국제구조공학회 19 (19): 309-325, 2015

      2 Constantinou, M. C., "Toggle–brace–damper seismic energy dissipation systems" 127 (127): 105-112, 2001

      3 Montuori, R., "Theory of plastic mechanism control for the seismic design of braced frames equipped with friction dampers" 58 : 112-123, 2013

      4 Aiken, I. D., "Testing of passive energy dissipation systems" 9 (9): 335-369, 1993

      5 Fitzgerald, T. F., "Slotted bolted connections in a seismic design of concen-trically braced connections" 5 (5): 383-391, 1989

      6 Min, K. W., "Simple design procedure of a friction damper for reducing seismic responses of a single-story structure" 32 (32): 3539-3547, 2010

      7 Symans, M. D., "Semi-active control systems for seismic protection of structures : A state-of-the-art review" 21 (21): 469-487, 1999

      8 Colajannio, P., "Seismic response of braced frames with and without friction dampers" 17 (17): 129-140, 1995

      9 C. L. Ng, "Seismic response control of a building complex utilizing passive friction damper: Analytical study" 국제구조공학회 22 (22): 85-105, 2006

      10 Chin-Tung Cheng, "Seismic performance of a rocking bridge pier substructure with frictional hinge dampers" 국제구조공학회 14 (14): 501-516, 2014

      1 Seyed Mehdi Zahrai, "Using friction dampers in retrofitting a steel structure with masonry infill panels" 국제구조공학회 19 (19): 309-325, 2015

      2 Constantinou, M. C., "Toggle–brace–damper seismic energy dissipation systems" 127 (127): 105-112, 2001

      3 Montuori, R., "Theory of plastic mechanism control for the seismic design of braced frames equipped with friction dampers" 58 : 112-123, 2013

      4 Aiken, I. D., "Testing of passive energy dissipation systems" 9 (9): 335-369, 1993

      5 Fitzgerald, T. F., "Slotted bolted connections in a seismic design of concen-trically braced connections" 5 (5): 383-391, 1989

      6 Min, K. W., "Simple design procedure of a friction damper for reducing seismic responses of a single-story structure" 32 (32): 3539-3547, 2010

      7 Symans, M. D., "Semi-active control systems for seismic protection of structures : A state-of-the-art review" 21 (21): 469-487, 1999

      8 Colajannio, P., "Seismic response of braced frames with and without friction dampers" 17 (17): 129-140, 1995

      9 C. L. Ng, "Seismic response control of a building complex utilizing passive friction damper: Analytical study" 국제구조공학회 22 (22): 85-105, 2006

      10 Chin-Tung Cheng, "Seismic performance of a rocking bridge pier substructure with frictional hinge dampers" 국제구조공학회 14 (14): 501-516, 2014

      11 Cherry, S., "Seismic design spectra for friction-damped structures" ASCE 116 (116): 1990

      12 Bhaskararao, A. V., "Seismic analysis of structures connected with friction dampers" 28 (28): 690-703, 2006

      13 Pall, A., "Response of friction damped braced frames" 108 (108): 1313-1323, 1981

      14 Dorka, U., "Reliability of MDOF-system with hysteretic devices" 20 (20): 383-391, 1998

      15 Mualla, I., "Peformance of steel frames with a new friction damper device under earthquake excitation" 24 (24): 365-371, 2002

      16 Fallah, N., "NSGA-II based multi-objective optimization in design of Pall friction dampers" 89 : 75-85, 2013

      17 Kelly, J. M., "Mechanisms of energy absorption in special devices for use in earthquake resistant structures" 5 (5): 63-88, 1972

      18 Montuori, R., "Influence of connection typology on seismic response of MR-Frames with and without „set-backs‟" 46 (46): 5-25, 2016

      19 Castaldo, P., "Influence of FPS bearing properties on the seismic performance of base-isolated structures" 44 (44): 2817-2836, 2015

      20 "ISIRI-586, Brake Pads and Linings; Test methods and specifications"

      21 "ISIRI-3100, Specify gravity of brake lining material"

      22 Long-He Xu, "Hysteretic behavior studies of self-centering energy dissipation bracing system" 국제구조공학회 20 (20): 1205-1219, 2016

      23 Wu, B., "Hysteretic behavior of improved Pall typed frictional dampers" 27 (27): 1258-1267, 2005

      24 Latour, M., "Free from damage beam-to-column joints : Testing and design of DST connections with friction pads" 85 : 219-223, 2015

      25 "FEMA-356, Pre-standard and Commentary for the Seismic Rehabilitation of Buildings"

      26 Panikos K. Papadopoulos, "Experimental investigation of a new steel friction device with link element for seismic strengthening of structures" 국제구조공학회 46 (46): 487-504, 2013

      27 Li, C., "Experimental and analytical investigation of seismic retrofit of structures with supplemental damping: Part II-Friction devices" State University of New York 1995

      28 Latour, M., "Experimental analysis on friction materials for supplemental damping devices" 65 : 159-176, 2014

      29 J. Vaseghi Amiri, "Evaluation of performance of eccentric braced frame with friction damper" 국제구조공학회 39 (39): 717-732, 2011

      30 Park, J. H., "Equivalent linearization of a friction damper–brace system based on the probability distribution of the extremal displacement" 29 (29): 1226-1237, 2007

      31 Tremblay, R., "Energy dissipation through friction bolted connections in concentrically braced steel frames" 557-568, 1993

      32 Aiken, I. D., "Earthquake simulator testing and analytical studies of two energy-absorbing systems for multistory structures" Earth-quake Engineering Research Center, University of California 1990

      33 Maleki, S., "Dual-pipe damper" 85 : 81-91, 2013

      34 Nims, D. K., "Application of the energy dissipating restraint to buildings" 1993

      35 Lee, S. H., "Allocation and slip load of friction dampers for a seismically excited building structure based on storey shear force distribution" 30 (30): 930-940, 2008

      36 ANSYS, "ANSYS Element Reference; Release 14. 5"

      37 Saeed Monir, H., "A modified friction damper for diagonal bracing of structures" 87 : 17-30, 2013

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      2005-09-23 학술지명변경 한글명 : 강합성 구조물에 대한 국제저널 -> Steel and Composite Structures, An International Journal KCI등재후보
      2005-09-22 학술지등록 한글명 : 강합성 구조물에 대한 국제저널
      외국어명 : Steel and Composite Structures, An International Journal
      KCI등재후보
      2005-06-16 학회명변경 영문명 : Ternational Association Of Structural Engineering And Mechanics -> International Association of Structural Engineering And Mechanics KCI등재후보
      2002-01-01 평가 SCIE 등재 (신규평가) KCI등재후보
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