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      KCI등재 SCIE SCOPUS

      A review and analysis of circular UHPC filled steel tube columns under axial loading

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      https://www.riss.kr/link?id=A103565400

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      다국어 초록 (Multilingual Abstract)

      Ultra high performance concrete (UHPC) has aroused interest around the world owing to superior mechanical and durability properties over conventional concrete. However, the application of UHPC in practice poses difficulties due to its inherent brittle...

      Ultra high performance concrete (UHPC) has aroused interest around the world owing to superior mechanical and durability properties over conventional concrete. However, the application of UHPC in practice poses difficulties due to its inherent brittleness. UHPC filled in steel tube columns (UHPC-FSTCs) are capable of restricting the brittle failure of non-reinforced UHPC columns and forming a high performance member with enhancement of strength and ductility. Currently, research on UHPC-FSTCs remains very limited and there is relatively little information about the mechanical behavior of these columns. Therefore, this study presents a review of past experimental studies to have a deeper insight into the compressive behavior of UHPC-FSTCs under axial loading on entire section and on concrete core. Based on the test results obtained from Schneider (2006) and Xiong (2012), an analysis was conducted to investigate the influence of the confinement index (ξ) and diameter to steel tube thickness ratio (D/t) on the strength and the ductility in short circular UHPC-FSTCs. Furthermore, the appropriateness of current design codes including EC4, AISC, AIJ and previous analytical models for estimating the ultimate loads of composite columns was also examined by the comparison between the predictions and the test results. Finally, simplified formulae for predicting the ultimate loads in two types of loading pattern were proposed and verified.

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      참고문헌 (Reference)

      1 Schneider, H., "Zum tragverhalten kurzer, umschnürter, kreisförmiger, druckglieder aus ungefasertem UHFB" University of Leipzig 2006

      2 Susantha, K. A. S., "Uniaxial stressstrain relationship of concrete confined by various shaped steel tubes" 23 (23): 1331-1347, 2001

      3 Schmidt, M., "Ultra-high-performance concrete : research, development and application in Europe" 228 : 51-78, 2005

      4 Liew, J. Y. R., "Ultra-high strength concrete filled composite columns for multi-storey building construction" 15 (15): 1487-1503, 2012

      5 Fehling, E., "Ultra-High Performance Concrete:Fundamental - Design - Example, Wilhelm Ernst & Sohn" Verlag für Architektur und technische Wissenschaften GmbH & Co 2014

      6 Kamo, T., "Ultra high steel for sustainable building structure" Nippon Steel and Sumitomo Metal 2015

      7 Mathias Johansson, "The efficiency of passive confinement in CFT columns" 국제구조공학회 2 (2): 379-396, 2002

      8 Xiong, D. X., "Structural behaviour of concrete filled steel tube with high strength materials" National University of Singapore 2012

      9 Matsumoto, M. S., "Structural Design of an Ultra High-rise Building Using Concrete Filled Tubular Column with Ultra High Strength Materials" 2012

      10 Zhong, S. T., "Stress-strain relationship and strength of concrete filled tubes" 1988

      1 Schneider, H., "Zum tragverhalten kurzer, umschnürter, kreisförmiger, druckglieder aus ungefasertem UHFB" University of Leipzig 2006

      2 Susantha, K. A. S., "Uniaxial stressstrain relationship of concrete confined by various shaped steel tubes" 23 (23): 1331-1347, 2001

      3 Schmidt, M., "Ultra-high-performance concrete : research, development and application in Europe" 228 : 51-78, 2005

      4 Liew, J. Y. R., "Ultra-high strength concrete filled composite columns for multi-storey building construction" 15 (15): 1487-1503, 2012

      5 Fehling, E., "Ultra-High Performance Concrete:Fundamental - Design - Example, Wilhelm Ernst & Sohn" Verlag für Architektur und technische Wissenschaften GmbH & Co 2014

      6 Kamo, T., "Ultra high steel for sustainable building structure" Nippon Steel and Sumitomo Metal 2015

      7 Mathias Johansson, "The efficiency of passive confinement in CFT columns" 국제구조공학회 2 (2): 379-396, 2002

      8 Xiong, D. X., "Structural behaviour of concrete filled steel tube with high strength materials" National University of Singapore 2012

      9 Matsumoto, M. S., "Structural Design of an Ultra High-rise Building Using Concrete Filled Tubular Column with Ultra High Strength Materials" 2012

      10 Zhong, S. T., "Stress-strain relationship and strength of concrete filled tubes" 1988

      11 Popa, M., "State of the art regarding the protection of ultra-high performance concrete columns at brittle failure" 2013

      12 Wang, Y., "Research on preparation and mechanical performances of kilometer load-bearing material" Chongqing University 2004

      13 Architectural Institute of Japan(AIJ), "Recommendation for design and construction of concrete filled steel tubular structures"

      14 Farhad Aslani, "Predicting the axial load capacity of high-strength concrete filled steel tubular columns" 국제구조공학회 19 (19): 967-993, 2015

      15 Blais, P. Y., "Precast, prestressed pedestrian bridge : World‟s first reactive powder concrete structure" 44 (44): 60-71, 1999

      16 An, L. H., "Numerical modelling of circular concrete filled steel tube stub columns" 2016

      17 Hatzigeorgiou, G. D., "Numerical model for the behavior and capacity of circular CFT columns, Part I : Theory" 30 (30): 1573-1578, 2008

      18 An Le Hoang, "Numerical analysis of circular steel tube confined UHPC stub columns" 사단법인 한국계산역학회 19 (19): 263-273, 2017

      19 Liang, Q. Q., "Nonlinear analysis of circular concrete-filled steel tubular short columns under axial loading" 65 (65): 2186-2196, 2009

      20 Dugat, J., "Mechanical properties of reactive powder concrete" 29 (29): 233-240, 1996

      21 Yan, P. Y., "Mechanical behavior of UHPC and UHPC filled steel tubular stub columns" 2008

      22 Kuranovas, A., "Loading-bearing capacity of concrete-filled steel columns" 15 (15): 21-33, 2009

      23 Empelmann, M., "Load-bearing behaviour of centrically loaded UHPFRC-columns" 2008

      24 Pu, X., "Kilometer compressible material and its preparation" 2004

      25 Portolés, J. M., "Influence of ultra-high strength infill in slender concrete-filled steel tubular columns" 89 : 107-114, 2013

      26 Tao, Z., "Finite element modelling of concrete filled steel stub columns under axial compression" 89 : 121-131, 2013

      27 An, L. H., "Finite element analysis of circular steel tube confined UHPC stub columns" 27-30, 2016

      28 Liew, J. Y. R., "Experimental investigation on tubular columns infilled with ultra-high strength concrete" 63 : 7-645, 2010

      29 Lin-Hai Han, "Experimental behaviours of steel tube confined concrete (STCC) columns" 국제구조공학회 5 (5): 459-484, 2005

      30 "Eurocode 4 , Design of composite steel and concrete structures; Part1.1, General rules and rules for Building, BS EN 1994-1-1"

      31 Han, L. H., "Development and advanced applications of concrete-filled steel tubular(CFST)structures : members" 100 : 211-228, 2014

      32 Liew, J. Y. R., "Design of high strength concrete filled tubular columns for tall buildings" 3 (3): 215-221, 2014

      33 O‟Shea, M. D., "Design of circular thinwalled concrete filled steel tubes" 126 (126): 1295-1303, 2000

      34 Liew, J. Y. R., "Design Guide For Concrete Filled Tubular Members With High Strength Materials to Eurocode 4" Research Publishing 2015

      35 "DBJ 13-51-2003, Technical specification for concrete-filled steel tubular structures"

      36 Morino, S., "Concretefilled steel tube column system-its advantages" 1 (1): 33-44, 2001

      37 Richard, P., "Composition of reactive powder concretes" 25 (25): 1501-1511, 1995

      38 "Bétons fibrés à ultra-hautes performances, Recommandations provisoires"

      39 "Building code requirements for structural concrete and commentary, ACI 318-08"

      40 Sakino, K., "Behavior of centrally loaded concrete-filled steel-tube short columns" 130 (130): 180-188, 2004

      41 Tue, N. V., "Bearing capacity of stub columns made of NSC, HSC and UHPC confined by a steel tube" 2004

      42 Chu, K., "Axial load behaviour of steel tube columns infilled with various high-performance concretes" Ryerson University 2014

      43 Guler, S., "Axial capacity and ductility of circular UHPC-filled steel tube columns" 65 (65): 898-905, 2013

      44 Tue, N. V., "Application of UHPC filled tubes in buildings and bridges" 2004

      45 An Le Hoang, "Analysis of circular steel tube confined UHPC stub columns" 국제구조공학회 23 (23): 669-682, 2017

      46 "American Institute of Steel Construction (ANSI/AISC 360-10), Specification for Structural Steel Buildings, An American National Standard"

      47 Standards Association of Australia, "AS/NZS 2327-2014, Composite structures"

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      2005-05-26 학술지명변경 한글명 : 국제구조계산역학지 -> Structural Engineering and Mechanics, An Int'l Journal KCI등재
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      2016 1.12 0.62 0.94
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