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1

Composite structures of steel and concrete. 2nd ed. Oxford: Blackwell Scientific, 1994.

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2

Johnson, Roger P. Composite Structures of Steel and Concrete. Chichester, UK: John Wiley & Sons, Ltd, 2018. http://dx.doi.org/10.1002/9781119401353.

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3

Composite Structures of Steel and Concrete. New York: John Wiley & Sons, Ltd., 2008.

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4

Ranzi, Gianluca, ed. Time-dependent behaviour and design of composite steel-concrete structures. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 2021. http://dx.doi.org/10.2749/sed018.

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<p>Steel-concrete composite structures are widely used throughout the world for buildings and bridges. A distinguishing feature of this form of construction is the combination of concrete and steel components to achieve enhanced structural performance. <p>The time-dependent response of concrete and its infl uence on the service behaviour and design of composite structures are the main focus of this SED. For the fi rst time, a publication combines a state-of-the-art review of the research with the available design specifi cations of Europe, Australia and New Zealand, and USA. This publication intends to enhance the awareness of the service response of composite structures and of the latest research and standards’ developments. It is aimed at designers and researchers alike. <p>The review of research available in open literature is provided and arranged according to structural typologies, i. e. slabs, beams, and columns. It serves as background information for current service design rules and provides insight into the most recent research advancements. The review of available design guidelines presents the similarities and differences of the recommended service design procedures infl uenced by concrete time effects. Selected case studies of building and bridge projects show possible design approaches and the rationale required when dealing with the time-dependent response and design of composite structures. The authors of this publication are design engineers and academics involved in the service design and research on the time-dependent response of composite structures.
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5

International Symposium Composite Steel Concrete Structures (1987 Bratislava, Czechoslovakia). Medzinárodné sympózium Spriahnuté ocel'obetónové konštrukcie =: International Symposium Composite Steel Concrete Structures. Bratislava: Dom techniky ČSVTS Bratislava, 1987.

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6

Luís, Borges, Davaine Laurence 1975-, European Convention for Constructional Steelwork, and Associação Portuguesa de Construcao Metalica e Mista, eds. Fatigue design of steel and composite structures: Eurocode 3: Design of Steel Structures, Part 1-9 Fatigue, Eurocode 4: Design of Composite Steel and Concrete Structures. [Brussels, Belgium]: European Convention for Constructional Steelwork, 2011.

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7

Johnson, R. P. Eurocode No. 4: Common unified rules for composite steel and concrete structures. Luxembourg: Commission of the European Communities, 1985.

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8

ISFF, '91 (1991 Madras India). Fatigue and fracture in steel and concrete structures: ISFF '91 proceedings. New Delhi: Oxford & IBH Pub. Co., 1992.

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9

Schleich, J. B. Computer assisted analysis of the fire resistance of steel and composite concrete-steel structures (REFAO-CAFIR). Luxembourg: Commission of the European Communities, 1987.

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10

P, Johnson R., ed. Designers' guide to EN 1994-2 Eurocode 4: Design of composite steel and concrete structures. London: Thomas Telford, 2006.

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11

Johnson, R. P. Designers' guide to EN 1994-1-1: Eurocode 4: design of composite steel and concrete structures. London: Thomas Telford, 2004.

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12

ISFF '91 (1991 Madras, India). Fatigue and fracture in steel and concrete structures: ISFF '91 proceedings, December 19-21, 1991, Madras, India. Edited by Madhava Rao A. G, Appa Rao, T. V. S. R., and Structural Engineering Research Centre, Madras. Rotterdam, Netherlands: A.A. Balkema, 1992.

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13

International Conference on Advances in Structures: Steel, Concrete, Composite and Aluminium (2003 Sydney, N.S.W.). Advances in structures: Proceedings of the International Conference on Advances in Structures (ASSCCA '03), Sydney, Australia, 22-25 June 2003. Lisse: Balkema, 2003.

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14

1955-, Bradford M. A., ed. Composite steel and concrete structural members: Fundamental behaviour. Kidlington, Oxford, U.K: Pergamon, 1995.

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15

1955-, Bradford M. A., ed. Elementary behaviour of composite steel and concrete structural members. Oxford: Butterworth-Heinemann, 1999.

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16

Taranath, Bungale S. Steel, concrete, and composite design of tall buildings. 2nd ed. New York: McGraw-Hill, 1998.

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17

Taranath, Bungale S. Steel, concrete, and composite design of tall buildings. 2nd ed. New York: McGraw-Hill, 1998.

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18

Symposium on Connections Between Steel and Concrete (1st 2001 Stuttgart, Germany). Connections between steel and concrete: Stuttgart, Germany, 10-12 September 2001. Cachan (Val-de-Marne): RILEM publications, 2001.

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19

Gao ceng gang--hun ning tu zu he jie gou. Guangzhou: Hua nan li gong da xue chu ban she, 2003.

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20

R, Narayanan, ed. Steel-concrete composite structures. London: Elsevier Applied Science, 1988.

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21

Steel-Concrete Composite Structures. Routledge, 2005. http://dx.doi.org/10.4324/9780203973295.

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22

Composite Structures of Steel and Concrete (Composite Structures of Steel & Concrete Vol. 1). Grafton Books, 1985.

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23

Mikko, Malaska, and Seminar on Steel Structures (1998 : Helsinki), eds. Seminar on Steel Structures: Design of steel-concrete composite structures. Helsinki: Helsinki University of Technology, 1998.

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24

Narayanan, R. Steel-Concrete Composite Structures (Stability and Strength). Routledge, 1994.

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25

Steel-concrete composite structures: Stability and strength. London: Elsevier Applied Science, 1988.

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26

Johnson, R. P., and R. J. Buckby. Composite Structures of Steel and Concrete: Bridges. Blackwell Science Ltd, 1987.

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27

Fatigue Design of Steel and Composite Structures Eurocode - Design of Steel Structures: Design of Composite Steel and Concrete Structures. Wiley-VCH Verlag GmbH, 2018.

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28

Analysis and Design of Steel Concrete Composite Structures. CRC, 2001.

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29

Theodor, Löffler, ed. Fire behaviour of composite structures in steel and concrete. Stuttgart: IRB Verlag, 1989.

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30

Johnson, R. P. Composite Bridges Designed for Eurocodes: Composite Structures of Steel and Concrete. 3rd ed. Blackwell Scientific Publications (BSP), 2007.

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31

Taranath, Bungale S. Designing Tall Building Structures: Steel, Concrete, and Composite Construction. Taylor & Francis Group, 2016.

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32

Liew, J. Y. Richard, Ming-Xiang Xiong, and Bing-Lin Lai. Design of Steel-Concrete Composite Structures Using High Strength Materials. Woodhead Publishing, 2021.

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33

Behaviour and Design of Composite Steel and Concrete Building Structures. Taylor & Francis Group, 2018.

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34

Design of Steel-Concrete Composite Structures Using High-Strength Materials. Elsevier, 2021. http://dx.doi.org/10.1016/c2019-0-05474-x.

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35

Davaine, Laurence, Alain Nussbaumer, and Luis Borges. Fatigue Design of Steel and Composite Structures : Eurocode 3 : Design of Steel Structures, Part 1-9 Fatigue; Eurocode 4: Design of Composite Steel and Concrete Structures. Ernst & Sohn Verlag fur Architektur und Technische, Wilhelm, 2012.

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36

Davaine, Laurence, Alain Nussbaumer, and Luis Borges. Fatigue Design of Steel and Composite Structures : Eurocode 3 : Design of Steel Structures, Part 1-9 Fatigue; Eurocode 4: Design of Composite Steel and Concrete Structures. Ernst & Sohn Verlag fur Architektur und Technische, Wilhelm, 2012.

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37

Davaine, Laurence, Alain Nussbaumer, and Luis Borges. Fatigue Design of Steel and Composite Structures : Eurocode 3 : Design of Steel Structures, Part 1-9 Fatigue; Eurocode 4: Design of Composite Steel and Concrete Structures. Ernst & Sohn Verlag fur Architektur und Technische, Wilhelm, 2012.

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38

Fatigue and fracture in steel and concrete structures: ISFF '91 proceedings. Oxford & IBH Pub. Co, 1992.

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39

Composite Structures of Steel and Concrete: Beams, Slabs, Columns, and Frames for Buildings. 3rd ed. Blackwell Publishing Limited, 2004.

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40

Johnson, R. P. Composite Structures of Steel and Concrete: Beams, Slabs, Columns, and Frames for Buildings. Wiley & Sons, Incorporated, John, 2008.

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41

Johnson, Roger P. Composite Structures of Steel and Concrete: Beams, Slabs, Columns and Frames for Buildings. Wiley-Blackwell, 2018.

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42

Johnson, Roger P., and Yong C. Wang. Composite Structures of Steel and Concrete: Beams, Slabs, Columns and Frames for Buildings. Wiley & Sons, Incorporated, John, 2018.

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43

ECCS - European Convention for Constructional Steelwork. Design of Composite Structures: Eurocode 4 - Design of Composite Steel and Concrete Structures Part 1-1 - General Rules and Rules for Buildings. Ernst & Sohn Verlag fur Architektur und Technische, Wilhelm, 2021.

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44

ECCS - European Convention for Constructional Steelwork. Design of Composite Structures: Eurocode 4 - Design of Composite Steel and Concrete Structures Part 1-1 - General Rules and Rules for Buildings. Ernst & Sohn Verlag fur Architektur und Technische, Wilhelm, 2021.

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45

ECCS - European Convention for Constructional Steelwork. Design of Composite Structures: Eurocode 4 - Design of Composite Steel and Concrete Structures Part 1-1 - General Rules and Rules for Buildings. Wiley & Sons, Limited, John, 2021.

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46

JOHNSON, RP. Designers Guide to Eurocode 4: Design of Composite Steel and Concrete Structures, 2nd ed. Thomas Telford Ltd, 2011. http://dx.doi.org/10.1680/dcsb.41738.

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47

ECCS - European Convention for Constructional Steelwork. Design of Joints in Steel and Composite Structures : Eurocode 3 : Design of Steel Structures. Part 1-8 Design of Joints. Eurocode 4: Design of Composite Steel and Concrete Structures. Part 1-8 Design of Joints. Ernst & Sohn Verlag fur Architektur und Technische, Wilhelm, 2016.

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48

Design of joints in steel and composite structures : Eurocode 3: Design of steel structures, part 1-8 - Design of joints ; Eurocode 4: Design of composite steel and concrete structures, part 1-1- General rules and rules for buildings. Ernst & Sohn : Wiley, 2016.

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49

Isao, Nishiyama, and Kensetsushō Kenchiku Kenkyūjo (Japan), eds. Summary of research on concrete-filled structural steel tube column system carried out under the US-Japan cooperative research program on composite and hybrid structures. [Tokyo]: Building Research Institute, Ministry of Construction, 2002.

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50

Designers' Guide to EN 1994-2 Eurocode 4: Design of composite steel and concrete structures Part 2, General rules and rules for bridges. Thomas Telford Ltd, 2006. http://dx.doi.org/10.1680/dgte4.31616.

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