Cidect hollow sections in structural applications

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Packer, J.A., Wardenier, J., Zhao, X.-L., Vegte, G.J. van der, & Kurobane, Y., 2009a: Design guide for rectangular hollow section (RHS) joints under predominantly static loading. 2nd Edition, CIDECT Series "Construction with hollow steel sections" No. 3, CIDECT, ISBN 978-3-938817-04-9. Packer, J.A., Wardenier, J., Choo, Y.S., & Chiew, S.P., 2009b: Elliptical steel tubes. Steel News and Notes, Singapore Structural Steel Society, SN&N 25th Anniversary Issue, pp. 86-90. Packer, J., Sherman, D., & Lecce, M., 2010: Hollow structural section connections. Steel Design Guide No. 24, American Institute of Steel Construction, Chicago, USA. Paul, J.C., 1992: The ultimate behaviour of multiplanar TT and KK joints made of circular hollow sections. Ph.D. Thesis, Kumamoto University, Kumamoto, Japan. Pecknold, D.A., Marshall, P.W., & Bucknell, J., 2007: New API RP2A tubular joint strength design provisions. Journal of Energy Resources Technology, American Society of Mechanical Engineers, USA, Vol. 129, No. 3, pp. 177-189. Pietrapertosa, C., & Jaspart, J.-P., 2003: Study of the behaviour of welded joints composed of elliptical hollow th sections. Proceedings 10 International Symposium on Tubular Structures, Madrid, Spain, Tubular Structures X, Swets & Zeitlinger, Lisse, The Netherlands, pp. 601-608. Puthli, R.S., 1998: Hohlprofilkonstruktionen aus Stahl nach DIN V ENV 1993 (EC 3) und DIN 18 800 (11.90). Werner Verlag GmbH & Co. KG., Düsseldorf, Germany, ISBN 3-8041-2975-7. Puthli, R.S., & Herion, S., 2005: Welding in cold-formed areas of rectangular hollow sections. CIDECT Report 1A-1/05. University of Karlsruhe, Karlsruhe, Germany. Qian, X.D., Wardenier, J., & Choo, Y.S., 2007: A uniform approach for the design of 100% CHS overlap joints. th Proceedings 5 International Conference on Advances in Steel Structures, Singapore, Vol. II, pp. 172-182. Qian, X.D., Choo, Y.S., Vegte, G.J. van der, & Wardenier, J., 2008: Evaluation of the new IIW CHS strength formulae for thick-walled joints. Proceedings 12th International Symposium on Tubular Structures, Shanghai, China, Tubular Structures XII, Taylor & Francis Group, London, UK, pp. 271-279. Roik, K., Bergmann, R., Bode, H., & Wagenknecht, G., 1975: Tragfähigkeit von ausbetonierten Hohlprofilstützen aus Baustahl. Technisch Wissenschaftliche Mitteilungen, Institut für Konstruktiven Ingenieurbau, TWM-Heft Nr. 75-4, Ruhr-Universität Bochum, Bochum, Germany. Roik, K., & Wagenknecht, G., 1977: Traglastdiagramme zur Bemessung von Druckstäben mit doppelsymmetrischem Querschnitt aus Baustahl. Technisch Wissenschaftliche Mitteilungen, Institut für Konstruktiven Ingenieurbau, Heft 27, Ruhr-Universität Bochum, Bochum, Germany. Romeijn, A., 1994: Stress and strain concentration factors of welded multiplanar tubular joints. Heron, Vol. 39, No. 3, Delft University of Technology, Delft, The Netherlands. Rondal, J., 1990: Study of maximum permissible weld gaps in connections with plane end cuttings (5AH2); Simplification of circular hollow section welded joints (5AP). CIDECT Report 5AH2/5AP-90/20. Rondal, J., Würker, K.-G., Dutta, D., Wardenier, J., & Yeomans, N., 1992: Structural stability of hollow sections. CIDECT Series "Construction with hollow steel sections" No. 2, Verlag TÜV Rheinland, Köln, Germany, ISBN 3-8249-0075-0. Schulz, G., 1970: Der Windwiderstand von Fachwerken aus zylindrischen Stäben und seine Berechnung. Internationaler Normenvergleich für die Windlasten auf Fachwerken. CIDECT Monograph No. 3, CIDECT.

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Cidect hollow sections in structural applications by Pedro Antonio Jiménez Sánchez - Issuu