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Distributional solutions of bending problems for continuous sandwich panels with thin facings

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents closed distributional solutions of bending problems for continuous thin-faced sandwich panels modeled by appropriate beams. Sandwich elements with any number and spacing of elastic supports, subjected to a uniform transverse segmental load or a temperature difference load, were analyzed. Calculations based on the proposed solution made it possible to show what effects the intermediate supports and their compliance have on the effort of the continuous sandwich panels and their connections to the framing. Examples are provided in which generalized formulas for intermediate support reactions and bending moments in two- and three-span beams subjected to a uniform transverse load or a temperature difference load along the beam’s whole length or part of its length are derived. The relationships between the above static quantities and the compliance of the intermediate supports or the extent of the segmental load are presented in the figures or the tables. Finally practical conclusions are drawn.
Rocznik
Strony
13--22
Opis fizyczny
Bibliogr. 21 poz., rys., tab., wykr.
Twórcy
autor
  • Wrocław University of Technology, Institute of Building Engineering, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland
autor
  • PROKON, Dokerska 19/18, 54-142 Wrocław, Poland
Bibliografia
  • [1] M. Mahendran, M. Jeevaharan, Local buckling behaviour of steel plate elements supported by a plastic foam material, Structural Engineering and Mechanics 7 (5) (1999) 433–445.
  • [2] M. Mahendran, D. McAndrew, Effects of foam joints on the flexural wrinkling strength of sandwich panels, International Journal of Steel Structures 1 (2) (2001) 105–112.
  • [3] N. Pokharel, M. Mahendran, An investigation of lightly profiled sandwich panels subjected to local buckling and flexural wrinkling effects, Journal of Constructional Steel Research 61 (7) (2005) 984–1006.
  • [4] N. Pokharel, M. Mahendran, Effects of plate slenderness on the ultimate strength behaviour of foam supported steel plate elements, Structural Engineering and Mechanics 21 (4) (2005) 407–422.
  • [5] B. Gosowski, M. Kozo´w, Selected problems of design of light cladding sandwich panels with slightly profiled metal faces, Archives of Civil Engineering 55 (3) (2009) 301–321.
  • [6] B. Gosowski, The typical defects of design and construction of light cladding from sandwich panels, Inz˙ynieria i Budow- nictwo 65 (7) (2009) 379–385 (in Polish).
  • [7] A. Sabik, I. Kreja, Linear analysis of laminated multilayered plates with the application of zig-zag function, Archives of Civil and Mechanical Engineering 8 (4) (2008) 61–72.
  • [8] I. Kreja, Stability analysis of cylindrical composite shells in MSC/Nastran, Archives of Civil and Mechanical Engineering 5 (3) (2005) 31–41.
  • [9] A. Sabik, I. Kreja, Stability analysis of multilayered composite shells withcut-outs, Archives of Civil and Mechanical Engineering 11 (1) (2011) 195–207.
  • [10] Polish Standard PN-B-03230, Light weight curtain walls and roofs made from sandwich and rib panels, Structural Analysis and Design, 1984 (in Polish).
  • [11] European Standard PN-EN 14509, Self-supporting double skin metal faced insulating panels, Factory Made Products - Specifications, 2007.
  • [12] K. Berner, Praxisgerechte Nachweisezur Trag-und Gebrauchsfa-higkeit von Sandwich bauteilen, Stahlbau 67 (12) (1998) 910–925.
  • [13] J. M. Davies (Ed.), Lightweight Sandwich Construction, Black- well Science, Oxford, 2001.
  • [14] R. Moller, H. Poter, K. Schwarze, Planen und Bauen mit Trapez profilen und Sandwich elementen. Band 1: Grundlagen, Bauweisen, Bemessung mit Beispielen, Verlag Ernst & Sohn, Berlin, 2004.
  • [15] K. Stamm, H. Witte, Sandwichkonstruktionen, Springer- Verlag, Wien, New York, 1974.
  • [16] R. Koschade, Die Sandwichbauweise, Verlag Ernst & Sohn, Berlin, 2000.
  • [17] P. Hassinen, L. Martikainen, K. Berner, On the design and analysis of continuous sandwich panels, Thin-Walled Structures 29 (1–4) (1997) 129–139.
  • [18] T. Hop, Sandwich Constructions, Arkady, Warszawa, 1980 (in Polish).
  • [19] B. Gosowski, Non-uniform torsion of stiffened open thin- walled members of steel structures, Journal of Constructional Steel Research 63 (6) (2007) 849–865.
  • [20] B. Gosowski, Torsion and Bending of Open, Braced Elements of Metal Structures, Wrocław University of Technology Publishers, Wrocław, 2004 (in Polish).
  • [21] A.H. Zemanian, Distribution Theory and Transform Analysis. An Introduction to Generalized Functions, with Applications, McGraw-Hill, New York, St. Louis, San Francisco, Toronto, London, Sydney, 1965.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9e5a514e-dcbe-451b-98e8-b04faac45b19
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