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Application of adhesive bonding in steel and aluminium structures

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents achievements in gluing technique in steel and aluminium structures. Adhesives currently in use and available on the market are characterized from the point of view of their mechanical properties. Design rules of adhesive connections and basic methods for their calculations are mentioned. The most significant examples of the applications of those joints in steel as well as aluminium structures are shown.
Twórcy
autor
  • Cracow University of Technology, Department of Civil Engineering, Warszawska Str. 24, 31-155 Cracow
Bibliografia
  • 1. D.A. Dillard, Advances in Structural Adhesive Bonding, Woodhead Publishing Limited. Oxford, Cambridge, New Delhi, 2010.
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  • 3. G. Kubiemec, Resistance of Reinforced Steel Girders with Adhesive Bonding [in Polish], PhD thesis. Cracow University of Technology, 2008.
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  • 6. H. Pasternak, J. Meinz, Investigation of Adhesive Reinforcements in Steel Building Structures [in German], Bauingenieur. 81, 212-217, May 2006.
  • 7. K. Dilger, M. Feldman, P.L. Geiß, H. Pasternak, T. Ummenhofer, et al., Research for Practice P654 [in German], New Constructions Due to Application of Adhesive Bonding in Steel Structures, FOSTA, Düsseldorf 2008.
  • 8. M. Feldman, B. Völling, A. Geßler, F. Wellershoff, P. Geiß, A. Wagner, Adhesive Bonding for Steel Construction, Stahlbau 75 (2006), Copybook 10, 834-846 [in German].
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  • 13. H. Pasternak, J. Meinz, Adhering in Steel Construction - Two Examples in Facades Construction [in German], Bauingenieur, 82, 115-124, March 2007.
  • 14. J. Godzimirski. S. Tkaczuk, Definition of Mechanical Properties of Adhesive Connections [in Polish], Technologia i Automatyzacja Montażu, 3-4, 2004.
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  • 20. G. Kubieniec, M. Piekarczyk, Adhesively Bonded Assembly Connection [in Polish], Zeszyty Naukowe Politechniki Rzeszowskiej. Budownictwo i inżynieria środowiska 2.50, 165-174, 2008.
  • 21. H. Pasternak, G. Kubieniec, M. Piłkarczyk, Adhesives in Strengthening of Steel Structures, Engineering Structures and Technologies, 2(2), 45-50, 2010.
  • 22. W. Głodkowska, M. Ruchwa, Static Analysis of Reinforced Concrete Beams Strengthened with CFRP Composites, Archives of Civil Engineering, 56, 2, 111-122, 2010.
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  • 24. A. Peiris. I. Harik, Field Testing of Steel Bridge Girders Strengthened Using Ultra High Modulus (UHM) Carbon Fiber Reinforced Polymer (CFRP) Laminates, The 6th International Conference on FRP Composites in Civil Engineering, 13-15 June 2012, Rome, Conference Proceedings.
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  • 40. H. Kim, K. Kedward, U.S. Department of Transportation. Federal Aviation Administration: Stress Analysis of In-Plane, Shear Loaded, Adhesively Bonded Composite. Joints and Assemblies, Final Report DOT/FAA/AR-O1/7, April 2001.
  • 41. L.J. Hart-Smith, Adhesive - Bonded Scarf and Stepped Lap - Joints, Technical Report No CR-112237. NASA, Longley Research Center, 1973.
  • 42. N.A. de Brugne, The Strength of Glued Joints, Aircraft Engineering, 16, 115-118, 1944.
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  • 44. M. Davis, D. Bond, Principles and Practices of Adhesive Bonded Structural Joints and Repairs, International Journal of Adhesion and Adhesives 19, 91-105, 1999.
  • 45. H. Pasternak, J. Ciupak, Eurocode - Based Design Rules for Adhesive Bonded Joints, 6th European Conference on Steel and Composite Structures, August 31 - September 2. 2011, Budapest, 717-722.
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  • 49. G. Habenicht, Glues, Bases, Technologies, Application [in German], Springer Verlag, Berlin 2002.
  • 50. Merkblatt 382: Adhesive Bonding of Steel and Rustless Steel, Stahl - Informations - Zentrum 1998 [in German].
  • 51. www.audi.com.
  • 52. www.permabond.com.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BTB5-0014-0030
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