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Transverse shear modulus of elasticity for thin-walled corrugated cores of sandwich beams. Theoretical study

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The subject of the paper are four corrugated cores in form of circular arcs, a sin wave, trapezoids and an odd function. Transverse shear modules of these corrugated cores are analytically determined. A comparative analysis of these transverse shear modules is pre- sented. Areas of cross sections of the corrugated cores are constant. The theoretical study shows considerable sensitivity of the shear modulus to shape of the corrugation.
Słowa kluczowe
Rocznik
Strony
971--980
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
  • Poznan University of Technology, Institute of Mathematics, Poznań, Poland
autor
  • Poznan University of Technology, Institute of Applied Mechanics, Poznań, Poland
Bibliografia
  • 1. Aboura Z., Talbi N., Allaoui S., Benzeggagh M.L., 2004, Elastic behavior of corrugated cardboard: experiments and modeling, Composite Structures, 63, 53-62
  • 2. Aganovic I., Marusic-Paloka E., Tutek Z., 1996, Slightly wrinkled plate, Asymptotic Analysis , 13, 1-29
  • 3. Biancolini M.E., 2005, Evaluation of equivalent stiffness properties of corrugated board, Composite Structures, 69, 322-328
  • 4. Buannic N., Cartraud P., Quesnel T., 2003, Homogenization of corrugated core sandwich panels, Composite Structures, 59, 299-312
  • 5. Carlsson L.A., Nordstrand T., Westerlind B., 2001, On the elastic stiffnesses of corrugated core sandwich, Journal of Sandwich Structures and Materials, 3, 253-267
  • 6. Cheng Q.H., Lee H.P., Lu C., 2006, A numerical analysis approach for evaluating elastic constants of sandwich structures with various core, Composite Structures, 74, 226-236
  • 7. He L., Cheng Y.-S., Liu J., 2012, Precise bending stress analysis of corrugated-core, honeycomb-core and X-core sandwich panel, Composite Structures, 94, 1656-1668
  • 8. Isaksson P., Krusper A., Gradin P.A., 2007, Shear correction factor for corrugated core structures, Composite Structures, 80, 123-130
  • 9. Kazemahvazi S., Zenkert D., 2009, Corrugated all-composite sandwich structures. Part 1: Modeling, Composites Science and Technology, 69, 913-919
  • 10. Kress G., Winkler M., 2010, Corrugate laminate homogenization model, Composite Structures, 92, 795-810
  • 11. Libove C., Hubka R.E., 1951, Elastic constants for corrugated-core, Sandwich plates, Technical Note 2289, NACA, Washington
  • 12. Michalak B., 2001, Analysis of dynamic behaviour of wavy-type plates with a mezzo-periodic structure, Journal of Theoretical and Applied Mechanics, 39, 947-958
  • 13. Pan S.-D., Wu L.-Z., Sun Y.-G., 2008, Transverse shear modulus and strength of honeycomb cores, Composite Structures, 84, 369-374
  • 14. Peng L.X., Liew K.M., Kitipornchai S., 2007, Analysis of stiffened corrugated plates based on the FSDT via the mesh-free method, International Journal of Mechanical Sciences, 49, 364-378
  • 15. Talbi N., Batti A., Ayad R., Guo Y.Q., 2009, An analytical homogenization model for finite element modeling of corrugated cardboard, Composite Structures, 88, 280-289
  • 16. Winkler M., Kress G., 2010, Deformation limits for corrugated cross-ply laminates, Composite Structures, 92, 1458-1468
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-92c72a8d-3c23-44a9-8826-6ff0d1639bde
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