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Effects of hygrothermal conditions on cross-ply laminated plates resting on elastic foundations

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The influence of temperature and moisture on the hygrothermal behavior of laminated composite plates resting on elastic foundations is investigated using a refined plate theory. The material properties of the composite are affected by the variation of temperature and moisture. The present plate theory enables the trial and testing of different through-the-thickness transverse shear-deformation distributions and, among them, strain distributions that do not involve the undesirable implications of the transverse shear correction factors. The governing equations are derived based on the present theory, including hygrothermal effects and elastic foundation parameters. The effects of Winkler and Pasternak foundation parameters, temperature, moisture concentration, transverse shear deformation, plate aspect ratio, side-to-thickness ratio on deflections and stresses are investigated.
Rocznik
Strony
144--159
Opis fizyczny
Bibliogr. 24 poz., tab., wykr.
Twórcy
  • Department of Mathematics, Faculty of Science, King Abdulaziz University, P.O. Box 80203, Jeddah 21589, Saudi Arabia
  • Department of Mathematics, Faculty of Science, Kafrelsheikh University, Kafrelsheikh 33516, Egypt
  • Department of Mathematics, Faculty of Science, Mansoura University, Mansoura 35516, Egypt
autor
  • Department of Mathematics, Faculty of Science, Mansoura University, Mansoura 35516, Egypt
Bibliografia
  • [1] P. K. Parhi, S. K. Bhattacharyya, P. K. Sinha, Hygro thermal effects on the dynamic behavior of multi pled elaminated composite plates and shells, Journal of Sound and Vibration 248 (2001) 195–214.
  • [2] H.-S. Shen, Hygrothermal effects on the postbuckling of shear deformable laminated plates, International Journal of Mechanical Sciences 43 (2001) 1259–1281.
  • [3] B.P. Patel, M. Ganapathi, D. P. Makhecha, Hygro thermal effects on the structural behavior of thick composite laminates using higher-order theory, Composite Structures 56 (2002) 25–34.
  • [4] V.V.S. Rao, P. K. Sinha, Dynamic response of multidirectional composites In hydro thermal environments, Composite Structures 64 (2004) 329–338.
  • [5] O. Sayman, Studied the analysis of multi-layered composite cylinders under hygro-thermal loading, Composites Part A36 (2005) 923–933.
  • [6] X. Wang, K. Dong, X. Y. Wang, Hygro-thermal effect on dynamic inter laminar stresses in laminated plates with piezoelectric actuators, Composite Structures 71 (2005) 220–228.
  • [7] Z. Sereir, E. A. Adda-Bedia, A. Tounsi, Effect of temperature on the hygro thermal behaviour of unidirectional laminated plates with asymmetric al environmental conditions, Composite Structures 72 (2006) 383–392.
  • [8] A. Bahrami, A. Nosier, Inter laminar hygrothermal stresses in laminatem plates, International Journal of Solids and Structures 44 (2007) 8119–8142.
  • [9] N.V. Swamy Naidu, P. K. Sinha, Nonlinear free vibration analysis of laminatem composite shells in hygrohermal environments, Composite Structures 77 (2007) 475–483.
  • [10] A. Benkhedda, A. Tounsi, E. A. Addabedia, Effect of temperature and humidity on transient hygro thermal stresses during moisture de sorption in laminated composite plates, Composite Structures 82 (2008) 629–635.
  • [11] S.H. Lo, Wu. Zhen, Y. K. Cheung, C. Wanji, Hygrothermal effects on multilayered composite plates using a refined higher order theory, Composite Structures 92 (2010) 633–646.
  • [12] S. Brischetto, Hygrothermo elastic analysis of multilayered composite and sandwichshells, Journal of Sandwich Structures and Materials 15 (2013) 168–202.
  • [13] H.-S. Shen, Thermal post buckling analysis of imperfect Reissner-Mindlin plates on softening nonlinear elastic foundations, Journal of Engineering Mathematics 33 (1998) 259–270.
  • [14] H.-S. Shen, Nonlinear analysis of composite laminated thin plates subjected tolateral pressure and thermal loading and resting on elastic foundations, Composite Structures 49 (2000) 115–128.
  • [15] A.M. Zenkour, Hygro-thermo-mechanical effects on FGM plates resting on elastic foundations, Composite Structures 93 (2010) 234–238.
  • [16] A.M. Zenkour, M. N. M. Allam, M. Sobhy, Bending analysis of FG viscoelastic sandwich beams with elastic cores resting on Pasternak's elastic foundations, Acta Mechanica 212 (2010) 233–252.
  • [17] A.M. Zenkour, The refined sinusoidal theory for FGM plates on elastic foundations, International Journal of Mechanical Sciences 51 (2009) 869–880.
  • [18] A.M. Zenkour, M. N. M. Allam, M. O. Shaker, A. F. Radwan, On the simple and mixed first-order theories for plates resting on elastic foundations, Acta Mechanica 220 (2011) 33–46.
  • [19] A.M. Zenkour, Hygrothermal effects on the bending of angle- ply composite plates using a sinusoidal theory, Composite Structures 94 (2012) 3685–3696.
  • [20] A.E. Bogdanovich, C. M. Pastore, Mechanics of Textile and Laminated Composites with Applications to Structural Analysis, Chapman & Hall, London, 1996.
  • [21] N.J. Pagano, Exact solutions for rectangular bidirectional composites and sandwicz plates, Journal of Composite Materials 4 (1970) 20–34.
  • [22] S. Brischetto, Hygro thermal loading effects in bending analysis of multilayered composite plates, Computer Modeling in Engineering and Sciences 88 (2012) 367–418.
  • [23] J.N. Reddy, Y. S. Hsu, Effects of shear deformation and anisotropy on the thermal bending of layered composite plates, Journal of Thermal Stresses 3 (1980) 475–493.
  • [24] O.S. Sahin, Thermal buckling of hybrid angle-ply laminated composite plates with a hole, Composites Science and Technology 65 (2005) 1780–1790.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dd64a04b-ef53-426f-b1df-b3c64e804c87
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