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Information Journal Paper

Title

THE EFFECT OF APPLING FUNCTIONALLY GRADED CORE TO DECREASE DELAMINATION OF COMPOSITE SANDWICH PANEL UNDER TRANSVERSE LOAD

Pages

  71-84

Abstract

 In this study effect of applying functionally graded core to decrease DELAMINATION of composite SANDWICH PANEL under transverse load is considered. The simply supported boundary conditions are applied on faces' edges. Hamilton's principle and functional method are used to derive equilibrium equations. First, shear deformation theory (FSDT) is used for faces. Core displacement in various directions is modeled by polynomial with indeterminate coefficients.The material properties of FGM are functionally graded in thickness direction according to volume fraction power law distribution. It is assumed that core is able to sustain shear and normal in-plane stresses. Finally, the effects of FGM CORE on the displacement of SANDWICH PANEL under load in three directions are considered. The numerical result of present analysis has been compared with the ANSYS results slowing good agreements.

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    APA: Copy

    MALEKZADEH FARD, K., NAZARI, A., MOZAFFARI, A., & EBRAHIMI, M.. (2012). THE EFFECT OF APPLING FUNCTIONALLY GRADED CORE TO DECREASE DELAMINATION OF COMPOSITE SANDWICH PANEL UNDER TRANSVERSE LOAD. AEROSPACE MECHANICS JOURNAL, 8(1 (27) (MECHANICAL BEHAVIOR OF MATERIALS AND STRUCTURES)), 71-84. SID. https://sid.ir/paper/101936/en

    Vancouver: Copy

    MALEKZADEH FARD K., NAZARI A., MOZAFFARI A., EBRAHIMI M.. THE EFFECT OF APPLING FUNCTIONALLY GRADED CORE TO DECREASE DELAMINATION OF COMPOSITE SANDWICH PANEL UNDER TRANSVERSE LOAD. AEROSPACE MECHANICS JOURNAL[Internet]. 2012;8(1 (27) (MECHANICAL BEHAVIOR OF MATERIALS AND STRUCTURES)):71-84. Available from: https://sid.ir/paper/101936/en

    IEEE: Copy

    K. MALEKZADEH FARD, A. NAZARI, A. MOZAFFARI, and M. EBRAHIMI, “THE EFFECT OF APPLING FUNCTIONALLY GRADED CORE TO DECREASE DELAMINATION OF COMPOSITE SANDWICH PANEL UNDER TRANSVERSE LOAD,” AEROSPACE MECHANICS JOURNAL, vol. 8, no. 1 (27) (MECHANICAL BEHAVIOR OF MATERIALS AND STRUCTURES), pp. 71–84, 2012, [Online]. Available: https://sid.ir/paper/101936/en

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