Dynamic analysis for delaminated composites based on finite element

다중 층간분리부가 내재된 복합재 평판의 유한요소 진동해석

  • 오진호 (서울대학교 기계항공공학부 대학원생) ;
  • 조맹효 (서울대학교 기계항공공학) ;
  • 김준식 (The Pennsylvania State University 항공우주공학과 대학원생)
  • Published : 2003.04.01

Abstract

A finite element based on the efficient higher order zig-zag theory with multiple delaminations Is developed to refine the predictions of frequency and mode shapes. Displacement field through the thickness are constructed by superimposing linear zig-zag field to the smooth globally cubic varying field. The layer-dependent degrees of freedom of displacement fields are expressed in terms of reference primary degrees of freedom by applying interface continuity conditions including delaminated interfaces as well as free hounding surface conditions of transverse shear stresses. Thus the proposed theory is not only accurate but also efficient. This displacement field can systematically handle the number, shape, size, and locations of delaminations. Throught the dynamic version of variational approach, the dynamic equilibrium equations and variationally consistent boundary conditions are obtained. Through the natural frequency analysis and time response analysis of composite plate with multiple delaminations, the accuracy and efficiency of the present finite element are demonstrated. The present finite element is suitable in the predictions of the dynamic response of the thick composite plate with multiple delaminations.

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