Spatial Free Vibration and Stability Analysis of Thin-Walled Arches with Variable Curvature

곡률이 변하는 박벽 아치의 3차원 자유진동 및 좌굴해석

  • 서광진 (성균관대학교 토목공학과) ;
  • 민병철 (성균관대학교 토목공학과) ;
  • 김문영 (성균관대학교 토목공학과)
  • Published : 1999.04.01

Abstract

An improved formulation for spatial stability md free vibration of thin-walled curved beams with variable curvature and non-symmetric cross sections are presented based on the displacement field considering the second order terms of finite semitangential rotations. By introducing Vlasov's assumptions, the total potential energy is derived from the principle of linearized virtual work for a continuum. In this formulation, all displacement parameters and the warping function are defined at the centroid axis so that the coupled terms of bending and torsion are added to the elastic strain energy. Also, the potential energy due to initial stress resultants is consistently derived corresponding to the semitangential rotation and moment. The cubic Hermitian polynomials are utilized as shape functions for development of the curved thin-walled beam element having eight degrees of freedom. In order to illustrate the accuracy and practical usefulness of this study, . numerical solutions for free vibration of arches are presented and compared with resells of other researchers and solutions analyzed by the ABAQUS's shell element.

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