Exact Static Element Stiffness Matrix of Shear Deformable Nonsymmetric Thin-walled Elastic Beams

전단변형을 고려한 비대칭 박벽보의 엄밀한 정적 요소강도행렬

  • 김남일 (성균관대학교 토목환경공학과) ;
  • 곽태영 (성균관대학교 토목환경공학과) ;
  • 이준석 (성균관대학교 토목환경공학과) ;
  • 김문영 (성균관대학교 토목환경공학과)
  • Published : 2001.10.01

Abstract

Derivation procedures of exact static element stiffness matrix of shear deformable thin-walled straight beams are rigorously presented for the spatial buckling analysis. An exact static element stiffness matrix is established from governing equations for a uniform beam element with nonsymmetric thin-walled cross section. First this numerical technique is accomplished via a generalized linear eigenvalue problem by introducing 14 displacement parameters and a system of linear algebraic equations with complex matrices. Thus, the displacement functions of dispalcement parameters are exactly derived and finally exact stiffness matrices are determined using member force-displacement relationships. The buckling loads are evaluated and compared with analytic solutions or results of the analysis using ABAQUS' shell elements for the thin-walled straight beam structure in order to demonstrate the validity of this study.

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