회전외팔보(Rotating Cantilever Beam); 길이방향 인장변위(Stretch Deformation); 유한요소법(Finite Element Method); 고유진동수 변화(Natural Frequency Variation)
Issue Date
2000-11
Publisher
대한기계학회
Citation
대한기계학회 2000년도 춘추학술대회, v. 2, no. 1, page. 529-534
Abstract
A finite element analysis for a rotating cantilever beam is presented in this study. Based on a dynamic modelling method using the stretch deformation instead of the conventional axial deformation, three linear partial differential equations are derived from Hamiltion's principle. Two of the linear differential equations show the coupling effect between stretch and chordwise deformations. The other equation is an uncoupled one for the flapwise deformation. From these partial differential equations and the associated boundary conditions, are derived two weak forms: one is for the chordwise motion and the other is for the flapwise motion. The weak forms are spatially discretized with newly defined two-node beam elements. With the discretized equations of the matrix-vector equations, the behaviousrs of the natural frequencles are investigated for the variation of the rotating speed.