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Torsional warping eigenmodes of FGM beams with longitudinally varying material properties

机译:材料特性沿纵向变化的FGM梁的扭转翘曲本征模

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摘要

In this paper, the influence of torsional warping of thin-walled cross-sections of twisted Functionally Graded Material (FGM) beams with a longitudinal polynomial variation of the material properties on their eigenvibrations is investigated, considering the secondary deformations due to the angle of twist. The transfer relations needed for the transfer matrix method are derived. Based on them, the local finite element equations of the twisted FGM beam are established. The warping part of the first derivative of the twist angle, caused by the bimoment, is considered as an additional degree of freedom at the beam nodes. The focus of the numerical investigation, with and without consideration of the Deformation due to the Secondary Torsional Moment (STMDE), is on modal analysis of straight cantilever FGM beams with doubly symmetric open and closed cross sections. The influence of the longitudinal variation of the material properties and the secondary torsion moment on the eigenfrequencies is investigated. The obtained results are compared with the ones calculated by a very fine mesh of standard solid and warping beam finite elements.
机译:在本文中,考虑了扭转角引起的二次变形,研究了具有功能特性的纵向多项式变化的扭转功能梯度材料(FGM)梁的薄壁截面的扭转翘曲的影响。 。推导了传递矩阵法所需的传递关系。在此基础上,建立了扭转FGM梁的局部有限元方程。由双矩引起的扭转角一阶导数的翘曲部分被视为梁节点处的附加自由度。数值研究的重点是在不考虑由于二次扭转力矩(STMDE)引起的变形的情况下,对具有双对称开放和封闭横截面的直悬臂FGM梁进行模态分析。研究了材料特性的纵向变化和二次扭转力矩对本征频率的影响。将获得的结果与由标准实体和翘曲梁有限元的非常精细的网格计算得到的结果进行比较。

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