首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference 2007 >FLEXURAL-TORSIONAL BUCKLING OF MISALIGNED AXIALLY MOVING BEAMS: VIBRATION AND STABILITY ANALYSIS
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FLEXURAL-TORSIONAL BUCKLING OF MISALIGNED AXIALLY MOVING BEAMS: VIBRATION AND STABILITY ANALYSIS

机译:偏心轴向运动梁的挠曲扭转屈曲:振动和稳定性分析

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This paper addresses the stability and vibration characteristics of three-dimensional steady motions (equilibrium configurations) of translating beams undergoing boundary misalignment. System modeling and equilibrium solutions for bending in two planes, torsion, and extension were presented in a previous work. Stability is determined by linearizing the equations of motion about a steady motion and calculating the eigenvalues using a finite-difference discretization. For the case of no misalignment, the calculated eigenvalues are compared to known values. When the beam is misaligned, the system initially enters a planar configuration and the results indicate that the planar equilibria lose stability after the first bifurcation point. Eigenvalue behavior of the planar equilibria after the first bifurcation point is shown to be strongly influenced by translation speed. Eigenvalue behavior about non-planar equilibria and vibration modes about selected equilibria are also presented.
机译:本文讨论了发生边界失准的平移梁的三维稳态运动(平衡构型)的稳定性和振动特性。在先前的工作中介绍了用于在两个平面中弯曲,扭转和延伸的系统建模和平衡解决方案。通过线性化关于稳定运动的运动方程并使用有限差分离散化计算特征值来确定稳定性。对于没有未对准的情况,将计算出的特征值与已知值进行比较。当光束未对准时,系统最初进入平面配置,结果表明,在第一个分叉点之后,平面平衡失去了稳定性。在第一个分叉点之后,平面平衡的特征值行为显示出受平移速度的强烈影响。还介绍了关于非平面平衡的特征值行为和关于选定平衡的振动模式。

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