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An integrating matrix formulation for buckling of rotating beams including the effects of concentrated masses

机译:包含集中质量影响的旋转梁屈曲的积分矩阵公式

摘要

The integrating matrix technique of computational mechanics is extended to include the effects of concentrated masses. The stability of a flexible rotating beam with discrete masses is analyzed to determine the critical rotational speeds for buckling in the inplane and out-of-plane directions. In this problem, the beam is subjected to compressive centrifugal forces arising from steady rotation about an axis which does not pass through the clamped end of the beam. To determine the eigenvalues from which stability is assessed, the differential equations of motion are solved numerically by combining the extended integrating matrix method with an eigenanalysis. Stability boundaries for a discrete mass representation of a uniform beam are shown to asymptotically approach the stability boundaries for the corresponding continuous mass beam as the number of concentrated masses is increased. An error in the literature is also noted for the discrete mass problem concerning the behavior of the critical rotational speed for inplane buckling as the radius of rotation of the clamped end of the beam is reduced.
机译:计算力学的积分矩阵技术​​已扩展到包括集中质量的影响。分析具有离散质量的柔性旋转梁的稳定性,以确定在面内和面外方向屈曲的临界转速。在这个问题中,梁受到绕围绕轴的稳定旋转而产生的压缩离心力,该轴线不穿过梁的夹紧端。为了确定评估稳定性的特征值,通过将扩展积分矩阵方法与特征分析相结合来数值求解运动微分方程。均匀束的离散质量表示的稳定性边界显示为随着集中质量数的增加而渐近逼近相应连续质量束的稳定性边界。对于离散质量问题,在文献中也有一个错误,该问题涉及随着梁的夹紧端的旋转半径的减小而引起的用于面内屈曲的临界转速的行为。

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