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Nonlinearly coupled in-plane and transverse vibrations of a spinning disk

机译:旋转盘的面内和面内非线性耦合振动

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Previous nonlinear spinning disk models neglected the in-plane inertia of the disk since this permits the use of a stress function. This paper aims to consider the effect of including the in-plane inertia of the disk on the resulting nonlinear dynamics and to construct approximate solutions that capture the new dynamics. The inclusion of the in-plane inertia results in a nonlinear coupling between the in-plane and transverse vibrations of the spinning disk. The full nonlinear partial differential equations are simplified to a simpler nonlinear two degrees of freedom model via the method of Galerkin. A canonical perturbation approach is used to derive an approximate solution to this simpler nonlinear problem. Numerical simulations are used to evaluate the effectiveness of the approximate solution. Through the use of these analytical and numerical tools, it becomes apparent that the inclusion of in-plane inertia gives rise to new phenomena such as internal resonance and the possibility of instability in the system that are not predicted if the in-plane inertia is ignored. It is also demonstrated that the canonical perturbation approach can be used to produce an effective approximate solution.
机译:以前的非线性旋转磁盘模型忽略了磁盘的平面内惯性,因为这允许使用应力函数。本文旨在考虑将磁盘的面内惯性包括在内对所产生的非线性动力学的影响,并构建捕获新动力学的近似解。平面内惯性的包含导致旋转盘的平面内和横向振动之间的非线性耦合。完整的非线性偏微分方程通过Galerkin方法简化为一个简单的非线性二自由度模型。规范的摄动方法被用来为这个较简单的非线性问题导出一个近似解。数值模拟用于评估近似解的有效性。通过使用这些分析和数值工具,很明显的是,包含平面内惯性会引起新现象,例如内部共振和系统不稳定的可能性,如果忽略了平面内惯性就无法预测。还证明了规范摄动法可用于产生有效的近似解。

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