论文标题

关于机械系统非线性模式慢动力学的计算

On the computation of the slow dynamics of nonlinear modes of mechanical systems

论文作者

Krack, Malte, Scheidt, Lars Panning-von, Wallaschek, Jörg

论文摘要

已经开发了一种新的方法预测非线性机械系统动力学的数值预测。该方法仅限于孤立的非线性模式的制度,并由两步过程组成:在第一步中,对自主系统进行了多辅助分析,以直接计算被考虑的非线性模式的振幅依赖性特征。在第二步中,这些模态属性用于构建二维降级订单模型(ROM),以促进稳态和不稳定动力学的有效计算,前提是没有非线性模态相互作用。所提出的方法应用于几个非线性机械系统范围内的单个自由度,以有限的元素模型。研究了不稳定的振动现象,例如针对平衡点或极限周期的行为,以及有关各种非线性(例如立方弹簧,单侧接触和摩擦)的影响的共振通道。发现拟议的ROM促进了对非线性系统缓慢动态的非常快速准确的分析。此外,ROM概念提供了一个巨大的参数空间,包括额外的线性阻尼,刚度和近谐音强迫。

A novel method for the numerical prediction of the slowly varying dynamics of nonlinear mechanical systems has been developed. The method is restricted to the regime of an isolated nonlinear mode and consists of a two-step procedure: In the first step, a multiharmonic analysis of the autonomous system is performed to directly compute the amplitude-dependent characteristics of the considered nonlinear mode. In the second step, these modal properties are used to construct a two-dimensional reduced order model (ROM) that facilitates the efficient computation of steady-state and unsteady dynamics provided that nonlinear modal interactions are absent. The proposed methodology is applied to several nonlinear mechanical systems ranging form single degree-of-freedom to Finite Element models. Unsteady vibration phenomena such as approaching behavior towards an equilibrium point or limit cycles, and resonance passages are studied regarding the effect of various nonlinearities such as cubic springs, unilateral contact and friction. It is found that the proposed ROM facilitates very fast and accurate analysis of the slow dynamics of nonlinear systems. Moreover, the ROM concept offers a huge parameter space including additional linear damping, stiffness and near-resonant forcing.

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