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Nonlinear dynamics of mechanical systems with friction contacts: Harmonic Balance Method and multiple solutions

机译:摩擦触点机械系统的非线性动力学:谐波平衡法和多种解决方案

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Real applications in structural mechanics where the dynamic behaviour is linear are rare. Usually, structures are made of components assembled together by means of joints whose behaviour may result highly nonlinear. Depending on the amount of excitation, joints can dramatically change the dynamic behaviour of the whole system and the modelling of this type of constraint is therefore crucial for a correct prediction of the amount of vibration. The solution of the nonlinear equilibrium equations by means of the Harmonic Balance Method (HBM) is widely accepted as an effective approach to calculate the steady-state forced response in the frequency domain in spite of the Direct Time Integration (DTI). Since the periodical nonlinear contact forces may depend on the history of the motion of the vibrating system, the HBM steady-state solution may lead to a poor correlation with the DTI solution. In this paper, the HBM performances are investigated by comparing two different approaches to each other: in the first case the static balance equations of the system are uncoupled from the dynamic balance equations, while in the second case a coupled static/dynamic approach is presented. A lumped parameter system characterized by a single friction contact is considered in order to show the different level of accuracy that the proposed approaches can give for different configurations.
机译:动态行为是线性的结构力学中的真实应用是罕见的。通常,结构由借助于通过关节组装在一起的组件,其行为可能产生高度非线性。根据激发的量,关节可以显着改变整个系统的动态行为,并且这种类型的约束的建模对于正确的振动量来说至关重要。通过谐波平衡方法(HBM)的非线性平衡方程的解决方案被广泛被广泛接受作为计算频域中稳态强制响应的有效方法,尽管是直接时间积分(DTI)。由于周期性非线性接触力可以取决于振动系统的运动的历史,因此HBM稳态溶液可能导致与DTI溶液的相关性差。在本文中,通过比较两种不同的彼此的不同方法来研究HBM性能:在第一种情况下,系统的静态平衡方程从动态平衡方程耦合,而在第二种情况下呈现耦合的静态/动态方法。考虑一个由单个摩擦接触的集成参数系统被认为是为了显示所提出的方法可以提供不同配置的不同精度水平。

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