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首页> 外文期刊>International journal of applied mechanics >Vibration Attenuation of an Electromechanical System Coupled with Plate Springs Damped by an Impact Element
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Vibration Attenuation of an Electromechanical System Coupled with Plate Springs Damped by an Impact Element

机译:机电系统与受冲击元件阻尼的板簧耦合的振动衰减

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摘要

The main aim of this paper is focused on vibration attenuation of the electromechanical system flexibly coupled with a baseplate and damped by an impact element. The model is constructed with three degrees of freedom in the mechanical oscillating part, two translational and one rotational. The system movement is described by three mutually coupled second-order ordinary differential equations, derived by the force balance method. Here, the most important nonlinearities are: stiffness of the support spring elements and internal impacts. The main results show the impact damping device attenuates vibrations of the rotor frame in a wide range of the excitation frequencies, that is wider then in the case when the impact element works only as an inertia damper without occurrence of any impacts.
机译:本文的主要目标集中在机电系统的振动衰减上,该机电系统灵活地与基板耦合并通过冲击元件进行阻尼。该模型在机械摆动部分具有三个自由度,两个平移和一个旋转。通过力平衡法推导的三个相互耦合的二阶常微分方程描述系统运动。在这里,最重要的非线性是:支撑弹簧元件的刚度和内部冲击。主要结果表明,该冲击阻尼装置在很宽的激励频率范围内衰减了转子框架的振动,这比在冲击元件仅用作惯性阻尼器而没有任何冲击的情况下要宽得多。

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