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Study of an electromechanical nonlinear vibration absorber: Design via analytical approach

机译:机电非线性减振器的研究:通过分析方法设计

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This article deals with the behavior and design of a homogeneous beam linked to an electrical absorber, via a piezoelectric material patched on the beam. The beam presents a cubic nonlinearity, which is consistent with geometrical nonlinearities for clamped-free beams. A cubic nonlinearity is added to the electrical circuit for similarity purposes. The coupled electromechanical equations are reduced to a two degrees of freedom system. The equation representing the mechanical response of the system is seen as the main system, whereas the equation coming from the electrical circuit would represent a nonlinear absorber. An analytical treatment at different time scales is endowed to identify electrical coefficients allowing the design of the electromechanical vibration absorber behavior. The equilibrium and singular points are identified, allowing the definition of ranges of forcing amplitudes leading to periodic and modulated regimes. The analytical results are compared with those obtained from direct numerical integration of the two degree of freedom system.
机译:本文通过在梁上贴在光束上的压电材料来涉及连接到电吸收器的均匀梁的行为和设计。光束呈现立方体非线性,其与用于无夹紧梁的几何非线性一致。为了相似目的,将立方非线性添加到电路中。耦合机电方程减少到两度的自由度系统。表示系统机械响应的等式被视为主系统,而来自电路的等式将表示非线性吸收器。在不同时间尺度的分析处理被赋予识别允许设计机电振动吸收器行为的电系数。鉴定了平衡和奇异点,允许迫使强制幅度的定义导致周期性和调制的制度。将分析结果与从两度自由度系统的直接数值集成获得的分析结果进行了比较。

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