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ESSENTIALLY NONLINEAR PIEZOELECTRIC ATTACHMENT FOR AEROELASTIC FLUTTER SUPPRESSION

机译:基本上非线性压电连接用于空气弹性颤动抑制

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Various researchers have investigated the behavior of a linear mechanical oscillator weakly coupled to a nonlinear mechanical attachment that has essential stiffness nonlinearity. Under certain conditions, the essentially nonlinear attachment acts as a nonlinear energy sink (NES) and one-way energy transfer from the main structure to the attachment can be achieved. Since an essentially nonlinear attachment does not possess any preferential resonance frequency, they have increased robustness against detuning, enabling frequency-wise wideband performance. In this work, the interactions between an essentially nonlinear piezoelectric attachment and an electromechanically coupled two-degree-of-freedom (2-DOF) aeroelastic typical section are studied. The governing equations of the electromechanically coupled typical section with piezoelectric coupling added to the plunge DOF are presented. An equivalent electrical model of the coupled aeroelastic system is presented and combined to a nonlinear shunt circuit. The performance of the piezoelectric NES to modify the aeroelastic behavior of the typical section is discussed using the short-circuit condition as a reference case. Furthermore, the robustness of the piezoelectric NES against detuning is also investigated by changing some parameters of the typical section.
机译:各种研究人员研究了线性机械振荡器的行为弱耦合到具有基本刚度非线性的非线性机械连接。在某些条件下,基本上非线性附着起到非线性能量水槽(NES),并且可以实现从主要结构到附件的单向能量转移。由于基本上非线性附件不具有任何优先谐振频率,因此它们增加了抗谐波的鲁棒性,从而实现了频率方面的宽带性能。在这项工作中,研究了基本上非线性压电连接与机电耦合的两度自由度(2-DOF)空气弹性典型部分之间的相互作用。提出了具有压电联接器的机电耦合的典型部分的控制方程被提出加入到插头DOF。呈现耦合空气弹性系统的等效电气模型并组合到非线性分流电路。使用短路条件作为参考情况,讨论压电NE改变典型部分的空气弹性行为的性能。此外,通过改变典型部分的一些参数,还研究了压电NES抗静脉的鲁棒性。

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