首页> 外文会议>ASME international design engineering technical conferences;Computers and information in engineering conference;Conference on mechanical vibration and noise >DESIGN OPTIMISATION OF A NONLINEAR ENERGY SINK EMBEDDED ON A HARMONICALLY FORCED LINEAR OSCILLATOR: THEORETICAL AND EXPERIMENTAL DEVELOPMENTS
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DESIGN OPTIMISATION OF A NONLINEAR ENERGY SINK EMBEDDED ON A HARMONICALLY FORCED LINEAR OSCILLATOR: THEORETICAL AND EXPERIMENTAL DEVELOPMENTS

机译:包含在强制线性振荡器上的非线性能量沉的设计优化:理论和实验发展

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In this paper, the dynamic response of a harmonically forced Linear Oscillator (LO) strongly coupled to a Nonlinear Energy Sink (NES) is investigated theoretically and experimentally. The system studied comprises a linear oscillator subject to an imposed displacement with an embedded, purely cubic, NES. The behavior of the system is analyzed in the vicinity of 1 : 1 resonance. The complexification averaging technique is used to obtain modulation equations and the associated fixed points. These modulation equations are analyzed using asymptotic expansion to study the regimes related as relaxation oscillation of the slow flow called Strongly Modulated Response (SMR). The zones where SMR occur are computed using a mapping procedure. The Slow Invariant Manifolds (SIM) is used to derive a proper optimization procedure. It is shown that there exist an optimal zone in the parameter plane forcing amplitude-nonlinear stiffness, where SMR occurs without having a high amplitude detached resonance tongue. An experimental setup exhibits a strong mass asymmetry (mass ratio ≈ 1%). The cubic stiffness is realized geometrically with two linear spring that extend ax-ially and are free to rotate. Using the previous optimized stiffness of the NES, different frequency response curves and associated zones of SMR are obtained for various forcing amplitude. Good agreement between theoretical and experimental results is observed. The reported experimental results confirm the design procedure, and the possible application of NES for vibration mitigation under periodic forcing.
机译:在本文中,从理论和实验上研究了与非线性能量吸收器(NES)强耦合的谐波强制线性振荡器(LO)的动态响应。所研究的系统包括一个线性振荡器,该线性振荡器会受到施加位移的影响,其中嵌入了一个纯立方NES。在1:1共振附近分析系统的行为。复杂度平均技术用于获得调制方程式和相关的固定点。使用渐近展开对这些调制方程进行分析,以研究与称为强调制响应(SMR)的慢流的弛豫振荡相关的状态。使用映射过程计算发生SMR的区域。缓慢不变流形(SIM)用于得出适当的优化过程。结果表明,在参数平面中存在一个强迫振幅非线性刚度的最佳区域,在该区域中发生SMR时没有高振幅分离的共振舌。实验装置显示出很强的质量不对称性(质量比≈1%)。立方刚度是通过两个轴向延伸并可以自由旋转的线性弹簧在几何上实现的。使用NES的先前优化的刚度,可以针对不同的强迫幅度获得不同的频率响应曲线和SMR的相关区域。观察到理论和实验结果之间的良好一致性。所报告的实验结果证实了设计程序,以及NES在周期性强迫作用下减轻振动的可能应用。

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