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Free Vibration Identification of the Geometrically Nonlinear Isolator with Elastic Rings by Using Hilbert Transform

机译:使用Hilbert变换,通过弹性环的几何非线性隔离器自由振动识别

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The geometrically nonlinear isolator formed by a pair of elastic circular springs in the push-pull configuration has the symmetrical hardening stiffness under static compression and tension. Thus, it could be a potential solution to satisfy the dual isolation requirements of steady-state vibrations and transient shocks in the engineering application. The nonlinear transmissibility of this isolator under large-amplitude sinusoidal excitations has been investigated theoretically and experimentally in our previous research. In this paper, the Hilbert transform is applied to identify the geometrically nonlinear isolator with measured free vibration responses in the time domain. The measured responses are acquired by a laser vibrometer with large initial deformations. Since all the involved instantaneous modal parameters contain fast oscillations around their average values, the empirical mode decomposition is employed to smooth the identified results of the instantaneous frequency and damping coefficient. It is found that the backbone curve obtained experimentally conforms well to the previously measured frequency responses. The identified nonlinear stiffness and damping force characteristics of this geometrically nonlinear isolator have good agreements with the results from the theoretically calculation and the frequency-domain test in our previous research. Therefore, this research provides an efficient approach to analyze the dynamic characteristics of the geometrically nonlinear isolator with push-pull configuration rings and is also beneficial to design the parameters of this isolator.
机译:在推挽式构造中由一对弹性圆形弹簧形成的几何非线性隔离器在静态压缩和张力下具有对称的硬化刚度。因此,它可以是满足工程应用中稳态振动和瞬态冲击的双隔离要求的潜在解决方案。在我们以前的研究中理论上和实验已经在大幅度正弦激励下进行了这种隔离器的非线性传递性。在本文中,施加了Hilbert变换以识别几何非线性隔离器,在时域中测量的自由振动响应。通过具有大的初始变形的激光振动计获得测量的响应。由于所有涉及的瞬时模态参数在其平均值周围包含快速振荡,因此采用经验模式分解来平滑瞬时频率和阻尼系数的所识别的结果。发现获得的骨干曲线实验符合先前测量的频率响应。该几何非线性隔离器的所识别的非线性刚度和阻尼力特性与我们以前的研究中的理论上计算和频域测试的结果具有良好的达成协议。因此,该研究提供了一种有效的方法来分析具有推挽式配置环的几何非线性隔离器的动态特性,并且还有利于设计该隔离器的参数。

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