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Enhanced vibration isolation performance of quasi-zero-stiffness isolator by introducing tunable nonlinear inerter

机译:通过引入可调谐非线性惰性的准零刚度隔离器的增强振动隔离性能

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The concept of quasi-zero-stiffness (QZS) vibration isolator was proposed inrecent decades aiming at improving the low-frequency isolation performance in a passive manner. However, large excitation and small damping usually cause the transmissibility curve to bend seriously to the right, which greatly reduces the effective isolation region. This paper focuses on enhancing the QZS isolator by introducing tunable nonlinear inerter (TNI). Af ter formulating the dynamic equation, the response is analytically calculated, the stability is analyzed, and numerical simulations are conducted. By comparing the isolation performances of the QZS isolator and the QZS-TNI isolator, it is shown that adding the inerter can considerably suppress the bending trend of the transmissibility curve, thereby resulting in a much wider frequency range of isolation as well as a lower peak transmissibility. (C) 2020 Elsevier B.V. All rights reserved.
机译:提出了准零刚度(QZS)振动隔离器的概念,其旨在以被动方式提高低频隔离性能。然而,大励磁和小阻尼通常会导致透射性曲线严重向右弯曲,这大大减少了有效隔离区域。本文侧重于通过引入可调谐非线性活动(TNI)来增强QZS隔离器。 AF TER配方动态方程,在分析了响应,分析了稳定性,并进行了数值模拟。通过比较QZS隔离器和QZS-TNI隔离器的隔离性能,示出了添加中间可以显着抑制传输曲线的弯曲趋势,从而导致频率范围更宽的隔离和较低的峰值传导性。 (c)2020 Elsevier B.v.保留所有权利。

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