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Vibration isolation of a beam via negative resistance electromagnetic shunt dampers

机译:通过负电阻电磁分流阻尼器隔振

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In this study, two novel electromagnetic shunt damping vibration isolators (EMSD-VIs) were developed for the vibration isolation of a beam structure. The proposed isolator utilizes a pair of electromagnetic coils and permanent magnet and a box-shaped spring to generate both variable damping and spring effect. The governing equation of the EMSD-VI-sup-ported beam was established according to Galerkin method. The negative resistance was proposed to improve the performance of the isolator. The stability analysis was investigated to determine the design rules of the shunted negative resistance. The acceleration transmissibility of the beam system was simulated by using passive EMSD-VI control and negative resistance (NR)-EMSD-VI control. The experiment was conducted to verify the theoretical model and the numerical simulation. The experimental results demonstrated that the proposed NR-EMSD-VI is capable of isolating the first-order and the third-order vibrations. Also, a discussion of the resonance frequency shift toward higher value was given.
机译:在这项研究中,开发了两种新型的电磁并联阻尼隔振器(EMSD-VI),用于梁结构的隔振。提出的隔离器利用一对电磁线圈和永磁体以及一个盒形弹簧来产生可变的阻尼和弹簧效果。根据Galerkin方法建立了EMSD-VI支撑梁的控制方程。提出负电阻以改善隔离器的性能。研究了稳定性分析,以确定并联负电阻的设计规则。通过使用被动EMSD-VI控制和负电阻(NR)-EMSD-VI控制来模拟梁系统的加速度传递率。进行了实验以验证理论模型和数值模拟。实验结果表明,提出的NR-EMSD-VI能够隔离一阶和三阶振动。此外,讨论了共振频率向更高的值偏移。

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