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High-Static-Low-Dynamic Stiffness Isolator With Tunable Electromagnetic Mechanism

机译:具有可调谐电磁机构的高静电 - 低动态刚度隔离器

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摘要

A high-static-low-dynamic stiffness (HSLDS) vibration isolator based on a tunable nesting-type electromagnetic negative stiffness (NS) mechanism is presented. The stiffness characteristics of the HSLDS system can be tuned by regulating the current in the coil. When the current is zero, the HSLDS system may degenerate into a passive isolator. The distinctive features of this proposed isolation system are demonstrated from two aspects: 1) In contrast to passive isolators, the proposed isolator can further widen the bandwidth of vibration isolation and improve the isolation performance near the natural frequency of the passive system; and 2) compared with certain other electromagnetic isolation systems, the proposed system has a more compact structure, heavier load capacity, and higher NS-generating efficiency. The proposed electromagnetic NS mechanism consists of four permanent magnets and four coil windings. Analytical models of the electromagnetic force and the displacement transmissibility are established. To select an appropriate structural parameter for the prototype, the effects of geometric parameters on transmissibility are discussed from a theoretical viewpoint. The vibration isolation performance of the proposed isolator system is verified, and a tuning strategy is investigated through experiments.
机译:基于可调嵌套型电磁负刚度(NS)机构的高静态低动态刚度(HSLD)减振器。通过调节线圈中的电流可以调整HSLD系统的刚度特性。当电流为零时,HSLD系统可以退化为无源隔离器。该提出的隔离系统的独特特征从两个方面进行了演示:1)与被动隔离器相比,所提出的隔离器可以进一步扩大振动隔离的带宽,并提高无源系统的固有频率附近的隔离性能; 2)与某些其他电磁隔离系统相比,所提出的系统具有更紧凑的结构,负载能力较重,更高的NS发电效率。所提出的电磁NS机构由四个永磁体和四个线圈绕组组成。建立了电磁力的分析模型和位移传动性。为了为原型选择适当的结构参数,从理论观点讨论了几何参数对传输性的影响。验证了所提出的隔离系统的振动隔离性能,并通过实验研究了调谐策略。

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