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A Novel Dual–Parallelogram Passive Rocking Vibration Isolator: A Theoretical Investigation and Experiment

机译:新型双平行四边形被动振动隔振器的理论研究与实验

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摘要

Vibration isolators with quasi-zero stiffness (QZS) perform well for low- or ultra-low-frequency vibration isolation. This paper proposes a novel dual-parallelogram passive rocking vibration isolator with QZS that could effectively attenuate in-plane disturbances with low-frequency vibration. First, a kinematic model of the proposed vibration isolator was established and four linear spring configuration schemes were developed to implement the QZS. Next, an optimal scheme with good high-static-low-dynamic stiffness (HSLDS) performance was obtained through comparison and analysis, and used as a focus for the QZS model. Subsequently, a dynamic model-based Lagrangian equation that considered the spring stiffness and damping and the influence of the payload gravity center on the vibration isolation system was developed, and an average approach was used to analyze the vibration transmissibility. Finally, the prototype and test system were constructed. A comparison of the simulation and experimental results showed that this novel passive rocking vibration isolator could bolster a heavy payload. Experimentally, the vibration amplitude decreased by 53% and 86% under harmonic disturbances of 0.08 Hz and 0.35 Hz, respectively, suggesting the great practical applicability of this presented vibration isolator.
机译:准零刚度(QZS)的隔振器在低频或超低频隔振方面表现良好。本文提出了一种新型的具有QZS的双平行四边形无源摇摆振动隔离器,该隔离器可以有效地衰减低频振动中的平面干扰。首先,建立了所提出的隔振器的运动学模型,并开发了四种线性弹簧配置方案来实现QZS。接下来,通过比较和分析,获得了具有良好高静动态低刚度(HSLDS)性能的最优方案,并将其用作QZS模型的重点。随后,建立了一个基于动态模型的拉格朗日方程,该方程考虑了弹簧刚度和阻尼以及有效载荷重心对隔振系统的影响,并采用平均方法分析了振动的传递率。最后,构建了原型和测试系统。仿真和实验结果的比较表明,这种新型的被动摇摆式振动隔离器可以支撑较大的有效载荷。在实验中,在0.08 Hz和0.35 Hz的谐波干扰下,振动幅度分别降低了53%和86%,这表明该振动隔离器具有很大的实用性。

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