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A tunable high-static-low-dynamic stiffness vibration isolator

机译:可调高静低动态刚度隔振器

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摘要

In this study, a novel vibration isolator is developed. The developed isolator possesses the characteristics of high-static-low-dynamic stiffness (HSLDS) and can act passively or semi-actively. The HSLDS property of the isolator is obtained by connecting a mechanical spring, in parallel with a magnetic spring that is constructed by a pair of electromagnets and a permanent magnet. The mechanical spring is a structural beam whose stiffness exhibits a hardening behavior. The stiffness of the magnetic spring can be positive or negative, depending on the polarity of the current to the electromagnets. A passive HSLDS isolator is obtained when the electromagnet current is zero. In the stiffness characterization study, the analytical model for each of the springs is established and the tuning parameters are identified. Using the stiffness models, the design optimization issues are investigated. In the experimental study, the effectiveness of the isolator for vibration isolation is tested. The analytical natural frequencies of the isolator are validated experimentally. The relationships between the displacement transmissibility and the exciting frequency are measured both under the passive mode and under the semi-active mode. The on-line tuning capability of the isolator is investigated.
机译:在这项研究中,开发了一种新型的隔振器。开发的隔离器具有高静态低动态刚度(HSLDS)的特性,并且可以被动或半主动地起作用。隔离器的HSLDS特性是通过将机械弹簧与由一对电磁体和永磁体构成的磁性弹簧并联来获得的。机械弹簧是一种结构梁,其刚度表现出硬化行为。电磁弹簧的刚度可以为正或负,具体取决于流向电磁体的电流的极性。当电磁铁电流为零时,将获得无源HSLDS隔离器。在刚度特性研究中,建立每个弹簧的分析模型并确定调整参数。使用刚度模型,研究了设计优化问题。在实验研究中,测试了隔离器隔振的有效性。隔离器的分析固有频率已通过实验验证。在被动模式和半主动模式下都测量了位移传递率与激励频率之间的关系。研究了隔离器的在线调谐能力。

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