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The relationship between stiffness variation and performance of electromagnetic-air spring vibration isolator:

机译:刚度变化与电磁空气弹簧隔振器性能之间的关系:

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In order to isolate the structural vibration in high-frequency range effectively and constrain the peak response value near the natural frequency, an experience method using electromagnetic-air spring vibration isolator was put forward based on the respective advantages of electromagnetic actuator and air spring. In this article, a stiffness expression and a natural frequency of the system was worked out. A dynamic model of the electromagnetic-air spring vibration isolator system and an expression of the force transmission were established. Moreover, the relationship between stiffness variation and performance of the electromagnetic-air spring vibration isolator system was analyzed. The calculation and simulation analysis of the example demonstrated that in the condition of satisfying loading capacity with the increase in magnetic suspension isolator’s displacement stiffness and the decrease in air spring’s stiffness, the performance of vibration isolation is improved.
机译:为了有效隔离高频范围内的结构振动,并将峰值响应值限制在固有频率附近,结合电磁执行器和空气弹簧各自的优点,提出了使用电磁空气弹簧隔振器的经验方法。在本文中,计算了系统的刚度表达式和固有频率。建立了电磁空气弹簧隔振系统的动力学模型,并建立了力传递表达式。此外,分析了刚度变化与电磁空气弹簧隔振系统性能之间的关系。实例的计算和仿真分析表明,在满足磁悬浮隔离器的位移刚度增加和空气弹簧的刚度减小的同时满足载荷能力的条件下,隔振性能得到了改善。

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