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A vertical isolation device with variable stiffness for long-span spatial structures

机译:用于大跨度空间结构的可变刚度的垂直隔离装置

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摘要

A vertical isolation device with variable stiffness (VIVS) is developed using multiple hydraulic cylinders, which can form a three dimensional (3D) isolation device with a horizontal rubber bearing. The components and control mechanism of the VIVS are explained in detail. A prototype of the VIVS is fabricated to verify its performance by sinusoidal motion tests and shaking table tests. The experimental results show that the variable stiffness characteristics of the VIVS can be achieved, and the isolation period reaches 1.2 s. The shaking table test also verifies the effectiveness of the VIVS in controlling the acceleration. A theoretical model for the VIVS is proposed and validated, and a 60 m single-layer reticulated dome is simulated based on the model. The results indicate that the axial force and acceleration of the structures with VIVS are effectively mitigated with reduced height and displacement of the VIVS.
机译:使用多个液压缸开发了具有可变刚度(VIVS)的垂直隔离装置,该液压隔离装置可形成带有水平橡胶轴承的三维(3D)隔离装置。详细说明了VIVS的组件和控制机制。制作了VIVS的原型以通过正弦运动测试和振动台测试来验证其性能。实验结果表明,可以实现VIVS的可变刚度特性,隔离期达到1.2 s。振动台测试还验证了VIVS在控制加速度方面的有效性。提出并验证了VIVS的理论模型,并基于该模型模拟了一个60 m的单层网状圆顶。结果表明,通过减小VIVS的高度和位移,可以有效地减轻VIVS结构的轴向力和加速度。

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