首页> 外文期刊>Journal of intelligent material systems and structures >A liquid spring-magnetorheological damper system under combined axial and shear loading for three- dimensional seismic isolation of structures
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A liquid spring-magnetorheological damper system under combined axial and shear loading for three- dimensional seismic isolation of structures

机译:轴向和剪力共同作用下的液体弹簧-磁流变阻尼器系统,用于结构的三维地震隔离

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摘要

This study focuses on experimental investigation of a fail-safe, bi-linear, liquid spring magnetorheological damper system for a three-dimensional earthquake isolation system. The device combines the controllable magnetorheological damping, fail-safe viscous damping, and liquid spring features in a single unit serving as the vertical component of a building isolation system. The bi-linear liquid spring feature provides two different stiffnesses in compression and rebound modes. The higher stiffness in the rebound mode prevents a possible overturning of the structure during rocking mode. For practical application, the device is to be stacked together along with the traditional elastomeric bearings that are currently used to absorb the horizontal ground excitations. An experimental setup is designed to reflect the real-life loading conditions. The 1/4th-scale device is exposed to combined dynamic axial loading (reflecting vertical seismic excitation) and constant shear force that are up to 245 and 28 kN, respectively. The results demonstrate that the device performs successfully under the combined axial and shear loadings and compare well with the theoretical calculations.
机译:这项研究的重点是针对三维地震隔离系统的故障安全,双线性,液体弹簧磁流变阻尼器系统的实验研究。该设备将可控的磁流变阻尼,故障安全粘性阻尼和液体弹簧功能组合在一个单元中,该单元用作建筑物隔离系统的垂直组件。双线性液体弹簧特征在压缩和回弹模式下提供两种不同的刚度。回弹模式下较高的刚度可防止在摇摆模式下结构发生倾覆。对于实际应用,该设备将与传统的弹性轴承一起堆叠在一起,而传统的弹性轴承目前用于吸收水平地面激励。实验设置旨在反映现实生活中的加载条件。 1/4级设备承受的动态轴向载荷(反映垂直地震激励)和恒定剪切力分别高达245和28 kN。结果表明,该装置在轴向载荷和剪切载荷共同作用下性能良好,并且与理论计算结果相比较。

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