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首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Design of a fail-safe magnetorheological-based system for three-dimensional earthquake isolation of structures
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Design of a fail-safe magnetorheological-based system for three-dimensional earthquake isolation of structures

机译:基于故障安全磁流变的三维地震隔离结构设计

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摘要

This study presents a comprehensive design methodology for a magnetorheological-based damper device for a three-dimensional building isolation. The device acts as a suspension system itself by combining the liquid stiffness and controllable magnetorheological damping features in one unit. The bi-linear liquid stiffness feature enhances resistance to global rocking/overturning of the structural system by increasing the stiffness in the rebound mode compared to the compression mode. In the field, the system is combined with the conventional elastomeric bearings widely employed to mitigate the lateral seismic motions. During a seismic event, the system is subjected to dynamic vertical shaking and large lateral forces. The theoretical and simulation modeling to overcome this major challenge and achieve other system requirements are presented. In addition, a comprehensive optimization program is developed to achieve all design requirements. The modeling procedure is verified with experimental results. Also, the effectiveness of Displacement/Velocity-based control for a single degree-of-freedom system subjected to sinusoidal loading is evaluated.
机译:本研究提出了一种用于三维建筑隔离的磁流变的阻尼装置的综合设计方法。通过在一个单元中组合液体刚度和可控的磁流变阻尼特征,该装置用作悬架系统本身。双线性液体刚度特征通过增加反弹模式的刚度与压缩模式提高了结构系统的全局摇摆/倾覆的抗性。在该领域中,该系统与常规的弹性体轴承组合以减轻横向地震运动。在地震事件期间,该系统受到动态垂直摇动和大的横向力。克服这一主要挑战的理论和仿真建模并达到了其他系统要求。此外,开发了一个全面的优化程序以实现所有设计要求。使用实验结果验证建模程序。而且,评估了对进行正弦载荷的单一自由度系统的位移/速度的控制的有效性。

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