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STUDY ON ISOLATION DEVICE FOR DECREASE OF DISPLACEMENT BY USING CONTROL OF FRICTION

机译:摩擦控制减少位移的隔离装置研究

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This paper deals with reduction of horizontal relative displacement by using a frictional force for a seismic isolator. First, a compression spring is attached to the base. Next, a slope plate is superimposed on it. The frictional force acts on the slope plate. The restoring-force is given to the seismic isolator by the compression spring attached to the base. In the equation of motion of the analytical model, the frictional force changes in proportion to the displacement. The restoring-force is also proportional to the displacement. The restoring-force always works in the direction of the center. Therefore, the frictional force and the restoring-force are both proportional to the displacement. Simulation analysis was performed under various conditions using this analysis model. As a result of conducting the analysis and an experiment with this model, it was shown that response acceleration and relative displacement can be reduced successfully. In order to reduce response acceleration and relative displacement more, analysis was carried out with the actual earthquake waves under the conditions to change the coefficient of friction by relative displacement. As a result, the coefficient of friction that reduces relative displacement most effectively without impairing the performance of the seismic isolator was established. However, the coefficient of friction that reduces the response acceleration and relative displacement effectively depends on by seismic waves. Therefore, in this report, the coefficient of friction that reduces response acceleration and relative displacement most effectively is determined by using white noise. It is analyzed with actual seismic waves by using the decided parameters. The performance of the seismic isolator is examined.
机译:本文通过使用用于地震隔离器的摩擦力来减少水平相对位移。首先,压缩弹簧附接到基座。接下来,斜坡板叠加在它上。摩擦力在斜坡板上起作用。通过附接到基座的压缩弹簧对恢复力给出地震隔离器。在分析模型的运动方程中,摩擦力与位移成比例变化。恢复力也与位移成比例。恢复力始终朝着中心的方向工作。因此,摩擦力和恢复力既与位移成比例。使用该分析模型在各种条件下进行仿真分析。由于进行了分析和具有该模型的实验,因此证明可以成功减少响应加速度和相对位移。为了减少响应加速和相对位移更多,在条件下使用实际地震波进行分析以通过相对位移来改变摩擦系数。结果,建立了减少相对位移而不损害地震隔离器的性能的相对位移的摩擦系数。然而,减少响应加速度和相对位移的摩擦系数有效地取决于地震波。因此,在本报告中,通过使用白噪声来确定减少响应加速度和相对位移的摩擦系数。通过使用决定参数,用实际地震波分析它。检查地震隔离器的性能。

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