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STUDY ON TWO-DIMENSIONS BASE-ISOLATING DEVICE FOR REDUCTION OF DISPLACEMENT BY USING FRICTION FORCE

机译:基于摩擦力的二维位移隔离装置的研究

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This paper deals with research of new isolation device with reduction of horizontal relative displacement by using friction force and reduction of vertical response acceleration and relative displacement by using spring and friction force.The isolation device is using a friction surface. The friction surface is subjected to acts on the slope plate. The restoring-force of horizontal direction is given to the isolation device from elastic force of a compression spring attached to the base. 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. The restoring-force of the vertical direction is given to the isolation device from compression springs and draft springs. Simulation analysis was performed under various conditions using this analysis model. Condition reducing both response acceleration and displacement effectively is calculated on various conditions using the analysis model.Furthermore, an experiment is conducted using the experimental device. The experiment is conducted by an imagination wave. Analysis is also conducted on the same conditions. The results of the experiment are compared with the results of the analysis. The performance of the isolation device is examined. The validity of an analysis model is examined. 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. The validity of an analysis model is shown.Next, it analyzes by actual seismic waves. The performance of isolation equipment in actual seismic waves is examined and shown.
机译:本文针对新型隔离装置的研究,该隔离装置利用摩擦力减小水平相对位移,并利用弹簧和摩擦力减小垂直响应加速度和相对位移。 隔离装置正在使用摩擦表面。摩擦表面受到斜板的作用。水平方向的恢复力从安装在基座上的压缩弹簧的弹力施加到隔离装置上。恢复力始终在中心方向上起作用。因此,摩擦力和恢复力都与位移成正比。垂直方向的回复力从压缩弹簧和拉伸弹簧施加到隔离装置。使用该分析模型在各种条件下进行了仿真分析。使用分析模型,可以在各种条件下计算出有效降低响应加速度和位移的条件。 此外,使用实验装置进行实验。实验是通过想象力波进行的。分析也是在相同条件下进行的。将实验结果与分析结果进行比较。检查隔离设备的性能。检查分析模型的有效性。通过对该模型进行分析和实验的结果表明,可以成功降低响应加速度和相对位移。显示了分析模型的有效性。 接下来,通过实际地震波进行分析。检查并显示了隔离设备在实际地震波中的性能。

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