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Shaking Table for the Analysis of Pillars with Top Mass

机译:振动桌子分析顶部质量的柱子

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摘要

In this paper, we present a shaking table designed by the authors, used in laboratory experiments to simulate earthquakes. This equipment makes possible studying the dynamic behavior of civil engineering structures subjected to seismic motion. Among these structures, bridges won a special attention, because they are easily harmed during earthquakes. In addition, bridges have importance in assuring a facile communication in the case of hazards. The most sensitive bridge element is the pillar, which supports important bending moments if horizontal forces act on his top. The shaking table developed by the authors is designed to analyze the dynamical behavior of pillars with a tip mass that represents the superstructure. The soil displacement is simulated by the main plate, actuated by an electric engine which ensures different excitation frequencies. The analyzed pillar is mounted on the main plate via a reinforcement element, in order to increase its stability. Tests were performed with different frequencies, in order to find out the actuation precision. During tests, the accelerations at the base and the top of the pillar were acquired with the LabView program of National Instruments, and the results shows that the shaking table can be controlled with high accuracy.
机译:在本文中,我们展示了由作者设计的握手,用于实验室实验来模拟地震。该设备可以研究进行地震运动的土木工程结构的动态行为。在这些结构中,桥梁赢得了特别关注,因为在地震期间很容易受到伤害。此外,桥梁在危险的情况下确保容易的沟通具有重要性。如果水平力在他的顶部作用,最敏感的桥接元件是支柱,它支持重要的弯曲时刻。作者开发的振动桌旨在分析柱的动态行为,尖端块代表上层建筑。通过电动发动机致动的主板模拟土壤位移,该电动发动机确保了不同的激发频率。分析的柱通过加强元件安装在主板上,以增加其稳定性。用不同的频率进行测试,以便找出致动精度。在测试期间,通过国家仪器的LabVIEW计划获得基地和支柱顶部的加速度,结果表明,振动台可以高精度地控制。

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