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Bidirectional shaking table tests of a low-cost friction sliding system with flat-inclined surfaces

机译:双向振动台测试具有扁平倾斜表面的低成本摩擦滑动系统

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A novel low-cost friction sliding system for bidirectional excitation is developed to improve the seismic performance of reinforced concrete (RC) bridge piers. The sliding system is a spherical prototype developed by combining a central flat surface with an inclined spherical segment, characterized by stable oscillation and a large reduction in response accelerations on the flat surface. The inclined part provides a restoring force that limits the residual displacements of the system. Conventional steel and concrete are employed to construct a flat-inclined spherical surface atop an RC pier. The seismic forces are dissipated through the frictions generated during the sliding movements; hence, the seismic resilience of bridges can be ensured with a low-cost design solution. The proposed system is fabricated utilizing a mold created by a three-dimensional printer, which facilitates the use of conventional concrete to construct spherical shapes. The concrete surface is lubricated with a resin material to prevent abrasion from multiple input ground motions. To demonstrate the effectiveness of the system, bidirectional shaking table tests are conducted in the longitudinal and transverse directions of a scaled bridge model. The effect of the inclination angle and the flat surface size is investigated. The results demonstrate a large decrease in response acceleration when the system exhibits circular sliding displacement. Furthermore, the inclination angle that generates the smallest residual displacement is identified experimentally.
机译:开发了一种用于双向激励的新型低成本摩擦滑动系统,以提高钢筋混凝土(RC)桥墩的地震性能。滑动系统是通过将中心平坦表面与倾斜球形段组合而开发的球形原型,其特征在于稳定的振荡和平坦表面上的响应加速度的大小减小。倾斜部分提供恢复力,其限制了系统的残余位移。使用常规钢和混凝土在RC码头上构造平坦倾斜的球面。通过滑动运动期间产生的摩擦散发出地震力;因此,可以通过低成本的设计解决方案来确保桥梁的地震弹性。所提出的系统利用由三维打印机产生的模具制造,这有利于使用传统的混凝土构造球形形状。用树脂材料润滑混凝土表面,以防止磨损多个输入接地运动。为了证明系统的有效性,双向摇动台测试在缩放桥梁模型的纵向和横向方向上进行。研究了倾斜角度和平坦表面尺寸的效果。结果表明,当系统表现出圆形滑动位移时,响应加速度的大幅减少。此外,实验识别产生最小残留位移的倾斜角度。

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