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Lateral Impact Resilient double concave Friction Pendulum (LIR-DCFP) bearing: Formulation, parametric study of the slider and three-dimensional numerical example

机译:横向撞击弹性双凹摩擦摆(LiR-DCFP)轴承:配方,滑块的参数研究和三维数值示例

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摘要

Seismic isolation has been one of the best alternatives in protecting structures, being frictional isolators one of the most used devices in constructing isolation systems. Under extreme seismic inputs, the impact between the inner slider and the restraining rims of the plates could occur. This internal impact has been indicated as one of the main contributors to the failure of frictional pendulum bearings. This paper presents a new type of frictional device, the Lateral Impact Resilient double concave Friction Pendulum (LIR-DCFP) bearing. This device has an improved inner slider that enhances the dynamic behavior if the lateral capacity of the isolator is overcome. The three-dimensional formulation of the LIR-DCFP bearing is presented and proposed to perform dynamics analyzes. A parametric analysis was performed to evaluate the influence of the geometry of the inner slider. Finally, a comparative three-dimensional analysis between the dynamic response of a structure isolated using LIR-DCFP bearings and double concave Friction Pendulum (DCFP) bearings is presented. Important reductions in the base shear, inter-story drifts, and absolute accelerations are achieved using LIR-DCFP bearings.
机译:地震隔离是保护结构的最佳替代方案之一,是摩擦隔离器,在构建隔离系统中最使用的装置之一。在极端地震输入下,可能发生内滑块和抑制板的抑制边缘之间的冲击。这种内部影响已被称为摩擦摆动轴承失效的主要贡献者之一。本文介绍了一种新型的摩擦装置,横向撞击弹性双凹摩擦摆(LiR-DCFP)轴承。如果克服隔离器的横向容量,该装置具有改进的内滑块,可增强动态行为。提出并提出了LiR-DCFP轴承的三维制剂以进行动态分析。进行参数分析以评估内滑块的几何形状的影响。最后,提出了使用LiR-DCFP轴承和双凹摩擦摆(DCFP)轴承隔离的结构的动态响应之间的比较三维分析。使用Lir-DCFP轴承实现基础剪切,故事际漂移和绝对加速度的重要减少。

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