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SEISMIC ANALYSIS AND DESIGN OF RC FRAME WITH NEW METALLIC DAMPERS

机译:新型金属阻尼器RC框架的抗震分析与设计

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摘要

Earthquake can make structures damaged and crumble. The traditional approach to seismic design has been based upon providing a combination of strength and ductility to resist the imposed loads. Thus, the level of the structure security cannot be achieved, because the disadvantage of the designing method is lack of adjusting capability subjected to an uncertain earthquake. The presence of some damping (energy dissipation) in buildings has been recognized and studied by professional researchers. Passive energy-dissipated system, as a category of vibration control methods, lead the inputting energy from earthquake to special element, thereby reducing energy-dissipating demand on primary structural members and minimizing possible structural damage. In this paper, a new idea of designing metallic damper is presented and realized through the improved dampers that are of a certain bearing forces in plane of plate and suitable energy-dissipating capability by making metallic dampers in different shapes. New types of metallic dampers are called as "dual functions" metallic damper (DFMD), because it not only provides certain stiffness in normal use for a building, but also are of good ability of the seismic energy-dissipation. The structural configuration and mechanical characteristics of the models and prototypes of the DFMDs are analyzed and experimented so as to verify the seismic performance of the dampers. Finally, the DFMDs applied to a new building in China are introduced and numerical results demonstrate the effectiveness of the DFMD.
机译:地震会使建筑物受损并崩溃。抗震设计的传统方法基于提供强度和延展性的组合来抵抗施加的载荷。因此,由于设计方法的缺点是缺乏对不确定地震的调节能力,因此不能达到结构安全性的水平。专业研究人员已经认识到并研究了建筑物中某些阻尼(能量耗散)的存在。被动消能系统作为一种振动控制方法,将来自地震的输入能量引导到特殊元件上,从而减少了对主要结构构件的消能需求,并最大程度地减少了可能的结构破坏。通过改进阻尼器,提出了一种设计金属阻尼器的新思路,该阻尼器在板平面上具有一定的承受力,并且通过制作不同形状的金属阻尼器具有合适的耗能能力。新型金属阻尼器被称为“双重功能”金属阻尼器(DFMD),因为它不仅在建筑物的正常使用中提供一定的刚度,而且具有良好的地震消能能力。通过对DFMD模型和原型的结构配置和力学特性进行分析和试验,以验证阻尼器的抗震性能。最后,介绍了应用于中国新建筑的DFMD,数值结果证明了DFMD的有效性。

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