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MULTIPLE YIELD AND BOUNDING SURFACES MODEL FOR ANALYSIS OF MULTIPLE FRICTION PENDULUM SYSTEM

机译:摩擦摆式系统分析的多重屈服面模型

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In order to systematically investigate the mechanical characteristic of a multiple friction pendulum system with more than two concave sliding interfaces and one articulated slider located between these concave sliding interfaces, on the basis of the plasticity theory, a plasticity model called the multiple yield and bounding surfaces model is proposed in addition to analytical formulations derived from the proposed concept of subsystems in this study. The proposed model has two separate groups of multiple yield and bounding surfaces. The first group is adopted to describe the mechanical behavior of the subsystem including the concave sliding interfaces above the articulated slider and the second group is used for modeling the sliding characteristic of the subsystem representing the concave sliding interfaces below the articulated slider. The connection of these two subsystems in series forms the mechanical characteristic of the entire MFPS isolation system. By virtue of the proposed model, the phenomena of the sliding motions of the MFPS isolator with multiple concave sliding interfaces under cyclical loadings can be clearly understood. Analytical results infer that the natural frequency and damping effect of the MFPS isolator with multiple concave sliding interfaces change continually during earthquakes and are controllable through appropriate designs.
机译:为了系统地研究具有两个以上凹面滑动界面和一个位于这些凹面滑动界面之间的铰接滑块的多摩擦摆系统的力学特性,根据可塑性理论,建立了一个称为多重屈服和边界面的可塑性模型除了从本研究中提出的子系统概念得出的分析公式外,还提出了模型。所提出的模型有两个单独的组,分别具有多个屈服面和边界面。采用第一组来描述子系统的机械性能,包括铰接滑块上方的凹形滑动界面,第二组用于建模子系统的滑动特性,该子系统代表了铰接滑块下方的凹形滑动界面。这两个子系统的串联连接形成了整个MFPS隔离系统的机械特性。借助于所提出的模型,可以清楚地理解在周期性载荷下具有多个凹形滑动界面的MFPS隔离器的滑动现象。分析结果表明,具有多个凹形滑动界面的MFPS隔离器的固有频率和阻尼效应在地震过程中会不断变化,并且可以通过适当的设计进行控制。

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