FINE-TUNING OF MODELLING STRATEGY TO SIMULATE THERMO-MECHANICAL BEHAVIOUR OF DOUBLE FRICTION PENDULUM SEISMIC ISOLATORS UST ESTIMATOR

V. Bianco, G. Monti, N. Belfiore
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引用次数: 1

Abstract

The use of friction pendulum devices has recently attracted the attention of both academic and professional engineers for the protection of structures in seismic areas. Although the effectiveness of these has been shown by the experimental testing carried out worldwide, many aspects still need to be investigated for further improvement and optimisation. A thermo-mechanical model of a double friction pendulum device (based on the most recent modelling techniques adopted in multibody dynamics) is presented in this paper. The proposed model is based on the observation that sliding may not take place as ideally as is indicated in the literature. On the contrary, the fulfilment of geometrical compatibility between the constitutive bodies (during an earthquake) suggests a very peculiar dynamic behaviour composed of a continuous alternation of sticking and slipping phases. The thermo-mechanical model of a double friction pendulum device (based on the most recent modelling techniques adopted in multibody dynamics) is presented. The process of fine-tuning of the selected modelling strategy (available to date) is also described.
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双摩擦摆隔震器热-力学性能模拟策略的微调
摩擦摆装置的使用最近引起了学术界和专业工程师对地震区结构保护的关注。虽然这些方法的有效性已经在世界范围内进行了实验测试,但仍有许多方面需要进一步改进和优化。本文基于最新的多体动力学建模技术,建立了双摩擦摆装置的热-力学模型。所提出的模型是基于这样的观察,即滑动可能不会像文献中所指出的那样理想地发生。相反,本构体之间的几何相容性的实现(在地震期间)表明一种非常特殊的动力行为,由粘滞和滑动阶段的连续交替组成。基于最新的多体动力学建模技术,建立了双摩擦摆装置的热-力学模型。还描述了所选建模策略(迄今为止可用)的微调过程。
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