首页> 外文期刊>International journal of structural stability and dynamics >Feasibility Analysis of SMA-Based Damping Devices for Use in Seismic Isolation of Low-Rise Frame Buildings
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Feasibility Analysis of SMA-Based Damping Devices for Use in Seismic Isolation of Low-Rise Frame Buildings

机译:低层框架建筑地震隔离应用的SMA防潮装置的可行性分析

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摘要

For seismic isolated buildings, the isolators should be able to control peak deformation and have good restoring ability to return the building to its original position. Shape memory alloys (SMAs) are known for their properties of energy dissipation and deformation recovery, which make them appealing for use in isolation systems. To this end, the feasibility of SMA-based damping devices for use in an isolation system of low-rise frame buildings is studied in this paper. Numerical analyses were conducted and compared for buildings installed with SMA-based bearings (SMABs) and lead-rubber bearings (LRBs). A two-mass isolated frame building installed with these bearings was subjected to earthquakes corresponding to multilevel seismic hazards. The results show that the SMABs offer comparable seismic hazard mitigation efficacy to that of the LRBs while successfully restoring the building to the rest position after the earthquake. Furthermore, adding the energy dissipation capacity and properly using the strain hardening behavior of the SMAs are favorable for controlling isolation deformation while protecting the superstructure. The strain hardening behavior of the SMABs is beneficial for controlling deformation at the isolator level, which can still maintain isolation efficacy.
机译:对于地震隔离建筑,隔离器应该能够控制峰值变形并具有良好的恢复能力,将建筑物恢复到其原始位置。形状记忆合金(SMA)已知其能量耗散和变形恢复性能,这使得它们在隔离系统中使用的吸引力。为此,本文研究了基于SMA的阻尼装置的可行性,用于低上升框架建筑物的隔离系统。对基于SMA的轴承(SMAB)和铅橡胶轴承(LRB)安装的建筑物进行了数值分析并进行了比较。与这些轴承一起安装的双质量隔离框架建筑受到对应于多级地震危害的地震。结果表明,SMABS为LRB的抗震性危害性效果提供了可比的地震危害,同时成功将建筑物恢复到地震后的静止位置。此外,使用SMA的应变硬化行为添加能量耗散容量并适当地有利于控制隔离变形,同时保护上部结构。 Smabs的应变硬化行为有利于控制隔离器水平的变形,这仍然可以保持隔离效果。

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