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Shape memory alloy (SMA)-based Superelasticity-assisted Slider (SSS): an engineering solution for practical aseismic isolation with advanced materials

机译:形状记忆合金(SMA)基于超弹性辅助滑块(SSS):具有先进材料的实际抗震隔离的工程解决方案

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Shape memory alloy (SMA)-based Superelasticity-assisted Slider (SSS) is proposed as an engineering solution to practically exploit the well-accepted advantages of both sliding isolation and SMA-based recentering. Self-centering capability in SSS is provided by austenitic SMA cables (or wire ropes), recently attracting a lot of interest and attention in earthquake engineering and seismic isolation. The cables are arranged in various novel and conventional configurations to make SSS versatile for aseismic design and retrofit of structures. All the configurations are detailed with thorough technical drawings. It is shown that SSS is applicable without the need for Isolation Units (IUs). IUs, at the same time, are devised for industrialized applications. The proof-of-concept study is carried out through the examination of mechanical behavior in all the alternative configurations. Force-displacement relations are determined. Isolation capabilities are predicted based on the decreases in seismic demands, estimated by the increases in effective periods and equivalent damping ratios. Restoring forces normalized relative to resisting forces are assessed as the criteria for self-centering capabilities. Lengths of SMA cables required in each configuration are calculated to assess the cost and practicality. Practical implementation is realized by setting up a small-scale IU. The effectiveness of SSS under seismic actions is evaluated using an innovative computer model and compared to those of well-known Isolation Systems (ISs) protecting a reference building. Comparisons show that SSS seems to be an effective IS and suitable for earthquake protection of both structural and non-structural elements. Further research aimed at additional validation of the system are outlined.
机译:形状记忆合金(SMA)基于基于Super弹性辅助滑块(SSS)作为工程解决方案,以实际利用滑动隔离和基于SMA的定制的良好优势。 SSS中的自定心能力由奥氏体SMA电缆(或电线绳)提供,最近在地震工程和地震隔离中吸引了很多兴趣和关注。电缆布置成各种新颖和传统配置,以使SSS通用用于抗震设计和结构改造。所有配置都详细介绍了彻底的技术图纸。结果表明,SSS适用,无需隔离单元(IUS)。同时,IUS设计为工业化应用。通过检查所有替代配置的机械行为进行概念证明研究。确定力 - 流离失所关系。基于抗震要求的降低预测隔离能力,通过有效时期和等效阻尼比的增加估计。评估相对于抵抗力的恢复力被评估为自定心能力的标准。计算每种配置中所需的SMA电缆长度以评估成本和实用性。通过建立一个小型IU来实现实际实现。使用创新的计算机模型评估SSS在地震行动下的有效性,并与保护参考建筑的众所周知的隔离系统(ISS)进行比较。比较表明,SSS似乎是有效的,适用于结构和非结构元素的地震保护。概述了旨在验证系统额外验证的进一步研究。

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