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Earthquakes and Tie-Rods: Assessment, Design, and Ductility Issues

机译:地震和领带棒:评估,设计和延展性问题

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The effectiveness of tie-rods is widely stressed in past earthquakes and they are still used today as reinforcement intervention, given that their use is a low-invasive and low-expensive technique. However, the earthquake design of these devices is not so simple since the main feature of a tie-rod derives from its ductility and that should be preserved as was done in the past. In this article, some considerations about static and seismic design of tie-rods are made, highlighting the main failure modes of the system. To assess seismic vulnerability of I-mode mechanism, displacement-based methods are usually used, requiring high elongation capability of the tie-rods. For this reason, an experimental campaign was carried out to define clearly the maximum elongation of tie-rods and to investigate the influence of bar length on ductility. The results have shown a good displacement capacity that decreases with the increase of steel strength. A simplified formulation, obtained from nonlinear kinematic analysis, is derived to evaluate quickly the seismic vulnerability of I-mode mechanism with tie-rods and to design this common retrofitting intervention in existing buildings.
机译:在过去的地震中,拉杆的有效性在过去的地震中被广泛压力,因为它们的使用是一种低侵入性和低昂贵的技术,它们仍然被用作加固介入。然而,这些装置的地震设计并不是如此简单,因为拉杆的主要特征来自其延展性,并且应该如过去所做的那样保留。在本文中,制造了关于拉杆静态和地震设计的一些考虑,突出了系统的主要故障模式。为了评估I形模式机构的地震脆弱性,通常使用基于位移的方法,需要拉杆的高伸长率能力。因此,进行了实验活动以清楚地定义拉杆的最大伸长率,并研究条形长度对延展性的影响。结果表明,随着钢强度的增加而降低的良好位移能力。从非线性运动学分析中获得的简化配方,得到了快速评估I模式机构与扎带的地震脆性,并在现有建筑物中设计这种共同的改造干预。

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