Development and application of large–scale continuous pseudo–dynamic testing techniques

G. Magonette
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引用次数: 65

Abstract

This paper reviews the latest developments made at the European Laboratory for Structural Assessment (ELSA) of the Joint Research Centre to extend the spectrum of applications of the pseudo–dynamic (PsD) methodology. After decades of development, a variety of new testing procedures and numerical schemes have been proposed to improve the efficiency and accuracy of the PsD method. Nevertheless, due to the expanded time–scale of the tests with respect to the real seismic events, the conventional PsD method is not appropriate for structures incorporating materials with significant strain–rate sensitivity. Our main objective is to illustrate the advantages of the continuous PsD testing system developed at ELSA and to show its potentiality to test structures fitted with anti–seismic protection devices constructed with strain–rate sensitive materials. Two specific typologies of seismic protection were tested. The first experimental activity aimed to validate the continuous PsD procedure and was conducted on a scaled five–storey frame structure isolated by means of high damping rubber bearings, which had been tested on the shaking table of ISMES (Italy). A second experimental campaign was conducted on a large–scale reinforced–concrete civil building protected by rubber–based energy dissipators.
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大规模连续伪动力测试技术的发展与应用
本文回顾了联合研究中心的欧洲结构评估实验室(ELSA)的最新发展,以扩展伪动力(PsD)方法的应用范围。经过几十年的发展,人们提出了各种新的测试程序和数值格式,以提高PsD方法的效率和精度。然而,由于试验的时间尺度与实际地震事件有关,传统的PsD方法不适用于包含具有显著应变率敏感性的材料的结构。我们的主要目的是说明ELSA开发的连续PsD测试系统的优点,并展示其测试由应变率敏感材料制成的抗震保护装置的结构的潜力。对两种特殊类型的抗震防护进行了测试。第一个实验活动旨在验证连续PsD程序,并在一个由高阻尼橡胶支座隔离的五层框架结构上进行,该框架结构已在ISMES(意大利)的振动台上进行了测试。第二次试验是在一个大型钢筋混凝土民用建筑上进行的橡胶消能器保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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