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Pseudodynamic tests on a full-scale 3-storey precast concrete building: global response

机译:大型三层预制混凝土建筑物的拟动力试验:整体响应

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摘要

In the framework of the SAFECAST Project, a full-scale three-storey precast building was subjected to a series of pseudodynamic (PsD) tests in the European Laboratory for Structural Assessment (ELSA). The mock-up was constructed in such a way that four different structural configurations could be investigated experimentally. Therefore, the behaviour of various parameters like the types of mechanical connections (traditional as well as innovative) and the presence or absence of shear walls along with the framed structure were investigated. The first PsD tests were conducted on a dual frame-wall precast system, where two precast shear wall units were connected to the mock up. The first test structure sustained the maximum earthquake for which it had been designed with small horizontal deformations. In the second layout, the shear walls were disconnected from the structure, to test the building in its most typical configuration, namely with hinged beam–column connections by means of dowel bars (shear connectors). This configuration was quite flexible and suffered large deformations under the design level earthquake. An innovative connection system, embedded in the precast elements, was then activated to create emulative beam–column connections in the last two structural configurations. In particular, in the third layout the connectors were restrained only at the top floor, whereas in the fourth layout the connection system was activated in all beam–column joints. The PsD test results showed that, when activated at all the floors, the proposed connection system is quite effective as a means of implementing dry precast (quasi) emulative moment-resisting frames.
机译:在SAFECAST项目的框架中,一栋三层楼的全尺寸预制建筑在欧洲结构评估实验室(ELSA)中进行了一系列的拟动力(PsD)测试。该模型的构建方式使得可以通过实验研究四种不同的结构配置。因此,研究了各种参数的行为,例如机械连接的类型(传统的和创新的)以及是否存在剪力墙以及框架结构。最初的PsD测试是在双框架墙预制系统上进行的,其中将两个预制的剪力墙单元连接到模型上。第一个测试结构在设计时承受了最大的地震,水平变形很小。在第二种布局中,将剪力墙从结构上断开,以测试建筑物的最典型配置,即通过销钉(剪切连接器)进行铰接梁-柱连接。这种设计非常灵活,在设计水平的地震下遭受了很大的变形。然后,激活了嵌入预制构件中的创新连接系统,以在最后两种结构配置中创建模拟梁柱连接。特别是,在第三种布局中,连接器仅约束在顶层,而在第四种布局中,连接系统在所有梁柱节点中均已激活。 PsD测试结果表明,当在所有楼层上激活时,建议的连接系统作为实施干式预制(准)抗弯矩框架的有效手段。

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