This paper deals with the new Research Centre designed for the University of Camerino built following the seismic events in Central Italy in 2016. The first part of the paper illustrates the design choices made for the isolated structure to achieve a high level of resilience and robustness of the building, i.e. to limit damage to structural and non-structural components and equipment under moderate and design seismic actions and to avoid disproportionate consequences in the event of extreme actions, larger than the design ones. The second part of the paper is focused on static and dynamic tests performed during the construction phase of the building. At the end of the structural system construction (including sub-structures, the isolation system composed by elastomeric bearings and flat sliders and the steel super-structure), the building has been tested by means of static and dynamic (snap-back) in-field tests up to a displacement of the isolation system of 280 mm and 220 mm, respectively. Displacements have been imposed by means of a properly designed testing mechanism and different measure instruments have been placed in the building to register the structural response.

The new base-isolated Research Center of the Camerino University: design and testing

Dall'Asta, A.
Primo
;
Leoni, G.;Micozzi, F.;Gioiella, L.;Ceccolini, N.;
2022-01-01

Abstract

This paper deals with the new Research Centre designed for the University of Camerino built following the seismic events in Central Italy in 2016. The first part of the paper illustrates the design choices made for the isolated structure to achieve a high level of resilience and robustness of the building, i.e. to limit damage to structural and non-structural components and equipment under moderate and design seismic actions and to avoid disproportionate consequences in the event of extreme actions, larger than the design ones. The second part of the paper is focused on static and dynamic tests performed during the construction phase of the building. At the end of the structural system construction (including sub-structures, the isolation system composed by elastomeric bearings and flat sliders and the steel super-structure), the building has been tested by means of static and dynamic (snap-back) in-field tests up to a displacement of the isolation system of 280 mm and 220 mm, respectively. Displacements have been imposed by means of a properly designed testing mechanism and different measure instruments have been placed in the building to register the structural response.
2022
Hybrid base-isolation system
elastomeric bearings
seismic reliability
seismic robustness
in-field tests
in-field snap-back tests
273
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11581/496054
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