The increasing emphasis on the resilience and sustainability of the built environment in modern building construction has led to the development of low-damage solutions such as rocking systems. In this context, the Life Cycle Thinking approach is essential to ensure both structural performance and the long-term environmental and economic sustainability of design decisions. Self-centring rocking systems minimize residual deformations and structural damage, enabling rapid post-earthquake recovery while reducing repair costs and resource consumption. This study investigates the application of re-centring rocking systems in lightweight steel structures. The focus is on the analysis of in-plane frames with controlled rocking mechanisms that include post-tensioned members and energy dissipators such as friction or viscous devices. A sensitivity analysis is performed to evaluate the structural response when different energy dissipation devices are integrated into the frame.

(2026). Preliminary Assessment of Self-Centring Steel Frame Systems with Energy Dissipation Devices . In PROCEDIA STRUCTURAL INTEGRITY. Retrieved from https://hdl.handle.net/10446/320146

Preliminary Assessment of Self-Centring Steel Frame Systems with Energy Dissipation Devices

Gualdi, Michelle;Belleri, Andrea;Marini, Alessandra;Labò, Simone
2026-01-01

Abstract

The increasing emphasis on the resilience and sustainability of the built environment in modern building construction has led to the development of low-damage solutions such as rocking systems. In this context, the Life Cycle Thinking approach is essential to ensure both structural performance and the long-term environmental and economic sustainability of design decisions. Self-centring rocking systems minimize residual deformations and structural damage, enabling rapid post-earthquake recovery while reducing repair costs and resource consumption. This study investigates the application of re-centring rocking systems in lightweight steel structures. The focus is on the analysis of in-plane frames with controlled rocking mechanisms that include post-tensioned members and energy dissipators such as friction or viscous devices. A sensitivity analysis is performed to evaluate the structural response when different energy dissipation devices are integrated into the frame.
2026
Gualdi, Michelle; Belleri, Andrea; Marini, Alessandra; Labo', Simone
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/320146
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