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A design formulation for dissipative metal shear panels

Chapter
Publication Date:
2018
abstract:
This paper proposes an analytical formulation for designing dissipative metal shear panels for the seismic protection of buildings. In particular, two types of dissipative shear panels are analyzed. The first is based on the adoption of a material characterized by a low yield strength with the application of transversal stiffeners. The latter is a steel shear plate that is properly weakened by perforations. Both the studied typologies are conceived in order to obtain a low shear elastic strength, so that their dissipative function is activated when the other members of the structure are still in the elastic field, even for high intensity earthquakes. Moreover, they are usually designed in order to postpone the trigger of potential buckling phenomena to the field of high shear inelastic demands. The proposed design formulations put in relation demanded shear stresses and strains. In particular, a unique expression, characterized by different coefficients for the two panel typologies, is given. The validity of the proposed expression is corroborated on the basis of the results of several numerical and experimental analysis.
Iris type:
2.1 Contributo in volume (Capitolo o Saggio)
Keywords:
Analytical models; Design formulations; Dissipative devices; Shear Buckling; Shear panels; Materials Science (all); Mechanics of Materials; Mechanical Engineering
List of contributors:
De Matteis, Gianfranco; Brando, Giuseppe
Authors of the University:
BRANDO GIUSEPPE
Handle:
https://ricerca.unich.it/handle/11564/701369
Book title:
Key Engineering Materials
Published in:
KEY ENGINEERING MATERIALS
Journal
KEY ENGINEERING MATERIALS
Series
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