Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
An optimum selection of alloy for aluminium structures exposed to fire
Analytical methods for calculating fire resistance of aluminium structures, specified in (HRN) EN 1999-1-2, are presented in the paper. Since aluminium as a material loses its mechanical properties at lower temperatures compared to steel, the correct selection of aluminium alloy in terms of minimal reduction of mechanical properties is essential for satisfying fire-related requirements. For clarifying the influence of selecting aluminium alloy for obtaining an optimum fire resistance, a parametric analysis is presented to demonstrate the influence of aluminium alloy on the design fire resistance of a load-bearing aluminium column.
An optimum selection of alloy for aluminium structures exposed to fire
Analytical methods for calculating fire resistance of aluminium structures, specified in (HRN) EN 1999-1-2, are presented in the paper. Since aluminium as a material loses its mechanical properties at lower temperatures compared to steel, the correct selection of aluminium alloy in terms of minimal reduction of mechanical properties is essential for satisfying fire-related requirements. For clarifying the influence of selecting aluminium alloy for obtaining an optimum fire resistance, a parametric analysis is presented to demonstrate the influence of aluminium alloy on the design fire resistance of a load-bearing aluminium column.
An optimum selection of alloy for aluminium structures exposed to fire
Ivica Boko (Autor:in) / Davor Skejić (Autor:in) / Neno Torić (Autor:in) / Antonela Čolić (Autor:in)
2020
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
Metadata by DOAJ is licensed under CC BY-SA 1.0
Local buckling of aluminium structures exposed to fire
Online Contents | 2009
|Local buckling of aluminium structures exposed to fire
Online Contents | 2009
|