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JOINTS UNDER VARIOUS LOADING SITUATIONS
EN 1993 adopts the component method as a reference for the design of joints in steel structures. This chapter reviews recent developments on the application of the component method to various loading situations, including fire, earthquake, impact and explosion. Guidelines on how to apply the component method for the evaluation of the initial stiffness and the design moment resistance of steel and composite joints are given in EN 1993‐1‐8. The component method could be a solution to overcome this “fullstrength” obligation. Indeed, the component method has the potential to predict the response of joints under cyclic loading but for that, it is required to know the behaviour of each component under such loading conditions. The application of the component method to joints subjected to axial forces or combinations of axial forces and bending moments.
JOINTS UNDER VARIOUS LOADING SITUATIONS
EN 1993 adopts the component method as a reference for the design of joints in steel structures. This chapter reviews recent developments on the application of the component method to various loading situations, including fire, earthquake, impact and explosion. Guidelines on how to apply the component method for the evaluation of the initial stiffness and the design moment resistance of steel and composite joints are given in EN 1993‐1‐8. The component method could be a solution to overcome this “fullstrength” obligation. Indeed, the component method has the potential to predict the response of joints under cyclic loading but for that, it is required to know the behaviour of each component under such loading conditions. The application of the component method to joints subjected to axial forces or combinations of axial forces and bending moments.
JOINTS UNDER VARIOUS LOADING SITUATIONS
Jaspart, Jean‐Pierre (Autor:in) / Weynand, Klaus (Autor:in)
Design of Joints in Steel Structures ; 305-310
03.05.2017
6 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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