The paper presents a rheological model capable of reproducing the temperature‐, stress‐, and time‐dependent strain component, which occurs in steel and aluminium during exposure to high temperature. The model is capable of providing the creep strain output for the primary, secondary, and tertiary creep phases for both steel and aluminium. Constitutive parameters of the rheological model are calibrated using 2 recent coupon test studies based on the European steel grade S275JR and aluminium grade EN6082AW T6, both of which are currently used in the construction industry. The calibrated constitutive parameters are valid within the temperature range, within which creep is expected to occur (400‐600°C for steel and 200‐300°C for aluminium). The...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The paper presents a rheological model capable of reproducing the temperature‐, stress‐, and time‐de...
The paper presents test results for the mechanical and creep properties of the European steel grade ...
The paper presents test results for the mechanical and creep properties of European aluminium alloy ...
The paper presents test results for the mechanical and creep properties of European aluminium alloy ...
The paper presents test results for the mechanical and creep properties of European aluminium alloy ...
The paper presents a new validation study of a unified rheological model, in reproducing creep strai...
The paper presents the development of a creep model applicable for the analysis of aluminium members...
The paper presents the development of a creep model applicable for the analysis of aluminium members...
This paper presents a physically-based constitutive model applied to an AA6082 aluminium alloy subje...
The paper presents test results for the mechanical and creep properties of the European steel grade ...
The objective of this work, which is part of the IDEAL (Integrated Development Routes for Optimized ...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The paper presents a rheological model capable of reproducing the temperature‐, stress‐, and time‐de...
The paper presents test results for the mechanical and creep properties of the European steel grade ...
The paper presents test results for the mechanical and creep properties of European aluminium alloy ...
The paper presents test results for the mechanical and creep properties of European aluminium alloy ...
The paper presents test results for the mechanical and creep properties of European aluminium alloy ...
The paper presents a new validation study of a unified rheological model, in reproducing creep strai...
The paper presents the development of a creep model applicable for the analysis of aluminium members...
The paper presents the development of a creep model applicable for the analysis of aluminium members...
This paper presents a physically-based constitutive model applied to an AA6082 aluminium alloy subje...
The paper presents test results for the mechanical and creep properties of the European steel grade ...
The objective of this work, which is part of the IDEAL (Integrated Development Routes for Optimized ...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...
The hot working behaviour of an Al–0.7%Mg–0.4%Si (wt.%) aluminium alloy has been investigated by tor...