This work presents a numerical study of the behaviour of stainless steel I-beams subjected to lateral–torsional buckling in case of fire and compares the obtained results with the beam design curves of Eurocode 3. New formulae for lateral–torsional buckling, that approximate better the real behaviour of stainless steel structural elements in case of fire are proposed. These new formulae were based on numerical simulations using the program SAFIR, which was modified to take into account the material properties of the stainless steel
Material properties and their response to elevated temperatures form an essential part of structural...
peer reviewedNumerical modelling of the lateral-torsional buckling of steel beams at elevated temper...
This paper presents a numerical study on the buckling behaviour of ferritic stainless steel columns ...
This work presents a numerical study of the behaviour of ferritic stainless steel Ibeams subjected ...
This work presents a numerical study of the behaviour of stainless steel I-beams subjected to latera...
For predicting the behaviour of beams with thin-walled I sections, named Class 4 in Eurocode 3 (EC3)...
peer reviewedThis paper presents a numerical study on the behaviour of carbon steel and stainless st...
peer reviewedIt is the purpose of this paper to evaluate the accuracy and safety of the currently p...
The simple model of Eurocode 3, for the fire resistance evaluation of stainless steel members, are ...
The behaviour of Steel I-Beams exhibiting lateral-torsional buckling at elevated temperature has bee...
peer reviewedEurocode 3 states that stainless steel structural members, subjected to high temperatu...
The local buckling behaviour and design of stainless steel plates in fire are investigated in this p...
In this paper, the structural response of stainless steel thin-walled elements submitted to fire is...
The lateral torsional buckling behaviour and design of steel beams in fire are investigated in this ...
The structural response of stainless steel I-sections in fire is investigated in this paper. Finite ...
Material properties and their response to elevated temperatures form an essential part of structural...
peer reviewedNumerical modelling of the lateral-torsional buckling of steel beams at elevated temper...
This paper presents a numerical study on the buckling behaviour of ferritic stainless steel columns ...
This work presents a numerical study of the behaviour of ferritic stainless steel Ibeams subjected ...
This work presents a numerical study of the behaviour of stainless steel I-beams subjected to latera...
For predicting the behaviour of beams with thin-walled I sections, named Class 4 in Eurocode 3 (EC3)...
peer reviewedThis paper presents a numerical study on the behaviour of carbon steel and stainless st...
peer reviewedIt is the purpose of this paper to evaluate the accuracy and safety of the currently p...
The simple model of Eurocode 3, for the fire resistance evaluation of stainless steel members, are ...
The behaviour of Steel I-Beams exhibiting lateral-torsional buckling at elevated temperature has bee...
peer reviewedEurocode 3 states that stainless steel structural members, subjected to high temperatu...
The local buckling behaviour and design of stainless steel plates in fire are investigated in this p...
In this paper, the structural response of stainless steel thin-walled elements submitted to fire is...
The lateral torsional buckling behaviour and design of steel beams in fire are investigated in this ...
The structural response of stainless steel I-sections in fire is investigated in this paper. Finite ...
Material properties and their response to elevated temperatures form an essential part of structural...
peer reviewedNumerical modelling of the lateral-torsional buckling of steel beams at elevated temper...
This paper presents a numerical study on the buckling behaviour of ferritic stainless steel columns ...