International audienceThe progress in designing high temperature components relies on more accurate viscoplastic constitutive models. The capability of various models under high temperature and variable temperature conditions is investigated for two body centred cubic alloys, cast iron and ferritic stainless steel. Improvements are shown to overcome problems encountered by standard viscoplastic models. Firstly a physically based modified flow equation predicts reliably the behaviour of cast iron under thermal-mechanical loading. Secondly further improvement is proposed drawing on dislocation models to describe static recovery effects in stainless steels. Good agreement is thus obtained between experiment and model prediction under various t...
This paper deals with the identification of material constants to simulate the effect of cyclic mech...
THE THEORY OF VISCOPLASTIC BASED ON TOTAL STRAIN AND OVERSTRESS IS USED IN ORDER TO ...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
International audienceA specific flow rules and the corresponding constitutive elasto-viscoplastic m...
The flow behaviour of a ferritic stainless steel (FSS) was investigated by a Gleeble 3500 thermal-me...
An efficient computational model has been developed to quantify the thermo-mechanical behavior of th...
A viscoplastic constitutive model, coded as a User Material subroutine (UMAT) for use with the ABAQU...
This paper presents a dislocation-mechanics cyclic viscoplasticity model which incorporates the key ...
The finite element (FE) implementation of a hyperbolic sine unified cyclic viscoplasticity model is ...
A constitutive model for recrystallization has been developed within the framework of an existing di...
The optimal design of parts submitted to thermomechanical loadings is a key issue for the safety and...
This thesis is concerned with the continuum modeling of the macroscopic behavior of engineering meta...
The thermo-mechanical fatigue (TMF) of power plant components is caused by the cyclic operation of p...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
This paper deals with the identification of material constants to simulate the effect of cyclic mech...
THE THEORY OF VISCOPLASTIC BASED ON TOTAL STRAIN AND OVERSTRESS IS USED IN ORDER TO ...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
International audienceA specific flow rules and the corresponding constitutive elasto-viscoplastic m...
The flow behaviour of a ferritic stainless steel (FSS) was investigated by a Gleeble 3500 thermal-me...
An efficient computational model has been developed to quantify the thermo-mechanical behavior of th...
A viscoplastic constitutive model, coded as a User Material subroutine (UMAT) for use with the ABAQU...
This paper presents a dislocation-mechanics cyclic viscoplasticity model which incorporates the key ...
The finite element (FE) implementation of a hyperbolic sine unified cyclic viscoplasticity model is ...
A constitutive model for recrystallization has been developed within the framework of an existing di...
The optimal design of parts submitted to thermomechanical loadings is a key issue for the safety and...
This thesis is concerned with the continuum modeling of the macroscopic behavior of engineering meta...
The thermo-mechanical fatigue (TMF) of power plant components is caused by the cyclic operation of p...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...
This paper deals with the identification of material constants to simulate the effect of cyclic mech...
THE THEORY OF VISCOPLASTIC BASED ON TOTAL STRAIN AND OVERSTRESS IS USED IN ORDER TO ...
An experimental programme of cyclic mechanical testing of a 316 stainless steel, at temperatures up ...