The stability of the martensitic microstructure in ferritic/martensitic G91 steel at operating temperatures up to 700 °C might be improved by means of ausforming thermomechanical treatments. The goal sought is to promote the formation of a high number density of MX nanoprecipitates in the martensitic microstructure obtained after a subsequent tempering. This work is focused on the effect of the ausforming temperature. The results show that the lower the ausforming temperature is the higher is the dislocation density obtained in ausformed fresh martensite and the larger the number density of MX carbonitrides after tempering is. Creep strength, evaluated by Small Punch Creep Tests has allowed us to conclude that the best creep resistance was ...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
The 9Cr-1Mo-V (P91) steel is a high strength alloy that normally transforms completely to martensite...
Small Punch Creep technique was used as a screening procedure to evaluate the creep properties of di...
The development of thermomechanical treatments (TMT) has a high potential for improving creep-streng...
The development of thermomechanical treatments (TMT) has a high potential for improving creep-streng...
It is well known the effectiveness of ausforming on increasing the dislocation density of fresh mart...
Tesis DoctoralNowadays, there is a need to increase the operation temperature of 9Cr ferritic/marten...
P92 steel is used as a piping material in ultra super critical power plants that can be operated at ...
International audienceThe development of Generation IV fission nuclear reactors and fusion nuclear r...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
International audienceThe development of Generation IV fission nuclear reactors and fusion nuclear r...
International audienceThe development of Generation IV fission nuclear reactors and fusion nuclear r...
International audienceThe development of Generation IV fission nuclear reactors and fusion nuclear r...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
The 9Cr-1Mo-V (P91) steel is a high strength alloy that normally transforms completely to martensite...
Small Punch Creep technique was used as a screening procedure to evaluate the creep properties of di...
The development of thermomechanical treatments (TMT) has a high potential for improving creep-streng...
The development of thermomechanical treatments (TMT) has a high potential for improving creep-streng...
It is well known the effectiveness of ausforming on increasing the dislocation density of fresh mart...
Tesis DoctoralNowadays, there is a need to increase the operation temperature of 9Cr ferritic/marten...
P92 steel is used as a piping material in ultra super critical power plants that can be operated at ...
International audienceThe development of Generation IV fission nuclear reactors and fusion nuclear r...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
International audienceThe development of Generation IV fission nuclear reactors and fusion nuclear r...
International audienceThe development of Generation IV fission nuclear reactors and fusion nuclear r...
International audienceThe development of Generation IV fission nuclear reactors and fusion nuclear r...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
International audienceIn the framework of the development of generation IV nuclear reactors and fusi...
The 9Cr-1Mo-V (P91) steel is a high strength alloy that normally transforms completely to martensite...