This paper highlights a comparative assessment of creep life of 1.25Cr-0.5Mo, 2.25Cr-1Mo and modified 9Cr-1Mo steels based on accelerated creep rupture tests. Creep rupture test data have been analysed and creep life of the above mentioned materials have been assessed using Larson Miller parameter at the stress levels of 60 and 42 MPa for different temperatures. Limiting steam temperatures for minimum design life of 105 h at 42 and 60 MPa for the above mentioned steels have also been calculated. Microstructural studies for the three above mentioned steels are also done
AbstractCreep deformation and rupture behaviour of P92 steel has been examined at 923K for stresses ...
New relationships, incorporating the activation energy for matrix diffusion (300 kJ mol-1) and the u...
The methodology proposed here adopts short-term stress relaxation testing (SRT) to predict creep str...
Creep is a time dependent deformation of material at constant load and constant temperature. Dif...
The damage mechanisms affecting engineering steels at high-temperatures include creep cavitation and...
Ω method is effective for an assessment of creep life time. In this study, creep curves of 9Cr ferri...
Strain based approach for reliable assessment of creep behavior is employed for creep data generated...
Development of steam power plant largely depends on the physical properties of the materials. Realiz...
AbstractCreep life prediction of modified 9Cr-1Mo steel under multiaxial state of stress has been ca...
Abstract. The higher steam temperatures and pressures required to achieve increase in thermal effici...
A heat resistant steel, 1.25Cr-1Mo-0.25V, produced by a casting process and used in the manufacture ...
Understanding the elevated temperature behaviour of materials is extremely important for the efficie...
Hot tensile and creep tests were carried out on 2.25Cr-1Mo steel at 9 temperature levels between 500...
Understanding the elevated temperature behaviour of materials is extremely important for the efficie...
In this study, creep tests were conducted on a set of specimens made from the same tube of T91 steel...
AbstractCreep deformation and rupture behaviour of P92 steel has been examined at 923K for stresses ...
New relationships, incorporating the activation energy for matrix diffusion (300 kJ mol-1) and the u...
The methodology proposed here adopts short-term stress relaxation testing (SRT) to predict creep str...
Creep is a time dependent deformation of material at constant load and constant temperature. Dif...
The damage mechanisms affecting engineering steels at high-temperatures include creep cavitation and...
Ω method is effective for an assessment of creep life time. In this study, creep curves of 9Cr ferri...
Strain based approach for reliable assessment of creep behavior is employed for creep data generated...
Development of steam power plant largely depends on the physical properties of the materials. Realiz...
AbstractCreep life prediction of modified 9Cr-1Mo steel under multiaxial state of stress has been ca...
Abstract. The higher steam temperatures and pressures required to achieve increase in thermal effici...
A heat resistant steel, 1.25Cr-1Mo-0.25V, produced by a casting process and used in the manufacture ...
Understanding the elevated temperature behaviour of materials is extremely important for the efficie...
Hot tensile and creep tests were carried out on 2.25Cr-1Mo steel at 9 temperature levels between 500...
Understanding the elevated temperature behaviour of materials is extremely important for the efficie...
In this study, creep tests were conducted on a set of specimens made from the same tube of T91 steel...
AbstractCreep deformation and rupture behaviour of P92 steel has been examined at 923K for stresses ...
New relationships, incorporating the activation energy for matrix diffusion (300 kJ mol-1) and the u...
The methodology proposed here adopts short-term stress relaxation testing (SRT) to predict creep str...