In the power generation industry, the goal of increased gas turbine efficiency has led to increased operating temperatures and pressures necessitating nickel-base superalloy components. Under these conditions, the tertiary creep regime can become the dominant form of creep deformation. In response, the classical Kachanov-Rabotnov coupled creep-damage constitutive model is often used to predict the creep deformation and damage of Ni-base superalloys. In this model, the secondary creep behavior can be determined through analytical methods while the tertiary creep behavior is often found using trial and error or numerical optimization. Trial and error may produce no constants. Numerical optimization can be computationally expensive. In this st...
A new software programme, JMatPro, is used to obtain steady state creep rates and creep rupture life...
Uniaxial constant stress creep tests were performed on the wrought nickel-base superalloy Nimonic 10...
A mathematical model to predict creep properties of Ni-based superalloys at intermediate temperature...
In the power generation industry, the goal of increased gas turbine efficiency has led to increased ...
The classic Kachanov-Rabotnov isotropic creep damage constitutive model has been used in many situat...
Directionally solidified (DS) Ni-base superalloys have become a commonly used material in gas turbin...
Both polycrystalline (PC) and directionally-solidified (DS) Ni-base superalloys are commonly applied...
Directionally-solidified (DS) Ni-base superalloys are commonly applied as turbine materials to prima...
To capture the mechanical response of Ni-based materials, creep deformation and rupture experiments ...
To capture the mechanical response of Ni-based materials, creep deformation and rupture experiments ...
Despite the advent of single crystal turbine blades, the aerospace and industrial gas turbine indust...
Directionally solidified (DS) Ni-base superalloys are commonly used as gas turbine materials to prim...
Creep deformation and rupture experiments are conducted on samples of the Ni-base superalloy directi...
In gas turbine technology, higher efficiency, in association with a reduction of carbon dioxide emis...
Accurate prediction of creep deformation is critical to assuring the mechanical integrity of heavy-d...
A new software programme, JMatPro, is used to obtain steady state creep rates and creep rupture life...
Uniaxial constant stress creep tests were performed on the wrought nickel-base superalloy Nimonic 10...
A mathematical model to predict creep properties of Ni-based superalloys at intermediate temperature...
In the power generation industry, the goal of increased gas turbine efficiency has led to increased ...
The classic Kachanov-Rabotnov isotropic creep damage constitutive model has been used in many situat...
Directionally solidified (DS) Ni-base superalloys have become a commonly used material in gas turbin...
Both polycrystalline (PC) and directionally-solidified (DS) Ni-base superalloys are commonly applied...
Directionally-solidified (DS) Ni-base superalloys are commonly applied as turbine materials to prima...
To capture the mechanical response of Ni-based materials, creep deformation and rupture experiments ...
To capture the mechanical response of Ni-based materials, creep deformation and rupture experiments ...
Despite the advent of single crystal turbine blades, the aerospace and industrial gas turbine indust...
Directionally solidified (DS) Ni-base superalloys are commonly used as gas turbine materials to prim...
Creep deformation and rupture experiments are conducted on samples of the Ni-base superalloy directi...
In gas turbine technology, higher efficiency, in association with a reduction of carbon dioxide emis...
Accurate prediction of creep deformation is critical to assuring the mechanical integrity of heavy-d...
A new software programme, JMatPro, is used to obtain steady state creep rates and creep rupture life...
Uniaxial constant stress creep tests were performed on the wrought nickel-base superalloy Nimonic 10...
A mathematical model to predict creep properties of Ni-based superalloys at intermediate temperature...