Directionally solidified (DS) Ni-base superalloys have become a commonly used material in gas turbine components. Controlled solidification during the material manufacturing process leads to a special alignment of the grain boundaries within the material. This alignment results in different material properties dependent on the orientation of the material. When used in gas turbine applications the direction of the first principle stress experienced by a component is aligned with the enhanced grain orientation leading to enhanced impact strength, high temperature creep and fatigue resistance, and improve corrosion resistance compared to off axis orientations. Of particular importance is the creep response of these DS materials. In the current...
Cyclic plasticity and creep are the primary design considerations of 1st and 2nd stage gas turbine b...
Creep lifetime of turbine blade material subjected to sustained centrifugal forces at elevated tempe...
Combustion gas turbine components designed for application in power generation equipment are subject...
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...
Directionally solidified (DS) Ni-base superalloys are commonly used as gas turbine materials to prim...
In the power generation industry, the goal of increased gas turbine efficiency has led to increased ...
Creep deformation and rupture experiments are conducted on samples of the Ni-base superalloy directi...
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...
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...
Turbine blades derived from directionally solidified (DS) Ni-base superalloys are increasingly emplo...
Nickel-based singe crystal superalloys are a class of metallic materials with a combination of high-...
Cyclic plasticity and creep are the primary design considerations of 1st and 2nd stage gas turbine b...
Creep lifetime of turbine blade material subjected to sustained centrifugal forces at elevated tempe...
Combustion gas turbine components designed for application in power generation equipment are subject...
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...
Directionally solidified (DS) Ni-base superalloys are commonly used as gas turbine materials to prim...
In the power generation industry, the goal of increased gas turbine efficiency has led to increased ...
Creep deformation and rupture experiments are conducted on samples of the Ni-base superalloy directi...
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...
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...
Turbine blades derived from directionally solidified (DS) Ni-base superalloys are increasingly emplo...
Nickel-based singe crystal superalloys are a class of metallic materials with a combination of high-...
Cyclic plasticity and creep are the primary design considerations of 1st and 2nd stage gas turbine b...
Creep lifetime of turbine blade material subjected to sustained centrifugal forces at elevated tempe...
Combustion gas turbine components designed for application in power generation equipment are subject...