Over the past decade thermodynamic models have become increasingly used for Ni- and NiFe-based superalloys. However, their applicability often falls short from directly providing the information that is actually required. To overcome such limitations a new computer programme has been developed, called JMatPro (an acronym for Java-based Materials Properties software). The properties which can be calculated are wide ranging, including thermo-physical and physical properties (from room temperature to the liquid state), TTT/CCT diagrams, coarsening of γ ' and γ", and mechanical properties. It should be noted that the mechanical properties are calculated as a function of temperature and strain rate up to the melting point. Stress/strai...
In this work a physics based creep model is presented to predict the behaviour in the Nickel based s...
The mechanical behavior of a new single-crystal nickel-based superalloy for industrial gas turbine (...
In the aviation industry today there is a trend of increasing operating temperatures in turbine engi...
International audienceAt the last two Superalloy meetings at Seven Springs, work on the development ...
A new software programme, JMatPro, is used to obtain steady state creep rates and creep rupture life...
This paper describes the development of a new multi-platform software programme called JMatPro for c...
Nickel-based superalloys have emerged as the materials of choice for high-temperature jet propulsion...
DoctorIn this doctoral thesis, a numerical model to predict mechanical properties of Ni-base superal...
A mathematical model to predict creep properties of Ni-based superalloys at intermediate temperature...
On the basis of a new physical model based approach a computer package named CRISPEN has been de...
Directionally solidified (DS) Ni-base superalloys have become a commonly used material in gas turbin...
The creep properties of a nickel-based superalloy at 700 °C and 690 MPa resulting from differing agi...
Superalloys are a group of materials that are used in high temperature applications, for example gas...
International audienceTwo mechanical behaviour models for N – 18 alloy are proposed. The material is...
In order to improve the energy production within the United States, new materials are developed with...
In this work a physics based creep model is presented to predict the behaviour in the Nickel based s...
The mechanical behavior of a new single-crystal nickel-based superalloy for industrial gas turbine (...
In the aviation industry today there is a trend of increasing operating temperatures in turbine engi...
International audienceAt the last two Superalloy meetings at Seven Springs, work on the development ...
A new software programme, JMatPro, is used to obtain steady state creep rates and creep rupture life...
This paper describes the development of a new multi-platform software programme called JMatPro for c...
Nickel-based superalloys have emerged as the materials of choice for high-temperature jet propulsion...
DoctorIn this doctoral thesis, a numerical model to predict mechanical properties of Ni-base superal...
A mathematical model to predict creep properties of Ni-based superalloys at intermediate temperature...
On the basis of a new physical model based approach a computer package named CRISPEN has been de...
Directionally solidified (DS) Ni-base superalloys have become a commonly used material in gas turbin...
The creep properties of a nickel-based superalloy at 700 °C and 690 MPa resulting from differing agi...
Superalloys are a group of materials that are used in high temperature applications, for example gas...
International audienceTwo mechanical behaviour models for N – 18 alloy are proposed. The material is...
In order to improve the energy production within the United States, new materials are developed with...
In this work a physics based creep model is presented to predict the behaviour in the Nickel based s...
The mechanical behavior of a new single-crystal nickel-based superalloy for industrial gas turbine (...
In the aviation industry today there is a trend of increasing operating temperatures in turbine engi...