peer reviewedThe susceptibility of nickel-base superalloys to microporosity formation is studied experimentally and theoretically. Analysis of a model introduced herein leads to formulation of a microporosity index, Ap*, which is expressed in terms of solidification parameters and alloy system properties. This index can be determined from information obtained by quantitative differential thermal analysis. The effect of composition on the formation of microporosity is evaluated. Thus, aluminum, titanium, and cobalt are found to increase, and chromium to decrease microporosity. The effect of carbon is beneficial or detrimental depending on the aluminum content in the alloy
Over the past fifty years, technological advances leading up to the development of modern high-perfo...
A mathematical model on the microporosity of aluminum castings is proposed, considering the pressure...
A computer model was constructed and run to predict the thermal history of a Stellite alloy investm...
peer reviewedMicroporosity formation in nickel-base superalloys is studied experimentally and theore...
peer reviewedThis work is aimed at showing how the proneness of superalloys to microporosity format...
peer reviewedThis work is aimed at showing how the proneness of superalloys to microporosity format...
peer reviewedThe influence of the six major alloying elements: carbon, chromium, cobalt, molybdenum,...
The aim of this experiment was to study the origin and formation of microporosities in a Ni-5% Ti-0....
The topic of this thesis is the formation of microporosity in cast test bars of nickel-base superall...
peer reviewedThe aim of this experiment was to examine the formation of micropores during directiona...
The Scheil equation was used to model the solidification path, microsegregation of alloying elements...
The Scheil equation was used to model the solidification path, microsegregation of alloying elements...
The Scheil equation was used to model the solidification path, microsegregation of alloying elements...
Metallurgical processing factors like kinetic and thermodynamic parameters which are essential for m...
The Scheil equation was used to model the solidification path, microsegregation of alloying elements...
Over the past fifty years, technological advances leading up to the development of modern high-perfo...
A mathematical model on the microporosity of aluminum castings is proposed, considering the pressure...
A computer model was constructed and run to predict the thermal history of a Stellite alloy investm...
peer reviewedMicroporosity formation in nickel-base superalloys is studied experimentally and theore...
peer reviewedThis work is aimed at showing how the proneness of superalloys to microporosity format...
peer reviewedThis work is aimed at showing how the proneness of superalloys to microporosity format...
peer reviewedThe influence of the six major alloying elements: carbon, chromium, cobalt, molybdenum,...
The aim of this experiment was to study the origin and formation of microporosities in a Ni-5% Ti-0....
The topic of this thesis is the formation of microporosity in cast test bars of nickel-base superall...
peer reviewedThe aim of this experiment was to examine the formation of micropores during directiona...
The Scheil equation was used to model the solidification path, microsegregation of alloying elements...
The Scheil equation was used to model the solidification path, microsegregation of alloying elements...
The Scheil equation was used to model the solidification path, microsegregation of alloying elements...
Metallurgical processing factors like kinetic and thermodynamic parameters which are essential for m...
The Scheil equation was used to model the solidification path, microsegregation of alloying elements...
Over the past fifty years, technological advances leading up to the development of modern high-perfo...
A mathematical model on the microporosity of aluminum castings is proposed, considering the pressure...
A computer model was constructed and run to predict the thermal history of a Stellite alloy investm...