Technological advances in aircraft engine design require the use of lightweight materials at increasingly high temperatures. Therefore, intermetallics titanium aluminide alloys based on "dollar"\gamma"dollar"-TiAl have been introduced in the most recent civil turbo-engines as low pressure turbine blades. To extend the use of this material to other application technologies, new alloys are being developed with enhanced mechanical properties. Particularly, material development teams focus on increasing the working temperature and the fatigue strength. The aim of this work is to study the link between TiAl alloys microstructures and their fatigue strengths. Both experimental and numerical aspects are studied at various scales of interest. To be...
In order to design efficient and light components for the gas turbine engine industry, new design cr...
Titanium alloys are widely used in the aeronautical industry, thanks to their properties of resistan...
AbstractAdditive Manufacturing offers real opportunities in Thales, since it enables a flexible and ...
Technological advances in aircraft engine design require the use of lightweight materials at increas...
Les alliages à base d'aluminures de titane (TiAl) sont des matériaux légers introduits dans la derni...
One of the major challenges of the aircraft industries is to develop more effective and lighter syst...
The conception of more efficient aircraft engines induces increased stress and temperature levels on...
La conception de moteurs aéronautiques plus performants soumet les alliages de titane constitutifs d...
Titanium alloys are increasingly used for structural applications in transportation engineering (aer...
At temperatures of the order of 700 °C, suitable for the operation of low and intermediate pressure ...
As part of the aviation safety goal to reduce the aircraft accident rate, NASA has undertaken studie...
The need for more efficient gas turbines with lowered fuel consumption and thereby lowered emission ...
Thanks to their extremely attractive specific mechanical properties, titanium alloys are widely used...
In order to design efficient and light components for the aircraft industry preserving the safety of...
In order to design efficient and light components for the gas turbine engine industry, new design cr...
Titanium alloys are widely used in the aeronautical industry, thanks to their properties of resistan...
AbstractAdditive Manufacturing offers real opportunities in Thales, since it enables a flexible and ...
Technological advances in aircraft engine design require the use of lightweight materials at increas...
Les alliages à base d'aluminures de titane (TiAl) sont des matériaux légers introduits dans la derni...
One of the major challenges of the aircraft industries is to develop more effective and lighter syst...
The conception of more efficient aircraft engines induces increased stress and temperature levels on...
La conception de moteurs aéronautiques plus performants soumet les alliages de titane constitutifs d...
Titanium alloys are increasingly used for structural applications in transportation engineering (aer...
At temperatures of the order of 700 °C, suitable for the operation of low and intermediate pressure ...
As part of the aviation safety goal to reduce the aircraft accident rate, NASA has undertaken studie...
The need for more efficient gas turbines with lowered fuel consumption and thereby lowered emission ...
Thanks to their extremely attractive specific mechanical properties, titanium alloys are widely used...
In order to design efficient and light components for the aircraft industry preserving the safety of...
In order to design efficient and light components for the gas turbine engine industry, new design cr...
Titanium alloys are widely used in the aeronautical industry, thanks to their properties of resistan...
AbstractAdditive Manufacturing offers real opportunities in Thales, since it enables a flexible and ...