Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sector has gradually increased due to the combination of properties such as improved forgeability and machinability, low flow stress at elevated temperatures, and superplastic characteristics. However, for the successful exploitation of Ti54M a comprehensive understanding of its mechanical characteristics, microstructure stability, and superplastic behaviour is required. The superplastic forming of titanium alloys is characterised by high deformation at slow strain rates and high temperatures which influence the material microstructure, and in turn, determine the forming parameters. These mechanisms make the prediction of the material behaviour ...
International audienceTitanium alloys are widely used in the aircraft industry. Under sheets form, t...
Superplasticity is vital in many industries - medical, defense, aerospace, transport and sports amon...
Determining a desirable strain rate-temperature range for superplasticity and elongation-to-failure ...
Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sect...
Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sect...
Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sect...
Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sect...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
Superplastic forming is a cost-effective process for manufacturing complex-shaped titanium parts. TI...
Superplastic forming is a cost-effective process for manufacturing complex-shaped titanium parts. TI...
Superplastic forming is a cost-effective process for manufacturing complex-shaped titanium parts. TI...
Superplastic forming is a cost-effective process for manufacturing complex-shaped titanium parts. TI...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
International audienceTitanium alloys are widely used in the aircraft industry. Under sheets form, t...
Superplasticity is vital in many industries - medical, defense, aerospace, transport and sports amon...
Determining a desirable strain rate-temperature range for superplasticity and elongation-to-failure ...
Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sect...
Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sect...
Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sect...
Since the development of the Ti54M titanium alloy in 2003, its application within the aerospace sect...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
Superplastic forming is a cost-effective process for manufacturing complex-shaped titanium parts. TI...
Superplastic forming is a cost-effective process for manufacturing complex-shaped titanium parts. TI...
Superplastic forming is a cost-effective process for manufacturing complex-shaped titanium parts. TI...
Superplastic forming is a cost-effective process for manufacturing complex-shaped titanium parts. TI...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
International audienceTitanium alloys are widely used in the aircraft industry. Under sheets form, t...
Superplasticity is vital in many industries - medical, defense, aerospace, transport and sports amon...
Determining a desirable strain rate-temperature range for superplasticity and elongation-to-failure ...