Ultrasonic Additive Manufacturing (UAM) enables the integration of a wide variety of components into solid metal matrices due to the process induced high degree of metal matrix plastic flow at low bulk temperatures. Exploitation of this phenomenon allows the fabrication of previously unobtainable novel engineered metal matrix components. The feasibility of directly embedding electrical materials within UAM metal matrices was investigated in this work. Three different dielectric materials were embedded into UAM fabricated aluminium metal-matrices with, research derived, optimal processing parameters. The effect of the dielectric material hardness on the final metal matrix mechanical strength after UAM processing was investigated systematical...
Purpose – This paper aims to explore the potential of ultrasonic additive manufacturing (UAM) to inc...
Additive manufacturing (AM) for fabricating 3D metallic parts has recently received considerable att...
This is exploratory research, driven by industry requirements for a new and flexible manufacturing p...
Ultrasonic Additive Manufacturing (UAM) enables the integration of a wide variety of components into...
Ultrasonic Additive Manufacturing (UAM) enables the integration of a wide variety of components into...
Ultrasonic Additive Manufacturing (UAM) enables the integration of a wide variety of components int...
Ultrasonic Additive Manufacturing (UAM) is a hybrid manufacturing process that involves the layer-by...
This work proposes a new method for the fabrication of Multifunctional Metal Matrix Composite (MMC) ...
Ultrasonic additive manufacturing (UAM) is a solid-state additive and subtractive manufacturing pro...
This work proposes a new method for the fabrication of multifunctional Metal Matrix Composite (MMC) ...
The advent of additive manufacturing has opened up new frontiers in developing metal structures that...
Ultrasonic Additive Manufacturing (UAM) is a hybrid manufacturing process that involves the layer-by...
Ultrasonic Additive Manufacturing (UAM) is a hybrid metal additive manufacturing process, based on ...
Embedded electronics and sensors are becoming increasingly important for the development of Industry...
Ultrasonic Additive Manufacturing (UAM) is an advanced hybrid manufacturing technology, which enable...
Purpose – This paper aims to explore the potential of ultrasonic additive manufacturing (UAM) to inc...
Additive manufacturing (AM) for fabricating 3D metallic parts has recently received considerable att...
This is exploratory research, driven by industry requirements for a new and flexible manufacturing p...
Ultrasonic Additive Manufacturing (UAM) enables the integration of a wide variety of components into...
Ultrasonic Additive Manufacturing (UAM) enables the integration of a wide variety of components into...
Ultrasonic Additive Manufacturing (UAM) enables the integration of a wide variety of components int...
Ultrasonic Additive Manufacturing (UAM) is a hybrid manufacturing process that involves the layer-by...
This work proposes a new method for the fabrication of Multifunctional Metal Matrix Composite (MMC) ...
Ultrasonic additive manufacturing (UAM) is a solid-state additive and subtractive manufacturing pro...
This work proposes a new method for the fabrication of multifunctional Metal Matrix Composite (MMC) ...
The advent of additive manufacturing has opened up new frontiers in developing metal structures that...
Ultrasonic Additive Manufacturing (UAM) is a hybrid manufacturing process that involves the layer-by...
Ultrasonic Additive Manufacturing (UAM) is a hybrid metal additive manufacturing process, based on ...
Embedded electronics and sensors are becoming increasingly important for the development of Industry...
Ultrasonic Additive Manufacturing (UAM) is an advanced hybrid manufacturing technology, which enable...
Purpose – This paper aims to explore the potential of ultrasonic additive manufacturing (UAM) to inc...
Additive manufacturing (AM) for fabricating 3D metallic parts has recently received considerable att...
This is exploratory research, driven by industry requirements for a new and flexible manufacturing p...