Metal additive manufacturing (AM) is an innovative manufacturing technology that uses a high-power laser for the layer-by-layer production of metal components. Despite many achievements in the field of AM, few studies have focused on the nondestructive characterization of microstructures, such as grain size and porosity. In this study, various microstructures of additively manufactured metal components were characterized non-destructively using linear/nonlinear ultrasonic techniques. The contributions of this study are as follows: (1) presenting correlation analyses of various microstructures (grain size and texture, lack of fusion, and porosity) and ultrasonic properties (ultrasonic velocity, attenuation, and nonlinearity parameters), (2) ...
Additive manufacturing processes have become commercially available and are particularly interesting...
Additive manufacturing (AM) is a manufacturing technique that typically builds parts layer by layer,...
Recent developments in laser-ultrasonic technology have made it possible to remotely inspect large a...
Metal additive manufacturing (AM) technologies promise the ability to produce complex geometries, re...
Additive manufacturing (AM), commonly known as 3D printing, is an emerging technology for manufactur...
Current metal additive manufacturing (AM) technologies imply complicated processes, with many variab...
Additive manufacturing (AM) is a production technology where material is accumulated to create a str...
Metal hybrid additive manufacturing (AM) processes are suitable to create complex structures that ad...
This thesis employs nonlinear ultrasonic techniques to track microstructural changes in additively m...
Additive manufacturing (AM) has revolutionise the manufacturing industry in recent years. It minimis...
International audienceLaser metal deposition (LMD) is one of the metallic additive manufacturing (AM...
Metal Additive Manufacturing (AM) is increasingly being used to make functional components. One of t...
Laser ultrasonics for metallurgy is an innovative sensor dedicated to the measurement of microstruct...
Additive manufacturing (AM) is the process of joining materials to make parts from three-dimensional...
Additive manufacturing techniques can produce complex, high-value metal parts, with potential applic...
Additive manufacturing processes have become commercially available and are particularly interesting...
Additive manufacturing (AM) is a manufacturing technique that typically builds parts layer by layer,...
Recent developments in laser-ultrasonic technology have made it possible to remotely inspect large a...
Metal additive manufacturing (AM) technologies promise the ability to produce complex geometries, re...
Additive manufacturing (AM), commonly known as 3D printing, is an emerging technology for manufactur...
Current metal additive manufacturing (AM) technologies imply complicated processes, with many variab...
Additive manufacturing (AM) is a production technology where material is accumulated to create a str...
Metal hybrid additive manufacturing (AM) processes are suitable to create complex structures that ad...
This thesis employs nonlinear ultrasonic techniques to track microstructural changes in additively m...
Additive manufacturing (AM) has revolutionise the manufacturing industry in recent years. It minimis...
International audienceLaser metal deposition (LMD) is one of the metallic additive manufacturing (AM...
Metal Additive Manufacturing (AM) is increasingly being used to make functional components. One of t...
Laser ultrasonics for metallurgy is an innovative sensor dedicated to the measurement of microstruct...
Additive manufacturing (AM) is the process of joining materials to make parts from three-dimensional...
Additive manufacturing techniques can produce complex, high-value metal parts, with potential applic...
Additive manufacturing processes have become commercially available and are particularly interesting...
Additive manufacturing (AM) is a manufacturing technique that typically builds parts layer by layer,...
Recent developments in laser-ultrasonic technology have made it possible to remotely inspect large a...