In this study, three aluminium samples produced by wire + arc additive manufacture (WAAM) are inspected using ultrasonic phased array technology. Artificial defects are machined using a centre drill, ø 3 mm, and electrical discharge machining (EDM), ø 0.5-1 mm, in a cylindrical through-hole topology. The samples are first inspected using a single-element wheel probe mounted on a KUKA robot in order to investigate the feasibility of using a conventional ultrasonic transducer approach. Unfortunately, the wheel probe is found to be unsuitable for scanning the WAAM specimens and ultrasonic phased arrays are employed next. The set-up includes 5 MHz and 10 MHz arrays (128 elements) in direct contact with the sample surface using both the conventi...
The market for cost-effective additive manufactured (AM) complex components has evolved rapidly with...
Additive manufacturing (AM) has been revolutionizing the manufacturing industry due to its ability t...
The wire + arc additive manufacturing (WAAM) process, which combines an electric arc as a heat sourc...
In this study, three aluminium samples produced by wire + arc additive manufacture (WAAM) are inspec...
In this study, three aluminium samples produced by wire + arc additive manufacture (WAAM) are inspec...
In this study, three aluminium samples produced by wire + arc additive manufacture (WAAM) are insp...
Non-Destructive Evaluation (NDE) of metal Additively Manufactured (AM) components is crucial for the...
In this study, Wire + Arc Additive Manufacture (WAAM) was employed to manufacture a steel specimen w...
Wire + Arc Additive Manufacturing (WAAM) is a metal 3D printing technique where layers of molten met...
Recent developments in the application of the Wire + Arc Additive Manufacturing (WAAM) process for t...
Non-Destructive Evaluation (NDE) of metal Additively Manufactured (AM) components is crucial for the...
The market for cost-effective additive manufactured (AM) complex components has evolved rapidly with...
Additive manufacturing (AM) has been revolutionizing the manufacturing industry due to its ability t...
The wire + arc additive manufacturing (WAAM) process, which combines an electric arc as a heat sourc...
In this study, three aluminium samples produced by wire + arc additive manufacture (WAAM) are inspec...
In this study, three aluminium samples produced by wire + arc additive manufacture (WAAM) are inspec...
In this study, three aluminium samples produced by wire + arc additive manufacture (WAAM) are insp...
Non-Destructive Evaluation (NDE) of metal Additively Manufactured (AM) components is crucial for the...
In this study, Wire + Arc Additive Manufacture (WAAM) was employed to manufacture a steel specimen w...
Wire + Arc Additive Manufacturing (WAAM) is a metal 3D printing technique where layers of molten met...
Recent developments in the application of the Wire + Arc Additive Manufacturing (WAAM) process for t...
Non-Destructive Evaluation (NDE) of metal Additively Manufactured (AM) components is crucial for the...
The market for cost-effective additive manufactured (AM) complex components has evolved rapidly with...
Additive manufacturing (AM) has been revolutionizing the manufacturing industry due to its ability t...
The wire + arc additive manufacturing (WAAM) process, which combines an electric arc as a heat sourc...