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New Research Yields Digital Twin of Metal Repair Technology | AEI
Conventional metal 3D-printed repair of damaged mechanical parts in machines requires bulky equipment and wastes metal powder. Although laser-directed energy deposition overcomes this challenge, the optimum forming conditions had to be hitherto determined by trial and error. To this end, a team of researchers from Tokyo University of Science developed a numerical method that automatically
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New Research Yields Digital Twin of Metal Repair Technology | AEI
Conventional metal 3D-printed repair of damaged mechanical parts in machines requires bulky equipment and wastes metal powder. Although laser-directed energy deposition overcomes this challenge, the optimum forming conditions had to be hitherto determined by trial and error. To this end, a team of researchers from Tokyo University of Science developed a numerical method that automatically
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New Research Yields Digital Twin of Metal Repair Technology | AEI
Conventional metal 3D-printed repair of damaged mechanical parts in machines requires bulky equipment and wastes metal powder. Although laser-directed energy deposition overcomes this challenge, the optimum forming conditions had to be hitherto determined by trial and error. To this end, a team of researchers from Tokyo University of Science developed a numerical method that automatically
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