Repair and restoration of engineering components by laser directed energy deposition
Repair is a process of restoring the functionality of a damaged component to its original functional state to extend the lifespan of the component. For high-value engineering components, it is often more cost-effective to repair the damaged parts than replace them with new ones. This paper focuses o...
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sg-ntu-dr.10356-1704392023-09-12T04:58:01Z Repair and restoration of engineering components by laser directed energy deposition Aprilia, Aprilia Wu, Naien Zhou, Wei School of Mechanical and Aerospace Engineering Engineering::Mechanical engineering Repair Restoration Repair is a process of restoring the functionality of a damaged component to its original functional state to extend the lifespan of the component. For high-value engineering components, it is often more cost-effective to repair the damaged parts than replace them with new ones. This paper focuses on the utilization of laser directed energy deposition (DED) for repair application. DED is one of the additive manufacturing (AM) technologies whereby build layers are formed through feeding material into the melt pool that is generated on a substrate by a focused thermal energy source. Different types of DED configurations in the market are compared and a selection matrix for the repair application has been established. The repair process framework of a laser DED system for achieving an integrated intelligent system is also proposed. Successful circular shape cladding was demonstrated. Nanyang Technological University The authors would like to thank School of Mechanical and Aerospace Engineering, Nanyang Technological University for the research support and financial support from LUX Photonics Consortium and Precision Laser Solutions Pte. Ltd. through grants #020408-00002 and #020408-00003. 2023-09-12T04:58:01Z 2023-09-12T04:58:01Z 2022 Journal Article Aprilia, A., Wu, N. & Zhou, W. (2022). Repair and restoration of engineering components by laser directed energy deposition. Materials Today: Proceedings, 70, 206-211. https://dx.doi.org/10.1016/j.matpr.2022.09.022 2214-7853 https://hdl.handle.net/10356/170439 10.1016/j.matpr.2022.09.022 2-s2.0-85138014121 70 206 211 en #020408-00002 #020408-00003 Materials Today: Proceedings © 2022 Elsevier Ltd. All rights reserved. |
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Engineering::Mechanical engineering Repair Restoration Aprilia, Aprilia Wu, Naien Zhou, Wei Repair and restoration of engineering components by laser directed energy deposition |
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Repair is a process of restoring the functionality of a damaged component to its original functional state to extend the lifespan of the component. For high-value engineering components, it is often more cost-effective to repair the damaged parts than replace them with new ones. This paper focuses on the utilization of laser directed energy deposition (DED) for repair application. DED is one of the additive manufacturing (AM) technologies whereby build layers are formed through feeding material into the melt pool that is generated on a substrate by a focused thermal energy source. Different types of DED configurations in the market are compared and a selection matrix for the repair application has been established. The repair process framework of a laser DED system for achieving an integrated intelligent system is also proposed. Successful circular shape cladding was demonstrated. |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Aprilia, Aprilia Wu, Naien Zhou, Wei |
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Article |
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Aprilia, Aprilia Wu, Naien Zhou, Wei |
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Aprilia, Aprilia |
title |
Repair and restoration of engineering components by laser directed energy deposition |
title_short |
Repair and restoration of engineering components by laser directed energy deposition |
title_full |
Repair and restoration of engineering components by laser directed energy deposition |
title_fullStr |
Repair and restoration of engineering components by laser directed energy deposition |
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Repair and restoration of engineering components by laser directed energy deposition |
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repair and restoration of engineering components by laser directed energy deposition |
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2023 |
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https://hdl.handle.net/10356/170439 |
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