COLD SPRAY ADDITIVE MANUFACTURING

1 CHOCHOLATÝ Ondřej
Co-authors:
1 JAROLÍMOVÁ Lucie 1 LIŠKA Karel 1 VOSTŘÁK Marek 1 HOUDKOVÁ Šárka
Institution:
1 Research and testing institute Plzen Ltd., Pilsen, Czech Republic, EU, chocholaty@vzuplzen.cz
Conference:
32nd International Conference on Metallurgy and Materials, Orea Congress Hotel Brno, Czech Republic, EU, May 17 - 19, 2023
Proceedings:
Proceedings 32nd International Conference on Metallurgy and Materials
Pages:
370-374
ISBN:
978-80-88365-12-9
ISSN:
2694-9296
Published:
13th June 2023
Metrics:
115 views / 74 downloads
Abstract

High Pressure Cold spray (CS) belongs to the family of thermal spraying technologies. The technology consists in accelerating microscopic particles to supersonic speed and depositing them on a substrate, where kinetic energy is converted into deformation and thermal energy at the moment of impact. Compared to conventional processes, CS offers particular advantages, as the spray material is neither melted on nor melted off during the process. This fact minimizes the thermal influence on the layer and substrate. A typical CS beam is narrow and well-defined. Because CS can be used for the fabrication of near-net-shape articles this technology has been recently applied as an additive manufacturing process. With cold spray is possible to produce individual components. It is also possible to repair damaged components. In comparison with fusion based high temperature additive manufacturing processes, CSAM (cold spray additive manufacturing) has shown to retain the original properties of the feedstock, to produce oxide-free deposits, and to not influence underlying substrate materials during manufacturing process. This article aims to provide a brief introduction to cold spray technology and CSAM. The technology and process are demonstrated on a test-manufactured copper sample.

Keywords: High pressure cold spray, additive manufacturing, CSAM, cooper

© This is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

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