Effect of temporary post-curing coatings on the surface roughness of binder-jet printed WC–Co parts
Author:
Funder
Pennsylvania Department of Community and Economic Development
Pennsylvania Manufacturing Innovation Program
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s40964-024-00719-5.pdf
Reference49 articles.
1. Oliver CJRG, Álvarez EA, García JL (2016) Kinetics of densification and grain growth in ultrafine WC–Co composites. Int J Refract Metals Hard Mater 59:121–131. https://doi.org/10.1016/j.ijrmhm.2016.05.016
2. Chen C, Huang B, Liu Z, Li Y, Zou D, Liu T, Chang Y, Chen L (2023) Additive manufacturing of WC–Co cemented carbides: Process, microstructure, and mechanical properties. Addit Manuf 63:103410. https://doi.org/10.1016/j.addma.2023.103410
3. Fortunato A, Valli G, Liverani E, Ascari A (2019) Additive manufacturing of WC–Co cutting tools for gear production. Lasers Manuf Mater Process 6:247–262. https://doi.org/10.1007/s40516-019-00092-0
4. Yang Y, Zhang C, Wang D, Nie L, Wellmann D, Tian Y (2020) Additive manufacturing of WC–Co hardmetals: a review. Int J Adv Manuf Technol 108:1653–1673. https://doi.org/10.1007/s00170-020-05389-5
5. Padmakumar M (2020) Additive manufacturing of tungsten carbide hardmetal parts by selective laser melting (SLM), selective laser sintering (SLS) and binder jet 3D printing (BJ3DP) techniques. Lasers Manuf Mater Process 7(3):338–371
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