A Design Method Based on 3D Printing for the Integration of Human Computer Dynamic Interaction and Digital Sculpture
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-9947-7_37
Reference11 articles.
1. Vavrik, D., Kumpova, I., Vopalensky, M., et al.: Mapping of XRF data onto the surface of a tomographically reconstructed historical sculpture. J. Instrum. 14(02), C02003–C02003 (2019)
2. Ota, T., Yoshida, K., Tase, T., et al.: Influence of 3D-printing conditions on physical properties of hydrogel objects. Mech. Eng. J. 5(1), 17-00538 (2018)
3. Belikovetsky, S., Solewicz, Y.A., Yampolskiy, M., et al.: Digital audio signature for 3D printing integrity. IEEE Trans. Inf. Forensics Secur. PP(5), 1127–1141 (2018)
4. Srinivasa, P., Abdul, K.N., Sujatha, G., et al.: 3D printing in dentistry. J. 3D Print. Med. 2(3), 89–91 (2018)
5. Lille, M., Nurmela, A., Nordlund, E., et al.: Applicability of protein and fiber-rich food materials in extrusion-based 3D printing. J. Food Eng. 220, 20–27 (2018)
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