Jauk, J.; Vašatko, H.; Gosch, L.; Ristoski, K.; Füssl, J.; Stavric, M.
Coextrusion of Clay-Based Composites: Using a Multi-Material Approach to Achieve Gradient Porosity in 3D-Printed Ceramics. Ceramics 2023, 6, 2243-2255.
https://doi.org/10.3390/ceramics6040136
AMA Style
Jauk J, Vašatko H, Gosch L, Ristoski K, Füssl J, Stavric M.
Coextrusion of Clay-Based Composites: Using a Multi-Material Approach to Achieve Gradient Porosity in 3D-Printed Ceramics. Ceramics. 2023; 6(4):2243-2255.
https://doi.org/10.3390/ceramics6040136
Chicago/Turabian Style
Jauk, Julian, Hana Vašatko, Lukas Gosch, Kristijan Ristoski, Josef Füssl, and Milena Stavric.
2023. "Coextrusion of Clay-Based Composites: Using a Multi-Material Approach to Achieve Gradient Porosity in 3D-Printed Ceramics" Ceramics 6, no. 4: 2243-2255.
https://doi.org/10.3390/ceramics6040136
APA Style
Jauk, J., Vašatko, H., Gosch, L., Ristoski, K., Füssl, J., & Stavric, M.
(2023). Coextrusion of Clay-Based Composites: Using a Multi-Material Approach to Achieve Gradient Porosity in 3D-Printed Ceramics. Ceramics, 6(4), 2243-2255.
https://doi.org/10.3390/ceramics6040136