Baranowski, M.; Shao, Z.; Spintzyk, A.; Kößler, F.; Fleischer, J.
Simulation-Based Identification of Operating Point Range for a Novel Laser-Sintering Machine for Additive Manufacturing of Continuous Carbon-Fibre-Reinforced Polymer Parts. Polymers 2023, 15, 3975.
https://doi.org/10.3390/polym15193975
AMA Style
Baranowski M, Shao Z, Spintzyk A, Kößler F, Fleischer J.
Simulation-Based Identification of Operating Point Range for a Novel Laser-Sintering Machine for Additive Manufacturing of Continuous Carbon-Fibre-Reinforced Polymer Parts. Polymers. 2023; 15(19):3975.
https://doi.org/10.3390/polym15193975
Chicago/Turabian Style
Baranowski, Michael, Zijin Shao, Alexander Spintzyk, Florian Kößler, and Jürgen Fleischer.
2023. "Simulation-Based Identification of Operating Point Range for a Novel Laser-Sintering Machine for Additive Manufacturing of Continuous Carbon-Fibre-Reinforced Polymer Parts" Polymers 15, no. 19: 3975.
https://doi.org/10.3390/polym15193975
APA Style
Baranowski, M., Shao, Z., Spintzyk, A., Kößler, F., & Fleischer, J.
(2023). Simulation-Based Identification of Operating Point Range for a Novel Laser-Sintering Machine for Additive Manufacturing of Continuous Carbon-Fibre-Reinforced Polymer Parts. Polymers, 15(19), 3975.
https://doi.org/10.3390/polym15193975