Roth, J.-P.; Å ulák, I.; GálÃková, M.; Duval, A.; Boissonnet, G.; Pedraza, F.; Krupp, U.; Jahns, K.
The Dispersion-Strengthening Effect of TiN Nanoparticles Evoked by Ex Situ Nitridation of Gas-Atomized, NiCu-Based Alloy 400 in Fluidized Bed Reactor for Laser Powder Bed Fusion. J. Manuf. Mater. Process. 2024, 8, 223.
https://doi.org/10.3390/jmmp8050223
AMA Style
Roth J-P, Å ulák I, GálÃková M, Duval A, Boissonnet G, Pedraza F, Krupp U, Jahns K.
The Dispersion-Strengthening Effect of TiN Nanoparticles Evoked by Ex Situ Nitridation of Gas-Atomized, NiCu-Based Alloy 400 in Fluidized Bed Reactor for Laser Powder Bed Fusion. Journal of Manufacturing and Materials Processing. 2024; 8(5):223.
https://doi.org/10.3390/jmmp8050223
Chicago/Turabian Style
Roth, Jan-Philipp, Ivo Å ulák, Markéta GálÃková, Antoine Duval, Germain Boissonnet, Fernando Pedraza, Ulrich Krupp, and Katrin Jahns.
2024. "The Dispersion-Strengthening Effect of TiN Nanoparticles Evoked by Ex Situ Nitridation of Gas-Atomized, NiCu-Based Alloy 400 in Fluidized Bed Reactor for Laser Powder Bed Fusion" Journal of Manufacturing and Materials Processing 8, no. 5: 223.
https://doi.org/10.3390/jmmp8050223
APA Style
Roth, J. -P., Å ulák, I., GálÃková, M., Duval, A., Boissonnet, G., Pedraza, F., Krupp, U., & Jahns, K.
(2024). The Dispersion-Strengthening Effect of TiN Nanoparticles Evoked by Ex Situ Nitridation of Gas-Atomized, NiCu-Based Alloy 400 in Fluidized Bed Reactor for Laser Powder Bed Fusion. Journal of Manufacturing and Materials Processing, 8(5), 223.
https://doi.org/10.3390/jmmp8050223