Kopycinska-Müller, M.; Schreiber, L.; Schwarzer-Fischer, E.; Günther, A.; Phillips, C.; Moritz, T.; Opitz, J.; Choi, Y.-J.; Yun, H.-s.
Signal-Decay Based Approach for Visualization of Buried Defects in 3-D Printed Ceramic Components Imaged with Help of Optical Coherence Tomography. Materials 2023, 16, 3607.
https://doi.org/10.3390/ma16103607
AMA Style
Kopycinska-Müller M, Schreiber L, Schwarzer-Fischer E, Günther A, Phillips C, Moritz T, Opitz J, Choi Y-J, Yun H-s.
Signal-Decay Based Approach for Visualization of Buried Defects in 3-D Printed Ceramic Components Imaged with Help of Optical Coherence Tomography. Materials. 2023; 16(10):3607.
https://doi.org/10.3390/ma16103607
Chicago/Turabian Style
Kopycinska-Müller, Malgorzata, Luise Schreiber, Eric Schwarzer-Fischer, Anne Günther, Conner Phillips, Tassilo Moritz, Jörg Opitz, Yeong-Jin Choi, and Hui-suk Yun.
2023. "Signal-Decay Based Approach for Visualization of Buried Defects in 3-D Printed Ceramic Components Imaged with Help of Optical Coherence Tomography" Materials 16, no. 10: 3607.
https://doi.org/10.3390/ma16103607
APA Style
Kopycinska-Müller, M., Schreiber, L., Schwarzer-Fischer, E., Günther, A., Phillips, C., Moritz, T., Opitz, J., Choi, Y.-J., & Yun, H.-s.
(2023). Signal-Decay Based Approach for Visualization of Buried Defects in 3-D Printed Ceramic Components Imaged with Help of Optical Coherence Tomography. Materials, 16(10), 3607.
https://doi.org/10.3390/ma16103607