Jensen, F.; Aoun, E.A.; Focke, O.; Krenz, A.; Tornow, C.; Schlag, M.; Lester, C.; Herrmann, A.; Mayer, B.; Sorg, M.;
et al. Investigation of the Causes of Premature Rain Erosion Evolution in Rotor Blade-like GFRP Structures by Means of CT, XRM, and Active Thermography. Appl. Sci. 2022, 12, 11307.
https://doi.org/10.3390/app122211307
AMA Style
Jensen F, Aoun EA, Focke O, Krenz A, Tornow C, Schlag M, Lester C, Herrmann A, Mayer B, Sorg M,
et al. Investigation of the Causes of Premature Rain Erosion Evolution in Rotor Blade-like GFRP Structures by Means of CT, XRM, and Active Thermography. Applied Sciences. 2022; 12(22):11307.
https://doi.org/10.3390/app122211307
Chicago/Turabian Style
Jensen, Friederike, Elie Abi Aoun, Oliver Focke, Andreas Krenz, Christian Tornow, Mareike Schlag, Catherine Lester, Axel Herrmann, Bernd Mayer, Michael Sorg,
and et al. 2022. "Investigation of the Causes of Premature Rain Erosion Evolution in Rotor Blade-like GFRP Structures by Means of CT, XRM, and Active Thermography" Applied Sciences 12, no. 22: 11307.
https://doi.org/10.3390/app122211307
APA Style
Jensen, F., Aoun, E. A., Focke, O., Krenz, A., Tornow, C., Schlag, M., Lester, C., Herrmann, A., Mayer, B., Sorg, M., & Fischer, A.
(2022). Investigation of the Causes of Premature Rain Erosion Evolution in Rotor Blade-like GFRP Structures by Means of CT, XRM, and Active Thermography. Applied Sciences, 12(22), 11307.
https://doi.org/10.3390/app122211307