Characterization of biodegradable core–clad borosilicate glass fibers with round and rectangular cross-section
Beskrivning
Data set from Characterization of biodegradable core–clad borosilicate glass fibers with round and rectangular cross-section.
- Publication : Hongisto M., Ghanavati S., Lemière A., Haus G., Boraiah S., Cornet L., Poulon-Quintin A., Pagnoux D., Bernard D., Massera J., Petit L., Jubera V. and Danto S. Characterization of biodegradable core–clad borosilicate glass fibers with round and rectangular cross-section. Journal of the American Ceramic Society 2023 vol.106, n°11, p.6527-6540. HAL : Hal-04197166
Dataset production context :
Here, we report on core–clad bioactive borosilicate fibers, that we have prepared both with round and rectangular cross‐section profile. The exposed approach, which relies on the stacking and drawing of glass slabs, demonstrates our ability to develop bioactive‐based glass fibers with tailored cross‐section profiles. Tens‐of‐meters‐long fibers were successfully drawn, although suffering from elevated losses in the case of the rectangular ones. The response of the fibers in simulated body fluid was studied for both geometries. We found that a round cladding can act as protective layer, tempering effects of the corrosion. We also noticed that rectangular fibers are more prone to degradation, the enhanced corrosion beginning from their sharp corners as they accumulated residual tensile stress during drawing. To the best of our knowledge, this is the first report on the effect of residual tensile stresses from surface tension deformations applied to the corrosion of rectangular fibers. As geometry plays a critical role on the biodegradation behavior of the fiberglass, we believe the enclosed results could lead to the design of fiber devices with tailored cross‐section profile in order to tune their rate of degradation on solely based geometrical effects.
Files:
- ReadMe_20230707_V0 .txt
- DSCYbdopedB50glasses_20230707_V0.opj
Visa merPubliceringsår
2023
Typ av data
Upphovspersoner
Recherche Data Gouv - Utgivare
Arnaud Lemiere - Upphovsperson
Jonathan Massera - Upphovsperson
Laeticia Petit - Upphovsperson
Mikko Hongisto - Upphovsperson
Sonya Ghanavati - Upphovsperson
Unknown organization
Angeline Poulon-Quintin - Upphovsperson
Danto Sylvain - Upphovsperson
Dominique Bernard - Upphovsperson
Dominique Pagnoux - Upphovsperson
Gregory Hauss - Upphovsperson
Louis Cornet - Upphovsperson
Shashank Boraiah - Upphovsperson
Véronique Jubera - Upphovsperson
Stéphane TOULIN - Medarbetare
Projekt
Övriga uppgifter
Vetenskapsområden
Fysik; Kemi; Biomedicinska vetenskaper
Språk
engelska
Öppen tillgång
Öppet