Literatur vom gleichen Autor/der gleichen Autor*in
plus bei Google Scholar

Bibliografische Daten exportieren
 

Intralaboratory calibration of the DSC shift-factor approach for melt viscosity determination : A case study on lead metasilicate glass

Titelangaben

Di Genova, Danilo ; Giuliani, Gabriele ; Abeykoon, Sumith ; Dadwal, Kajal ; Sharma, Suruchi ; Khanna, Atul ; Zandonà, Alessio ; Bondar, Dmitry ; Meyer, Stefanie ; Calabrò, Laura ; Dominijanni, Serena ; Deubener, Joachim:
Intralaboratory calibration of the DSC shift-factor approach for melt viscosity determination : A case study on lead metasilicate glass.
In: Journal of Non-Crystalline Solids. Bd. 666 (2025) . - 123709.
ISSN 0022-3093
DOI: https://doi.org/10.1016/j.jnoncrysol.2025.123709

Volltext

Link zum Volltext (externe URL): Volltext

Angaben zu Projekten

Projekttitel:
Offizieller Projekttitel
Projekt-ID
Rheologie nanopartikelhaltiger technischer und natürlicher Silicatschmelzen
450607215

Projektfinanzierung: Deutsche Forschungsgemeinschaft

Abstract

The differential scanning calorimetry (DSC) shift-factor approach provides a powerful tool for determining the shear viscosity of glass-forming melts across several orders of magnitude. Its accuracy, however, depends on the proper determination of the shift factor (K) – a process of establishing K by linking DSC data to viscometry, herein termed 'intralaboratory calibration' – which then connects the fictive temperature to viscosity. In this study, we determine K for lead metasilicate (PbSiO3) glass by integrating conventional DSC, flash DSC, and ball penetration viscometry measurements on samples obtained from the same batch. Raman spectroscopy was employed to verify sample integrity before and after measurements.
Our results confirm the applicability of the DSC shift-factor approach, yielding shift factors of Konset = 10.92 ± 0.04, Kpeak = 9.41 ± 0.08, and Kendset = 8.71 ± 0.07. These findings underscore the importance of intralaboratory calibration in refining the DSC-based method for accurate viscosity determination in glass-forming systems.

Weitere Angaben

Publikationsform: Artikel in einer Zeitschrift
Begutachteter Beitrag: Ja
Keywords: Glass; Glass transition; Viscosity; DSC; Raman spectroscopy
Institutionen der Universität: Forschungseinrichtungen > Zentrale wissenschaftliche Einrichtungen > Bayerisches Forschungsinstitut für Experimentelle Geochemie und Geophysik - BGI
Titel an der UBT entstanden: Ja
Themengebiete aus DDC: 500 Naturwissenschaften und Mathematik > 550 Geowissenschaften, Geologie
Eingestellt am: 01 Jun 2026 06:50
Letzte Änderung: 01 Jun 2026 06:50
URI: https://eref.uni-bayreuth.de/id/eprint/97768