Saurabh Kapoor
Aalborg University
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Featured researches published by Saurabh Kapoor.
Frontiers in Materials | 2017
Saurabh Kapoor; Lothar Wondraczek; Morten Mattrup Smedskjær
Densification of oxide glasses at the glass transition offers a novel route to develop bulk glasses with tailored properties for emerging applications. Such densification can be achieved in the technologically relevant pressure regime of up to ~ 1GPa. However, the present understanding of the composition–structure–property relationships governing these glasses is limited, with key questions, e.g., related to densification mechanism, remaining largely unanswered. Recent advances in structural characterization tools and high-pressure apparatuses have prompted new research efforts. Here, we review this recent progress and the insights gained in the understanding of the influence of isostatic compression at elevated temperature (so-called hot compression) on the composition–structure–property relationships of oxide glasses. We focus on compression at temperatures at or around the glass transition temperature (Tg), with relevant comparisons made to glasses prepared by pressure quenching and cold compression. We show that permanent densification at 1 GPa sets-in at temperatures above 0.7Tg and the degree of densification increases with increasing compression temperature and time, until attaining an approximately constant value for temperatures above Tg. For glasses compressed at the same temperature/pressure conditions, we demonstrate direct relations between the degree of volume densification and the pressure-induced change in micro-mechanical properties such as hardness, elastic moduli, and extent of the indentation size effect across a variety of glass families. Furthermore, we summarize the results on relaxation behavior of hot compressed glasses. All the pressure-induced changes in the structure and properties exhibit strong composition dependence. The experimental results highlight new opportunities for future investigation and identify research challenges that need to be overcome to advance the field.
Physical review applied | 2017
Saurabh Kapoor; Xiaoju Guo; Randall E. Youngman; Carrie L. Hogue; John C. Mauro; Sylwester J. Rzoska; Michal Bockowski; Lars Rosgaard Jensen; Morten Mattrup Smedskjær
Journal of Non-crystalline Solids | 2017
Saurabh Kapoor; Nadja Teresia Lönnroth; Randall E. Youngman; Sylwester J. Rzoska; Michal Bockowski; Lars Rosgaard Jensen; Morten Mattrup Smedskjær
Physical Review Materials | 2018
Saurabh Kapoor; Kacper Januchta; Randall E. Youngman; Xiaoju Guo; John C. Mauro; Mathieu Bauchy; Sylwester J. Rzoska; Michal Bockowski; Lars Rosgaard Jensen; Morten Mattrup Smedskjær
Physical Chemistry Chemical Physics | 2018
Hao Liu; Randall E. Youngman; Saurabh Kapoor; Lars Rosgaard Jensen; Morten Mattrup Smedskjær; Yuanzheng Yue
Journal of Non-crystalline Solids | 2018
Hugo R. Fernandes; Saurabh Kapoor; Yoami Patel; Kimberly Ngai; Kirill Levin; Yaroslav Germanov; Larisa Krishtopa; Scott Kroeker; Ashutosh Goel
2018 Glass and Optical Materials Division Annual Meeting | 2018
Anne Rebecca; Saurabh Kapoor; Kacper Januchta; Randall E. Youngman; Liping Huang; Morten Mattrup Smedskjær; Ashutosh Goel
7th International Workshop on Flow and Fracture of Advanced Glasses | 2017
Tobias Kjær Bechgaard; Kacper Januchta; Saurabh Kapoor; Morten Mattrup Smedskjær
2nd International Conference on Phosphate Materials | 2017
Morten Mattrup Smedskjær; Saurabh Kapoor; Randall E. Youngman
12th Pacific Rim Conference on Ceramic and Glass Technology | 2017
Morten Mattrup Smedskjær; Saurabh Kapoor; Xiaoju Guo; Randall E. Youngman; Carrie L. Hogue; John C. Mauro; Sylwester J. Rzoska; Michal Bockowski; Lars Rosgaard Jensen