Ivan Veselov, Georgiy Shakhgildyan
Glass-ceramics are inorganic, non-metallic materials obtained by controlled crystallization of glasses through different processing routes; they contain at least one functional crystalline phase together with a residual glass, and the crystallized fraction may range from trace levels to nearly complete crystallization. Transparent glass-ceramics (TGCs) constitute the optically transparent subset of this class and combine a controlled crystalline microstructure with a residual amorphous matrix. Their transparency distinguishes them from conventional opaque glass-ceramics and is achieved by minimizing light scattering through careful control of crystallite size, volume fraction, spatial distribution, and refractive-index mismatch between the crystalline and glassy phases. Unlike conventional sintered ceramics, TGCs retain many of the processing advantages of glass while incorporating crystalline phases that can enhance mechanical, thermal, optical, or functional properties. Depending on their composition and microstructure, TGCs may exhibit improved hardness, fracture toughness, thermal stability, chemical durability, luminescence, nonlinear optical response, or ion-exchange strengthening capability. These features make TGCs attractive for applications requiring both optical clarity and advanced performance, including protective cover glass, transparent armour, precision optical substrates, laser and photonic components, optical sensors, and multifunctional host materials for rare-earth ions and nanoparticles.
@article{a7c596bc-d636-4adb-be50-2e99ecbe049d,
title={Towards High-Strength Transparent Glass-Ceramics: Processing, Microstructure, and Applications},
author={Ivan Veselov and Georgiy Shakhgildyan},
year={2026},
language={English}
}TY - JOUR TI - Towards High-Strength Transparent Glass-Ceramics: Processing, Microstructure, and Applications AU - Ivan Veselov AU - Georgiy Shakhgildyan PY - 2026 LA - English ER -
Silvia Cecchel, Giovanna Cornacchia
The automotive industry is undergoing a rapid evolution to meet today’s challenges; therefore, continuous innovation and product development are neede
Zhenwei Xie, Liexing Zhou
Enhancing the strength and toughness of aluminum alloys using microstructure optimization remains a key challenge. In this study, an AA2024 aluminum a
Mihail Kolev
Metal matrix composites (MMCs) are engineered multiphase materials composed of a continuous metallic matrix that contains deliberately introduced rein
Peter Jurˇ ci, Ivo Dlouhý
Conventional heat treatment is not capable of converting a sufficient amount of retained austenite into martensite in high-carbon or high-carbon and h
Halina Krawiec, Janusz Lelito
The influence of heat treatment parameters such as the annealing time and austempering temperature on the microstructure, tribological properties and
Björn-Ivo Bachmann, Martin Müller
Current conventional methods of evaluating microstructures are characterized by a high degree of subjectivity and a lack of reproducibility. Modern ma