Features of Relaxation Parameters of Different Types of Quartz during Dynamic Nanoindentation

Abstract— This study examined various types of SiO2 crystals: single-crystal (α-SiO2), polycrystalline (p‑SiO2), and amorphous (glassy) (a-SiO2) ones so as to find out the influence of a structural form on changes in relaxation parameters during dynamic nanoindentation. For all studied samples, relaxation parameters were found to depend on the sample type and exhibit a consistent increase with increasing of indenter load. A detailed study of the relaxation parameters (he, he-p, and hres) allowed the authors to determine the mechanisms of plastic deformation of different quartz types during nanoindentation. Computer visualization of the surface topography around the indentations confirmed the involvement of the rotational-translational deformation mechanism of different types of SiO2 crystals in the formation of hardness indentations. It is shown that the rotational mechanism makes a greater contribution to quartz indentation in the low-load range (P = 10–50 mN), while the contribution of the translational mechanism increases with load increasing (P = 100–500 mN) and during the transition in the series α-SiO2 → p-SiO2 → a-SiO2.

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Publication Details

Journal
Surface Engineering and Applied Electrochemistry
Published
2026-09-11
DOI
https://doi.org/10.3103/s1068375526700249
Primary Topic
Metal and Thin Film Mechanics
Type
article
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Features of Relaxation Parameters of Different Types of Quartz during Dynamic Nanoindentation

Д. З. Грабко, K. M. Pyrtsak, O. A. Shikimaka
Surface Engineering and Applied Electrochemistry
Metal and Thin Film Mechanics
article

Features of Relaxation Parameters of Different Types of Quartz during Dynamic Nanoindentation

Д. З. Грабко, K. M. Pyrtsak, O. A. Shikimaka
article en

Abstract

Abstract— This study examined various types of SiO2 crystals: single-crystal (α-SiO2), polycrystalline (p‑SiO2), and amorphous (glassy) (a-SiO2) ones so as to find out the influence of a structural form on changes in relaxation parameters during dynamic nanoindentation. For all studied samples, relaxation parameters were found to depend on the sample type and exhibit a consistent increase with increasing of indenter load. A detailed study of the relaxation parameters (he, he-p, and hres) allowed the authors to determine the mechanisms of plastic deformation of different quartz types during nanoindentation. Computer visualization of the surface topography around the indentations confirmed the involvement of the rotational-translational deformation mechanism of different types of SiO2 crystals in the formation of hardness indentations. It is shown that the rotational mechanism makes a greater contribution to quartz indentation in the low-load range (P = 10–50 mN), while the contribution of the translational mechanism increases with load increasing (P = 100–500 mN) and during the transition in the series α-SiO2 → p-SiO2 → a-SiO2.

Surface Engineering and Applied ElectrochemistryVol. 62(3-6)
Moldova State University (MD), Institute of Applied Physics (MD)
Openalex Percentile: Top 19%
Metal and Thin Film Mechanics
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Features of Relaxation Parameters of Different Types of Quartz during Dynamic Nanoindentation — Д. З. Грабко, K. M. Pyrtsak, et al. · Surface Engineering and Applied Electrochemistry (2026) | TGRS Research Map | TGRS