Preprint of the publication- A cylindrical sintering method for more realistic grain boundaries in nanocrystalline thin films.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-08-26
DOI
https://doi.org/10.5281/zenodo.22112767
Primary Topic
Microstructure and mechanical properties
Type
preprint
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preprint

Preprint of the publication- A cylindrical sintering method for more realistic grain boundaries in nanocrystalline thin films.

Lucia Bajtošová, Jan Fikar, Ankit Yadav, Miroslav Cieslar
Zenodo (CERN European Organization for Nuclear Research)
Microstructure and mechanical properties
preprint

Preprint of the publication- A cylindrical sintering method for more realistic grain boundaries in nanocrystalline thin films.

Lucia Bajtošová, Jan Fikar, Ankit Yadav, Miroslav Cieslar
preprint en

Abstract

This deposit contains the preprint of the manuscript: "A cylindrical sintering method for more realistic grain boundaries in nanocrystalline thin films" by Ankit Yadav, [co-authors], and Jan Fikar. Contents:- Complied preprint file (.pdf)The manuscript introduces the cylindrical sintering (CS) method for constructing nanocrystalline aluminum thin-film samples with realistic, disordered grain boundaries while retaining deterministic control over grain size, shape, and orientation. CS samples are benchmarked against sintered hexagonal Voronoi (HV) references under identical conditions using two interatomic potentials — the classical Pascuet15 MEAM potential and the tabGAP machine-learning potential — across grain sizes from 4.84 to 40.34 nm. The deposit accompanies the journal submission and provides full reproducibility of all figures and results reported in the manuscript.

Zenodo (CERN European Organization for Nuclear Research)
Charles University (CZ), Czech Academy of Sciences, Institute of Physics of Materials (CZ), Brno University of Technology (CZ)
Microstructure and mechanical properties
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