Can Severe Plastic Deformation Tune Nanocrystallization in Fe-Based Metallic Glasses?

Publikationen: Beitrag in FachzeitschriftArtikelForschung(peer-reviewed)

Standard

Can Severe Plastic Deformation Tune Nanocrystallization in Fe-Based Metallic Glasses? / Antoni, Monika; Spieckermann, Florian; Plutta, Niklas et al.
in: Materials, Jahrgang 16.2023, Nr. 3, 1260, 01.02.2023.

Publikationen: Beitrag in FachzeitschriftArtikelForschung(peer-reviewed)

Vancouver

Antoni M, Spieckermann F, Plutta N, Gammer C, Kapp M, Ramasamy P et al. Can Severe Plastic Deformation Tune Nanocrystallization in Fe-Based Metallic Glasses? Materials. 2023 Feb 1;16.2023(3):1260. doi: 10.3390/ma16031260

Bibtex - Download

@article{55c14bbf7f84436aafddbd2e3defab6d,
title = "Can Severe Plastic Deformation Tune Nanocrystallization in Fe-Based Metallic Glasses?",
abstract = "The effects of severe plastic deformation (SPD) by means of high-pressure torsion (HPT) on the structural properties of the two iron-based metallic glasses Fe 73.9Cu 1Nb 3Si 15.5B 6.6 and Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 have been investigated and compared. While for Fe 73.9Cu 1Nb 3Si 15.5B 6.6, HPT processing allows us to extend the known consolidation and deformation ranges, HPT processing of Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 for the first time ever achieves consolidation and deformation with a minimum number of cracks. Using numerous analyses such as X-ray diffraction, dynamic mechanical analyses, and differential scanning calorimetry, as well as optical and transmission electron microscopy, clearly reveals that Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 exhibits HPT-induced crystallization phenomena, while Fe 73.9Cu 1Nb 3Si 15.5B 6.6 does not crystallize even at the highest HPT-deformation degrees applied. The reasons for these findings are discussed in terms of differences in the deformation energies expended, and the number and composition of the individual crystalline phases formed. The results appear promising for obtaining improved magnetic properties of glassy alloys without additional thermal treatment.",
author = "Monika Antoni and Florian Spieckermann and Niklas Plutta and Christoph Gammer and Marlene Kapp and Parthiban Ramasamy and Christian Polak and Reinhard Pippan and Zehetbauer, {Michael J.} and J{\"u}rgen Eckert",
note = "Publisher Copyright: {\textcopyright} 2023 by the authors.",
year = "2023",
month = feb,
day = "1",
doi = "10.3390/ma16031260",
language = "English",
volume = "16.2023",
journal = " Materials",
issn = "1996-1944",
publisher = "Multidisciplinary Digital Publishing Institute (MDPI)",
number = "3",

}

RIS (suitable for import to EndNote) - Download

TY - JOUR

T1 - Can Severe Plastic Deformation Tune Nanocrystallization in Fe-Based Metallic Glasses?

AU - Antoni, Monika

AU - Spieckermann, Florian

AU - Plutta, Niklas

AU - Gammer, Christoph

AU - Kapp, Marlene

AU - Ramasamy, Parthiban

AU - Polak, Christian

AU - Pippan, Reinhard

AU - Zehetbauer, Michael J.

AU - Eckert, Jürgen

N1 - Publisher Copyright: © 2023 by the authors.

PY - 2023/2/1

Y1 - 2023/2/1

N2 - The effects of severe plastic deformation (SPD) by means of high-pressure torsion (HPT) on the structural properties of the two iron-based metallic glasses Fe 73.9Cu 1Nb 3Si 15.5B 6.6 and Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 have been investigated and compared. While for Fe 73.9Cu 1Nb 3Si 15.5B 6.6, HPT processing allows us to extend the known consolidation and deformation ranges, HPT processing of Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 for the first time ever achieves consolidation and deformation with a minimum number of cracks. Using numerous analyses such as X-ray diffraction, dynamic mechanical analyses, and differential scanning calorimetry, as well as optical and transmission electron microscopy, clearly reveals that Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 exhibits HPT-induced crystallization phenomena, while Fe 73.9Cu 1Nb 3Si 15.5B 6.6 does not crystallize even at the highest HPT-deformation degrees applied. The reasons for these findings are discussed in terms of differences in the deformation energies expended, and the number and composition of the individual crystalline phases formed. The results appear promising for obtaining improved magnetic properties of glassy alloys without additional thermal treatment.

AB - The effects of severe plastic deformation (SPD) by means of high-pressure torsion (HPT) on the structural properties of the two iron-based metallic glasses Fe 73.9Cu 1Nb 3Si 15.5B 6.6 and Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 have been investigated and compared. While for Fe 73.9Cu 1Nb 3Si 15.5B 6.6, HPT processing allows us to extend the known consolidation and deformation ranges, HPT processing of Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 for the first time ever achieves consolidation and deformation with a minimum number of cracks. Using numerous analyses such as X-ray diffraction, dynamic mechanical analyses, and differential scanning calorimetry, as well as optical and transmission electron microscopy, clearly reveals that Fe 81.2Co 4Si 0.5B 9.5P 4Cu 0.8 exhibits HPT-induced crystallization phenomena, while Fe 73.9Cu 1Nb 3Si 15.5B 6.6 does not crystallize even at the highest HPT-deformation degrees applied. The reasons for these findings are discussed in terms of differences in the deformation energies expended, and the number and composition of the individual crystalline phases formed. The results appear promising for obtaining improved magnetic properties of glassy alloys without additional thermal treatment.

U2 - 10.3390/ma16031260

DO - 10.3390/ma16031260

M3 - Article

VL - 16.2023

JO - Materials

JF - Materials

SN - 1996-1944

IS - 3

M1 - 1260

ER -