Chromium hardening and Peierls mechanism for basal slip in sapphire at temperatures between 900 and 1500 $^\circ$C

Fuente: arXiv
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Autori principali: Rodríguez, Miguel Castillo, Bernabé, Antonio Muñoz, Castaing, Jacques, Veyssière, Patrick, Rodríguez, Arturo Domínguez
Natura: Preprint
Pubblicazione: 2024
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author Rodríguez, Miguel Castillo
Bernabé, Antonio Muñoz
Castaing, Jacques
Veyssière, Patrick
Rodríguez, Arturo Domínguez
author_facet Rodríguez, Miguel Castillo
Bernabé, Antonio Muñoz
Castaing, Jacques
Veyssière, Patrick
Rodríguez, Arturo Domínguez
contents The plastic deformation of Cr3+ -doped a-Al2 O3 (ruby) with four distinct Cr concentrations has been studied at temperatures between 900 and 1500 $^\circ$C. The mechanical tests indicate that the processes of dislocation multiplication and the adjustments of the slip velocity of these dislocations to the imposed strain rate in undoped a-Al2 O3 are not significantly affected by the Cr concentra%on. The yield stress increment is approximately constant with temperature and the hardening increases with the Cr concentration. The critical resolved shear stress (CRSS) is fixed to a model based on dislocation glide controlled by the nucleation and propagation of kink pairs, modified to include the hardening due to Cr. Satisfactory fits are achieved with adjustable parameters close to those employed for undoped a-Al2 O3 .
format Preprint
id arxiv_https___arxiv_org_abs_2402_02443
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Chromium hardening and Peierls mechanism for basal slip in sapphire at temperatures between 900 and 1500 $^\circ$C
Rodríguez, Miguel Castillo
Bernabé, Antonio Muñoz
Castaing, Jacques
Veyssière, Patrick
Rodríguez, Arturo Domínguez
Materials Science
The plastic deformation of Cr3+ -doped a-Al2 O3 (ruby) with four distinct Cr concentrations has been studied at temperatures between 900 and 1500 $^\circ$C. The mechanical tests indicate that the processes of dislocation multiplication and the adjustments of the slip velocity of these dislocations to the imposed strain rate in undoped a-Al2 O3 are not significantly affected by the Cr concentra%on. The yield stress increment is approximately constant with temperature and the hardening increases with the Cr concentration. The critical resolved shear stress (CRSS) is fixed to a model based on dislocation glide controlled by the nucleation and propagation of kink pairs, modified to include the hardening due to Cr. Satisfactory fits are achieved with adjustable parameters close to those employed for undoped a-Al2 O3 .
title Chromium hardening and Peierls mechanism for basal slip in sapphire at temperatures between 900 and 1500 $^\circ$C
topic Materials Science
url https://arxiv.org/abs/2402.02443