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Original Articles

Hardening of rhombohedral twinning in sapphire (α-Al2O3) by basal slip dislocations

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Pages 1419-1431 | Received 18 Jun 2001, Accepted 08 Nov 2001, Published online: 04 Aug 2009

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Read on this site (2)

A. Nakamura, K. Matsunaga, T. Yamamoto & Y. Ikuhara. (2006) Multiple dissociation of grain boundary dislocations in alumina ceramics. Philosophical Magazine 86:29-31, pages 4657-4666.
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J. Castaing, A. He , K. P. D. Lagerlöf & A. H. Heuer. (2004) Deformation of sapphire (α-Al2O3) by basal slip and basal twinning below 700°C. Philosophical Magazine 84:11, pages 1113-1125.
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Articles from other publishers (5)

Q. C. Liu & X. M. Zhou. (2018) Time-resolved light emission of a , c , and r -cut sapphires shock-compressed to 65 GPa . Journal of Applied Physics 123:13.
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Paul Raterron, Sébastien Merkel & Caleb W. HolyokeIIIIII. (2013) Axial temperature gradient and stress measurements in the deformation-DIA cell using alumina pistons. Review of Scientific Instruments 84:4.
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A. Yu. Kuksin & A. V. Yanilkin. (2012) Formation of twins in sapphire under shock wave loading: Atomistic simulations. Journal of Applied Physics 111:3.
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Sylvie Lartigue Korinek & Jacques Castaing. (2004) Slip and Twinning in Polycrystalline Alumina (α‐Al 2 O 3 ) Deformed under Hydrostatic Pressure between 600° and 1000°C . Journal of the American Ceramic Society 86:4, pages 566-573.
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A. Muñoz, D. Gómez Garcı́a, A. Domı́nguez-Rodrı́guez & F. Wakai. (2002) High temperature plastic anisotropy of Y2O3 partiallystabilized ZrO2 single crystals. Journal of the European Ceramic Society 22:14-15, pages 2609-2613.
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