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- W2043702980 abstract "The pop-in behavior and mechanical properties of sapphire crystal vertically indented to its rhombohedral R (102) plane were investigated by nanoindentation using a Berkovich indenter. Effect of loading rate on pop-in load and pop-in extension width was observed within the indentation depth of h < 120 nm. The indentation size effect (ISE) of hardness within an indentation depth of 60 nm was systematically analyzed using Nix-Gao and Al-Rub models. Our experiments provided the consistent evaluations of hardness (H = 27.5 GPa), true hardness (Htrue = 68.9 GPa) at the non-ISE region and effective indentation modulus (M = 423 GPa) for the contact depth of hc > 20 nm. Using the Hertzian contact theory, Schmid's law, and energy principle of indentation, the possible dominant slip system, which mainly contributed to the first pop-in event when indented normal to the (102) plane, was estimated as {101} <20>. The distributions of corresponding resolved shear stress and principal stresses at the slip plane were also estimated." @default.
- W2043702980 created "2016-06-24" @default.
- W2043702980 creator A5029671024 @default.
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- W2043702980 date "2012-09-07" @default.
- W2043702980 modified "2023-10-17" @default.
- W2043702980 title "Nanoindentation Study of Pop-in Phenomenon Characteristics and Mechanical Properties of Sapphire (101¯2) Crystal" @default.
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- W2043702980 doi "https://doi.org/10.1111/j.1551-2916.2012.05405.x" @default.
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