Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8148348 | Journal of Crystal Growth | 2018 | 22 Pages |
Abstract
The mechanical properties and elastic moduli of wurtzite-structured nitrides (BN, AlN, GaN and InN) and AlGaN nitride alloy are evaluated by micro- and nano-indentation studies at room temperature (RT), and the physical processes are discussed. The hardness of BN, AlN, GaN and InN varies depending on the a-axis lattice constant a as an (nâ¯â¼â¯â6), whereas the Young's, shear and bulk moduli of the nitrides vary as an (nâ¯â¼â¯â5). The properties are governed by the atomic bonding. A homology of indentation hardness scaled using the shear modulus and the magnitude of the Burgers vector for the nitrides is observed. The yield strength and stress-intensity factor of the nitrides at RT are presumed. The alloy-hardening effect in AlGaN alloy is weak compared with that in InGaN alloy.
Keywords
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Condensed Matter Physics
Authors
I. Yonenaga, M. Deura, Y. Tokumoto, K. Kutsukake, Y. Ohno,