Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10620621 | Acta Materialia | 2011 | 9 Pages |
Abstract
A systematic study of the mechanical deformation and failure of transparent ceramic aluminum oxynitride (AlON) has been conducted using a depth-sensitive nanoindentation technique combined with transmission electron microscopy (TEM) and Raman spectroscopy. Although discrete displacement bursts appear in the load-depth profiles at high applied forces, a detectable high-pressure phase transition has not been found by means of micro-Raman spectroscopy and TEM. Instead, a high density of dissociated ã1Â 1Â 0ã dislocations can be observed underneath the nanoindenters, suggesting that extensive plastic deformation takes place in the brittle ceramic at high contact pressures. Moreover, nanoindentation-induced micro-cracks oriented along well-defined crystallographic planes can also be observed, consistent with the low fracture toughness of AlON evaluated by an indentation method using Laugier's equation.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
J.J. Guo, K. Wang, T. Fujita, J.W. McCauley, J.P. Singh, M.W. Chen,