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Defects formed within hardness indenter interaction zone in Al2O3–ZrO2 composite
Authors:M. SZUTKOWSKA,&   J. MORGIEL&dagger  
Affiliation:Institute of Advanced Manufacturing Technology, 30-011 Kraków, Wrocławska 37a, Poland; Institute of Metallurgy and Materials Science, Polish Academy of Sciences, 30-059 Kraków, Reymonta 25, Poland
Abstract:The Al2O3?10 wt% ZrO2 composites were subjected to hardness tests using a Vickers diamond indenter up to 98.1 N. The microstructure observation using a transmission electron microscopy technique helped to identify up to four zones differing in defect level and character. The densest dislocation tangles, twins accumulation and frequent presence of three slip systems were found in regions that were in contact with the sides of the diamond pyramid. The second zone, characterized by two, or at least one, active slip systems, started at the bottom of the indentation mark and extended up to a distance comparable with the depth of indentation. In the third zone, with a thickness comparable to that above, only some α‐Al2O3 crystallites showed the presence of dislocations, whereas other crystallites were defect free. In the last zone the alumina crystals were left unaffected but the ZrO2 crystallites showed twinning characteristic of strain‐induced transformation.
Keywords:Al2O3–ZrO2 composites    crack propagation    transmission electron microscopy
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