Al₂O₃/ZrO₂/Y₃Al₅O12 Composites: A High-Temperature Mechanical Characterization

Materials (Basel). 2015 Feb 10;8(2):611-624. doi: 10.3390/ma8020611.

Abstract

An Al₂O₃/5 vol%·ZrO₂/5 vol%·Y₃Al₅O12 (YAG) tri-phase composite was manufactured by surface modification of an alumina powder with inorganic precursors of the second phases. The bulk materials were produced by die-pressing and pressureless sintering at 1500 °C, obtaining fully dense, homogenous samples, with ultra-fine ZrO₂ and YAG grains dispersed in a sub-micronic alumina matrix. The high temperature mechanical properties were investigated by four-point bending tests up to 1500 °C, and the grain size stability was assessed by observing the microstructural evolution of the samples heat treated up to 1700 °C. Dynamic indentation measures were performed on as-sintered and heat-treated Al₂O₃/ZrO₂/YAG samples in order to evaluate the micro-hardness and elastic modulus as a function of re-heating temperature. The high temperature bending tests highlighted a transition from brittle to plastic behavior comprised between 1350 and 1400 °C and a considerable flexural strength reduction at temperatures higher than 1400 °C; moreover, the microstructural investigations carried out on the re-heated samples showed a very limited grain growth up to 1650 °C.

Keywords: Al2O3/ZrO2/YAG; elaboration; high-temperature bending test; mechanical properties; microstructure; thermal stability.