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Effect of the amount of additives and post-heat treatment on the microstructure and mechanical properties of yttrium-α-sialon ceramics

  • Feng Ye*
  • , Michael J. Hoffmann
  • , Stefan Holzer
  • , Yu Zhou
  • , Mikio Iwasa
  • *Corresponding author for this work
  • Harbin Institute of Technology
  • National Institute of Advanced Industrial Science and Technology
  • Karlsruhe Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

The yttrium-sialon ceramics with the composition of Y0.333Si10Al2ON15 and an excess addition of Y2O3 (2 or 5 wt%) were fabricated by hot isostatic press (HIP) sintering at 1800°C for 1 h. The resulting materials were subsequently heat-treated in the temperature range 1300-1900°C to investigate its effect on the α→β-sialon phase transformation, the morphology of α-sialon grains, and mechanical properties. The results show that α-sialons stabilized by yttrium have high thermal stability. An adjustment of the α-sialon phase composition is the dominating reaction in the investigated Y-α-sialon ceramics during low-temperature annealing. Incorporation of excess Y2O3 could effectively promote the formation of elongated α-sialon grains during post-heat-treating at relatively higher temperature (1700° and 1900°C) and hence resulted in a high fracture toughness (KIC = 6.3 MPa·m1/2) via grain debonding and pullout effects. Although the addition of 5 wt% Y2O3 could promote the growth of elongated α grains with a higher aspect ratio, the higher liquid-phase content increased the interfacial bonding strength and therefore hindered interface debonding and crack deflection. The heat treatment at 1500°C significantly changed the morphology of α-sialon grains from elongated to equiaxed and hence decreased its toughness.

Original languageEnglish
Pages (from-to)2136-2142
Number of pages7
JournalJournal of the American Ceramic Society
Volume86
Issue number12
DOIs
StatePublished - Dec 2003
Externally publishedYes

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