3Y-TZP materials have been prepared by cold isostatic pressing and sintering at different heating rate up to full density. Tetragonal - monoclinic phase transformation on the surface of the samples was induced by heat treatment in a powder pack of pure zirconia and up to 1400°C at different holding time. The transformation from tetragonal to monoclinic on the surface of sintered 3Y-TZP was induced as a consequence of the diffusion of yttria in the powder of pure zirconia. The transformation proceeded from the surface into the sample to different depth according to the_ different thermal treatments. In this way a functional graded surface containing compressive residual stresses was produced. Raman spectroscopy was used to determine the variation of the residual stress as a function of the depth of the transformation and of the amount of monoclinic phase.

Evaluation of Residual stresses on the Surface of 3Y-TZP Containing Monoclinic Phase

G de Portu;
2004

Abstract

3Y-TZP materials have been prepared by cold isostatic pressing and sintering at different heating rate up to full density. Tetragonal - monoclinic phase transformation on the surface of the samples was induced by heat treatment in a powder pack of pure zirconia and up to 1400°C at different holding time. The transformation from tetragonal to monoclinic on the surface of sintered 3Y-TZP was induced as a consequence of the diffusion of yttria in the powder of pure zirconia. The transformation proceeded from the surface into the sample to different depth according to the_ different thermal treatments. In this way a functional graded surface containing compressive residual stresses was produced. Raman spectroscopy was used to determine the variation of the residual stress as a function of the depth of the transformation and of the amount of monoclinic phase.
2004
Inglese
Massaki Naka and Toshimi Yamane
New Frontiers of Process Science and Engineering in Advanced Materials, PSEA'04, Part 2
International Conference on New Frontiers of Process Science and Engineering in Advanced Materials, PSEA '4, The 14th Iketani Conference,
338
343
6
24-26 November 2004
Kyoto, Japan
zirconia
phase transition
superficia
transformation mechanism
3
none
DE PORTU, Goffredo; Micele, L; Pezzotti, G
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/228103
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