Failure modes of silicon nitride cylinders have been investigated under uniaxial compression at 1200°C in air.Samples with different aspect ratios (h/d=5/2, 4/2, 2/2, and 1/2 mm/mm) have been tested. In all cases, the stress/straincurves evidence an initial linear portion followed by a peak and a slight softening, denoting a plastic behaviour. Surfaceexfoliation is the dominant failure mode, although traces of localized patterns of deformations--which initiated andpropagated macrocracks--can be found in some samples. A bifurcation analysis has been carried out in order to describethe onset of the specific failure mode. The first failure mode predicted by this approach is an antisymmetric mode,while symmetric modes almost immediately follow. However, antisymmetric modes may be partially hampered byfriction at the specimen/cushion contact, while symmetric modes could be triggered by residual stress. Therefore, aninterpretation of the observed failure mode is that the exfoliation mechanism may result as an evolution of a firstantisymmetric mode into a symmetric one and that localized deformations follow to produce final macrocracksgrowth.

Failure of silicon nitride under uniaxial compression at high temperature

Stefano Guicciardi o Guizzardi
2004

Abstract

Failure modes of silicon nitride cylinders have been investigated under uniaxial compression at 1200°C in air.Samples with different aspect ratios (h/d=5/2, 4/2, 2/2, and 1/2 mm/mm) have been tested. In all cases, the stress/straincurves evidence an initial linear portion followed by a peak and a slight softening, denoting a plastic behaviour. Surfaceexfoliation is the dominant failure mode, although traces of localized patterns of deformations--which initiated andpropagated macrocracks--can be found in some samples. A bifurcation analysis has been carried out in order to describethe onset of the specific failure mode. The first failure mode predicted by this approach is an antisymmetric mode,while symmetric modes almost immediately follow. However, antisymmetric modes may be partially hampered byfriction at the specimen/cushion contact, while symmetric modes could be triggered by residual stress. Therefore, aninterpretation of the observed failure mode is that the exfoliation mechanism may result as an evolution of a firstantisymmetric mode into a symmetric one and that localized deformations follow to produce final macrocracksgrowth.
2004
Istituto di Scienza, Tecnologia e Sostenibilità per lo Sviluppo dei Materiali Ceramici - ISSMC (ex ISTEC)
Structural ceramics; High temperature; Stress-strain relationship measurements; Plasticity; Bifurcation
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/145127
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