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A numerical simulation of the <i>R</i>-curve behavior in microcracking materials

Journal of Applied PhysicsPublished 1 July 1991
Michael Murat, R. Englman, Z. Jaeger
Citations19
SJR quartileQ2
SJR score0.58
SNIP0.98

Abstract

We propose several models for crack propagation in ceramic materials with microcrack formation and coalescence. The models differ in the relative time scales involved in the internal relaxation processes and the external loading rate. We find that when the external loading rate is very high, a rising R-curve is obtained. For slow external loading, the results depend upon the relative rate of the different internal relaxation processes and upon the distribution of the critical stresses needed to form the microcracks. In this regime, the existence of a rising R-curve behavior is found to be primarily due to microcrack shielding.

Keywords

Materials ScienceEngineering