The flow-theory version of couple stress strain gradient plasticity is adopted for investigating the asymptotic fields near a steadily propagating crack-tip, under Mode III loading conditions. By incorporating a material characteristic length, typically of the order of few microns for ductile metals, the adopted constitutive model accounts for the microstructure of the material and can capture the strong size effects arising at small scales. The effects of microstructure result in a substantial increase in the singularities of the skew-symmetric stress and couple stress fields, which occurs also for a small hardening coefficient. The symmetric stress field turns out to be non-singular according to the asymptotic solution for the stationary crack problem in linear elastic couple stress materials. The performed asymptotic analysis can provide useful predictions about the increase of the traction level ahead of the crack-tip due to the sole contribution of the rotation gradient, which has been found relevant and non-negligible at the micron scale.

Mode III crack growth in linear hardening materials with strain gradient effects / Radi, Enrico; M., Gei. - In: INTERNATIONAL JOURNAL OF FRACTURE. - ISSN 0376-9429. - ELETTRONICO. - 130:(2004), pp. 765-785. [10.1007/s10704-004-2549-8]

Mode III crack growth in linear hardening materials with strain gradient effects

RADI, Enrico;
2004

Abstract

The flow-theory version of couple stress strain gradient plasticity is adopted for investigating the asymptotic fields near a steadily propagating crack-tip, under Mode III loading conditions. By incorporating a material characteristic length, typically of the order of few microns for ductile metals, the adopted constitutive model accounts for the microstructure of the material and can capture the strong size effects arising at small scales. The effects of microstructure result in a substantial increase in the singularities of the skew-symmetric stress and couple stress fields, which occurs also for a small hardening coefficient. The symmetric stress field turns out to be non-singular according to the asymptotic solution for the stationary crack problem in linear elastic couple stress materials. The performed asymptotic analysis can provide useful predictions about the increase of the traction level ahead of the crack-tip due to the sole contribution of the rotation gradient, which has been found relevant and non-negligible at the micron scale.
2004
130
765
785
Mode III crack growth in linear hardening materials with strain gradient effects / Radi, Enrico; M., Gei. - In: INTERNATIONAL JOURNAL OF FRACTURE. - ISSN 0376-9429. - ELETTRONICO. - 130:(2004), pp. 765-785. [10.1007/s10704-004-2549-8]
Radi, Enrico; M., Gei
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/303407
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