Shear bands and fracture of imperfect Fe+3% Si polycrystals

Citation
Ve. Panin et al., Shear bands and fracture of imperfect Fe+3% Si polycrystals, INT J FRACT, 107(1), 2001, pp. 1-10
Citations number
18
Categorie Soggetti
Mechanical Engineering
Journal title
INTERNATIONAL JOURNAL OF FRACTURE
ISSN journal
03769429 → ACNP
Volume
107
Issue
1
Year of publication
2001
Pages
1 - 10
Database
ISI
SICI code
0376-9429(200101)107:1<1:SBAFOI>2.0.ZU;2-Y
Abstract
Experimental data on sheer macrobands and fracture of flat specimens of Fe3%Si alloy having only a few grains in a cross-section are analyzed. Four t ypes of band structures that determine the stress-strain curves involving d ifferent loading behavior and ductility of the alloy are singled out. The l owest plasticity and strength are exhibited when a singular shear macroband is formed on the front face of a specimen at an angle of 45 degrees to the axis of tension (epsilon (p) = 3-4%). Formation of a dipole out of two int ersecting macrobands on the lateral surface of a specimen increases plastic ity (epsilon (p) = 6-7%). Accommodation bands between the macrobands of the dipole increase the plasticity even more (epsilon (p) = 9-11%). It is the highest (epsilon (p) = 19-21%) when the flat grains filling up all of the s pecimen's cross-section are contained between smaller-sized grains. Ductile fracture of such a specimen is governed by coupling of the conjugate macro bands that interact via a mechanism of auto-oscillations.