Grain boundary effects on cyclic deformation and fatigue damage
Author:
Publisher
Elsevier BV
Subject
General Materials Science
Reference170 articles.
1. The mechanism of plastic deformation of crystals. Part I.—Theoretical
2. Zur Kristallplastizit�t. III
3. �ber eine Art Gitterst�rung, die einen Kristall plastisch machen k�nnte
4. Exudation of Material from Slip Bands at the Surface of Fatigued Crystals of an Aluminium–Copper Alloy
5. Slip-band damage and extrusion
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