Title of article :
Crystal plasticity modeling of slip activity in Ti–6Al–4V under high cycle fatigue loading
Author/Authors :
Florent Bridier، نويسنده , , David L. McDowell، نويسنده , , Patrick Villechaise، نويسنده , , José Mendez، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Abstract :
Deformation micromechanisms of a Ti–6Al–4V alloy under fatigue loading at room temperature are studied using a three-dimensional crystal plasticity constitutive model. The model employs a minimum set of fitting parameters based on experimental data for Ti–6Al–4V. Single slip is strongly favored through a softening law that affects mainly the driving force for slip on the first activated slip system. Cyclic deformation behavior at the macroscopic scale and at the local scale of grains is analyzed through the simulation of 20 cycles of fatigue on a polycrystalline structure of 900 randomly oriented grains. The progressive activation of slip (basal, prismatic, and pyramidal) is analyzed and compared to experimental observations.
Keywords :
B. Crystal plasticity , B. Polycrystalline material , C. Finite elements , A. Microstructures , B. Anisotropic material
Journal title :
International Journal of Plasticity
Journal title :
International Journal of Plasticity