DCAMM Seminar - Computational modelling of mesoscale dislocation patterning and plastic deformation of single crystals

A DCAMM seminar will be presented by

Professor Anter El-Azab,
School of Materials Engineering
Purdue University
West Lafayette, IN 47907, USA

Abstract:

A continuum dislocation dynamics model is presented that predicts the formation of dislocation cell structure in single crystals at low  strains. The model features a set of kinetic equations of the curl type that govern the space and time evolution of the dislocation density in the crystal. These kinetic equations are coupled to stress equilibrium and deformation kinematics using the eigenstrain approach. A  custom finite element method has been developed to solve the coupled system of equations of dislocation kinetics and crystal mechanics. The results show that, in general, dislocations self-organize in patterns under their mutual interactions. However, the famous dislocation  cell structure has been found to form only when cross slip is implemented in the model. Cross slip is also found to lower the yield point, increase the hardening rate, and sustain an increase in the dislocation density over the hardening regime. Analysis of the cell structure evolution reveals that the average cell size decreases with the applied stress, which is consistent with the similitude principle.

Danish pastry, coffee and tea will be served 15 minutes before the seminar starts.
  

All interested persons are invited

Time

Wed 09 Sep 15
14:00 - 15:00

Organizer

DCAMM

Where

Room 105, Building 404
Technical University of Denmark


https://www.dcamm.dk/kalender/arrangement?id=272235e6-1dc6-4389-9de6-f51fa30dfe76
13 DECEMBER 2024