Literature DB >> 21393662

Strain fields and line energies of dislocations in uranium dioxide.

David C Parfitt1, Clare L Bishop, Mark R Wenman, Robin W Grimes.   

Abstract

Computer simulations are used to investigate the stability of typical dislocations in uranium dioxide. We explain in detail the methods used to produce the dislocation configurations and calculate the line energy and Peierls barrier for pure edge and screw dislocations with the shortest Burgers vector ½⟨110⟩. The easiest slip system is found to be the {100}⟨110⟩ system for stoichiometric UO(2), in agreement with experimental observations. We also examine the different strain fields associated with these line defects and the close agreement between the strain field predicted by atomic scale models and the application of elastic theory. Molecular dynamics simulations are used to investigate the processes of slip that may occur for the three different edge dislocation geometries and nudged elastic band calculations are used to establish a value for the Peierls barrier, showing the possible utility of the method in investigating both thermodynamic average behaviour and dynamic processes such as creep and plastic deformation.

Entities:  

Year:  2010        PMID: 21393662     DOI: 10.1088/0953-8984/22/17/175004

Source DB:  PubMed          Journal:  J Phys Condens Matter        ISSN: 0953-8984            Impact factor:   2.333


  1 in total

1.  Dissociated vacancies and screw dislocations in MgO and UO2: atomistic modeling and linear elasticity analysis.

Authors:  Xiang-Yang Liu; Enrique Martinez; Blas P Uberuaga
Journal:  Sci Rep       Date:  2019-04-24       Impact factor: 4.379

  1 in total

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