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Residual strain analysis in polycrystalline aggregates using diffraction measurement and finite element modelling

Abstract:
This paper reviews some of the modelling and experimental techniques recently employed by the authors for the analysis of the macro- and mesoscopic behaviour of polycrystalline aggregates. A joined-up approach is used for assessing the deformation behaviour of polycrystalline materials at the macroscopic and grain levels, based on combining modelling using the crystal plasticity finite element (CPFE) method with experimental characterization by in situ loading and continuous lattice strain measurement by diffraction. The complementarity of the two methodologies is emphasized, as it helps to improve understanding of the physics underlying inelastic deformation, damage mechanisms, and fatigue crack initiation. The proposed approach is part of the attempt to develop a general framework that will enable reliable and accurate determination of the inhomogeneous fields of plastic strain, the regions of localized plasticity, and intergranular residual stresses. Examples are given of microscopically calibrated CPFE simulations being used to match the experimentally observed evolution of lattice stresses and strains in advanced structural alloys of industrial interest. © 2009 IMechE.
Publication status:
Published

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Publisher copy:
10.1243/03093247JSA442

Authors


More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Engineering Science
Role:
Author


Journal:
JOURNAL OF STRAIN ANALYSIS FOR ENGINEERING DESIGN More from this journal
Volume:
44
Issue:
1
Pages:
55-70
Publication date:
2009-01-01
DOI:
EISSN:
2041-3130
ISSN:
0309-3247


Language:
English
Keywords:
Pubs id:
pubs:63622
UUID:
uuid:4a255a83-a7e7-4584-b4bb-c1affbe1acc7
Local pid:
pubs:63622
Source identifiers:
63622
Deposit date:
2012-12-19

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