Lattice strain evolution during uniaxial tension of an engineering steel
In our research program the overall goal is to explore residual stress effects on fracture of engineering steels at high temperatures. Towards this goal, we need to understand the evolution of stress/stain at the crystal/grain level and the damage accumulated near grain boundaries in polycrystals. Therefore a crystal-plasticity micromechanics model has been developed. To quantify the grain-orientation-dependent lattice strain evolution and the residual lattice strains after prestraining at room temperature, uniaxial measurements with in-situ neutron diffraction (ND) analysis for lattice strain evolution are proposed for a 316H stainless steel specimen at room temperature.
- 316H
- 920366
- Davies
- ENGINX
- Lattice
- Li
- O Dowd
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- during
- engineering
- evolution
- specimen
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- stainless
- steel
- strain
- tensile
- tension
- uniaxial
- xscan x 201 780
- xscan x 202 494
- yscan y 231 590
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- yscan y 246 923
- yscan y 247 590
Provenance | |
---|---|
Creator | Dr Catrin Davies; Dr Dongfeng Li; Professor Noel O'Dowd |
Publisher | ISIS Neutron and Muon Source |
Publication Year | 2012 |
Rights | CC-BY Attribution 4.0 International; https://creativecommons.org/licenses/by/4.0/ |
OpenAccess | true |
Contact | isisdata(at)stfc.ac.uk |
Representation | |
---|---|
Resource Type | Dataset |
Discipline | Construction Engineering and Architecture; Engineering; Engineering Sciences |
Temporal Coverage Begin | 2009-09-21T07:50:26Z |
Temporal Coverage End | 2009-09-23T10:57:08Z |