Publication | Closed Access
A technique for recording polycrystalline structure and orientation during in situ deformation cycles of rock analogues using an automated fabric analyser
47
Citations
17
References
2010
Year
Rock TestingEngineeringMechanical EngineeringStrain RateFabric AnalyserMechanics ModelingRock AnaloguesNatural IceDeformation ModelingSitu Deformation CyclesMaterials ScienceIce-water SystemStrain LocalizationCryosphereIce MechanicsMaterial MechanicsPlasticityDeformation ReconstructionMechanical DeformationMicrostructureCrystal C-axis OrientationsApplied PhysicsGeomechanicsIce-structure InteractionMechanics Of Materials
Two in situ plane-strain deformation experiments on norcamphor and natural ice using synchronous recording of crystal c-axis orientations have been performed with an automated fabric analyser and a newly developed sample press and deformation stage. Without interrupting the deformation experiment, c-axis orientations are determined for each pixel in a 5 × 5 mm sample area at a spatial resolution of 5 μm/pixel. In the case of norcamphor, changes in microstructures and associated crystallographic information, at a strain rate of ∼2 × 10(-5) s(-1), were recorded for the first time during a complete in situ deformation-cycle experiment that consisted of an annealing, deformation and post-deformation annealing path. In the case of natural ice, slower external strain rates (∼1 × 10(-6) s(-1)) enabled the investigation of small changes in the polycrystal aggregate's crystallography and microstructure for small amounts of strain. The technical setup and first results from the experiments are presented.
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