By Arief Suriadi Budiman
This short highlights the quest for pressure gradients and geometrically worthy dislocations as a potential resource of power for 2 instances of deformation of fabrics at small scales: nanoindented unmarried crystal copper and uniaxially compressed unmarried crystal submicron gold pillars.
When crystalline fabrics are robotically deformed in small volumes, larger stresses are wanted for plastic movement. This has been referred to as the "Smaller is enhanced" phenomenon and has been broadly saw. reports recommend that plasticity in a single case is certainly managed by way of the GNDs (strain gradient hardening), while within the different, plasticity isn't managed through pressure gradients or sub-structure hardening, yet really via dislocation resource hunger, in which smaller volumes are better simply because fewer resources of dislocations can be found (dislocation hunger hardening).
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Additional info for Probing Crystal Plasticity at the Nanoscales: Synchrotron X-ray Microdiffraction (SpringerBriefs in Applied Sciences and Technology)
Probing Crystal Plasticity at the Nanoscales: Synchrotron X-ray Microdiffraction (SpringerBriefs in Applied Sciences and Technology) by Arief Suriadi Budiman