Publication | Open Access
Nanoindentation: Toward the sensing of atomic interactions
73
Citations
30
References
2002
Year
EngineeringMicromechanicsMechanical EngineeringSoft MatterNanotribologyAtomic InteractionsEquivalent Spring ConstantAtomic Force MicroscopeNanometrologyNanomechanicsNanolithography MethodMaterials ScienceMechanical BehaviorNanotechnologySolid MechanicsMechanical PropertiesNanomaterialsSurface ScienceApplied PhysicsMaterial ModelingLayered MaterialsMechanics Of Materials
The mechanical properties of surfaces of layered materials (highly oriented pyrolytic graphite, InSe, and GaSe) and single-crystal ionic materials (NaCl, KBr, and KCl) have been investigated at the nanometer scale by using nanoindentations produced with an atomic force microscope with ultrasharp tips. Special attention has been devoted to the elastic response of the materials before the onset of plastic yield. A new model based on an equivalent spring constant that takes into account the changes in in-plane interactions on nanoindentation is proposed. The results of this model are well correlated with those obtained by using the Debye model of solid vibrations.
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