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Advances in Micro- and Nanomechanics
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This book focuses on recent advances in both theoretical and experimental studies of material behaviour at the micro- and nano-scales. Special attention is given to experimental studies of nanofilms, nanoparticles and nanocomposites as well as tooth defects. Various experimental techniques were used. Magneto- and thermoelastic coupling were considered, as were nonlocal models of thin structures.
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Keywords
- AFM
- AlCrN
- atomic force microscopy
- bilayer cantilever
- Brinell hardness
- buckling
- caries
- Chromium
- chromium disilicide
- critical temperatures
- CrON
- cysteine
- deflections
- dentine
- elastic modulus
- elastic substrate media
- electrodeposition
- enamel
- flexomagnetic
- friction coefficient
- Galerkin method
- hardness
- History of engineering & technology
- large deflection
- magnetron sputtering
- microparticles
- Microstructure
- n/a
- nanobar
- nanobeam
- nanoindentation
- nanostructured coatings
- Newton–Raphson method
- Nickel
- nickel oxide
- NiO/C nanocomposite
- non-isothermal decomposition
- NSGT
- particle embedment
- particle fracture
- pulsed laser melting in liquid
- Raman spectrum analysis
- rapid thermal treatment
- residual stresses
- roughness
- semi-analytical solution
- silicon substrate
- smart nano-plates
- spherical submicrometer particles
- supercapacitor
- surface-energy effect
- tantalum
- Technology, engineering, agriculture
- Technology: general issues
- Thermal stability
- thermodynamics-based strain gradient
- Thin films
- titanium carbide
- topography
- vibrations
- virtual force principle
- X-ray microtomography
- Young’s modulus