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Mechanical Properties of Advanced Multifunctional Coatings

Mechanical Properties of Advanced Multifunctional Coatings

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Advanced multifunctional coatings have made great unexpected advances in synthesis, characterization and properties, and they are also used in a variety of different fields. The mechanical properties of multifunctional coatings play a vital role in their interaction with external forces and environmental factors. Therefore, it is necessary to fully study the mechanical properties of advanced multifunctional coatings. After the launch of the Special Issue, thirteen papers have been collected and published. These original research articles cover not only the relevant research of advanced multifunctional coatings but also the interesting mechanical behaviour of surfaces and interfaces. We feel that the Special Issue provides a forum to share current research results and to promote further research into the mechanical behaviour of advanced multifunctional coatings.

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Keywords

  • addendum
  • adsorption
  • anti-reflection
  • atomic layer deposition
  • barycenter method
  • ceramic matrix composite
  • CFD simulation
  • complex network theory
  • Cr3+ photoluminescence piezospectroscopy
  • damage
  • data processing method
  • dedendum
  • diamond-like carbon (DLC)
  • distribution of degree
  • dovetail groove
  • explosive compression bonding
  • fiber–matrix interface coatings
  • filling behavior
  • fitting function
  • gear surface fatigue
  • geometric distribution
  • hardness
  • high temperature strength
  • History of engineering & technology
  • hot casting metals
  • Interference
  • load-penetration curve
  • Lorentzian functions
  • lubrication
  • magnetron sputtering
  • Materials science
  • Mechanical engineering & materials
  • mechanics analysis
  • metallographic analysis
  • micropitting
  • Molecular Dynamics
  • Monte Carlo simulation
  • moth-eye nanostructure
  • n/a
  • nanoengineering
  • nanoindentation
  • nanolaminates
  • nanotribology
  • Network Topology
  • optical
  • phase transition
  • plasma emission intensity
  • pore network model
  • residual stress
  • sandstone
  • scratch
  • seepage
  • SiC fiber
  • SiO2 thin film
  • spectromechanics
  • stress optic coefficient
  • structure of engineering coatings
  • surface morphology
  • Technology, engineering, agriculture
  • Technology: general issues
  • terahertz time-domain spectroscopy (THz-TDS)
  • thermal barrier coating
  • thermal barrier coatings
  • thermal oxidation stress
  • tribological performance
  • ultraviolet nanoimprint lithography

Links

DOI: 10.3390/books978-3-0365-6671-9

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