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Tribological Behavior of Functional Surface: Models and Methods

Tribological Behavior of Functional Surface: Models and Methods

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Material loss due to wear and corrosion and high resistance to motion generate high costs. Therefore, minimizing friction and wear is a problem of great importance. This book is focused on the tribological behavior of functional surfaces. It contains information regarding the improvement of tribological properties of sliding elements via changes in surface topography. Tribological impacts of surface texturing depending on the creation of dimples on co-acting surfaces are also discussed. The effects of various coatings on the minimization of friction and wear and corrosion resistance are also studied. Friction can be also reduced by introducing a new oil.

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Keywords

  • abradable coating
  • Adhesion
  • amorphous coating
  • cam/tappet-contact
  • carbolized titanium
  • carbon-based coatings
  • composite coating
  • conformal contact
  • contact modeling
  • contacts
  • corrosion resistance
  • Cr/CrN
  • detonation gun spray
  • DLC-coating
  • Energy Efficiency
  • epoxy–PTFE
  • failure analysis
  • Friction
  • friction force
  • friction mechanisms
  • friction reduction
  • hardness
  • heat treatment
  • internal combustion engine
  • ionic liquid
  • laser cladding
  • laser surface texturing
  • low-temperature
  • lubricated sliding
  • lubrication
  • Microstructure
  • microtexturing
  • modified TiO2
  • n/a
  • phase
  • pin-on-disc
  • plasma electrolytic oxidation (PEO)
  • PVD
  • rotor/stator interactions
  • roughness
  • sliding friction
  • statistic approach
  • Structure
  • supersonic plasma spraying
  • surface
  • Surface chemistry
  • Surface modification
  • surface texturing
  • surface topography
  • Technology, engineering, agriculture
  • Technology: general issues
  • tetrahedral amorphous carbon
  • thermal effects
  • thermo-elastohydrodynamic lubrication
  • Ti-6Al-4V
  • tribocorrosion
  • tribological properties
  • turbomachinery
  • wear
  • wear mechanics
  • wear resistance

Links

DOI: 10.3390/books978-3-0365-1037-8

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