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Metal Matrix Composites

Metal Matrix Composites

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Metal-based composites represent a unique way of tailoring the properties of metals, through the selection of type, size, and amount of reinforcement. In this way, the properties of metallic matrices can be adjusted depending on end applications. In view of the dynamic capabilities they can exhibit, this Special Issue will cover all aspects of metal matrix composites: synthesis (including solid, liquid, two-phase and 3D printing); secondary processing; properties (tensile, compressive, fatigue, impact, creep, tribological, etc.); corrosion behavior; and joining techniques. The main objective is to share the latest results on metal matrix composites with the research community worldwide.

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Keywords

  • 7075 Al alloy
  • Al-Zn-Cr alloys
  • Al11La3 phase
  • AlN
  • Aluminum
  • aluminum matrix composites
  • carbon nanotube
  • carbon nanotubes
  • cold/hot PM
  • composite
  • composite strengthening
  • compressibility factor
  • compression
  • compression properties
  • compressive properties
  • constitutive model
  • Copper
  • Corrosion
  • Cu@Ag composite nanoparticle
  • Cu–TiC
  • damping
  • deformation behavior
  • dispersion
  • dry sliding wear
  • elastoplastic properties
  • electrical resistance
  • extrusion
  • Fracture
  • fracture behavior
  • Graphene
  • Halpin-Tsai-Kardos model
  • hardness
  • high entropy alloy
  • high temperature
  • History of engineering & technology
  • ignition
  • in situ titanium composites
  • in-situ composites
  • interfacial adhesion
  • interfacial debonding
  • iron aluminum alloys
  • magnesium
  • magnesium alloy
  • magnesium alloy AM60
  • magnesium-alloy-based composite
  • magnesium-based composite
  • mechanical milling
  • Mechanical properties
  • metal matrix composites
  • metal matrix nanocomposite
  • metal matrix nanocomposite (MMNC)
  • metal mesh
  • Mg-3Al-0.4Ce alloy
  • Mg–Al–RE alloy
  • microstructural characterization
  • Microstructure
  • microstructure analysis
  • microstructures
  • n/a
  • nano ZnO particles
  • nano-sized SiCp
  • nanocomposite
  • Nanoparticles
  • nanosize reinforcement
  • Nickel
  • phase transformation
  • physicomechanical properties
  • powder metallurgy
  • reduced graphene oxide
  • screen printing
  • Sm2O3 nanoparticles
  • spark plasma sintering
  • strength
  • strengthening
  • strengthening mechanism
  • strengthening mechanisms
  • synthesis of core–shell metal nanoparticles
  • Technology, engineering, agriculture
  • Technology: general issues
  • tensile strength
  • thermal conductivity
  • thermal expansion coefficient
  • thixoforging
  • TiB precipitates
  • titanium matrix composite
  • touch screen panel
  • tricalcium phosphate
  • tungsten composites
  • tungsten-fibre-net reinforcement
  • ultrasonication
  • uniform distribution
  • wear resistance

Links

DOI: 10.3390/books978-3-03936-093-2

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