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Light Weight Alloys

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There is growing interest in light metallic alloys for a wide number of applications owing to their processing efficiency, processability, long service life, and environmental sustainability. Aluminum, magnesium, and titanium alloys are addressed in this Special Issue, however, the predominant role played by aluminum. The collection of papers published here covers a wide range of topics that generally characterize the performance of the alloys after manufacturing by conventional and innovative processing routes.

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Keywords

  • 2024-T4 aluminum alloys
  • 7003 alloy
  • 7XXX Al alloy
  • activation energy
  • adhesion strength
  • aging treatment
  • Al alloy
  • Al-5Mg wire electrode
  • Al-Si-Cu alloys
  • Alloy
  • AlSi10Mg alloy
  • AlSi11Cu2(Fe)
  • AlSi12Cu1(Fe)
  • AlSi9Cu3(Fe)
  • aluminum alloy
  • Al–Si alloy
  • anode pulse-width
  • cold rolling
  • commercially pure titanium
  • compressive strength
  • consolidation
  • constitutive equations
  • cooling rate
  • Creep
  • dynamic recrystallization
  • fatigue behavior
  • fatigue properties
  • FEM simulation
  • FEP
  • fractography
  • hardening criteria
  • high pressure die casting
  • high temperature
  • History of engineering & technology
  • hot compression
  • hot deformation behavior
  • hot forging
  • hot rolling
  • hot workability
  • hot working
  • hydroforming
  • intermetallics
  • Iron
  • magnesium alloy
  • material property
  • mechanical alloying
  • Mechanical properties
  • microarc oxidation
  • microstructural changes
  • Microstructure
  • plastic strain
  • precipitation
  • processing map
  • processing temperature
  • quenching process
  • remanufacturing
  • residual stress
  • resistance spot welding
  • rotary-die equal-channel angular pressing
  • selective laser melting
  • sludge
  • solid solution hardening
  • spray deposited
  • springback
  • Technology, engineering, agriculture
  • Technology: general issues
  • tensile properties
  • tensile property
  • thermomechanical treatment
  • Ti6Al4V titanium alloy
  • titanium aluminides
  • ultra-fine grain
  • UNS A92024-T3
  • wear resistance
  • wire feedability
  • Zr

Links

DOI: 10.3390/books978-3-03928-920-2

Editions

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