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Casting and Solidification of Light Alloys

Casting and Solidification of Light Alloys

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Investigation of the effect of casting and crystallization on the structure and properties of the resulting light alloys and, in particular, research connected with detailed analysis of the microstructure of light alloys obtained using various external influences of ultrasonic, vibration, magnetic, and mechanical processing on the casting and crystallization are discussed. Research on the study of introduction of additives (modifiers, reinforcers, including nanosized ones, etc.) into the melt during the crystallization process, the technological properties of casting (fluidity, segregation, shrinkage, etc.), the structure and physicomechanical properties of light alloys are also included.

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Keywords

  • Adhesion
  • ageing
  • Al-Cu eutectics
  • Al-Cu metallomatrix composite
  • Al-Zn-Mg alloys
  • Al/SiC composite
  • alumina nanoparticles
  • Aluminum
  • aluminum alloy
  • Aluminum alloys
  • aluminum-zirconium wire alloys
  • Al–Mg–Si
  • CALPHAD
  • casting speed
  • Composite materials
  • copper alloys
  • dendritic spacing
  • differential scanning calorimetry
  • diffusion-controlled reactions
  • dissolution of Fe
  • Drawing
  • elastic limit
  • electrical conductivity
  • electromagnetic casting
  • eutectic
  • finite element analysis
  • friction stir processing
  • friction stir welding
  • grade 2 titanium alloy
  • gravity casting
  • hardening with reinforcing particles
  • History of engineering & technology
  • hybrid in situ surfaces
  • hydrides
  • hypereutectic aluminum alloys
  • in-situ friction stir process
  • intermetallic compounds
  • intermetallics
  • intermetallides
  • magnesium alloys
  • master alloy
  • Mechanical properties
  • metal transfer
  • Microstructure
  • n/a
  • Nanoparticles
  • Ohno continuous casting
  • phase composition
  • porosity in composites
  • precipitation hardening
  • rapid solidification
  • solidification
  • solution treatment
  • strength
  • Structure
  • structure formation
  • subsurface gradient structures
  • Surface modification
  • Technology, engineering, agriculture
  • Technology: general issues
  • TiAl system
  • Titanium alloys
  • titanium diboride
  • tool wear
  • welding tool
  • ZhS6U Ni-based superalloy
  • α-Al8(Fe2Mn)Si particles

Links

DOI: 10.3390/books978-3-03943-738-2

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