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Materials, Design and Process Development for Additive Manufacturing

Materials, Design and Process Development for Additive Manufacturing

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Additive manufacturing is already actively used in various high-tech industries today. At the same time, there is a certain limitation and imperfection of known and widely used conventional materials when they are used in additive manufacturing. In this regard, extensive research and development are aimed at the advancements of new materials by adjusting the chemical compositions of conventional alloys, new equipment with expanded functionality and the ability to work with a wide range of materials that were previously not available for additive manufacturing. This Special Issue covers a wide scope of additive manufacturing processes, comprising investigation, characterization of materials and their properties, development and application of new materials, structures designed for additive manufacturing, as well as processes and techniques that will expand the potential applications of layer-by-layer synthesis.

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Keywords

  • additive manufacturing
  • Additive Manufacturing (AM)
  • Alloys
  • annealing
  • barium titanate
  • binder jetting
  • Chemical engineering
  • cobalt
  • corrosion resistant steel
  • DC thermal plasma
  • direct energy deposition
  • direct laser deposition
  • direct laser deposition (DLD)
  • direct metal deposition
  • elevated temperatures
  • FeSiB
  • graded materials
  • granulation
  • heat transfer
  • heat treatment (HT)
  • Hydrodynamics
  • Industrial Chemistry
  • Industrial chemistry & manufacturing technologies
  • lead-free piezoceramic
  • Magnetic properties
  • maraging steel
  • mass transfer
  • mechanical alloying
  • mechanical characteristics
  • Mechanical properties
  • Microstructure
  • multimaterial 3D printing
  • n/a
  • nanopowder
  • nitinol
  • phase composition
  • piezoelectric properties
  • porosity
  • powder bed fusion
  • pure tungsten
  • pyrolysis
  • selective electron beam melting (SEBM)
  • selective laser melting
  • silicon carbide
  • simulation of the melt pool
  • sintering
  • soft-magnetic alloy
  • spheroidization
  • spray drying
  • stress relaxation
  • Synthesis
  • Technology, engineering, agriculture
  • Technology: general issues
  • tensile properties
  • thermal history
  • Ti-6Al-4V
  • titanium alloy
  • Titanium alloys
  • tungsten carbides

Links

DOI: 10.3390/books978-3-0365-4928-6

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