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Metallurgical Process Simulation and Optimization

Metallurgical Process Simulation and Optimization

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Metallurgy involves the art and science of extracting metals from their ores and modifying the metals for use. With thousands of years of development, many interdisciplinary technologies have been introduced into this traditional and large-scale industry. In modern metallurgical practices, modelling and simulation are widely used to provide solutions in the areas of design, control, optimization, and visualization, and are becoming increasingly significant in the progress of digital transformation and intelligent metallurgy. This Special Issue (SI), entitled “Metallurgical Process Simulation and Optimization”, has been organized as a platform to present the recent advances in the field of modelling and optimization of metallurgical processes, which covers the processes of electric/oxygen steel-making, secondary metallurgy, (continuous) casting, and processing. Eighteen articles have been included that concern various aspects of the topic.

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Keywords

  • Ag clusters
  • alumina inclusion
  • Al–Ag alloys
  • BFG
  • blast furnace
  • bloom quality consistency
  • C70S6
  • CaF2
  • Cerium
  • CO2 emission
  • collapsed ladle
  • continuous casting
  • continuous casting mold
  • cooling rate
  • correlation
  • cracking con-rod
  • cryogenic vessel steels
  • crystallization ratio
  • digital image correlation
  • dry vibrating material
  • duplex stainless steel
  • EDA—exploratory data analysis
  • electric arc furnace
  • electro-gas welding
  • electromagnetic stirring
  • Energy consumption
  • energy efficiency modelling
  • finite element analysis
  • first principles
  • flow behavior
  • flow field
  • fluid-particle flow
  • flux film
  • gas utilisation efficiency
  • heat source movement path
  • heat transfer
  • heatmap
  • high carbon steel
  • high heat input
  • high-temperature confocal microscope
  • History of engineering & technology
  • hot compression
  • hydrogen injection
  • Inclusion
  • inclusions
  • interfacial tension
  • Large eddy simulation
  • Lattice Boltzmann method
  • lime calcination
  • longitudinal crack
  • mass and energy balances
  • mathematical modeling
  • mathematical simulation
  • Mechanical properties
  • melts’ structure
  • Microstructure
  • molecular dynamics simulation
  • monovacancies
  • n/a
  • near-α titanium alloy
  • nucleation mechanism
  • Numerical Simulation
  • peritectic steels
  • PFR lime kiln
  • Phase-field Simulation
  • PMM
  • positron annihilation
  • process optimization
  • processing map
  • rare Earth metal oxides
  • SCM
  • shallow trapping
  • simulation
  • Stainless Steel
  • steelmaking
  • strain field
  • strain hardening exponents
  • strain rate sensitivity
  • Stress field
  • submerged entry nozzle
  • Sulfur
  • surfactant
  • Technology, engineering, agriculture
  • Technology: general issues
  • temperature
  • temperature field
  • thermal evolution
  • thermovision
  • TiH2-based powder metallurgy
  • transport properties
  • tundish
  • uniaxial tensile test
  • uniform index of solidified shell
  • viscosity
  • vortex structures
  • water modelling
  • wear resistance
  • ZrO2

Links

DOI: 10.3390/books978-3-0365-6431-9

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