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Advances in Low-carbon and Stainless Steels

Advances in Low-carbon and Stainless Steels

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This Special Issue of Metals was dedicated to recent advances in low-carbon and stainless steels. Although these types of steels are not new, they are still receiving considerable attention from both research and industry sectors due to their wide range of applications and their complex microstructure and behavior under different conditions. The microstructure of low-carbon and stainless steels resulting from solidification, phase transformation, and hot working is complex, which, in turn, affect their performance under different working conditions. A detailed understanding of the microstructure, properties, and performance for these steels has been the aim of steel scientists for a long time. This Issue received quality papers on different aspects of these steels including their solidification, thermomechanical processing, phase transformation, texture, etc., and their mechanical and corrosion behaviors.

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Keywords

  • 2205
  • alloy design
  • ambient and elevated temperatures
  • austempering
  • austenite
  • austenitic stainless steel
  • carbon steel
  • CCT
  • cold deformation
  • corrosion resistance
  • Cr-rich precipitate
  • dilatometry
  • dissolution
  • duplex stainless steel
  • dynamic transformation
  • EBSD-IQ
  • FAC
  • fast heating rate
  • ferrite
  • formation of austenite
  • Gleeble simulation
  • grain refinement of austenite
  • HCF
  • History of engineering & technology
  • hot forming
  • HSLA steel
  • incubation
  • initial microstructure
  • interphase boundary
  • LBE
  • LCF
  • local equilibrium
  • low-carbon AHSS
  • martensite
  • martensite packet
  • martensitic transformations
  • mechanical characterization
  • Mechanical properties
  • Metastability
  • microstructures
  • modelling
  • multiphase steel
  • nanocrystalline
  • Nb-microalloyed steel
  • Niobium Nb
  • Nucleation
  • P
  • PAGS
  • para equilibrium
  • partitioning
  • phase transformation
  • pitting
  • precipitation
  • press hardening
  • Q&amp
  • quenching
  • quenching and partitioning
  • recrystallization
  • rotationally accelerated shot peening
  • roughing passes
  • sigma phase
  • steel
  • Technology, engineering, agriculture
  • Technology: general issues
  • tensile properties
  • thermomechanical processing
  • toughness
  • transformation behavior
  • transformation kinetics
  • transformation start
  • TTT
  • turbulent flow
  • type 430 stainless steel
  • VHCF
  • Zener pinning force

Links

DOI: 10.3390/books978-3-03928-870-0

Editions

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