Advances in Low-carbon and Stainless Steels

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 microstructu...

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Bibliographic Details
Other Authors: Haghdadi, Nima (Editor), Somani, Mahesh (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2020
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DOAB: description of the publication
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520 |a 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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650 7 |a History of engineering & technology  |2 bicssc 
653 |a pitting 
653 |a sigma phase 
653 |a 2205 
653 |a duplex stainless steel 
653 |a austenitic stainless steel 
653 |a cold deformation 
653 |a microstructures 
653 |a mechanical properties 
653 |a austenite 
653 |a steel 
653 |a thermomechanical processing 
653 |a phase transformation 
653 |a nucleation 
653 |a ferrite 
653 |a CCT 
653 |a TTT 
653 |a incubation 
653 |a transformation start 
653 |a FAC 
653 |a LBE 
653 |a turbulent flow 
653 |a dissolution 
653 |a modelling 
653 |a low-carbon AHSS 
653 |a Q&amp 
653 |a P 
653 |a toughness 
653 |a precipitation 
653 |a martensite packet 
653 |a mechanical characterization 
653 |a martensitic transformations 
653 |a dynamic transformation 
653 |a Nb-microalloyed steel 
653 |a roughing passes 
653 |a hot forming 
653 |a multiphase steel 
653 |a quenching and partitioning 
653 |a austempering 
653 |a Gleeble simulation 
653 |a press hardening 
653 |a martensite 
653 |a quenching 
653 |a partitioning 
653 |a dilatometry 
653 |a EBSD-IQ 
653 |a fast heating rate 
653 |a formation of austenite 
653 |a initial microstructure 
653 |a PAGS 
653 |a transformation behavior 
653 |a tensile properties 
653 |a metastability 
653 |a LCF 
653 |a HCF 
653 |a VHCF 
653 |a ambient and elevated temperatures 
653 |a carbon steel 
653 |a rotationally accelerated shot peening 
653 |a nanocrystalline 
653 |a corrosion resistance 
653 |a transformation kinetics 
653 |a local equilibrium 
653 |a para equilibrium 
653 |a Cr-rich precipitate 
653 |a interphase boundary 
653 |a type 430 stainless steel 
653 |a HSLA steel 
653 |a alloy design 
653 |a grain refinement of austenite 
653 |a Zener pinning force 
653 |a recrystallization 
653 |a Niobium Nb 
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