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Steels, Microstructure and Properties

TLDR
In this article, the authors studied the effects of alloying elements in iron-carbon alloys and the formation of martensite, bainite reaction and acicular ferrite reaction.
Abstract
Iron and its interstitial solid solutions * The strengthening of iron and its alloys * The iron-carbon equilibrium diagram and plain carbon steels * The effects of alloying elements in iron-carbon alloys * Formation of martensite * The bainite reaction * Acicular ferrite * The heat treatment of steels - hardenability * The tempering of martensite * Commercial Steels: New material to include Nanostructured Steels, Steels for the Energy and Automobile Industries * The embrittlement and fracture of steels * Stainless steel * Weld microstructures * Modelling of microstructure and properties *

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Thermally grown oxide films and corrosion performance of ferritic stainless steels under simulated exhaust gas condensate conditions

TL;DR: In this paper, five ferritic stainless steels are characterized in terms of thermally grown oxide films and corrosion performance under simulated exhaust gas condensate conditions, and the results may be exploited in the compositional optimization of the alloys for the cold-end components of automotive exhaust system.
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Austenite Formation from Martensite in a 13Cr6Ni2Mo Supermartensitic Stainless Steel

TL;DR: In this paper, the influence of austenitization treatment of a 13Cr6Ni2Mo supermartensitic stainless steel (X2CrNiMoV13-5-2) on austenite formation during reheating and on the fraction of Austenite retained after tempering treatment is measured and analyzed.
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Effect of grain size on the oxidation of Fe–13Cr–5Ni alloy at 973 K in Ar–21 vol%O2

TL;DR: In this paper, the effect of grain refinement from 370 to 34μm on oxidation of transition Fe−13Cr−5Ni alloy at 973 K in Ar−21vol%O2 was investigated.
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Nonadditive strengthening functions for cold-worked cubic metals: Experiments and constitutive modeling

TL;DR: In this paper, a nonadditive strengthening mixture rule for obstacles and dislocations was validated based on experimental and modeling analyses in numerous cold-worked steels and aluminum alloys.
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Corrosion resistance of 13wt.% Cr martensitic stainless steels: Additively manufactured CX versus wrought Ni-containing AISI 420

TL;DR: In this paper, the corrosion resistance of heat-treated additively manufactured (AM) precipitation hardening martensitic stainless steel (SS) CX and wrought components of AISI 420-SS with lower Ni content, were compared.