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Martensite twinning in quenched steel

Scripta Metallurgica, 1989
Etude par diffraction RX de la sousstructure maclee de la martensite avec un fort degre de tetragonalite du reseau dans des monocristaux d'acier au nickel.
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Nitride-Strengthened Ferritic/Martensitic Steel

2013
Nitride-strengthened reduced activation ferritic/martensitic (RAFM) steel is anticipated to have higher creep strength because of the remarkable thermal stability of nitrides. Such steels with different manganese contents are designed based on the chemical composition of Eurofer 97 steel but the carbon content is reduced to an extremely low level.
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Nitrogen in martensitic stainless steels

Journal of Materials Processing Technology, 1995
The influence of nitrogen on austenite grain growth, chromium content in carbides and corrosion resistance have been studied in chromium steels and alloys containing of about 13% Cr. The results shows that the inhibiting effect of nitrogen on austenite grain growth is observed in steels and alloys saturated in nitrogen by several methods.
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The martensite transformation in stainless steel

Acta Metallurgica, 1963
Abstract Thin films of Fe-18Cr-12Ni have been examined both in the fully austenitic condition and after partial transformation in the bulk to faulted h.c.p. (e) and to b.c.c. martensite (α′). The e appeared to be a consequence of α′ formation rather than a necessary intermediate stage in the transformation.
J Dash, H.M Otte
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The martensite transformation in carbon steels

Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1960
Martensite formed in plain carbon steels containing less than 1·4% carbon has been studied by direct examination of thin foils in the electron microscope. It was found that the martensite in low-carbon steels forms predominantly as long needles parallel to <111> M while in the high-carbon steels it forms as ...
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Welding of martensitic steels

Welding International, 1990
L van Muysen, A Mathonet, R V Salkin
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Stainless Steels: Martensitic

2017
W.M. Garrison, M.O.H. Amuda
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Martensite aging steels

Metal Science and Heat Treatment, 1964
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Martensite—Ferrite Microalloyed Steels

2016
N. Anand   +4 more
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