Results 211 to 220 of about 57,331 (267)
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Fine-grained dual phase steel via intercritical annealing of cold-rolled martensite
Vacuum, 2018The effect of intercritical annealing on the microstructure and mechanical properties of a low carbon steel with the chemical composition (wt%) of 0.12C–1.11Mn-0.16Si is studied.
M. Alibeyki, H. Mirzadeh, M. Najafi
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Metallurgical Transactions A, 1976
Results concerning the crystal lattice of freshly formed martensite with abnormally low and abnormally high axial ratioc/a as well as the results of neutron diffraction studies of the positions of carbon atoms are reviewed. Mechanisms of the austenite to martensite transformation are considered, which can explain the formation of martensite with ...
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Results concerning the crystal lattice of freshly formed martensite with abnormally low and abnormally high axial ratioc/a as well as the results of neutron diffraction studies of the positions of carbon atoms are reviewed. Mechanisms of the austenite to martensite transformation are considered, which can explain the formation of martensite with ...
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Deformation-induced martensite in austenitic stainless steels: A review
Archives of Civil and Mechanical Engineering, 2020M. J. Sohrabi +2 more
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Effect of microstructure on corrosion behavior of high strength martensite steel—A literature review
International Journal of Minerals, Metallurgy, and Materials, 2021Li Wang +5 more
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2013
Abstract Martensitic steels are produced by quenching carbon steel from the austenite phase into martensite. This chapter provides information on the composition, microstructures, processing, deformation mechanisms, mechanical properties, hot forming, tempering, and special attributes of martensitic steels.
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Abstract Martensitic steels are produced by quenching carbon steel from the austenite phase into martensite. This chapter provides information on the composition, microstructures, processing, deformation mechanisms, mechanical properties, hot forming, tempering, and special attributes of martensitic steels.
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2004
Martensite is named after the German metallographer Adolph Martens who, in about 1890, was the first to describe its structure and formation.
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Martensite is named after the German metallographer Adolph Martens who, in about 1890, was the first to describe its structure and formation.
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Role of martensite decomposition in tensile properties of selective laser melted Ti-6Al-4V
, 2018S. Cao +7 more
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