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Formation of a Dissipative Structure of Metastable Austenite for Raising the Wear Resistance of Carbon Steels. / Filippov, M. A.; Shveikin, V. P.; Sharapova, V. A. и др.
в: Metal Science and Heat Treatment, Том 64, № 9-10, 01.01.2023, стр. 509-515.

Результаты исследований: Вклад в журналСтатьяРецензирование

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@article{85b61f6f85ec45249e560c9a0a253483,
title = "Formation of a Dissipative Structure of Metastable Austenite for Raising the Wear Resistance of Carbon Steels",
abstract = "Formation of a dissipative structure of metastable austenite in steels of pearlitic (70Kh2GSML and 150KhNML) and ledeburitic (Kh12MFL and 95Kh18) classes after high-temperature quenching is considered. An x-ray diffraction analysis is performed and the microstructure is analyzed. The hardness after quenching from different temperatures is determined. The wear resistance and the microhardness of the functional surface are studied after wear tests. The features of the development of strain martensitic transformation and the micro-trip effect caused by this transformation are described. The morphology of the friction martensite is studied. Possibilities of raising the abrasive resistance of high-carbon steels by formation of metastable austenite are analyzed.",
author = "Filippov, {M. A.} and Shveikin, {V. P.} and Sharapova, {V. A.} and Nikiforova, {S. M.} and Khadyev, {M. S.}",
year = "2023",
month = jan,
day = "1",
doi = "10.1007/s11041-023-00854-w",
language = "English",
volume = "64",
pages = "509--515",
journal = "Metal Science and Heat Treatment",
issn = "0026-0673",
publisher = "Springer",
number = "9-10",

}

RIS

TY - JOUR

T1 - Formation of a Dissipative Structure of Metastable Austenite for Raising the Wear Resistance of Carbon Steels

AU - Filippov, M. A.

AU - Shveikin, V. P.

AU - Sharapova, V. A.

AU - Nikiforova, S. M.

AU - Khadyev, M. S.

PY - 2023/1/1

Y1 - 2023/1/1

N2 - Formation of a dissipative structure of metastable austenite in steels of pearlitic (70Kh2GSML and 150KhNML) and ledeburitic (Kh12MFL and 95Kh18) classes after high-temperature quenching is considered. An x-ray diffraction analysis is performed and the microstructure is analyzed. The hardness after quenching from different temperatures is determined. The wear resistance and the microhardness of the functional surface are studied after wear tests. The features of the development of strain martensitic transformation and the micro-trip effect caused by this transformation are described. The morphology of the friction martensite is studied. Possibilities of raising the abrasive resistance of high-carbon steels by formation of metastable austenite are analyzed.

AB - Formation of a dissipative structure of metastable austenite in steels of pearlitic (70Kh2GSML and 150KhNML) and ledeburitic (Kh12MFL and 95Kh18) classes after high-temperature quenching is considered. An x-ray diffraction analysis is performed and the microstructure is analyzed. The hardness after quenching from different temperatures is determined. The wear resistance and the microhardness of the functional surface are studied after wear tests. The features of the development of strain martensitic transformation and the micro-trip effect caused by this transformation are described. The morphology of the friction martensite is studied. Possibilities of raising the abrasive resistance of high-carbon steels by formation of metastable austenite are analyzed.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85147999382

U2 - 10.1007/s11041-023-00854-w

DO - 10.1007/s11041-023-00854-w

M3 - Article

VL - 64

SP - 509

EP - 515

JO - Metal Science and Heat Treatment

JF - Metal Science and Heat Treatment

SN - 0026-0673

IS - 9-10

ER -

ID: 38479571