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@article{86f844346cbd4478a3acdb5ff9f1983f,
title = "Creation of a nickel composite using surface structuring of the reinforcing phase with titanium carbide nanostructures to improve strength properties",
abstract = "The development of metal matrix composite (MMC) materials is one of the demanded areas of research in materials science. In line with this trend, there is an increasing interest in nickel-based MMC materials, which have already become classic in science and technology. This is due to the high demand for Ni-based materials with high strength characteristics, high hardness, and increased heat resistance. In this research, we proposed an approach to obtain a MMC material using the surface structuring process, ALD (Atomic Layer Deposition) and powder metallurgy method. The developed approach provides a composite with TiC nanostructures (1-5 nm) uniformly distributed throughout the Ni matrix. The absence of interphase boundaries between the Ni matrix particles and carbide nanostructures made it possible to minimize the internal porosity of the sample. This is due to the strength of the interphase boundaries between the matrix and the reinforcing phase in the composite and to the solidity of the structure. As a result, the created material effectively resists plastic deformation and stress. This allows not only to enhance the strength properties of the composite, but also to maintain the MMC plasticity, which increases its processing ability.",
keywords = "никель",
author = "Земцова, {Елена Георгиевна} and Смирнов, {Владимир Михайлович} and Кудымов, {Владимир Константинович} and Андрей Дерменжи and Сидоров, {Юрий Викторович}",
year = "2024",
month = aug,
day = "1",
doi = "10.1088/1742-6596/2817/1/012019",
language = "English",
volume = " 2817",
journal = "Journal of Physics: Conference Series",
issn = "1742-6588",
publisher = "IOP Publishing Ltd.",
number = "1",
note = "The VIII International Conference “Topical Problems of Continuum Mechanics”, TPCM-2023 ; Conference date: 01-10-2023 Through 05-10-2023",

}

RIS

TY - JOUR

T1 - Creation of a nickel composite using surface structuring of the reinforcing phase with titanium carbide nanostructures to improve strength properties

AU - Земцова, Елена Георгиевна

AU - Смирнов, Владимир Михайлович

AU - Кудымов, Владимир Константинович

AU - Дерменжи, Андрей

AU - Сидоров, Юрий Викторович

PY - 2024/8/1

Y1 - 2024/8/1

N2 - The development of metal matrix composite (MMC) materials is one of the demanded areas of research in materials science. In line with this trend, there is an increasing interest in nickel-based MMC materials, which have already become classic in science and technology. This is due to the high demand for Ni-based materials with high strength characteristics, high hardness, and increased heat resistance. In this research, we proposed an approach to obtain a MMC material using the surface structuring process, ALD (Atomic Layer Deposition) and powder metallurgy method. The developed approach provides a composite with TiC nanostructures (1-5 nm) uniformly distributed throughout the Ni matrix. The absence of interphase boundaries between the Ni matrix particles and carbide nanostructures made it possible to minimize the internal porosity of the sample. This is due to the strength of the interphase boundaries between the matrix and the reinforcing phase in the composite and to the solidity of the structure. As a result, the created material effectively resists plastic deformation and stress. This allows not only to enhance the strength properties of the composite, but also to maintain the MMC plasticity, which increases its processing ability.

AB - The development of metal matrix composite (MMC) materials is one of the demanded areas of research in materials science. In line with this trend, there is an increasing interest in nickel-based MMC materials, which have already become classic in science and technology. This is due to the high demand for Ni-based materials with high strength characteristics, high hardness, and increased heat resistance. In this research, we proposed an approach to obtain a MMC material using the surface structuring process, ALD (Atomic Layer Deposition) and powder metallurgy method. The developed approach provides a composite with TiC nanostructures (1-5 nm) uniformly distributed throughout the Ni matrix. The absence of interphase boundaries between the Ni matrix particles and carbide nanostructures made it possible to minimize the internal porosity of the sample. This is due to the strength of the interphase boundaries between the matrix and the reinforcing phase in the composite and to the solidity of the structure. As a result, the created material effectively resists plastic deformation and stress. This allows not only to enhance the strength properties of the composite, but also to maintain the MMC plasticity, which increases its processing ability.

KW - никель

UR - https://www.mendeley.com/catalogue/b9de0a43-14a2-3c43-8e7c-83efaa627c3f/

UR - https://www.mendeley.com/catalogue/b9de0a43-14a2-3c43-8e7c-83efaa627c3f/

U2 - 10.1088/1742-6596/2817/1/012019

DO - 10.1088/1742-6596/2817/1/012019

M3 - Article

VL - 2817

JO - Journal of Physics: Conference Series

JF - Journal of Physics: Conference Series

SN - 1742-6588

IS - 1

M1 - 012019

T2 - The VIII International Conference “Topical Problems of Continuum Mechanics”

Y2 - 1 October 2023 through 5 October 2023

ER -

ID: 127266700