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Influence of geometry and grain size on the mechanical properties of Al 6101 under static loading of cylindrical samples. / Магомедова, Дарья Курбановна.

в: Materials. Technologies. Design, 12.2021, стр. 20-24.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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@article{4de60b2dbb3740d68c286d367ef0a6ba,
title = "Influence of geometry and grain size on the mechanical properties of Al 6101 under static loading of cylindrical samples",
abstract = "The influence of the geometry of cylindrical samples and the material structure (coarse and fine-grained) on Al-6101 behavior under static loading at room temperature was investigated in this work. It was shown that the strength of the material increases with a decrease in the grain size, as well as that samples with a narrower working section turn out to be the least ductile, but represent a higher strength. This study provides a more complete description of the fracture process for a given material.",
author = "Магомедова, {Дарья Курбановна}",
year = "2021",
month = dec,
language = "English",
pages = "20--24",
journal = "Materials. Technologies. Design",
issn = "2658-7572",

}

RIS

TY - JOUR

T1 - Influence of geometry and grain size on the mechanical properties of Al 6101 under static loading of cylindrical samples

AU - Магомедова, Дарья Курбановна

PY - 2021/12

Y1 - 2021/12

N2 - The influence of the geometry of cylindrical samples and the material structure (coarse and fine-grained) on Al-6101 behavior under static loading at room temperature was investigated in this work. It was shown that the strength of the material increases with a decrease in the grain size, as well as that samples with a narrower working section turn out to be the least ductile, but represent a higher strength. This study provides a more complete description of the fracture process for a given material.

AB - The influence of the geometry of cylindrical samples and the material structure (coarse and fine-grained) on Al-6101 behavior under static loading at room temperature was investigated in this work. It was shown that the strength of the material increases with a decrease in the grain size, as well as that samples with a narrower working section turn out to be the least ductile, but represent a higher strength. This study provides a more complete description of the fracture process for a given material.

M3 - Article

SP - 20

EP - 24

JO - Materials. Technologies. Design

JF - Materials. Technologies. Design

SN - 2658-7572

ER -

ID: 99300621