Formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygen

The results of studying the structure and properties of dispersion-strengthened composite materials of the Cu-Ti-C-O system obtained by reactionary grinding of copper powder with additions of titanium powder (0...5 wt%) and carbon in the form of graphite (0...1 wt%) in a high-energy ball mill of the...

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Main Authors: Smirnov Valentin, Shalunov Evgeny, Yanyushkin Aleksandr, Danilov Pavel
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2021/13/matecconf_mpm21_01017.pdf
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spelling doaj-88d3c26b1d8744f69674d5930ba6de582021-10-05T13:16:47ZengEDP SciencesMATEC Web of Conferences2261-236X2021-01-013440101710.1051/matecconf/202134401017matecconf_mpm21_01017Formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygenSmirnov Valentin0Shalunov Evgeny1Yanyushkin Aleksandr2Danilov Pavel3Chuvash State University, Joint R&D Laboratories of Mechanically Alloyed Nano-Composite Materials, their Technology and QualityChuvash State University, Joint R&D Laboratories of Mechanically Alloyed Nano-Composite Materials, their Technology and QualityChuvash State University, Joint R&D Laboratories of Mechanically Alloyed Nano-Composite Materials, their Technology and QualityChuvash State University, Joint R&D Laboratories of Mechanically Alloyed Nano-Composite Materials, their Technology and QualityThe results of studying the structure and properties of dispersion-strengthened composite materials of the Cu-Ti-C-O system obtained by reactionary grinding of copper powder with additions of titanium powder (0...5 wt%) and carbon in the form of graphite (0...1 wt%) in a high-energy ball mill of the attritor type in the presence of air. The regularities of the influence of titanium and graphite content on the hardness and electrical conductivity of the materials under study have been studied. It is shown that with an increase in the titanium content, the hardness increases and the electrical conductivity decreases. The hardness and electrical conductivity of materials under study dependences on the graphite content have the form of curves with maxima, which are observed at different values of the carbon content depending on the titanium content. By the method of X-ray phase analysis of the anode deposit of materials under study, it was found that the main strengthening phases are dispersion particles of titanium carbide. The composite materials under study of the Cu-Ti-C-O system, due to the combination of high electrical conductivity, hardness and recrystallization temperature, can be an alternative for replacing beryllium bronze in many fields.https://www.matec-conferences.org/articles/matecconf/pdf/2021/13/matecconf_mpm21_01017.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Smirnov Valentin
Shalunov Evgeny
Yanyushkin Aleksandr
Danilov Pavel
spellingShingle Smirnov Valentin
Shalunov Evgeny
Yanyushkin Aleksandr
Danilov Pavel
Formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygen
MATEC Web of Conferences
author_facet Smirnov Valentin
Shalunov Evgeny
Yanyushkin Aleksandr
Danilov Pavel
author_sort Smirnov Valentin
title Formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygen
title_short Formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygen
title_full Formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygen
title_fullStr Formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygen
title_full_unstemmed Formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygen
title_sort formation of the structure and properties of composite materials based on copper powder during its reactionary mechanical alloying with titanium, carbon and oxygen
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2021-01-01
description The results of studying the structure and properties of dispersion-strengthened composite materials of the Cu-Ti-C-O system obtained by reactionary grinding of copper powder with additions of titanium powder (0...5 wt%) and carbon in the form of graphite (0...1 wt%) in a high-energy ball mill of the attritor type in the presence of air. The regularities of the influence of titanium and graphite content on the hardness and electrical conductivity of the materials under study have been studied. It is shown that with an increase in the titanium content, the hardness increases and the electrical conductivity decreases. The hardness and electrical conductivity of materials under study dependences on the graphite content have the form of curves with maxima, which are observed at different values of the carbon content depending on the titanium content. By the method of X-ray phase analysis of the anode deposit of materials under study, it was found that the main strengthening phases are dispersion particles of titanium carbide. The composite materials under study of the Cu-Ti-C-O system, due to the combination of high electrical conductivity, hardness and recrystallization temperature, can be an alternative for replacing beryllium bronze in many fields.
url https://www.matec-conferences.org/articles/matecconf/pdf/2021/13/matecconf_mpm21_01017.pdf
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AT yanyushkinaleksandr formationofthestructureandpropertiesofcompositematerialsbasedoncopperpowderduringitsreactionarymechanicalalloyingwithtitaniumcarbonandoxygen
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