Structure and Properties of the АК12М2МгН (AlSi12Cu2MgNi) Piston Alloy Formed under the Influence of a Complex Modifying Additive of Fullerene-Containing Soot and Copper

The article presents the study results of the complex modification of eutectic silumin АК12М2МгН (AlSi12Cu2MgNi) with additives of fullerene-containing soot (FCS) and copper. It is shown that the effect on the alloy structure is caused by the introduction of carbon nanoparticles into the melt and is...

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Main Authors: Aleksandr I. Komarov, Dmitry V. Orda, Donata O. Iskandarova
Format: Article
Language:English
Published: National Academy of Sciences of Belarus, State Scientific Institution “The Joint Institute of Mechanical Engineering" 2021-06-01
Series:Механика машин, механизмов и материалов
Subjects:
Online Access:http://mmmm.by/en/readers-en/archive-room-en?layout=edit&id=1676
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spelling doaj-421c210976c845e2aa0495dadfcb76c62021-08-27T08:56:51ZengNational Academy of Sciences of Belarus, State Scientific Institution “The Joint Institute of Mechanical Engineering"Механика машин, механизмов и материалов1995-04702518-14752021-06-012(55)7380https://doi.org/10.46864/1995-0470-2021-2-55-73-80Structure and Properties of the АК12М2МгН (AlSi12Cu2MgNi) Piston Alloy Formed under the Influence of a Complex Modifying Additive of Fullerene-Containing Soot and CopperAleksandr I. Komarov0Dmitry V. Orda1Donata O. Iskandarova2Joint Institute of Mechanical Engineering of the NAS of BelarusJoint Institute of Mechanical Engineering of the NAS of BelarusJoint Institute of Mechanical Engineering of the NAS of BelarusThe article presents the study results of the complex modification of eutectic silumin АК12М2МгН (AlSi12Cu2MgNi) with additives of fullerene-containing soot (FCS) and copper. It is shown that the effect on the alloy structure is caused by the introduction of carbon nanoparticles into the melt and is manifested in the dispersion of the structural phases and their uniform distribution in the casting volume. At the same time, the use of dispersed copper powder provides wetting of aluminum carbon particles with the melt and additional alloying of the melt. The formation of a dispersed structure leads to an increase in the mechanical and tribotechnical characteristics of the alloy: an increase in the ultimate strength (by 1.3–1.6 times) with a simultaneous increase in the relative elongation by up to 3 times, a significant decrease in the coefficient of friction (by 1.1–1.7 times) and the intensity of wear. The lowest coefficient of friction and high wear resistance are achieved at small fractions of FCS (0.05–0.1 wt.%) and the copper content in the modifier is not more than 0.5 wt.%.http://mmmm.by/en/readers-en/archive-room-en?layout=edit&id=1676fullerene-containing sootcopper powdermodificationaluminum-silicon alloysstructureultimate strengthwear resistancecoefficient of friction
collection DOAJ
language English
format Article
sources DOAJ
author Aleksandr I. Komarov
Dmitry V. Orda
Donata O. Iskandarova
spellingShingle Aleksandr I. Komarov
Dmitry V. Orda
Donata O. Iskandarova
Structure and Properties of the АК12М2МгН (AlSi12Cu2MgNi) Piston Alloy Formed under the Influence of a Complex Modifying Additive of Fullerene-Containing Soot and Copper
Механика машин, механизмов и материалов
fullerene-containing soot
copper powder
modification
aluminum-silicon alloys
structure
ultimate strength
wear resistance
coefficient of friction
author_facet Aleksandr I. Komarov
Dmitry V. Orda
Donata O. Iskandarova
author_sort Aleksandr I. Komarov
title Structure and Properties of the АК12М2МгН (AlSi12Cu2MgNi) Piston Alloy Formed under the Influence of a Complex Modifying Additive of Fullerene-Containing Soot and Copper
title_short Structure and Properties of the АК12М2МгН (AlSi12Cu2MgNi) Piston Alloy Formed under the Influence of a Complex Modifying Additive of Fullerene-Containing Soot and Copper
title_full Structure and Properties of the АК12М2МгН (AlSi12Cu2MgNi) Piston Alloy Formed under the Influence of a Complex Modifying Additive of Fullerene-Containing Soot and Copper
title_fullStr Structure and Properties of the АК12М2МгН (AlSi12Cu2MgNi) Piston Alloy Formed under the Influence of a Complex Modifying Additive of Fullerene-Containing Soot and Copper
title_full_unstemmed Structure and Properties of the АК12М2МгН (AlSi12Cu2MgNi) Piston Alloy Formed under the Influence of a Complex Modifying Additive of Fullerene-Containing Soot and Copper
title_sort structure and properties of the ак12м2мгн (alsi12cu2mgni) piston alloy formed under the influence of a complex modifying additive of fullerene-containing soot and copper
publisher National Academy of Sciences of Belarus, State Scientific Institution “The Joint Institute of Mechanical Engineering"
series Механика машин, механизмов и материалов
issn 1995-0470
2518-1475
publishDate 2021-06-01
description The article presents the study results of the complex modification of eutectic silumin АК12М2МгН (AlSi12Cu2MgNi) with additives of fullerene-containing soot (FCS) and copper. It is shown that the effect on the alloy structure is caused by the introduction of carbon nanoparticles into the melt and is manifested in the dispersion of the structural phases and their uniform distribution in the casting volume. At the same time, the use of dispersed copper powder provides wetting of aluminum carbon particles with the melt and additional alloying of the melt. The formation of a dispersed structure leads to an increase in the mechanical and tribotechnical characteristics of the alloy: an increase in the ultimate strength (by 1.3–1.6 times) with a simultaneous increase in the relative elongation by up to 3 times, a significant decrease in the coefficient of friction (by 1.1–1.7 times) and the intensity of wear. The lowest coefficient of friction and high wear resistance are achieved at small fractions of FCS (0.05–0.1 wt.%) and the copper content in the modifier is not more than 0.5 wt.%.
topic fullerene-containing soot
copper powder
modification
aluminum-silicon alloys
structure
ultimate strength
wear resistance
coefficient of friction
url http://mmmm.by/en/readers-en/archive-room-en?layout=edit&id=1676
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