Copper-Carbon Nanoforms Composites – Processing, Microstructure and Thermal Properties

The main current of publication is focused around the issues and problems associated with the formation of composite materials with Cu matrix and reinforcing phases in the various carbon nanoforms. The core of the research has been focused on thermal conductivity of these composites types. This para...

Full description

Bibliographic Details
Main Authors: Pietrzak K., Gładki A., Frydman K., Wójcik-Grzybek D., Strojny-Nędza A., Wejrzanowski T.
Format: Article
Language:English
Published: Polish Academy of Sciences 2017-06-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:http://www.degruyter.com/view/j/amm.2017.62.issue-2/amm-2017-0198/amm-2017-0198.xml?format=INT
_version_ 1818844444281012224
author Pietrzak K.
Gładki A.
Frydman K.
Wójcik-Grzybek D.
Strojny-Nędza A.
Wejrzanowski T.
author_facet Pietrzak K.
Gładki A.
Frydman K.
Wójcik-Grzybek D.
Strojny-Nędza A.
Wejrzanowski T.
author_sort Pietrzak K.
collection DOAJ
description The main current of publication is focused around the issues and problems associated with the formation of composite materials with Cu matrix and reinforcing phases in the various carbon nanoforms. The core of the research has been focused on thermal conductivity of these composites types. This parameter globally reflects the state of the structure, quality of raw materials and the technology used during the formation of composite materials. Vanishingly low affinity of copper for carbon, multilayered forms of graphene, the existence of critical values of graphene volume in the composite are not conducive to the classic procedures of composites designing. As a result, the expected, significant increase in thermal conductivity of composites is not greater than for pure copper matrix. Present paper especially includes: (i) data of obtaining procedure of copper/graphene mixtures, (ii) data of sintering process, (iii) the results of structure investigations and of thermal properties. Structural analysis revealed the homogenous distribution of graphene in copper matrix, the thermal analysis indicate the existence of carbon phase critical concentration, where improvement of thermal diffusivity to pure copper can occur.
first_indexed 2024-12-19T05:13:52Z
format Article
id doaj.art-c23b195d59c94a098a2d3d21e57cb335
institution Directory Open Access Journal
issn 2300-1909
language English
last_indexed 2024-12-19T05:13:52Z
publishDate 2017-06-01
publisher Polish Academy of Sciences
record_format Article
series Archives of Metallurgy and Materials
spelling doaj.art-c23b195d59c94a098a2d3d21e57cb3352022-12-21T20:34:44ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092017-06-016221307131010.1515/amm-2017-0198amm-2017-0198Copper-Carbon Nanoforms Composites – Processing, Microstructure and Thermal PropertiesPietrzak K.0Gładki A.1Frydman K.2Wójcik-Grzybek D.3Strojny-Nędza A.4Wejrzanowski T.5Institute of Electronic Materials Technology, 133 Wolczynska Str., 01-919Warsaw, PolandInstitute of Electronic Materials Technology, 133 Wolczynska Str., 01-919Warsaw, PolandInstitute of Electronic Materials Technology, 133 Wolczynska Str., 01-919Warsaw, PolandInstitute of Electronic Materials Technology, 133 Wolczynska Str., 01-919Warsaw, PolandInstitute of Electronic Materials Technology, 133 Wolczynska Str., 01-919Warsaw, PolandFaculty of Materials Science and Engineering, Warsaw University of Technology, Woloska 141 Str., Warsaw, PolandThe main current of publication is focused around the issues and problems associated with the formation of composite materials with Cu matrix and reinforcing phases in the various carbon nanoforms. The core of the research has been focused on thermal conductivity of these composites types. This parameter globally reflects the state of the structure, quality of raw materials and the technology used during the formation of composite materials. Vanishingly low affinity of copper for carbon, multilayered forms of graphene, the existence of critical values of graphene volume in the composite are not conducive to the classic procedures of composites designing. As a result, the expected, significant increase in thermal conductivity of composites is not greater than for pure copper matrix. Present paper especially includes: (i) data of obtaining procedure of copper/graphene mixtures, (ii) data of sintering process, (iii) the results of structure investigations and of thermal properties. Structural analysis revealed the homogenous distribution of graphene in copper matrix, the thermal analysis indicate the existence of carbon phase critical concentration, where improvement of thermal diffusivity to pure copper can occur.http://www.degruyter.com/view/j/amm.2017.62.issue-2/amm-2017-0198/amm-2017-0198.xml?format=INTmetal matrix compositesinteringcoppergraphenethermal diffusivity
spellingShingle Pietrzak K.
Gładki A.
Frydman K.
Wójcik-Grzybek D.
Strojny-Nędza A.
Wejrzanowski T.
Copper-Carbon Nanoforms Composites – Processing, Microstructure and Thermal Properties
Archives of Metallurgy and Materials
metal matrix composite
sintering
copper
graphene
thermal diffusivity
title Copper-Carbon Nanoforms Composites – Processing, Microstructure and Thermal Properties
title_full Copper-Carbon Nanoforms Composites – Processing, Microstructure and Thermal Properties
title_fullStr Copper-Carbon Nanoforms Composites – Processing, Microstructure and Thermal Properties
title_full_unstemmed Copper-Carbon Nanoforms Composites – Processing, Microstructure and Thermal Properties
title_short Copper-Carbon Nanoforms Composites – Processing, Microstructure and Thermal Properties
title_sort copper carbon nanoforms composites processing microstructure and thermal properties
topic metal matrix composite
sintering
copper
graphene
thermal diffusivity
url http://www.degruyter.com/view/j/amm.2017.62.issue-2/amm-2017-0198/amm-2017-0198.xml?format=INT
work_keys_str_mv AT pietrzakk coppercarbonnanoformscompositesprocessingmicrostructureandthermalproperties
AT gładkia coppercarbonnanoformscompositesprocessingmicrostructureandthermalproperties
AT frydmank coppercarbonnanoformscompositesprocessingmicrostructureandthermalproperties
AT wojcikgrzybekd coppercarbonnanoformscompositesprocessingmicrostructureandthermalproperties
AT strojnynedzaa coppercarbonnanoformscompositesprocessingmicrostructureandthermalproperties
AT wejrzanowskit coppercarbonnanoformscompositesprocessingmicrostructureandthermalproperties