Research of heat capacity of multicomponent carbon-aluminium composition materials

Despite the previously conducted specific thermal researches of one-and two-phase composite materials there are a need for integrated thermal researches for new multicomponent carbon-aluminum composites of different composition and content obtained by hot pressing. This article presents the results...

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Main Author: Оксана Сергеевна Воденникова
Format: Article
Language:English
Published: PC Technology Center 2014-12-01
Series:Tehnologìčnij Audit ta Rezervi Virobnictva
Subjects:
Online Access:http://journals.uran.ua/tarp/article/view/34776
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spelling doaj-55daf20224d84c1da8e01673e3508a6b2020-11-25T02:32:52ZengPC Technology CenterTehnologìčnij Audit ta Rezervi Virobnictva2226-37802312-83722014-12-0161(20)727510.15587/2312-8372.2014.3477634776Research of heat capacity of multicomponent carbon-aluminium composition materialsОксана Сергеевна Воденникова0Zaporozhye State Engineering Academy, Lenina ave., 226, Zaporizhzhya, Ukraine, 69006Despite the previously conducted specific thermal researches of one-and two-phase composite materials there are a need for integrated thermal researches for new multicomponent carbon-aluminum composites of different composition and content obtained by hot pressing. This article presents the results of experimental researches of the heat capacity of the samples of carbon-aluminum composite materials of tribotechnical purpose obtained using the comparative method of dynamic calorimeter with a heat meter and adiabatic membrane. The influence of both the component composition and content of the composites on heat capacity indicators is shown. A comparative analysis of the results with previously known heat capacity calculated indicators is conducted. It is shown that the values of maximum deviations between experimental and calculated values are less than 20%. The research results have a scientific and practical interest for the development of new units for dry friction engineering, aviation and space industry.http://journals.uran.ua/tarp/article/view/34776composite materialsheat capacitycomponent compositiontemperatureexperiment
collection DOAJ
language English
format Article
sources DOAJ
author Оксана Сергеевна Воденникова
spellingShingle Оксана Сергеевна Воденникова
Research of heat capacity of multicomponent carbon-aluminium composition materials
Tehnologìčnij Audit ta Rezervi Virobnictva
composite materials
heat capacity
component composition
temperature
experiment
author_facet Оксана Сергеевна Воденникова
author_sort Оксана Сергеевна Воденникова
title Research of heat capacity of multicomponent carbon-aluminium composition materials
title_short Research of heat capacity of multicomponent carbon-aluminium composition materials
title_full Research of heat capacity of multicomponent carbon-aluminium composition materials
title_fullStr Research of heat capacity of multicomponent carbon-aluminium composition materials
title_full_unstemmed Research of heat capacity of multicomponent carbon-aluminium composition materials
title_sort research of heat capacity of multicomponent carbon-aluminium composition materials
publisher PC Technology Center
series Tehnologìčnij Audit ta Rezervi Virobnictva
issn 2226-3780
2312-8372
publishDate 2014-12-01
description Despite the previously conducted specific thermal researches of one-and two-phase composite materials there are a need for integrated thermal researches for new multicomponent carbon-aluminum composites of different composition and content obtained by hot pressing. This article presents the results of experimental researches of the heat capacity of the samples of carbon-aluminum composite materials of tribotechnical purpose obtained using the comparative method of dynamic calorimeter with a heat meter and adiabatic membrane. The influence of both the component composition and content of the composites on heat capacity indicators is shown. A comparative analysis of the results with previously known heat capacity calculated indicators is conducted. It is shown that the values of maximum deviations between experimental and calculated values are less than 20%. The research results have a scientific and practical interest for the development of new units for dry friction engineering, aviation and space industry.
topic composite materials
heat capacity
component composition
temperature
experiment
url http://journals.uran.ua/tarp/article/view/34776
work_keys_str_mv AT oksanasergeevnavodennikova researchofheatcapacityofmulticomponentcarbonaluminiumcompositionmaterials
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