Manufacturing of Porous Ceramic Preforms Based on Halloysite Nanotubes (Hnts)

The aim of this study was to determine the influence of manufacturing conditions on the structure and properties of porous halloysite preforms, which during pressure infiltration were soaked with a liquid alloy to obtain a metal matrix composite reinforced by ceramic, and also to find innovative pos...

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Main Authors: Kujawa M., Dobrzański L. A., Matula G., Kremzer M., Tomiczek B.
Format: Article
Language:English
Published: Polish Academy of Sciences 2016-06-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:http://www.degruyter.com/view/j/amm.2016.61.issue-2/amm-2016-0155/amm-2016-0155.xml?format=INT
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author Kujawa M.
Dobrzański L. A.
Matula G.
Kremzer M.
Tomiczek B.
author_facet Kujawa M.
Dobrzański L. A.
Matula G.
Kremzer M.
Tomiczek B.
author_sort Kujawa M.
collection DOAJ
description The aim of this study was to determine the influence of manufacturing conditions on the structure and properties of porous halloysite preforms, which during pressure infiltration were soaked with a liquid alloy to obtain a metal matrix composite reinforced by ceramic, and also to find innovative possibilities for the application of mineral nanotubes obtained from halloysite. The method of manufacturing porous ceramic preforms (based on halloysite nanotubes) as semi-finished products that are applicable to modern infiltrated metal matrix composites was shown. The ceramic preforms were manufactured by sintering of halloysite nanotubes (HNT), Natural Nano Company (USA), with the addition of pores and canals forming agent in the form of carbon fibres (Sigrafil C10 M250 UNS SGL Group, the Carbon Company). The resulting porous ceramic skeletons, suggest innovative application capabilities mineral nanotubes obtained from halloysite.
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spelling doaj.art-51888aa326224cf6b0b99623a1024f552022-12-22T01:25:34ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092016-06-0161291792210.1515/amm-2016-0155amm-2016-0155Manufacturing of Porous Ceramic Preforms Based on Halloysite Nanotubes (Hnts)Kujawa M.0Dobrzański L. A.1Matula G.2Kremzer M.3Tomiczek B.4INSTITUTE OF ENGINEERING MATERIALS AND BIOMATERIALS, FACULTY OF MECHANICAL ENGINEERING, SILESIAN UNIVERSITY OF TECHNOLOGY, 18A KONARSKIEGO STR, 44-100 GLIWICE, POLANDINSTITUTE OF ENGINEERING MATERIALS AND BIOMATERIALS, FACULTY OF MECHANICAL ENGINEERING, SILESIAN UNIVERSITY OF TECHNOLOGY, 18A KONARSKIEGO STR, 44-100 GLIWICE, POLANDINSTITUTE OF ENGINEERING MATERIALS AND BIOMATERIALS, FACULTY OF MECHANICAL ENGINEERING, SILESIAN UNIVERSITY OF TECHNOLOGY, 18A KONARSKIEGO STR, 44-100 GLIWICE, POLANDINSTITUTE OF ENGINEERING MATERIALS AND BIOMATERIALS, FACULTY OF MECHANICAL ENGINEERING, SILESIAN UNIVERSITY OF TECHNOLOGY, 18A KONARSKIEGO STR, 44-100 GLIWICE, POLANDINSTITUTE OF ENGINEERING MATERIALS AND BIOMATERIALS, FACULTY OF MECHANICAL ENGINEERING, SILESIAN UNIVERSITY OF TECHNOLOGY, 18A KONARSKIEGO STR, 44-100 GLIWICE, POLANDThe aim of this study was to determine the influence of manufacturing conditions on the structure and properties of porous halloysite preforms, which during pressure infiltration were soaked with a liquid alloy to obtain a metal matrix composite reinforced by ceramic, and also to find innovative possibilities for the application of mineral nanotubes obtained from halloysite. The method of manufacturing porous ceramic preforms (based on halloysite nanotubes) as semi-finished products that are applicable to modern infiltrated metal matrix composites was shown. The ceramic preforms were manufactured by sintering of halloysite nanotubes (HNT), Natural Nano Company (USA), with the addition of pores and canals forming agent in the form of carbon fibres (Sigrafil C10 M250 UNS SGL Group, the Carbon Company). The resulting porous ceramic skeletons, suggest innovative application capabilities mineral nanotubes obtained from halloysite.http://www.degruyter.com/view/j/amm.2016.61.issue-2/amm-2016-0155/amm-2016-0155.xml?format=INTmetal matrix composites (MMC)halloysite nanotubesporous ceramic preforms
spellingShingle Kujawa M.
Dobrzański L. A.
Matula G.
Kremzer M.
Tomiczek B.
Manufacturing of Porous Ceramic Preforms Based on Halloysite Nanotubes (Hnts)
Archives of Metallurgy and Materials
metal matrix composites (MMC)
halloysite nanotubes
porous ceramic preforms
title Manufacturing of Porous Ceramic Preforms Based on Halloysite Nanotubes (Hnts)
title_full Manufacturing of Porous Ceramic Preforms Based on Halloysite Nanotubes (Hnts)
title_fullStr Manufacturing of Porous Ceramic Preforms Based on Halloysite Nanotubes (Hnts)
title_full_unstemmed Manufacturing of Porous Ceramic Preforms Based on Halloysite Nanotubes (Hnts)
title_short Manufacturing of Porous Ceramic Preforms Based on Halloysite Nanotubes (Hnts)
title_sort manufacturing of porous ceramic preforms based on halloysite nanotubes hnts
topic metal matrix composites (MMC)
halloysite nanotubes
porous ceramic preforms
url http://www.degruyter.com/view/j/amm.2016.61.issue-2/amm-2016-0155/amm-2016-0155.xml?format=INT
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AT matulag manufacturingofporousceramicpreformsbasedonhalloysitenanotubeshnts
AT kremzerm manufacturingofporousceramicpreformsbasedonhalloysitenanotubeshnts
AT tomiczekb manufacturingofporousceramicpreformsbasedonhalloysitenanotubeshnts