The Materials Resistant to High Temperatures Obtained from Post-Production Fibrous Waste

This paper describes preparation methodology and research results of newly developed materials from post-production fibrous waste that are resistant to high temperatures. Widely available raw materials were used for this purpose. Such approach has significant impact on the technological feasibility...

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Main Authors: K. Kogut, K. Kasprzyk, R. Kłoś
Format: Article
Language:English
Published: Polish Academy of Sciences 2020-05-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:https://journals.pan.pl/Content/116067/PDF/AMM-2020-2-44-Kogut.pdf
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author K. Kogut
K. Kasprzyk
R. Kłoś
author_facet K. Kogut
K. Kasprzyk
R. Kłoś
author_sort K. Kogut
collection DOAJ
description This paper describes preparation methodology and research results of newly developed materials from post-production fibrous waste that are resistant to high temperatures. Widely available raw materials were used for this purpose. Such approach has significant impact on the technological feasibility and preparation costs. Obtained materials were verified via applying of various tests including characterization of shrinkage, porosity, density and water absorption as well as X-ray analysis (XRD), followed by mechanical bending and compressive strength determination. Based on the research results, the possible applications of materials as thermal insulators were indicated.
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spelling doaj.art-c8c4afeefa2f45a7b80b66a6bc0e2cf42022-12-22T03:41:51ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092020-05-01vol. 65No 2845850https://doi.org/10.24425/amm.2020.132830The Materials Resistant to High Temperatures Obtained from Post-Production Fibrous WasteK. KogutK. KasprzykR. KłośThis paper describes preparation methodology and research results of newly developed materials from post-production fibrous waste that are resistant to high temperatures. Widely available raw materials were used for this purpose. Such approach has significant impact on the technological feasibility and preparation costs. Obtained materials were verified via applying of various tests including characterization of shrinkage, porosity, density and water absorption as well as X-ray analysis (XRD), followed by mechanical bending and compressive strength determination. Based on the research results, the possible applications of materials as thermal insulators were indicated.https://journals.pan.pl/Content/116067/PDF/AMM-2020-2-44-Kogut.pdfwastethermal insulationceramicporosityfibers
spellingShingle K. Kogut
K. Kasprzyk
R. Kłoś
The Materials Resistant to High Temperatures Obtained from Post-Production Fibrous Waste
Archives of Metallurgy and Materials
waste
thermal insulation
ceramic
porosity
fibers
title The Materials Resistant to High Temperatures Obtained from Post-Production Fibrous Waste
title_full The Materials Resistant to High Temperatures Obtained from Post-Production Fibrous Waste
title_fullStr The Materials Resistant to High Temperatures Obtained from Post-Production Fibrous Waste
title_full_unstemmed The Materials Resistant to High Temperatures Obtained from Post-Production Fibrous Waste
title_short The Materials Resistant to High Temperatures Obtained from Post-Production Fibrous Waste
title_sort materials resistant to high temperatures obtained from post production fibrous waste
topic waste
thermal insulation
ceramic
porosity
fibers
url https://journals.pan.pl/Content/116067/PDF/AMM-2020-2-44-Kogut.pdf
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