The use of borax pentahydrate of inorganic filler in medium density fiberboard production

Abstract: The aim of the study was the use of the inorganic borax pentahydrate mineral in medium density fiberboard production instead of biomass fiber and to specify the performance which physical, mechanical, combustion of produced boards. Chips used in manufacture were subjected to cooking for 4,...

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Autores principales: Akgül,Mehmet, Çamlıbel,Osman
Lenguaje:English
Publicado: Universidad del Bío-Bío 2021
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Acceso en línea:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-221X2021000100422
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spelling oai:scielo:S0718-221X20210001004222021-05-30The use of borax pentahydrate of inorganic filler in medium density fiberboard productionAkgül,MehmetÇamlıbel,Osman Biomass fiber borax pentahydrate color properties combustion temperature mechanical properties medium density fiberboard physical properties. Abstract: The aim of the study was the use of the inorganic borax pentahydrate mineral in medium density fiberboard production instead of biomass fiber and to specify the performance which physical, mechanical, combustion of produced boards. Chips used in manufacture were subjected to cooking for 4,5 minutes in Asplund defibrator at the vapor pressure of 7,6 kg/cm2 pressure and 190 ºC temperature. 1,6 % paraffin based on oven-dried wood fibers was added to cooked chips before the fiber processing in segments of defibrillator section. 1 % ammonium sulfate based on oven-dried wood fibers were added to fiber in the bowline. Borax pentahydrate was prepared in a separate tank in order to use the production of medium density fiberboard. Borax pentahydrate inorganic mineral was mixed with urea-formaldehyde resin. Urea-formaldehyde glue was prepared as three different solutions including the borax pentahydrate as 3 % (20 kg), 6 % (40 kg) and 9 % (60 kg) respectively. Borax pentahydrate mixed fibers were dried to 12 % moisture. Mat was formed before prepress. Daily multi-press was manufactured at 188 °C temperature and 32 kg/cm² pressure and, 270 second pressing time. Manufactured boards size were 2100 x 4900 x 18 (mm). According to this work result, 3 % and 6 % rate borax pentahydrate added medium density fiberboard boards were measured more good physical and mechanical test results compare to control boards. 9 % borax pentahydrate added medium density fiberboard boards were shown incredibly superior performance at fire resistance.info:eu-repo/semantics/openAccessUniversidad del Bío-BíoMaderas. Ciencia y tecnología v.23 20212021-01-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-221X2021000100422en10.4067/s0718-221x2021000100422
institution Scielo Chile
collection Scielo Chile
language English
topic Biomass fiber
borax pentahydrate
color properties
combustion temperature
mechanical properties
medium density fiberboard
physical properties.
spellingShingle Biomass fiber
borax pentahydrate
color properties
combustion temperature
mechanical properties
medium density fiberboard
physical properties.
Akgül,Mehmet
Çamlıbel,Osman
The use of borax pentahydrate of inorganic filler in medium density fiberboard production
description Abstract: The aim of the study was the use of the inorganic borax pentahydrate mineral in medium density fiberboard production instead of biomass fiber and to specify the performance which physical, mechanical, combustion of produced boards. Chips used in manufacture were subjected to cooking for 4,5 minutes in Asplund defibrator at the vapor pressure of 7,6 kg/cm2 pressure and 190 ºC temperature. 1,6 % paraffin based on oven-dried wood fibers was added to cooked chips before the fiber processing in segments of defibrillator section. 1 % ammonium sulfate based on oven-dried wood fibers were added to fiber in the bowline. Borax pentahydrate was prepared in a separate tank in order to use the production of medium density fiberboard. Borax pentahydrate inorganic mineral was mixed with urea-formaldehyde resin. Urea-formaldehyde glue was prepared as three different solutions including the borax pentahydrate as 3 % (20 kg), 6 % (40 kg) and 9 % (60 kg) respectively. Borax pentahydrate mixed fibers were dried to 12 % moisture. Mat was formed before prepress. Daily multi-press was manufactured at 188 °C temperature and 32 kg/cm² pressure and, 270 second pressing time. Manufactured boards size were 2100 x 4900 x 18 (mm). According to this work result, 3 % and 6 % rate borax pentahydrate added medium density fiberboard boards were measured more good physical and mechanical test results compare to control boards. 9 % borax pentahydrate added medium density fiberboard boards were shown incredibly superior performance at fire resistance.
author Akgül,Mehmet
Çamlıbel,Osman
author_facet Akgül,Mehmet
Çamlıbel,Osman
author_sort Akgül,Mehmet
title The use of borax pentahydrate of inorganic filler in medium density fiberboard production
title_short The use of borax pentahydrate of inorganic filler in medium density fiberboard production
title_full The use of borax pentahydrate of inorganic filler in medium density fiberboard production
title_fullStr The use of borax pentahydrate of inorganic filler in medium density fiberboard production
title_full_unstemmed The use of borax pentahydrate of inorganic filler in medium density fiberboard production
title_sort use of borax pentahydrate of inorganic filler in medium density fiberboard production
publisher Universidad del Bío-Bío
publishDate 2021
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-221X2021000100422
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