Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites

Environmental and sustainability concerns push the industries to manufacture alternative materials having less environmental impact. The Wood Plastic Composites (WPCs) produced by blending the biopolymers and natural fillers permit not only to tailor the desired properties of materials but also are the solution to meet the environmenta l and sustainability requireme nts. This work presents the elaboration and characterization of the fully green WPCs prepared by blending a biopolymer, BIOPLAST® GS 2189 and spruce sawdust used as filler with different amounts. Since both components are bio-based, the resulting material is entire ly environmentally friendly. The mechanical, thermal, structural properties of these WPCs were characterized by different analyt ical methods like tensile, flexural and impact tests, Thermogravimet ric Analysis (TGA), Differential Scanning Calorimetry (DSC) and X- ray Diffraction (XRD). Their wat er absorption properties and resistance to the termite and fungal attacks were determined in relation with different wood filler content. The tensile and fl exural moduli of WPCs increased with i ncreasing amount of wood fillers into the biopolymer, but WPCs became more brittle compared to t he neat polymer. Incorporation of spruce sawdust modified the ther mal properties of polymer: The degra dation, cold crystallization, a nd melting temperatures shifted to higher temperatures when spruce sawdust was added into polymer. The termite, fungal and water absorption resistance of WPCs decreased with increasing wood amount in WPCs, but remained in durability class 1 (durable) concerning fungal resistance and quoted 1 (attempted attack) in visual rating regarding to the termites resistance except that the WPC with the highest wood content (30 wt%) rated 2 (slight atta ck) indicating a long term durability. All the results showed the possibility to elaborate the easy injectable composite material s with adjustable properties by incorpor ation of BIOPLAST® GS 2189 and spruce sawdust. Therefore, lightweight WPCs allow both to recyc le wood industry byproducts and to produce a full ecologic material.

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Main Authors: Atli, Atilla, Candelier, Kévin, Alteyrac, Jérôme
Format: article biblioteca
Language:eng
Subjects:K50 - Technologie des produits forestiers, 000 - Autres thèmes, bois, panneau composite, matière plastique, propriété technologique, http://aims.fao.org/aos/agrovoc/c_8421, http://aims.fao.org/aos/agrovoc/c_32409, http://aims.fao.org/aos/agrovoc/c_5998, http://aims.fao.org/aos/agrovoc/c_2572,
Online Access:http://agritrop.cirad.fr/588180/
http://agritrop.cirad.fr/588180/1/Mechanical-Thermal-and-Biodegradable-Properties-of-Bioplast-Spruce-Green-Wood-Polymer-Composites.pdf
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spelling dig-cirad-fr-5881802024-01-29T01:04:52Z http://agritrop.cirad.fr/588180/ http://agritrop.cirad.fr/588180/ Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites. Atli Atilla, Candelier Kévin, Alteyrac Jérôme. 2018. International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering, 12 (5) : 226-238.http://scholar.waset.org/1307-6892/10009151 <http://scholar.waset.org/1307-6892/10009151> Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites Atli, Atilla Candelier, Kévin Alteyrac, Jérôme eng 2018 International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering K50 - Technologie des produits forestiers 000 - Autres thèmes bois panneau composite matière plastique propriété technologique http://aims.fao.org/aos/agrovoc/c_8421 http://aims.fao.org/aos/agrovoc/c_32409 http://aims.fao.org/aos/agrovoc/c_5998 http://aims.fao.org/aos/agrovoc/c_2572 Environmental and sustainability concerns push the industries to manufacture alternative materials having less environmental impact. The Wood Plastic Composites (WPCs) produced by blending the biopolymers and natural fillers permit not only to tailor the desired properties of materials but also are the solution to meet the environmenta l and sustainability requireme nts. This work presents the elaboration and characterization of the fully green WPCs prepared by blending a biopolymer, BIOPLAST® GS 2189 and spruce sawdust used as filler with different amounts. Since both components are bio-based, the resulting material is entire ly environmentally friendly. The mechanical, thermal, structural properties of these WPCs were characterized by different analyt ical methods like tensile, flexural and impact tests, Thermogravimet ric Analysis (TGA), Differential Scanning Calorimetry (DSC) and X- ray Diffraction (XRD). Their wat er absorption properties and resistance to the termite and fungal attacks were determined in relation with different wood filler content. The tensile and fl exural moduli of WPCs increased with i ncreasing amount of wood fillers into the biopolymer, but WPCs became more brittle compared to t he neat polymer. Incorporation of spruce sawdust modified the ther mal properties of polymer: The degra dation, cold crystallization, a nd melting temperatures shifted to higher temperatures when spruce sawdust was added into polymer. The termite, fungal and water absorption resistance of WPCs decreased with increasing wood amount in WPCs, but remained in durability class 1 (durable) concerning fungal resistance and quoted 1 (attempted attack) in visual rating regarding to the termites resistance except that the WPC with the highest wood content (30 wt%) rated 2 (slight atta ck) indicating a long term durability. All the results showed the possibility to elaborate the easy injectable composite material s with adjustable properties by incorpor ation of BIOPLAST® GS 2189 and spruce sawdust. Therefore, lightweight WPCs allow both to recyc le wood industry byproducts and to produce a full ecologic material. article info:eu-repo/semantics/article Journal Article info:eu-repo/semantics/publishedVersion http://agritrop.cirad.fr/588180/1/Mechanical-Thermal-and-Biodegradable-Properties-of-Bioplast-Spruce-Green-Wood-Polymer-Composites.pdf text Cirad license info:eu-repo/semantics/openAccess https://agritrop.cirad.fr/mention_legale.html http://scholar.waset.org/1307-6892/10009151 info:eu-repo/semantics/altIdentifier/purl/http://scholar.waset.org/1307-6892/10009151
institution CIRAD FR
collection DSpace
country Francia
countrycode FR
component Bibliográfico
access En linea
databasecode dig-cirad-fr
tag biblioteca
region Europa del Oeste
libraryname Biblioteca del CIRAD Francia
language eng
topic K50 - Technologie des produits forestiers
000 - Autres thèmes
bois
panneau composite
matière plastique
propriété technologique
http://aims.fao.org/aos/agrovoc/c_8421
http://aims.fao.org/aos/agrovoc/c_32409
http://aims.fao.org/aos/agrovoc/c_5998
http://aims.fao.org/aos/agrovoc/c_2572
K50 - Technologie des produits forestiers
000 - Autres thèmes
bois
panneau composite
matière plastique
propriété technologique
http://aims.fao.org/aos/agrovoc/c_8421
http://aims.fao.org/aos/agrovoc/c_32409
http://aims.fao.org/aos/agrovoc/c_5998
http://aims.fao.org/aos/agrovoc/c_2572
spellingShingle K50 - Technologie des produits forestiers
000 - Autres thèmes
bois
panneau composite
matière plastique
propriété technologique
http://aims.fao.org/aos/agrovoc/c_8421
http://aims.fao.org/aos/agrovoc/c_32409
http://aims.fao.org/aos/agrovoc/c_5998
http://aims.fao.org/aos/agrovoc/c_2572
K50 - Technologie des produits forestiers
000 - Autres thèmes
bois
panneau composite
matière plastique
propriété technologique
http://aims.fao.org/aos/agrovoc/c_8421
http://aims.fao.org/aos/agrovoc/c_32409
http://aims.fao.org/aos/agrovoc/c_5998
http://aims.fao.org/aos/agrovoc/c_2572
Atli, Atilla
Candelier, Kévin
Alteyrac, Jérôme
Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites
description Environmental and sustainability concerns push the industries to manufacture alternative materials having less environmental impact. The Wood Plastic Composites (WPCs) produced by blending the biopolymers and natural fillers permit not only to tailor the desired properties of materials but also are the solution to meet the environmenta l and sustainability requireme nts. This work presents the elaboration and characterization of the fully green WPCs prepared by blending a biopolymer, BIOPLAST® GS 2189 and spruce sawdust used as filler with different amounts. Since both components are bio-based, the resulting material is entire ly environmentally friendly. The mechanical, thermal, structural properties of these WPCs were characterized by different analyt ical methods like tensile, flexural and impact tests, Thermogravimet ric Analysis (TGA), Differential Scanning Calorimetry (DSC) and X- ray Diffraction (XRD). Their wat er absorption properties and resistance to the termite and fungal attacks were determined in relation with different wood filler content. The tensile and fl exural moduli of WPCs increased with i ncreasing amount of wood fillers into the biopolymer, but WPCs became more brittle compared to t he neat polymer. Incorporation of spruce sawdust modified the ther mal properties of polymer: The degra dation, cold crystallization, a nd melting temperatures shifted to higher temperatures when spruce sawdust was added into polymer. The termite, fungal and water absorption resistance of WPCs decreased with increasing wood amount in WPCs, but remained in durability class 1 (durable) concerning fungal resistance and quoted 1 (attempted attack) in visual rating regarding to the termites resistance except that the WPC with the highest wood content (30 wt%) rated 2 (slight atta ck) indicating a long term durability. All the results showed the possibility to elaborate the easy injectable composite material s with adjustable properties by incorpor ation of BIOPLAST® GS 2189 and spruce sawdust. Therefore, lightweight WPCs allow both to recyc le wood industry byproducts and to produce a full ecologic material.
format article
topic_facet K50 - Technologie des produits forestiers
000 - Autres thèmes
bois
panneau composite
matière plastique
propriété technologique
http://aims.fao.org/aos/agrovoc/c_8421
http://aims.fao.org/aos/agrovoc/c_32409
http://aims.fao.org/aos/agrovoc/c_5998
http://aims.fao.org/aos/agrovoc/c_2572
author Atli, Atilla
Candelier, Kévin
Alteyrac, Jérôme
author_facet Atli, Atilla
Candelier, Kévin
Alteyrac, Jérôme
author_sort Atli, Atilla
title Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites
title_short Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites
title_full Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites
title_fullStr Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites
title_full_unstemmed Mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites
title_sort mechanical, thermal and biodegradable properties of bioplast-spruce green wood polymer composites
url http://agritrop.cirad.fr/588180/
http://agritrop.cirad.fr/588180/1/Mechanical-Thermal-and-Biodegradable-Properties-of-Bioplast-Spruce-Green-Wood-Polymer-Composites.pdf
work_keys_str_mv AT atliatilla mechanicalthermalandbiodegradablepropertiesofbioplastsprucegreenwoodpolymercomposites
AT candelierkevin mechanicalthermalandbiodegradablepropertiesofbioplastsprucegreenwoodpolymercomposites
AT alteyracjerome mechanicalthermalandbiodegradablepropertiesofbioplastsprucegreenwoodpolymercomposites
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