EFFECT OF NANOCLAY DISPERSION ON PHYSICAL AND MECHANICAL PROPERTIES OF WOOD FLOUR/ POLYPROPYLENE/GLASS FIBER HYBRID COMPOSITES

Polypropylene/wood flour composites having different nanoclay and glass fiber contents were fabricated by melt compounding and then injection molding. The physical and mechanical properties were evaluated. The results showed that the tensile modulus and tensile strength of the PP/wood flour composit...

Full description

Bibliographic Details
Main Authors: Behzad Kord, Seyed Mohsen Hosseini Kiakojouri
Format: Article
Language:English
Published: North Carolina State University 2011-03-01
Series:BioResources
Subjects:
Online Access:http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_06_2_1741_Kord_H_Nanoclay_Dispersion_Hybrid_Composites/957
_version_ 1828431534733918208
author Behzad Kord
Seyed Mohsen Hosseini Kiakojouri
author_facet Behzad Kord
Seyed Mohsen Hosseini Kiakojouri
author_sort Behzad Kord
collection DOAJ
description Polypropylene/wood flour composites having different nanoclay and glass fiber contents were fabricated by melt compounding and then injection molding. The physical and mechanical properties were evaluated. The results showed that the tensile modulus and tensile strength of the PP/wood flour composites increased with increasing glass fiber content. However, the impact strength of the PP/wood flour composites progressively decreased with increasing glass fiber content. Dimensional stability of the composites could be improved by increasing the glass fiber content. Also, results indicated that the tensile modulus and tensile strength of composites increased with increase of nanoclay up to 4phc and then decreased. However the impact strength and water absorption of the composites decreased with increasing the nanoclay loading. The morphology of the nanocomposites was examined by using X-ray diffraction (XRD). Morphological findings revealed an intercalated form in the sample with 4 per hundred compounds (phc) concentration of nanoclay, which implies the formation of an intercalated morphology and better dispersion than 6phc, and the d-spacing of clay layers were improved in the composite in the presence of compatibilizer. This project has shown that the composites treated with glass fiber and nanoclay will be desirable as building materials due to their improved stability and strength properties.
first_indexed 2024-12-10T18:04:41Z
format Article
id doaj.art-0b7afb17db6f41b9a73ea0a6b811feaf
institution Directory Open Access Journal
issn 1930-2126
language English
last_indexed 2024-12-10T18:04:41Z
publishDate 2011-03-01
publisher North Carolina State University
record_format Article
series BioResources
spelling doaj.art-0b7afb17db6f41b9a73ea0a6b811feaf2022-12-22T01:38:38ZengNorth Carolina State UniversityBioResources1930-21262011-03-016217411751EFFECT OF NANOCLAY DISPERSION ON PHYSICAL AND MECHANICAL PROPERTIES OF WOOD FLOUR/ POLYPROPYLENE/GLASS FIBER HYBRID COMPOSITESBehzad KordSeyed Mohsen Hosseini KiakojouriPolypropylene/wood flour composites having different nanoclay and glass fiber contents were fabricated by melt compounding and then injection molding. The physical and mechanical properties were evaluated. The results showed that the tensile modulus and tensile strength of the PP/wood flour composites increased with increasing glass fiber content. However, the impact strength of the PP/wood flour composites progressively decreased with increasing glass fiber content. Dimensional stability of the composites could be improved by increasing the glass fiber content. Also, results indicated that the tensile modulus and tensile strength of composites increased with increase of nanoclay up to 4phc and then decreased. However the impact strength and water absorption of the composites decreased with increasing the nanoclay loading. The morphology of the nanocomposites was examined by using X-ray diffraction (XRD). Morphological findings revealed an intercalated form in the sample with 4 per hundred compounds (phc) concentration of nanoclay, which implies the formation of an intercalated morphology and better dispersion than 6phc, and the d-spacing of clay layers were improved in the composite in the presence of compatibilizer. This project has shown that the composites treated with glass fiber and nanoclay will be desirable as building materials due to their improved stability and strength properties.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_06_2_1741_Kord_H_Nanoclay_Dispersion_Hybrid_Composites/957Hybrid compositeNanoclayGlass FiberPhysical PropertiesMechanical properties
spellingShingle Behzad Kord
Seyed Mohsen Hosseini Kiakojouri
EFFECT OF NANOCLAY DISPERSION ON PHYSICAL AND MECHANICAL PROPERTIES OF WOOD FLOUR/ POLYPROPYLENE/GLASS FIBER HYBRID COMPOSITES
BioResources
Hybrid composite
Nanoclay
Glass Fiber
Physical Properties
Mechanical properties
title EFFECT OF NANOCLAY DISPERSION ON PHYSICAL AND MECHANICAL PROPERTIES OF WOOD FLOUR/ POLYPROPYLENE/GLASS FIBER HYBRID COMPOSITES
title_full EFFECT OF NANOCLAY DISPERSION ON PHYSICAL AND MECHANICAL PROPERTIES OF WOOD FLOUR/ POLYPROPYLENE/GLASS FIBER HYBRID COMPOSITES
title_fullStr EFFECT OF NANOCLAY DISPERSION ON PHYSICAL AND MECHANICAL PROPERTIES OF WOOD FLOUR/ POLYPROPYLENE/GLASS FIBER HYBRID COMPOSITES
title_full_unstemmed EFFECT OF NANOCLAY DISPERSION ON PHYSICAL AND MECHANICAL PROPERTIES OF WOOD FLOUR/ POLYPROPYLENE/GLASS FIBER HYBRID COMPOSITES
title_short EFFECT OF NANOCLAY DISPERSION ON PHYSICAL AND MECHANICAL PROPERTIES OF WOOD FLOUR/ POLYPROPYLENE/GLASS FIBER HYBRID COMPOSITES
title_sort effect of nanoclay dispersion on physical and mechanical properties of wood flour polypropylene glass fiber hybrid composites
topic Hybrid composite
Nanoclay
Glass Fiber
Physical Properties
Mechanical properties
url http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_06_2_1741_Kord_H_Nanoclay_Dispersion_Hybrid_Composites/957
work_keys_str_mv AT behzadkord effectofnanoclaydispersiononphysicalandmechanicalpropertiesofwoodflourpolypropyleneglassfiberhybridcomposites
AT seyedmohsenhosseinikiakojouri effectofnanoclaydispersiononphysicalandmechanicalpropertiesofwoodflourpolypropyleneglassfiberhybridcomposites