Cargando…

The Characteristics of Natural Rubber Composites with Klason Lignin as a Green Reinforcing Filler: Thermal Stability, Mechanical and Dynamical Properties

The objective of this work was to investigate the influences of Klason lignin as a filler on the thermal stability and properties of natural rubber composites. The modulus and tensile strength of stabilized vulcanizates were measured before and after thermo-oxidative aging. It was determined that li...

Descripción completa

Detalles Bibliográficos
Autores principales: Intapun, Jutharat, Rungruang, Thipsuda, Suchat, Sunisa, Cherdchim, Banyat, Hiziroglu, Salim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036919/
https://www.ncbi.nlm.nih.gov/pubmed/33807283
http://dx.doi.org/10.3390/polym13071109
_version_ 1783677022478794752
author Intapun, Jutharat
Rungruang, Thipsuda
Suchat, Sunisa
Cherdchim, Banyat
Hiziroglu, Salim
author_facet Intapun, Jutharat
Rungruang, Thipsuda
Suchat, Sunisa
Cherdchim, Banyat
Hiziroglu, Salim
author_sort Intapun, Jutharat
collection PubMed
description The objective of this work was to investigate the influences of Klason lignin as a filler on the thermal stability and properties of natural rubber composites. The modulus and tensile strength of stabilized vulcanizates were measured before and after thermo-oxidative aging. It was determined that lignin filled natural rubber had significantly enhanced thermo-oxidative aging and mechanical properties compared to those of controlled samples. The reinforcement effect of lignin increased stress with lignin loading but it decreased at 20 phr, suggesting that the reinforcement mechanism of lignin was via strain-induced crystallization. The composite samples with 10 phr filler loading had the highest mechanical properties as well as thermo-oxidative degradation resistance. Such a finding could be due to interactions between the Klason lignin filler and natural rubber matrix. Based on the findings in this work, the degradation temperature of Klason lignin occurred at 420 °C. The absorption peaks at wavenumbers 1192 and 1374 cm(−1) indicated that C–O stretching vibrations of the syringyl and guaiacyl rings of hardwood lignin existed. It was also found that the Klason lignin–rubber composite containing 10 phr had the highest stress–strain, 100% modulus, and tensile strength, while lignin showed increasing aging resistance of the composite comparable with commercial antioxidant at 1.5 phr. It appears that Klason lignin from rubberwood could be used as a green antioxidant and alternative reinforcing filler and for high performance eco-friendly natural rubber biocomposites.
format Online
Article
Text
id pubmed-8036919
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80369192021-04-12 The Characteristics of Natural Rubber Composites with Klason Lignin as a Green Reinforcing Filler: Thermal Stability, Mechanical and Dynamical Properties Intapun, Jutharat Rungruang, Thipsuda Suchat, Sunisa Cherdchim, Banyat Hiziroglu, Salim Polymers (Basel) Article The objective of this work was to investigate the influences of Klason lignin as a filler on the thermal stability and properties of natural rubber composites. The modulus and tensile strength of stabilized vulcanizates were measured before and after thermo-oxidative aging. It was determined that lignin filled natural rubber had significantly enhanced thermo-oxidative aging and mechanical properties compared to those of controlled samples. The reinforcement effect of lignin increased stress with lignin loading but it decreased at 20 phr, suggesting that the reinforcement mechanism of lignin was via strain-induced crystallization. The composite samples with 10 phr filler loading had the highest mechanical properties as well as thermo-oxidative degradation resistance. Such a finding could be due to interactions between the Klason lignin filler and natural rubber matrix. Based on the findings in this work, the degradation temperature of Klason lignin occurred at 420 °C. The absorption peaks at wavenumbers 1192 and 1374 cm(−1) indicated that C–O stretching vibrations of the syringyl and guaiacyl rings of hardwood lignin existed. It was also found that the Klason lignin–rubber composite containing 10 phr had the highest stress–strain, 100% modulus, and tensile strength, while lignin showed increasing aging resistance of the composite comparable with commercial antioxidant at 1.5 phr. It appears that Klason lignin from rubberwood could be used as a green antioxidant and alternative reinforcing filler and for high performance eco-friendly natural rubber biocomposites. MDPI 2021-03-31 /pmc/articles/PMC8036919/ /pubmed/33807283 http://dx.doi.org/10.3390/polym13071109 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Intapun, Jutharat
Rungruang, Thipsuda
Suchat, Sunisa
Cherdchim, Banyat
Hiziroglu, Salim
The Characteristics of Natural Rubber Composites with Klason Lignin as a Green Reinforcing Filler: Thermal Stability, Mechanical and Dynamical Properties
title The Characteristics of Natural Rubber Composites with Klason Lignin as a Green Reinforcing Filler: Thermal Stability, Mechanical and Dynamical Properties
title_full The Characteristics of Natural Rubber Composites with Klason Lignin as a Green Reinforcing Filler: Thermal Stability, Mechanical and Dynamical Properties
title_fullStr The Characteristics of Natural Rubber Composites with Klason Lignin as a Green Reinforcing Filler: Thermal Stability, Mechanical and Dynamical Properties
title_full_unstemmed The Characteristics of Natural Rubber Composites with Klason Lignin as a Green Reinforcing Filler: Thermal Stability, Mechanical and Dynamical Properties
title_short The Characteristics of Natural Rubber Composites with Klason Lignin as a Green Reinforcing Filler: Thermal Stability, Mechanical and Dynamical Properties
title_sort characteristics of natural rubber composites with klason lignin as a green reinforcing filler: thermal stability, mechanical and dynamical properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036919/
https://www.ncbi.nlm.nih.gov/pubmed/33807283
http://dx.doi.org/10.3390/polym13071109
work_keys_str_mv AT intapunjutharat thecharacteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT rungruangthipsuda thecharacteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT suchatsunisa thecharacteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT cherdchimbanyat thecharacteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT hiziroglusalim thecharacteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT intapunjutharat characteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT rungruangthipsuda characteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT suchatsunisa characteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT cherdchimbanyat characteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties
AT hiziroglusalim characteristicsofnaturalrubbercompositeswithklasonligninasagreenreinforcingfillerthermalstabilitymechanicalanddynamicalproperties