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Light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-UV ageing properties

Weathering of wood--plastic composites (WPCs) leads to discoloration and cracks, which greatly limits their outdoor application. In this study, light stabilizers (including UV-327, HS-944 and nano-SiO(2)) were added to the shell of a co-extruded high-density polyethylene-based WPC to improve its ant...

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Autores principales: Liu, Chaozheng, Mei, Changtong, Xu, Bing, Chen, Weimin, Yong, Cheng, Wang, Ke, Wu, Qinglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society Publishing 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5990811/
https://www.ncbi.nlm.nih.gov/pubmed/29892445
http://dx.doi.org/10.1098/rsos.180074
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author Liu, Chaozheng
Mei, Changtong
Xu, Bing
Chen, Weimin
Yong, Cheng
Wang, Ke
Wu, Qinglin
author_facet Liu, Chaozheng
Mei, Changtong
Xu, Bing
Chen, Weimin
Yong, Cheng
Wang, Ke
Wu, Qinglin
author_sort Liu, Chaozheng
collection PubMed
description Weathering of wood--plastic composites (WPCs) leads to discoloration and cracks, which greatly limits their outdoor application. In this study, light stabilizers (including UV-327, HS-944 and nano-SiO(2)) were added to the shell of a co-extruded high-density polyethylene-based WPC to improve its anti-ultraviolet (UV) ageing properties and simultaneously to maintain its good mechanical properties. The results showed that UV-327 was the most effective light stabilizer for improving the mechanical and anti-UV ageing properties of the composites among the three stabilizers used. WPC samples combined with 2% UV-327 had the highest retention rates in flexural strength and also had the smoothest surface after 2500 h of UV ageing. The samples with 2% UV-327 added had the best protection for discoloration, showing the lowest values of ΔE* (colour difference) and ΔL* (luminescence) in all samples after 2500 h of UV ageing. WPC samples with 2% UV-327 were also oxidized the least after 2500 h of UV ageing. The results reported herein serve to enhance our understanding of the efficiency of light stabilizers in preventing UV degradation of WPCs, with a view to developing co-extruded WPCs with low cost, high anti-UV ageing properties and good mechanical properties for outdoor applications.
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spelling pubmed-59908112018-06-11 Light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-UV ageing properties Liu, Chaozheng Mei, Changtong Xu, Bing Chen, Weimin Yong, Cheng Wang, Ke Wu, Qinglin R Soc Open Sci Engineering Weathering of wood--plastic composites (WPCs) leads to discoloration and cracks, which greatly limits their outdoor application. In this study, light stabilizers (including UV-327, HS-944 and nano-SiO(2)) were added to the shell of a co-extruded high-density polyethylene-based WPC to improve its anti-ultraviolet (UV) ageing properties and simultaneously to maintain its good mechanical properties. The results showed that UV-327 was the most effective light stabilizer for improving the mechanical and anti-UV ageing properties of the composites among the three stabilizers used. WPC samples combined with 2% UV-327 had the highest retention rates in flexural strength and also had the smoothest surface after 2500 h of UV ageing. The samples with 2% UV-327 added had the best protection for discoloration, showing the lowest values of ΔE* (colour difference) and ΔL* (luminescence) in all samples after 2500 h of UV ageing. WPC samples with 2% UV-327 were also oxidized the least after 2500 h of UV ageing. The results reported herein serve to enhance our understanding of the efficiency of light stabilizers in preventing UV degradation of WPCs, with a view to developing co-extruded WPCs with low cost, high anti-UV ageing properties and good mechanical properties for outdoor applications. The Royal Society Publishing 2018-05-09 /pmc/articles/PMC5990811/ /pubmed/29892445 http://dx.doi.org/10.1098/rsos.180074 Text en © 2018 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Engineering
Liu, Chaozheng
Mei, Changtong
Xu, Bing
Chen, Weimin
Yong, Cheng
Wang, Ke
Wu, Qinglin
Light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-UV ageing properties
title Light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-UV ageing properties
title_full Light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-UV ageing properties
title_fullStr Light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-UV ageing properties
title_full_unstemmed Light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-UV ageing properties
title_short Light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-UV ageing properties
title_sort light stabilizers added to the shell of co-extruded wood/high-density polyethylene composites to improve mechanical and anti-uv ageing properties
topic Engineering
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5990811/
https://www.ncbi.nlm.nih.gov/pubmed/29892445
http://dx.doi.org/10.1098/rsos.180074
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