Cargando…

Surface Modification of Staple Carbon Fiber by Dopamine to Reinforce Natural Latex Composite

Carbon fiber significantly enhances the mechanical, thermal and electrical properties of rubber composites, which are widely used in aerospace, military, national defense and other cutting-edge fields. The preparation of a high-performance carbon fiber rubber composite has been a research hotspot, b...

Descripción completa

Detalles Bibliográficos
Autores principales: Tian, Xiaolong, Han, Shuang, Zhuang, Qianxiao, Bian, Huiguang, Li, Shaoming, Zhang, Changquan, Wang, Chuansheng, Han, Wenwen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7240523/
https://www.ncbi.nlm.nih.gov/pubmed/32344517
http://dx.doi.org/10.3390/polym12040988
_version_ 1783536903098728448
author Tian, Xiaolong
Han, Shuang
Zhuang, Qianxiao
Bian, Huiguang
Li, Shaoming
Zhang, Changquan
Wang, Chuansheng
Han, Wenwen
author_facet Tian, Xiaolong
Han, Shuang
Zhuang, Qianxiao
Bian, Huiguang
Li, Shaoming
Zhang, Changquan
Wang, Chuansheng
Han, Wenwen
author_sort Tian, Xiaolong
collection PubMed
description Carbon fiber significantly enhances the mechanical, thermal and electrical properties of rubber composites, which are widely used in aerospace, military, national defense and other cutting-edge fields. The preparation of a high-performance carbon fiber rubber composite has been a research hotspot, because the surface of carbon fiber is smooth, reactive inert and has a poor adhesion with rubber. In this paper, a high-performance rubber composite is prepared by mixing dopamine-modified staple carbon fiber with natural latex, and the mechanisms of modified carbon fiber-reinforced natural latex composite are explored. The experimental results show that the surface-modified staple carbon fiber forms uniform and widely covered polydopamine coatings, which significantly improve the interface adhesion between the carbon fiber and the rubber matrix. Meanwhile, when the concentration of dopamine is 1.5 g/L and the staple carbon fiber is modified for 6h, the carbon fiber rubber composite shows excellent conductivity, thermal conductivity, and dynamic mechanical properties, and its tensile strength is 10.6% higher than that of the unmodified sample.
format Online
Article
Text
id pubmed-7240523
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-72405232020-06-11 Surface Modification of Staple Carbon Fiber by Dopamine to Reinforce Natural Latex Composite Tian, Xiaolong Han, Shuang Zhuang, Qianxiao Bian, Huiguang Li, Shaoming Zhang, Changquan Wang, Chuansheng Han, Wenwen Polymers (Basel) Article Carbon fiber significantly enhances the mechanical, thermal and electrical properties of rubber composites, which are widely used in aerospace, military, national defense and other cutting-edge fields. The preparation of a high-performance carbon fiber rubber composite has been a research hotspot, because the surface of carbon fiber is smooth, reactive inert and has a poor adhesion with rubber. In this paper, a high-performance rubber composite is prepared by mixing dopamine-modified staple carbon fiber with natural latex, and the mechanisms of modified carbon fiber-reinforced natural latex composite are explored. The experimental results show that the surface-modified staple carbon fiber forms uniform and widely covered polydopamine coatings, which significantly improve the interface adhesion between the carbon fiber and the rubber matrix. Meanwhile, when the concentration of dopamine is 1.5 g/L and the staple carbon fiber is modified for 6h, the carbon fiber rubber composite shows excellent conductivity, thermal conductivity, and dynamic mechanical properties, and its tensile strength is 10.6% higher than that of the unmodified sample. MDPI 2020-04-24 /pmc/articles/PMC7240523/ /pubmed/32344517 http://dx.doi.org/10.3390/polym12040988 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tian, Xiaolong
Han, Shuang
Zhuang, Qianxiao
Bian, Huiguang
Li, Shaoming
Zhang, Changquan
Wang, Chuansheng
Han, Wenwen
Surface Modification of Staple Carbon Fiber by Dopamine to Reinforce Natural Latex Composite
title Surface Modification of Staple Carbon Fiber by Dopamine to Reinforce Natural Latex Composite
title_full Surface Modification of Staple Carbon Fiber by Dopamine to Reinforce Natural Latex Composite
title_fullStr Surface Modification of Staple Carbon Fiber by Dopamine to Reinforce Natural Latex Composite
title_full_unstemmed Surface Modification of Staple Carbon Fiber by Dopamine to Reinforce Natural Latex Composite
title_short Surface Modification of Staple Carbon Fiber by Dopamine to Reinforce Natural Latex Composite
title_sort surface modification of staple carbon fiber by dopamine to reinforce natural latex composite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7240523/
https://www.ncbi.nlm.nih.gov/pubmed/32344517
http://dx.doi.org/10.3390/polym12040988
work_keys_str_mv AT tianxiaolong surfacemodificationofstaplecarbonfiberbydopaminetoreinforcenaturallatexcomposite
AT hanshuang surfacemodificationofstaplecarbonfiberbydopaminetoreinforcenaturallatexcomposite
AT zhuangqianxiao surfacemodificationofstaplecarbonfiberbydopaminetoreinforcenaturallatexcomposite
AT bianhuiguang surfacemodificationofstaplecarbonfiberbydopaminetoreinforcenaturallatexcomposite
AT lishaoming surfacemodificationofstaplecarbonfiberbydopaminetoreinforcenaturallatexcomposite
AT zhangchangquan surfacemodificationofstaplecarbonfiberbydopaminetoreinforcenaturallatexcomposite
AT wangchuansheng surfacemodificationofstaplecarbonfiberbydopaminetoreinforcenaturallatexcomposite
AT hanwenwen surfacemodificationofstaplecarbonfiberbydopaminetoreinforcenaturallatexcomposite