Analysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties
Silica and carbon black co-filled rubber composite was modified by multi-functional silane coupling agent. Such modification significantly enhanced the filler–rubber interaction and improved mechanical properties and dynamic mechanical properties.
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De Gruyter
2021
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oai:doaj.org-article:a2d474d9f0d34491ab29075ab15cc9322021-12-05T14:10:47ZAnalysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties1618-722910.1515/epoly-2021-0034https://doaj.org/article/a2d474d9f0d34491ab29075ab15cc9322021-04-01T00:00:00Zhttps://doi.org/10.1515/epoly-2021-0034https://doaj.org/toc/1618-7229Silica and carbon black co-filled rubber composite was modified by multi-functional silane coupling agent. Such modification significantly enhanced the filler–rubber interaction and improved mechanical properties and dynamic mechanical properties.Wang XuefeiWu LinglingYu HaiwenXiao TongliangLi HuamingYang JunDe Gruyterarticlemulti-functional silane coupling agentsilica/carbon black co-filled rubber compositefiller–rubber interactionmechanical propertiesdynamic mechanical propertiesPolymers and polymer manufactureTP1080-1185ENe-Polymers, Vol 21, Iss 1, Pp 279-288 (2021) |
institution |
DOAJ |
collection |
DOAJ |
language |
EN |
topic |
multi-functional silane coupling agent silica/carbon black co-filled rubber composite filler–rubber interaction mechanical properties dynamic mechanical properties Polymers and polymer manufacture TP1080-1185 |
spellingShingle |
multi-functional silane coupling agent silica/carbon black co-filled rubber composite filler–rubber interaction mechanical properties dynamic mechanical properties Polymers and polymer manufacture TP1080-1185 Wang Xuefei Wu Lingling Yu Haiwen Xiao Tongliang Li Huaming Yang Jun Analysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties |
description |
Silica and carbon black co-filled rubber composite was modified by multi-functional silane coupling agent. Such modification significantly enhanced the filler–rubber interaction and improved mechanical properties and dynamic mechanical properties. |
format |
article |
author |
Wang Xuefei Wu Lingling Yu Haiwen Xiao Tongliang Li Huaming Yang Jun |
author_facet |
Wang Xuefei Wu Lingling Yu Haiwen Xiao Tongliang Li Huaming Yang Jun |
author_sort |
Wang Xuefei |
title |
Analysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties |
title_short |
Analysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties |
title_full |
Analysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties |
title_fullStr |
Analysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties |
title_full_unstemmed |
Analysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties |
title_sort |
analysis of effect of modification of silica and carbon black co-filled rubber composite on mechanical properties |
publisher |
De Gruyter |
publishDate |
2021 |
url |
https://doaj.org/article/a2d474d9f0d34491ab29075ab15cc932 |
work_keys_str_mv |
AT wangxuefei analysisofeffectofmodificationofsilicaandcarbonblackcofilledrubbercompositeonmechanicalproperties AT wulingling analysisofeffectofmodificationofsilicaandcarbonblackcofilledrubbercompositeonmechanicalproperties AT yuhaiwen analysisofeffectofmodificationofsilicaandcarbonblackcofilledrubbercompositeonmechanicalproperties AT xiaotongliang analysisofeffectofmodificationofsilicaandcarbonblackcofilledrubbercompositeonmechanicalproperties AT lihuaming analysisofeffectofmodificationofsilicaandcarbonblackcofilledrubbercompositeonmechanicalproperties AT yangjun analysisofeffectofmodificationofsilicaandcarbonblackcofilledrubbercompositeonmechanicalproperties |
_version_ |
1718371738098597888 |