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Effects of the Diamine Chain End Functionalized Liquid Butadiene Rubber as a Processing Aid on the Properties of Carbon-Black-Filled Rubber Compounds

The implementation of vehicle electrification and autonomous driving technologies has recently emphasized the importance of abrasion resistance and fuel efficiency of truck bus radial (TBR) tire treads that undergo high loads and long driving times. In this study, a functionalized liquid butadiene r...

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Detalles Bibliográficos
Autores principales: Song, Sanghoon, Yeom, Gyeongdong, Kim, Donghyuk, Ryu, Gyeongchan, Hwang, Kiwon, Ahn, Byungkyu, Choi, Haeun, Paik, Hyun-Jong, Chung, Sungwook, Kim, Wonho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9415399/
https://www.ncbi.nlm.nih.gov/pubmed/36015600
http://dx.doi.org/10.3390/polym14163343
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author Song, Sanghoon
Yeom, Gyeongdong
Kim, Donghyuk
Ryu, Gyeongchan
Hwang, Kiwon
Ahn, Byungkyu
Choi, Haeun
Paik, Hyun-Jong
Chung, Sungwook
Kim, Wonho
author_facet Song, Sanghoon
Yeom, Gyeongdong
Kim, Donghyuk
Ryu, Gyeongchan
Hwang, Kiwon
Ahn, Byungkyu
Choi, Haeun
Paik, Hyun-Jong
Chung, Sungwook
Kim, Wonho
author_sort Song, Sanghoon
collection PubMed
description The implementation of vehicle electrification and autonomous driving technologies has recently emphasized the importance of abrasion resistance and fuel efficiency of truck bus radial (TBR) tire treads that undergo high loads and long driving times. In this study, a functionalized liquid butadiene rubber (F-LqBR) was introduced to replace the treated distillate aromatic extracted (TDAE) oil as a way to improve abrasion resistance and fuel efficiency in the TBR tire tread compound and to solve the oil migration. First, radical polymerization was used to synthesize nonfunctionalized LqBR (N-LqBR) and amino-LqBR with an amine group at the chain ends. The synthesized LqBRs were then substituted in place of TDAE oil to manufacture carbon-black-filled natural rubber (NR) compounds and to evaluate their physical properties. The results show that LqBRs improved the migration resistance and enhanced the abrasion resistance by lowering the glass transition temperature (T(g)) of the compound. In particular, amino-LqBR improved carbon black dispersion in the rubber matrix through a chemical bond between the functional group of the carbon black surface and the base rubber. In conclusion, amino-LqBR successfully served as a processing aid in a carbon black-filled NR compound while simultaneously enhancing its fuel efficiency and abrasion resistance.
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spelling pubmed-94153992022-08-27 Effects of the Diamine Chain End Functionalized Liquid Butadiene Rubber as a Processing Aid on the Properties of Carbon-Black-Filled Rubber Compounds Song, Sanghoon Yeom, Gyeongdong Kim, Donghyuk Ryu, Gyeongchan Hwang, Kiwon Ahn, Byungkyu Choi, Haeun Paik, Hyun-Jong Chung, Sungwook Kim, Wonho Polymers (Basel) Article The implementation of vehicle electrification and autonomous driving technologies has recently emphasized the importance of abrasion resistance and fuel efficiency of truck bus radial (TBR) tire treads that undergo high loads and long driving times. In this study, a functionalized liquid butadiene rubber (F-LqBR) was introduced to replace the treated distillate aromatic extracted (TDAE) oil as a way to improve abrasion resistance and fuel efficiency in the TBR tire tread compound and to solve the oil migration. First, radical polymerization was used to synthesize nonfunctionalized LqBR (N-LqBR) and amino-LqBR with an amine group at the chain ends. The synthesized LqBRs were then substituted in place of TDAE oil to manufacture carbon-black-filled natural rubber (NR) compounds and to evaluate their physical properties. The results show that LqBRs improved the migration resistance and enhanced the abrasion resistance by lowering the glass transition temperature (T(g)) of the compound. In particular, amino-LqBR improved carbon black dispersion in the rubber matrix through a chemical bond between the functional group of the carbon black surface and the base rubber. In conclusion, amino-LqBR successfully served as a processing aid in a carbon black-filled NR compound while simultaneously enhancing its fuel efficiency and abrasion resistance. MDPI 2022-08-16 /pmc/articles/PMC9415399/ /pubmed/36015600 http://dx.doi.org/10.3390/polym14163343 Text en © 2022 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
Song, Sanghoon
Yeom, Gyeongdong
Kim, Donghyuk
Ryu, Gyeongchan
Hwang, Kiwon
Ahn, Byungkyu
Choi, Haeun
Paik, Hyun-Jong
Chung, Sungwook
Kim, Wonho
Effects of the Diamine Chain End Functionalized Liquid Butadiene Rubber as a Processing Aid on the Properties of Carbon-Black-Filled Rubber Compounds
title Effects of the Diamine Chain End Functionalized Liquid Butadiene Rubber as a Processing Aid on the Properties of Carbon-Black-Filled Rubber Compounds
title_full Effects of the Diamine Chain End Functionalized Liquid Butadiene Rubber as a Processing Aid on the Properties of Carbon-Black-Filled Rubber Compounds
title_fullStr Effects of the Diamine Chain End Functionalized Liquid Butadiene Rubber as a Processing Aid on the Properties of Carbon-Black-Filled Rubber Compounds
title_full_unstemmed Effects of the Diamine Chain End Functionalized Liquid Butadiene Rubber as a Processing Aid on the Properties of Carbon-Black-Filled Rubber Compounds
title_short Effects of the Diamine Chain End Functionalized Liquid Butadiene Rubber as a Processing Aid on the Properties of Carbon-Black-Filled Rubber Compounds
title_sort effects of the diamine chain end functionalized liquid butadiene rubber as a processing aid on the properties of carbon-black-filled rubber compounds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9415399/
https://www.ncbi.nlm.nih.gov/pubmed/36015600
http://dx.doi.org/10.3390/polym14163343
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