Cargando…

Performance Enhancement of Polymerized, Functionalized Solution Styrene–Butadiene Rubber Composites Using Oligomeric Resin towards Extremely Safe and Energy-Saving Tires

Polymerized, functionalized solution styrene–butadiene rubber (F-SSBR) is a new type of polymerized styrene–butadiene rubber solution containing specific terminal groups, which can be used in treads for high performances. However, the wet skid resistance related to safety, the rolling resistance to...

Descripción completa

Detalles Bibliográficos
Autores principales: Ye, Neng, Wu, Zhenya, Wu, Xiaohui, Lu, Yonglai, Zhang, Liqun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316608/
https://www.ncbi.nlm.nih.gov/pubmed/35890704
http://dx.doi.org/10.3390/polym14142928
_version_ 1784754857020751872
author Ye, Neng
Wu, Zhenya
Wu, Xiaohui
Lu, Yonglai
Zhang, Liqun
author_facet Ye, Neng
Wu, Zhenya
Wu, Xiaohui
Lu, Yonglai
Zhang, Liqun
author_sort Ye, Neng
collection PubMed
description Polymerized, functionalized solution styrene–butadiene rubber (F-SSBR) is a new type of polymerized styrene–butadiene rubber solution containing specific terminal groups, which can be used in treads for high performances. However, the wet skid resistance related to safety, the rolling resistance to energy consumption, and the wear resistance to service life are often contradictory and form the performance “magic triangle”. In this work, oligomeric resins, including Coumarone resin, C(9) resin, C(5)/C(9) resin and a styrene-α-methyl styrene copolymer (SSC), were used as tire functional additives and selected to replace treated distillate aromatic extract (TDAE) to improve the performances of silica-filled F-SSBR composites. The C(9) resin, C(5)/C(9) resin and SSC could enhance the modulus at 300% and tensile strength of the F-SSBR composite. The four resins could improve the wet skid resistance and wear resistance of the composites. However, Coumarone resin caused poor silica dispersion in the F-SSBR matrix and eventually, the lower modulus, higher loss factor at 60 °C and the higher heat buildup in the composite were comparative to the composite with TDAE. Furthermore, the synergistic effect of the C(5)/C(9) resin and SSC was found to improve the mechanical performance of the composites and it resulted in higher tensile strength and modulus, and a lower heat buildup, compared to the case when only TDAE was used. It is noted that the properties “magic triangle” was broken by the C(5)/C(9) resin and SSC, and the C(5)/C(9)10T15 increased the wet skid resistance by 21.7%, fuel-saving rate by 2.3%, and wear resistance by 8.3%, while S20T5 increased the wet skid resistance by 30.4%, fuel-saving rate by 7%, and wear resistance by 25% compared with CG.
format Online
Article
Text
id pubmed-9316608
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93166082022-07-27 Performance Enhancement of Polymerized, Functionalized Solution Styrene–Butadiene Rubber Composites Using Oligomeric Resin towards Extremely Safe and Energy-Saving Tires Ye, Neng Wu, Zhenya Wu, Xiaohui Lu, Yonglai Zhang, Liqun Polymers (Basel) Article Polymerized, functionalized solution styrene–butadiene rubber (F-SSBR) is a new type of polymerized styrene–butadiene rubber solution containing specific terminal groups, which can be used in treads for high performances. However, the wet skid resistance related to safety, the rolling resistance to energy consumption, and the wear resistance to service life are often contradictory and form the performance “magic triangle”. In this work, oligomeric resins, including Coumarone resin, C(9) resin, C(5)/C(9) resin and a styrene-α-methyl styrene copolymer (SSC), were used as tire functional additives and selected to replace treated distillate aromatic extract (TDAE) to improve the performances of silica-filled F-SSBR composites. The C(9) resin, C(5)/C(9) resin and SSC could enhance the modulus at 300% and tensile strength of the F-SSBR composite. The four resins could improve the wet skid resistance and wear resistance of the composites. However, Coumarone resin caused poor silica dispersion in the F-SSBR matrix and eventually, the lower modulus, higher loss factor at 60 °C and the higher heat buildup in the composite were comparative to the composite with TDAE. Furthermore, the synergistic effect of the C(5)/C(9) resin and SSC was found to improve the mechanical performance of the composites and it resulted in higher tensile strength and modulus, and a lower heat buildup, compared to the case when only TDAE was used. It is noted that the properties “magic triangle” was broken by the C(5)/C(9) resin and SSC, and the C(5)/C(9)10T15 increased the wet skid resistance by 21.7%, fuel-saving rate by 2.3%, and wear resistance by 8.3%, while S20T5 increased the wet skid resistance by 30.4%, fuel-saving rate by 7%, and wear resistance by 25% compared with CG. MDPI 2022-07-20 /pmc/articles/PMC9316608/ /pubmed/35890704 http://dx.doi.org/10.3390/polym14142928 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
Ye, Neng
Wu, Zhenya
Wu, Xiaohui
Lu, Yonglai
Zhang, Liqun
Performance Enhancement of Polymerized, Functionalized Solution Styrene–Butadiene Rubber Composites Using Oligomeric Resin towards Extremely Safe and Energy-Saving Tires
title Performance Enhancement of Polymerized, Functionalized Solution Styrene–Butadiene Rubber Composites Using Oligomeric Resin towards Extremely Safe and Energy-Saving Tires
title_full Performance Enhancement of Polymerized, Functionalized Solution Styrene–Butadiene Rubber Composites Using Oligomeric Resin towards Extremely Safe and Energy-Saving Tires
title_fullStr Performance Enhancement of Polymerized, Functionalized Solution Styrene–Butadiene Rubber Composites Using Oligomeric Resin towards Extremely Safe and Energy-Saving Tires
title_full_unstemmed Performance Enhancement of Polymerized, Functionalized Solution Styrene–Butadiene Rubber Composites Using Oligomeric Resin towards Extremely Safe and Energy-Saving Tires
title_short Performance Enhancement of Polymerized, Functionalized Solution Styrene–Butadiene Rubber Composites Using Oligomeric Resin towards Extremely Safe and Energy-Saving Tires
title_sort performance enhancement of polymerized, functionalized solution styrene–butadiene rubber composites using oligomeric resin towards extremely safe and energy-saving tires
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316608/
https://www.ncbi.nlm.nih.gov/pubmed/35890704
http://dx.doi.org/10.3390/polym14142928
work_keys_str_mv AT yeneng performanceenhancementofpolymerizedfunctionalizedsolutionstyrenebutadienerubbercompositesusingoligomericresintowardsextremelysafeandenergysavingtires
AT wuzhenya performanceenhancementofpolymerizedfunctionalizedsolutionstyrenebutadienerubbercompositesusingoligomericresintowardsextremelysafeandenergysavingtires
AT wuxiaohui performanceenhancementofpolymerizedfunctionalizedsolutionstyrenebutadienerubbercompositesusingoligomericresintowardsextremelysafeandenergysavingtires
AT luyonglai performanceenhancementofpolymerizedfunctionalizedsolutionstyrenebutadienerubbercompositesusingoligomericresintowardsextremelysafeandenergysavingtires
AT zhangliqun performanceenhancementofpolymerizedfunctionalizedsolutionstyrenebutadienerubbercompositesusingoligomericresintowardsextremelysafeandenergysavingtires