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硅烷封端液态丁二烯橡胶用于白炭黑填充橡胶复合材料的优化终端性能

Optimized End Functionality of Silane-Terminated Liquid Butadiene Rubber for Silica-Filled Rubber Compounds.

作者信息

Song Sanghoon, Choi Haeun, Jeong Junhwan, Kim Seongyoon, Kwon Myeonghee, Kim Minji, Kim Donghyuk, Jeon Heungbae, Paik Hyun-Jong, Chung Sungwook, Kim Wonho

机构信息

School of Chemical Engineering, Pusan National University, Busan 46241, Republic of Korea.

Department of Polymer Science and Engineering, Pusan National University, Busan 46241, Republic of Korea.

出版信息

Polymers (Basel). 2023 Jun 6;15(12):2583. doi: 10.3390/polym15122583.

Abstract

As the world is shifting from internal combustion engine vehicles to electric vehicles in response to environmental pollution, the tire industry has been conducting research on tire performance to meet the requirements of electric vehicles. In this experiment, functionalized liquid butadiene rubber (F-LqBR) with triethoxysilyl groups at both ends was introduced into a silica-filled rubber compound as a substitute for treated distillate aromatic extract (TDAE) oil, and comparative evaluation was conducted according to the number of triethoxysilyl groups. The results showed that F-LqBRs improved silica dispersion in the rubber matrix through the formation of chemical bonds between silanol groups and the base rubber, and reduced rolling resistance by limiting chain end mobility and improving filler-rubber interaction. However, when the number of triethoxysilyl groups in F-LqBR was increased from two to four, self-condensation increased, the reactivity of the silanol groups decreased, and the improvement of properties was reduced. As a result, the optimized end functionality of triethoxysilyl groups for F-LqBR in silica-filled rubber compound was two. The 2-Azo-LqBR with the optimized functionality showed an improvement of 10% in rolling resistance, 16% in snow traction, and 17% in abrasion resistance when 10 phr of TDAE oil was substituted.

摘要

随着世界为应对环境污染而从内燃机车辆转向电动汽车,轮胎行业一直在开展轮胎性能研究以满足电动汽车的要求。在本实验中,将两端带有三乙氧基甲硅烷基的功能化液态丁二烯橡胶(F-LqBR)作为处理过的馏出芳烃抽提物(TDAE)油的替代品引入到二氧化硅填充的橡胶复合材料中,并根据三乙氧基甲硅烷基的数量进行了对比评估。结果表明,F-LqBR通过在硅烷醇基团与基础橡胶之间形成化学键改善了二氧化硅在橡胶基体中的分散性,并通过限制链端流动性和改善填料与橡胶的相互作用降低了滚动阻力。然而,当F-LqBR中三乙氧基甲硅烷基的数量从两个增加到四个时,自缩合增加,硅烷醇基团的反应性降低,性能的改善也随之减少。因此,对于二氧化硅填充橡胶复合材料中的F-LqBR,三乙氧基甲硅烷基的最佳端基官能度为两个。当替代10份TDAE油时,具有最佳官能度的2-偶氮-LqBR的滚动阻力提高了10%,雪地牵引力提高了16%,耐磨性提高了17%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d40/10303379/e04d95484c5d/polymers-15-02583-sch001.jpg

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