不同类型再生橡胶的制备及其在轮胎内胎中的应用

IF 2.7 3区 化学 Q2 POLYMER SCIENCE
Yunhui Xu, Shifeng Wang, Zaheer ul Haq, Teng Ren, Zhenggang Luo, Hui Tu, Zaixue Wang, Min Deng, Jianming Zhang, Yanan Zang, Peipei Li, Houluo Cong, Shuaishuai Song, Feng Liu
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引用次数: 0

摘要

研究了再生磨粒轮胎橡胶(RGTR)和丁基再生橡胶(BRR)在内胎橡胶中的应用。通过对轮胎内层炭黑的分散性能、流变性、力学性能、撕裂强度、动态压缩积热性能、老化性能和隔气性能进行评价,分析再生橡胶对轮胎应用的影响。结果表明,RGTR能提高轮胎内胎炭黑的分散性和撕裂强度,同时保持相当的抗拉强度,特别是在RGTR用量较低的情况下。此外,含有较少量RGTR的化合物在动态压缩试验中表现出较少的热积聚。再生程度高的RGTR具有良好的老化性能,且在较低用量下具有较好的阻气性能。研究结果表明,再生橡胶在提高子午线工程轮胎内胎性能和废物管理方面具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The preparation of different types of reclaimed rubber and their applications in tire inner liner

The preparation of different types of reclaimed rubber and their applications in tire inner liner

In this work, the application of reclaimed ground tire rubber (RGTR) and butyl reclaimed rubber (BRR) in the inner liner rubber were investigated. Carbon black dispersion, rheological, mechanical, tear strength, dynamic compression heat build-up, aging performance, and gas barrier properties of tire inner liner were evaluated to analyze the effects of reclaimed rubbers on the tire application. It was found that RGTR improves carbon black dispersion and tear strength of tire inner liner, while maintaining comparable tensile strength, particularly with low amount of RGTR. Furthermore, compounds containing lower amounts of RGTR exhibit reduced heat build-up during dynamic compression tests. Additionally, RGTR with higher reclamation degree demonstrates favorable aging performance, and has superior gas barrier properties at lower amount. These findings suggest promising opportunities for the application of reclaimed rubber to enhance the performance inner liner of Radial Engineering Tires and contribute to the waste management.

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来源期刊
Journal of Applied Polymer Science
Journal of Applied Polymer Science 化学-高分子科学
CiteScore
5.70
自引率
10.00%
发文量
1280
审稿时长
2.7 months
期刊介绍: The Journal of Applied Polymer Science is the largest peer-reviewed publication in polymers, #3 by total citations, and features results with real-world impact on membranes, polysaccharides, and much more.
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