首页> 美国卫生研究院文献>Polymers >Giving a Second Opportunity to Tire Waste: An Alternative Path for the Development of Sustainable Self-Healing Styrene–Butadiene Rubber Compounds Overcoming the Magic Triangle of Tires
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Giving a Second Opportunity to Tire Waste: An Alternative Path for the Development of Sustainable Self-Healing Styrene–Butadiene Rubber Compounds Overcoming the Magic Triangle of Tires

机译:为轮胎废料提供第二次机会:克服轮胎魔术三角问题的可持续自我修复苯乙烯-丁二烯橡胶混合物发展的替代途径

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摘要

Current regulations demand tires with long lifetime and reduced fuel consumption without sacrificing car safety. However, tire technology still needs to reach a suitable balance between these three indicators. Here, we address them by developing a self-healing tire compound using styrene–butadiene rubber (SBR) as the matrix and reclaimed tire waste as the sustainable filler. The addition of ground tire rubber (GTR) to the matrix simultaneously improved the rolling resistance and maintained both wet grip and healing ability. We provide an in-depth analysis of the healing behavior of the material at a scale close to the relevant molecular processes through a systematic dynamic-mechanical and dielectric analysis. We found that SBR and SBR/GTR compounds show a complete recovery of stiffness and relaxation dynamics after being damaged by cyclic deformation, resulting in a heterogeneous repaired rubber network. This new development could well overcome the so-called magic triangle of tires, which is certainly one of the key objectives of the tire industry.
机译:当前的法规要求轮胎具有长寿命并且在不牺牲汽车安全性的情况下减少燃料消耗。但是,轮胎技术仍然需要在这三个指标之间达到适当的平衡。在这里,我们通过开发一种以苯乙烯-丁二烯橡胶(SBR)为基质并以回收的轮胎废料为可持续填料的自修复轮胎胶来解决这些问题。向基体中添加磨碎的轮胎橡胶(GTR)同时改善了滚动阻力,并保持了湿抓地力和修复能力。我们通过系统的动态力学和介电分析,以接近相关分子过程的规模对材料的修复行为进行了深入分析。我们发现,SBR和SBR / GTR化合物在受到周期性变形破坏后,显示出刚度和松弛动力学的完全恢复,从而导致异质修复的橡胶网络。这一新发展很可能会克服所谓的轮胎魔三角,这无疑是轮胎行业的主要目标之一。

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