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Turning Vulcanized Natural Rubber into a Self-Healing Polymer: Effect of the Disulfide/Polysulfide Ratio

机译:将硫化天然橡胶转变成自修复聚合物:二硫化物/多硫化物比率的影响

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摘要

A self-healing sulfur vulcanized natural rubber (NR) is here reported using the common ingredients in a traditional NR formulation. The dynamic character of the di- and polysulfide bonds naturally present in covalently cross-linked rubbers was found to be responsible for the healing ability and the full recovery of mechanical properties at moderate temperatures provided the material was employed in a nonfully cured starting state. Results show that a compromise between mechanical performance and healing capability can be reached by tailoring the amount of sulfur, the cross-linking density, and the disulfide/polysulfide ratio. The healing efficiency was found to depend on the postcuring storage time, the time between damage creation and re-establishment of mechanical contact, and the actual healing time. Furthermore, a dedicated electron spin resonance (ESR) test allowed establishing the underlying healing principle based on temperature-induced free sulfur radicals. The main observations presented here can serve as the basis for the design and preparation of other self-healing polymers with long-term durability based on di-/ polysulfide bridges and other reversible moieties.
机译:据报道,在传统的NR配方中使用常见成分,可以自我修复硫磺硫化天然橡胶(NR)。发现在共价交联的橡胶中天然存在的二硫键和多硫键的动态特性是造成愈合能力和在中等温度下机械性能完全恢复的原因,条件是该材料以未完全固化的起始状态使用。结果表明,可以通过调整硫的含量,交联密度和二硫化物/多硫化物的比例来达到机械性能和修复能力之间的折衷。发现治愈效率取决于后固化储存时间,损伤产生与机械接触重新建立之间的时间以及实际治愈时间。此外,专用的电子自旋共振(ESR)测试允许基于温度诱导的游离硫自由基建立基本的治疗原理。此处介绍的主要观察结果可作为设计和制备基于二硫键/多硫键和其他可逆部分的具有长期耐久性的其他自愈聚合物的基础。

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