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首页> 外文期刊>Rubber Chemistry and Technology >MOLECULAR MOBILITY IN ULTRASONICALLY DEVULCANIZED UNFILLED BUTADIENE RUBBER
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MOLECULAR MOBILITY IN ULTRASONICALLY DEVULCANIZED UNFILLED BUTADIENE RUBBER

机译:超声处理未填充的丁二烯橡胶的分子流动性

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摘要

We have used NMR relaxation and pulsed-gradient diffusion measurements at 70℃ in unfilled butadiene rubber (BR) before and after crosslinking, and after subsequent devulcanization by intense ultrasound. In an effort to support this method of rubber recycling, characterization has been performed at the molecular level. The transverse relaxation (T{sub}2) decay was successfully described using a three-component model. The components are attributed to entangled and crosslinked networks; light sol and dangling network fragments; and partially unreactive oligomers. All component molecular mobilities and the relative contributions of the components to the echo were investigated. Devulcanization decreases the diffusivity of the oligomer remnants and increases mean diffusivity of the light sol. The additional amount of extractable sol produced by devulcanization of BR is more than that of silicone rubber, indicating that the ultrasonic devulcanization of BR is more efficient than that of silicone rubber. The present results are compared with our previous NMR studies of devulcanized rubbers.
机译:在交联之前和之后,以及在随后的强力超声脱硫之后,我们在未填充的丁二烯橡胶(BR)中于70℃使用NMR弛豫和脉冲梯度扩散测量。为了支持这种橡胶回收方法,已经在分子水平上进行了表征。使用三分量模型成功描述了横向弛豫(T {sub} 2)衰减。这些组件归因于纠缠和交联的网络。轻溶胶和悬空的网络碎片;和部分不反应的低聚物。研究了所有组分的分子迁移率以及组分对回波的相对贡献。脱硫会降低低聚物残余物的扩散率,并增加光溶胶的平均扩散率。 BR脱硫所产生的可萃取溶胶的额外量要比硅橡胶多,这表明BR的超声波脱硫比硅橡胶的效率更高。将当前结果与我们以前的脱硫橡胶的NMR研究进行了比较。

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