State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute of Sichuan University, Chengdu 610065, China.
High-Tech Organic Fibers Key Laboratory of Sichuan Province, Chengdu 610041, China.
Waste Manag. 2023 Mar 15;159:93-101. doi: 10.1016/j.wasman.2023.01.021. Epub 2023 Feb 3.
Vulcanized acrylonitrile-butadiene rubber (NBR)/poly (vinyl chloride) (PVC) blends are mainly served as insulation rubber-plastic materials. However, methods to reuse the waste NBR/PVC composites lack research. Here, we found that the mechanochemically modified waste NBR/PVC composites powders (WNPP) could be an alternative to fresh NBR. According to the results, the optimal replacement amount of WNPP for NBR was 20%, and the highest feasible proportion was 40%. WNPP treated by solid-state shear milling technology (SM) would have a high degree of desulfurization, and the cross-linked chains within WNPP would be transformed into free chains. While co-vulcanizing, the sulfur agents and heat would induce the free chains of WNPP to react with the polymer chains of the NBR substrate, thereby generating dangling chains to form a robust interfacial layer. It was beneficial for the improvement of the mechanical properties of reclaimed products. And the strain of the excellent recycled sample (20C) reached 707%. Moreover, the modified WNPP in the co-vulcanized rubber represented heterogeneity because of the internal residual crosslinked network and the not-melting PVC plastic phase. Although the heterogeneity of WNPP damaged the continuity of the NBR matrix, it also brought a better hysteresis loss capability to the composite. In conclusion, this work expanded the mechanochemical application scope in recycling NBR/PVC wastes.
硫化丁腈橡胶(NBR)/聚氯乙烯(PVC)共混物主要用作绝缘橡塑材料。然而,对于废 NBR/PVC 复合材料的再利用方法缺乏研究。在这里,我们发现机械化学改性废 NBR/PVC 复合材料粉末(WNPP)可以替代新鲜 NBR。结果表明,WNPP 替代 NBR 的最佳用量为 20%,最高可行比例为 40%。采用固态剪切磨技术(SM)处理的 WNPP 脱硫程度高,WNPP 内的交联链会转化为游离链。在共硫化时,硫剂和热量会促使 WNPP 的游离链与 NBR 基质的聚合物链反应,从而产生悬垂链,形成强界面层。这有利于提高回收产品的力学性能。而优异的回收样品(20C)的应变达到 707%。此外,共硫化橡胶中的改性 WNPP 由于内部残留的交联网络和未熔化的 PVC 塑料相而呈现不均匀性。尽管 WNPP 的不均匀性破坏了 NBR 基质的连续性,但也为复合材料带来了更好的滞后损耗能力。总之,这项工作扩展了机械化学在回收 NBR/PVC 废物方面的应用范围。