Kosmela Paulina, Olszewski Adam, Zedler Łukasz, Burger Paulina, Piasecki Adam, Formela Krzysztof, Hejna Aleksander
Department of Polymer Technology, Gdańsk University of Technology, Narutowicza 11/12, 80-233 Gdańsk, Poland.
Institute of Materials Engineering, Poznan University of Technology, Piotrowo 3, 61-138 Poznań, Poland.
Materials (Basel). 2021 Jul 7;14(14):3807. doi: 10.3390/ma14143807.
The application range of flexible polyurethane (PU) foams is comprehensive because of their versatility and flexibility in adjusting structure and performance. In addition to the investigations associated with further broadening of their potential properties, researchers are looking for new raw materials, beneficially originated from renewable resources or recycling. A great example of such a material is ground tire rubber (GTR)-the product of the material recycling of post-consumer car tires. To fully exploit the benefits of this material, it should be modified to enhance the interfacial interactions between PU and GTR. In the presented work, GTR particles were thermo-mechanically modified with the addition of fresh and waste rapeseed oil in the reactive extrusion process. The introduction of modified GTR particles into a flexible PU matrix caused a beneficial 17-28% decrease in average cell diameters. Such an effect caused an even 5% drop in thermal conductivity coefficient values, enhancing thermal insulation performance. The application of waste oil resulted in the superior mechanical performance of composites compared to the fresh one and thermo-mechanical modification without oils. The compressive and tensile performance of composites filled with waste oil-modified GTR was almost the same as for the unfilled foam. Moreover, the introduction of ground tire rubber particles enhanced the thermal stability of neat polyurethane foam.
由于其通用性以及在调整结构和性能方面的灵活性,柔性聚氨酯(PU)泡沫的应用范围很广泛。除了与进一步拓展其潜在性能相关的研究之外,研究人员还在寻找有益地源自可再生资源或回收利用的新原材料。这种材料的一个很好的例子是磨碎轮胎橡胶(GTR)——消费后汽车轮胎材料回收的产物。为了充分利用这种材料的优势,应对其进行改性以增强PU与GTR之间的界面相互作用。在本研究中,在反应挤出过程中通过添加新鲜和废菜籽油对GTR颗粒进行了热机械改性。将改性后的GTR颗粒引入柔性PU基体中,使平均泡孔直径有益地减小了17% - 28%。这种效果甚至使热导率系数值下降了5%,增强了隔热性能。与新鲜油以及无油热机械改性相比,废油的应用使复合材料具有更优异的力学性能。填充废油改性GTR的复合材料的压缩和拉伸性能几乎与未填充泡沫的性能相同。此外,磨碎轮胎橡胶颗粒的引入提高了纯聚氨酯泡沫的热稳定性。