Członka Sylwia, Strąkowska Anna, Strzelec Krzysztof, Kairytė Agnė, Kremensas Arūnas
Institute of Polymer and Dye Technology, Faculty of Chemistry, Lodz University of Technology, 90924 Stefanowskiego, Poland.
Institute of Building Materials, Faculty of Civil Engineering, Vilnius Gediminas Technical University, LT-08217 Vilnius, Lithuania.
Materials (Basel). 2020 Mar 2;13(5):1108. doi: 10.3390/ma13051108.
Among different organic fillers, the chemical composition of , commonly known as cloves, has great potential as a sustainable reinforcement for polymeric materials. In the study, grounded cloves were used as cellulosic filler for a novel polyurethane (PU) composite foams. Soybean oil-based PU composite foams were successfully reinforced with different concentrations (1, 2, and 5 wt%) of clove filler. PU foams were examined by rheological behavior, processing parameters, cellular structure (scanning electron microscopy analysis), mechanical properties (compression test, impact test, three-point bending test), thermal properties (thermogravimetric analysis), viscoelastic behavior (dynamic mechanical analysis) as well as selected application properties (apparent density, dimensional stability, surface hydrophobicity, water absorption, color characteristic). In order to undertake the disc diffusion method, all PU composites were tested against selected bacteria ( and ). Based on the results, it can be concluded that the addition of 1 and 2 wt% of clove filler leads to PU composite foams with improved compression strength (improvement by ≈18% for sample PU-1), greater flexural strength (increase of ≈11%), and improved impact strength (increase of ≈8%). Moreover, it has been proved that clove filler may be used as a natural anti-aging compound for polymeric materials. Based on the antibacterial results, it has been shown that the addition of clove filler significantly improved the antibacterial properties of PU foams and is suitable for the manufacturing of antimicrobial PU composite foams. Due to these positive and beneficial effects, it can be stated that the use of cloves as a natural filler in PU composite foams can promote a new application path in converting agricultural waste into useful resources for creating a new class of green materials.
在不同的有机填料中,通常被称为丁香的[具体物质名称未给出]的化学成分,作为聚合物材料的可持续增强剂具有巨大潜力。在该研究中,磨碎的丁香被用作新型聚氨酯(PU)复合泡沫的纤维素填料。基于大豆油的PU复合泡沫成功地用不同浓度(1%、2%和5%重量)的丁香填料进行了增强。通过流变行为、加工参数、泡孔结构(扫描电子显微镜分析)、力学性能(压缩试验、冲击试验、三点弯曲试验)、热性能(热重分析)、粘弹性行为(动态力学分析)以及选定的应用性能(表观密度、尺寸稳定性、表面疏水性、吸水性、颜色特性)对PU泡沫进行了检测。为了进行纸片扩散法,所有PU复合材料都针对选定的细菌([细菌名称未给出]和[细菌名称未给出])进行了测试。基于结果可以得出结论,添加1%和2%重量的丁香填料会使PU复合泡沫的压缩强度提高(PU - 1样品提高约18%)、弯曲强度更大(增加约11%)以及冲击强度提高(增加约8%)。此外,已证明丁香填料可用作聚合物材料的天然抗老化化合物。基于抗菌结果,已表明添加丁香填料显著改善了PU泡沫的抗菌性能,适用于制造抗菌PU复合泡沫。由于这些积极有益的效果,可以说在PU复合泡沫中使用丁香作为天然填料能够促进一条将农业废弃物转化为有用资源以创造新型绿色材料的新应用途径。