Pączkowski Przemysław
Department of Polymer Chemistry, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Sklodowska University, Gliniana 33, 20-614 Lublin, Poland.
Polymers (Basel). 2023 Nov 12;15(22):4389. doi: 10.3390/polym15224389.
Increased demand for environmentally friendly materials resulted in a worldwide interest in manufacturing composite materials from agricultural wastes. Thus, this paper presents the results of research on the synthesis of eco-friendly composites and their properties. For their preparation, unsaturated polyester resin based on post-consumer recycled poly (ethylene terephthalate) was filled with walnut ( L.) shell powder. After the filler incorporation, the deterioration of gloss and mechanical properties were observed. The flexural strength and modulus are significantly affected by the filler amount. Distilled water, 1% sodium hydroxide, toluene, and acetone were used as solvents in the chemical resistance test. Changes to the structure and properties of composites after 49 days of immersion in solvents were investigated. The immersion in water has no significant effect on the pure resin, but for its composites, the plasticizing effect of water was observed. The results show that all specimens show resistance toward toluene. In acetone, the resin and its composite shrink and fall into pieces, but the most destructive is an alkaline environment. After the immersion test, a huge increase in mass and a deterioration of gloss and mechanical properties were observed.
对环保材料需求的增加引发了全球范围内利用农业废弃物制造复合材料的热潮。因此,本文展示了关于合成环保复合材料及其性能的研究成果。在制备过程中,将基于消费后回收聚对苯二甲酸乙二酯的不饱和聚酯树脂填充核桃壳粉。加入填料后,观察到光泽度和机械性能下降。弯曲强度和模量受填料用量影响显著。在耐化学性测试中,使用蒸馏水、1%氢氧化钠、甲苯和丙酮作为溶剂。研究了复合材料在溶剂中浸泡49天后结构和性能的变化。水浸泡对纯树脂无显著影响,但对其复合材料,观察到水的增塑作用。结果表明,所有试样对甲苯都有抗性。在丙酮中,树脂及其复合材料会收缩并破碎,但最具破坏性的是碱性环境。浸泡试验后,观察到质量大幅增加,光泽度和机械性能下降。