Dębska Bernardeta, Brigolini Silva Guilherme Jorge
Department of Building Engineering, Rzeszow University of Technology, ul. Poznańska 2, 35-959 Rzeszów, Poland.
Departamento de Engenharia Civil, Universidade Federal de Ouro Preto, Campus Morro do Cruzeiro, Ouro Preto CEP 35.400.000, Brazil.
Materials (Basel). 2021 Apr 25;14(9):2203. doi: 10.3390/ma14092203.
The article describes the results of a study to determine the simultaneous effect of polyethylene terephthalate waste (PET) and polyethylene (PE) on the strength characteristics and bulk density of epoxy mortars. In these mortars, 9 wt.% of the polymer binder was replaced by glycolysate which was made from PET waste and propylene glycol. Additionally, 0-10 vol.% of the aggregate was substituted with PE agglomerate made from plastic bags waste, respectively. The modification of the composition of epoxy mortar has a special environmental and economic aspect. It also allows to protect natural sources of the aggregate, while reducing the amount of waste and reducing problems arising from the need to store them. The resulting composite has very good strength properties. With the substitution of 9 wt.% of resin and 5 vol.% of sand, a flexural strength of 35.7 MPa and a compressive strength of 101.1 MPa was obtained. The results of the microstructure study of the obtained mortars constitute a significant part of the paper.
本文描述了一项研究的结果,该研究旨在确定聚对苯二甲酸乙二酯废料(PET)和聚乙烯(PE)对环氧砂浆强度特性和堆积密度的同时影响。在这些砂浆中,9 wt.%的聚合物粘结剂被由PET废料和丙二醇制成的二醇解产物替代。此外,分别用由塑料袋废料制成的PE团聚物替代0-10 vol.%的骨料。环氧砂浆成分的改性具有特殊的环境和经济意义。它还能保护骨料的天然来源,同时减少废料量,并减少因储存废料而产生的问题。所得复合材料具有非常好的强度性能。当替代9 wt.%的树脂和5 vol.%的砂时,获得了35.7 MPa的抗弯强度和101.1 MPa的抗压强度。所得砂浆微观结构研究的结果构成了本文的重要部分。