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Effect of basalt, silica sand and fly ash on the mechanical properties of quaternary polymer concretes

机译:玄武岩,硅砂和粉煤灰对季聚合物混凝土机械性能的影响

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摘要

The aim of this study is to manufacture quaternary polymer concretes (PCs) and optimize the weight percentages of the epoxy resin, ultrafine fly ash, silica sand and basalt aggregates. For this, we first manufactured binary PCs of epoxy/basalt, epoxy/silica sand and epoxy/fly ash and then studied the mechanical properties such as compressive, flexural and splitting tensile strength. The mixture design method was used as an approach for design of experiment to reduce the number of tests and optimize the mechanical strength of the PC. The best weight percentages of the PC components were 25 (epoxy), 5 (fly ash), 52.5 (silica sand) and 17.5 (basalt). The compressive, flexural and splitting tensile strength of the quaternary PC were equal to 94.1, 39.0 and 11.8, which were 3.76, 11.1 and 6.5 times higher than those of ordinary Portland cement, respectively. Finally, a scanning electron microscopy test was implemented to study the microstructure of the PC.
机译:本研究的目的是制造季聚合物混凝土(PCS),并优化环氧树脂,超细粉煤灰,二氧化硅砂和玄武岩聚集体的重量百分比。 为此,我们首先制造了环氧/玄武岩,环氧/二氧化硅砂和环氧/粉煤灰的二元PC,然后研究了诸如压缩,弯曲和分裂拉伸强度的机械性能。 混合物设计方法用作实验设计的方法,以减少测试次数并优化PC的机械强度。 PC组分的最佳重量百分比为25(环氧),5(飞灰),52.5(硅砂)和17.5(玄武岩)。 季PC的压缩,弯曲和分裂拉伸强度等于94.1,39.0和11.8,分别比普通波特兰水泥高3.76,11.1和6.5倍。 最后,实施了扫描电子显微镜测试以研究PC的微观结构。

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