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Design optimization and statistical modeling of cementitious grout containing irradiated plastic waste and silica fume using response surface methodology

机译:使用响应表面方法含有辐照塑料废物和二氧化硅烟水的水泥灌浆设计优化及统计建模

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This study discusses the influence of replacing ordinary Portland cement (OPC) with irradiated waste polyethylene terephthalate (PET) and silica fume on fresh and hardened properties of cementitious grouts. The effect of PET (normal and irradiated) and silica fume (SF) on flow, drying shrinkage, compressive strength (1-day, 7-days and 28-days) and flexural strength (28-days) of cementitious grouts were investigated. Additionally, an analytical tool response surface methodology (RSM) was used for designing the experiment and statistically analyzing the experimental results. A microstructural investigation was performed on the grout sample by using FESEM with EDX and XRD analysis. Experimental results show that loss in both compressive and flexural strengths was observed when OPC was partially replaced by normal PET, however, some of these strengths were gained back by incorporating irradiated PET. A slight reduction in drying shrinkage was observed with the addition of both normal PET and irradiated PET as compared to control samples. The microstructural investigation results also show that the addition of irradiated PET in cement grout causes the formation of new and unique phases, which help in the densification and refinement of microstructure. The theoretical results from the ANOVA model using RSM analysis were experimentally validated with an error of 5%, and hence, good agreement was observed between theoretical and experimental results. Gamma irradiation of PET showed the possibility of using plastic waste as a potential source of raw material for the construction industry. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究探讨了用辐照废禾氨基甲酸酯(PET)和二氧化硅烟雾替换普通波特兰水泥(OPC)对水泥灌浆的清新性能的影响。研究了PET(正常和辐照)和硅粉(SF)对流动,干燥收缩,抗压强度(1天,7天和28天)和弯曲强度(28天)的效果。另外,分析工具响应表面方法(RSM)用于设计实验并统计分析实验结果。通过使用EDX和XRD分析使用FESEM对灌浆样品进行微观结构研究。实验结果表明,当OPC被正常宠物部分替换时,观察到抗压和弯曲强度的损失,然而,通过掺入辐照宠物来获得一些这些强度。与对照样品相比,通过添加普通PET和辐照宠物观察干燥收缩的略微降低。微观结构调查结果还表明,水泥灌浆中的辐照宠物的添加引起了新的和独特的阶段,这有助于微观结构的致密化和细化。使用RSM分析的ANOVA模型的理论结果进行了实验验证的误差<5%,因此在理论和实验结果之间观察到良好的一致性。 PET的伽玛照射显示了使用塑料废物作为建筑业原料源的可能性。 (c)2020 elestvier有限公司保留所有权利。

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