A Study on Enhancing the Properties of Geopolymer Concrete Using Hybrid Fibers

I. F. Varouqa
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Abstract

Alkali is present in significant quantities in geopolymer concretes. Due of this, their ductility and flexural strength are also low. The flexural strength of concrete is enhanced by the addition of fibers. Flexural strength has been a challenge for geopolymer concretes, thus researchers have tried using fibers to strengthen them. On the other hand, geopolymer concretes have never before utilized hybrid fibers. This study is an effort to incorporate hybrid fibers in geopolymer concrete to prevent its brittle fracture. Experiments are conducted to learn more about the geopolymer concrete's different mechanical characteristics, and then the settings are fine-tuned. Mechanical qualities of geopolymer concrete are improved by determining the optimal molarity of sodium hydroxide, the optimal ratio of sodium silicate to sodium hydroxide, and the optimal proportion of addition of fibers.
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利用混合纤维增强土工聚合物混凝土性能的研究
土工聚合物混凝土中含有大量的碱。因此,它们的延展性和抗折强度也较低。添加纤维可提高混凝土的抗折强度。抗折强度一直是土工聚合物混凝土面临的难题,因此研究人员尝试使用纤维来增强其抗折强度。另一方面,土工聚合物混凝土以前从未使用过混合纤维。本研究试图在土工聚合物混凝土中加入混合纤维,以防止其脆性断裂。通过实验了解土工聚合物混凝土的不同力学特性,然后对设置进行微调。通过确定氢氧化钠的最佳摩尔浓度、硅酸钠与氢氧化钠的最佳比例以及纤维的最佳添加比例,提高土工聚合物混凝土的力学性能。
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