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Shear strength of fly ash-based geopolymer reinforced concrete beams

机译:粉煤灰的地质聚合物钢筋混凝土梁剪切力量

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摘要

Geopolymer concrete (GC) is a synthetic material that combines sustainability and appropriate engineering properties, and it is relatively cost-effective compared to Portland cement-based concrete, its traditional competitor. Most GC studies have analyzed the microstructure and the chemical composition of GC. However, studies on the structural behavior of GC are limited. Thus this research focuses on the shear behavior of fly ash based GC beams. Four GC beams and one conventional concrete beam were experimentally investigated to determine their shear strengths. The test variables included the shear span-to-effective depth ratio and the transverse reinforcement ratio of the investigated beams. The strength, strains, deformations, and mode of failure of the investigated beams are presented. The shear strengths of the investigated beams are comparable to those of conventional concrete beams.
机译:地缘聚合物混凝土(GC)是一种合成材料,可结合可持续性和适当的工程性能,与与波特兰水泥的混凝土相比,其传统竞争对手相对较高。大多数GC研究已经分析了GC的微观结构和化学组成。然而,关于GC的结构行为的研究有限。因此,该研究侧重于粉煤灰基GC梁的剪切行为。实验研究了四个GC梁和一个传统的混凝土梁以确定其剪切强度。测试变量包括剪切跨度与有效的深度比和研究梁的横向加强率。提出了研究的强度,菌株,变形和失效模式。调查梁的剪切强度与传统的混凝土梁的剪切强度相当。

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