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Experimental and numerical studies on flexural behavior of high strength concrete beams containing waste glass

机译:含废玻璃高强度混凝土梁弯曲行为的实验与数值研究

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摘要

The behavior of concrete containing waste glass as a replacement of cement or aggregate was studied previously in the most of researches, but the present investigation focuses on the recycling of waste glass powder as a substitute for silica fume in high strength concrete (HSC). This endeavor deals with the efficiency of using waste glass powder, as an alternative for silica fume, in the flexural capacity of HSC beam. Thirteen members with dimensions of 0.3 m width, 0.15 m depth and 0.9 m span length were utilized in this work. A comparison study was performed considering HSC members and hybrid beams fabricated by HSC and conventional normal concrete (CC). In addition to the experiments on the influence of glass powder on flexural behavior, numerical analysis was implemented using nonlinear finite element approach to simulate the structural performance of the beams. Same constitutive relationships were selected to model the behavior of HSC with waste glass powder or silica fume to show the matching between the modeling outputs for beams made with these powders. The results showed that the loading capacity and ductility index of the HSC beams with waste glass powder demonstrated enhancing ultimate load and ductility compared with those of HSC specimens with silica fume. The study deduced that the recycled waste glass powder is a good alternative to the pozzolanic powder of silica fume.
机译:在最大的研究中,研究了含有废玻璃作为替代水泥或聚集体的混凝土的行为,但目前的研究侧重于废玻璃粉作为高强度混凝土(HSC)中硅粉的替代品作为硅粉的再循环。这一努力涉及使用废玻璃粉末的效率,作为二氧化硅烟气的替代方案,在HSC梁的弯曲能力中。尺寸为0.3米宽度,深度为0.15米和0.9米长度的十三个成员在这项工作中使用。考虑到HSC和常规普通混凝土(CC)制造的HSC成员和混合梁进行比较研究。除了对玻璃粉对弯曲行为的影响的实验外,使用非线性有限元方法来实现数值分析来模拟光束的结构性能。选择相同的构成关系以模拟HSC的HSC与废玻璃粉末或二氧化硅烟气的行为,以显示用这些粉末制成的梁的建模输出之间的匹配。结果表明,与具有二氧化硅烟气的HSC样品相比,HSC光束的负载能力和延展性指数表明,与具有二氧化硅烟气的HSC样本相比,增强了最终的载荷和延展性。该研究推断回收的废玻璃粉是二氧化硅烟雾的Pozzolanic粉末的良好替代方案。

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