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Properties of flowable fill produced by substituting fly ash with recycled glass powder

机译:通过用再生玻璃粉末替代粉煤灰产生的可流动填充的性质

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A laboratory study was undertaken to evaluate the feasibility of recycling glass powder (RGP) as a fly ash substitute in flowable fill. A total of ten mortar mixtures and ten flowable fill mixtures were prepared by using different proportions of fly ash (FA), finer RGP (FG) and coarser RGP (CG) powders. The mortar mixtures were tested for determining strength activity index (SAI). The flowable fill mixtures were tested for fresh and hardened properties. Further, microstructural study techniques, namely, scanning electron microscope (SEM) and energy dispersive X-ray spectroscope (EDS), were also used for characterizing the changes in the microstructure of flowable fill due to RGP substitution. It was found that RGP has the potential to be a suitable replacement of FA in flowable fill. However, flow consistency and compressive strength were found to vary with the percent RGP substitution and relative proportion of finer and coarser glass content in the flowable fill mixtures. (C) 2020 Elsevier Ltd. All rights reserved.
机译:进行了实验室研究,以评估回收玻璃粉末(RGP)作为可流动填充物的粉煤灰的可行性。通过使用不同比例的粉煤灰(FA),更精细的RGP(FG)和较粗糙的RGP(CG)粉末来制备总共10个砂浆混合物和十种可流动的填充混合物。测试砂浆混合物以确定强度活性指数(SAI)。测试可流动的填充混合物以进行新鲜和硬化的性质。此外,微结构研究技术,即扫描电子显微镜(SEM)和能量分散X射线分光镜(EDS),用于表征由于RGP替换引起的可流动填充的微观结构的变化。发现RGP具有在可流动填充中适当的FA替代品。然而,发现流动稠度和抗压强度随着RGP替代品的百分比百分比和更粗糙的玻璃含量在可流动的填充混合物中的相对比例而变化。 (c)2020 elestvier有限公司保留所有权利。

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