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Improvement of Early Strength of Cement Mortar Containing Granulated Blast Furnace Slag Using Industrial Byproducts

机译:利用工业副产品提高粒化高炉矿渣水泥砂浆的早期强度

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In the field of construction, securing the early strength of concrete (on the first and third days of aging) has been an important problem in deciding the mold release time (i.e., shortening the construction time period). Therefore, the problem of reduced compressive strength in the early aging stage caused by mixing granulated blast furnace slag (GBFS) with concrete must certainly be resolved. In this study, we conduct experiments to explore methods for generating a concrete that develops an early strength equivalent to that of 100% OPC. The objective of this study is the development of an early-strength accelerator (ESA) made from an industrial by-product, for a GBFS-mixed cement mortar. This study also analyzes the mechanism of the early-strength generation in the concrete to evaluate the influence of the burning temperature of ESA on the optimal compressive strength of the concrete. According to the results of the experiment, GBFS, whose ESA is burnt at 800 °C, shows an activation factor of 102.6–104.7% in comparison with 100% OPC on the first and third days during early aging, thereby meeting the target compressive strength. The results of the micro-analytic experiment are as follows: ESA showed a pH of strongly alkaline. In addition, it was found that the content of SO 3 was high in the chemical components, thus activating the hydration reaction of GBFS in the early age. This initial hydration reaction was thought to be due to the increase in the filling effect of the hydrate and the generation of C-S-H of the early age by the mass production of Ettringite.
机译:在建筑领域中,确保混凝土的早期强度(在老化的第一天和第三天)一直是决定脱模时间(即缩短施工时间)的重要问题。因此,必须解决由粒状高炉矿渣(GBFS)与混凝土混合引起的早期老化阶段抗压强度降低的问题。在这项研究中,我们进行实验以探索产生早期强度相当于100%OPC的混凝土的方法。这项研究的目的是开发一种由工业副产品制成的,用于GBFS混合水泥砂浆的早期强度促进剂(ESA)。这项研究还分析了混凝土中早期强度产生的机理,以评估ESA的燃烧温度对混凝土最佳抗压强度的影响。根据实验结果,ESFS在800°C下燃烧的GBFS的活化因子为102.6–104.7%,而早期老化的第一天和第三天为100%OPC,从而达到了目标抗压强度。微量分析实验的结果如下:ESA显示出强碱性的pH。另外,发现化学成分中SO 3的含量高,从而在早期活化了GBFS的水合反应。最初的水合反应被认为是由于水合物的填充效果的提高以及由于钙矾石的大量生产而产生的早期的C-S-H。

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