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Basalt fibre-reinforced mortar: Rheology modelling based on water film thickness and fibre content

机译:玄武岩纤维增强砂浆:基于水膜厚度和纤维含量的流变模型

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The water film thickness (WFT) has been proven to be the key factor governing the fresh properties of plain cementitious materials with no fibres added. But whether this WFT theory can also be applied to fibre-reinforced cementitious materials (FRCM) still needs to be further explored. Besides, the fibres added have significant effects on the fresh properties of FRCM. In this study, the combined effects of WFT and fibre content on the workability, flowability, cohesiveness and adhesiveness of basalt fibre-reinforced mortar were investigated by testing mortar mixes with various water/cement ratios and basalt fibre contents. The findings showed that the basalt fibre content has certain effects on the packing density and WFT of the mortar mix produced. Furthermore, statistical correlation analysis revealed that the WFT and basalt fibre content are the key factors governing the fresh properties of basalt fibre-reinforced mortar. Based on such correlation analysis, a series of rheological models for predicting the fresh properties of basalt fibre-reinforced mortar and depicting the roles of WFT and basalt fibre content have been developed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:水膜厚度(WFT)已被证明是控制不添加纤维的普通水泥材料的新鲜性能的关键因素。但是,这种WFT理论是否也可以应用于纤维增强水泥材料(FRCM),仍需要进一步探索。此外,添加的纤维对FRCM的新鲜性能具有显着影响。在这项研究中,通过测试各种水灰比和玄武岩纤维含量的砂浆混合物,研究了WFT和纤维含量对玄武岩纤维增强砂浆的可加工性,流动性,内聚性和粘合性的综合影响。研究结果表明,玄武岩纤维含量对所生产的砂浆混合物的堆积密度和WFT有一定影响。此外,统计相关分析表明,WFT和玄武岩纤维含量是决定玄武岩纤维增强砂浆新鲜性能的关键因素。基于这种相关性分析,开发了一系列流变模型,用于预测玄武岩纤维增强砂浆的新鲜性能,并描绘出WFT和玄武岩纤维含量的作用。 (C)2019 Elsevier Ltd.保留所有权利。

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