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Development of 300 MPa ultra-high-strength mortar through a special curing regime

机译:通过特殊的固化方式开发300 MPa超高强度砂浆

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The goal of this study was to develop 300 MPa ultra-high-strength mortar (UHSM) based on optimization of ingredients, mix proportion, and curing regime. To fabricate eco-friendly UHSM, two types of supplementary cementitious materials, i.e., silica fume (SF) and ground granulated blast furnace slag (BFS), were also incorporated. An optimized mixture was finally determined based on numerous compressive strength tests and mercury intrusion porosimetry (MIP) analysis, and several important findings were obtained as follows. Using coarse particle cement (CPC) was beneficial in delaying a decrease of the fluidity of fresh mortar and enhancing strength due to a higher packing density than ordinary Portland cement (OPC). The use of zirconium (Zr) SF was effective in improving the strength of UHSM compared to that of regular SF, and its optimum replacement ratio was 20%. The optimum replacement ratios of BFS, CPC, and anhydrous gypsum (Gy) were found to be 20-25%, 30-70%, and 5%, respectively, for making UHSM with higher compressive strength, The curing regime significantly influenced the strength development of UHSM (i.e., longer curing under heat and high relative humidity led to the higher strength), and the optimum curing regime was suggested to consist of 48-h normal curing, 120-h steam curing, and 24-h heat curing. We developed UHSM with a compressive strength of 341 MPa based on the optimized mix proportion and curing regime. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是基于成分,混合比和固化方式的优化来开发300 MPa超高强度砂浆(UHSM)。为了制造环保的UHSM,还结合了两种类型的辅助胶凝材料,即硅粉(SF)和磨碎的高炉矿渣(BFS)。最后,基于大量的抗压强度测试和压汞法(MIP)分析,确定了优化的混合物,并获得了以下重要发现。与普通硅酸盐水泥(OPC)相比,由于具有更高的堆积密度,因此使用粗粒水泥(CPC)有利于延迟新鲜砂浆的流动性下降并提高强度。与常规SF相比,使用Zr SF可以有效提高UHSM的强度,其最佳替代率为20%。发现BFS,CPC和无水石膏(Gy)的最佳替代比例分别为20-25%,30-70%和5%,以使UHSM具有更高的抗压强度,固化方式对强度的影响很大。 UHSM的发展(即在高温和高相对湿度下更长的固化时间导致更高的强度),建议的最佳固化方案包括48小时的常规固化,120小时的蒸汽固化和24小时的热固化。基于优化的混合比例和固化方案,我们开发了抗压强度为341 MPa的UHSM。 (C)2018 Elsevier Ltd.保留所有权利。

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