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Investigating the properties of jet grouting columns with fine-grained cement and silica fume

机译:用细粒度水泥和硅粉调查喷射灌浆柱的性能

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In Jet Grouting (JG) applications, manufacturing of jet grouted columns which answer the purpose, is possible by designing proper injection fluid which is a cement grout in most cases. In this study, the impacts of three different binder types on the performance of JG columns was investigated. Fine-grained cement (DMFC-800), Ordinary Portland Cement (OPC) and the mixture of OPC cement including 10% silica fume (SF) by weight were used as binders. Grouting mixtures were prepared at various water/cement (W/C) ratios, then JG columns were manufactured. Whilst the maximum unconfined compressive strength (UCS) value was obtained from fine grained cement induced samples (max. UCS = 24.6 MPa for W/C = 1.0), very high strength values were detected for OPC + 10%SF induced samples as well. The maximum splitting tensile strength (STS) values for OPC + 10% SF induced samples were found to be (min. STS = 3.62 MPa for W/C = 1.25). Furthermore, after the permeability tests, it was observed that the columns with DMFC-800 and OPC + 10% SF induced mixtures exhibit the lowest permeability coefficients as compared to columns made from the other binders (min. k = 0.1124 x 10(-8) m/s for DMFC-800). Scanning electron microscope (SEM) image analysis revealed that DMFC-800 cement and OPC + 10% SF induced mixture reduced the voids between particles and enhanced the binding ability of the grouting mixture. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在喷射灌浆(JG)应用中,通过在大多数情况下设计适当的喷射液,可以制造回答目的的喷射灌浆柱。在这项研究中,研究了三种不同粘合剂类型对JG柱性能的影响。用细粒水泥(DMFC-800),普通植物水泥(OPC)和包括10%二氧化硅烟气(SF)重量的OPC水泥的混合物用作粘合剂。在各种水/水泥(W / C)比中制备灌浆混合物,然后制造JG柱。虽然从细粒粒细胞诱导的样品获得最大不整合的压缩强度(UCS)值(Max。UCS = 1.0对于W / C = 1.0的24.6MPa),但对于OPC + 10%SF诱导的样品,检测非常高的强度值。发现OPC + 10%SF诱导样品的最大分裂拉伸强度(STS)值是(MIN。STS = 3.62MPa用于W / C = 1.25)。此外,在渗透性测试之后,观察到与由其他粘合剂制成的柱相比,用DMFC-800和OPC + 10%SF诱导的混合物的柱具有最低渗透系数(Min。k = 0.1124 x 10(-8)用于DMFC-800的M / s)。扫描电子显微镜(SEM)图像分析显示DMFC-800水泥和OPC + 10%SF诱导混合物在颗粒之间的空隙降低,并增强了灌浆混合物的结合能力。 (c)2020 elestvier有限公司保留所有权利。

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