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Application of a capillary crystalline material to enhance cement grout for sealing tunnel leakage

机译:毛细晶体材料在加强密封隧洞泄漏中的应用

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This study investigates the feasibility of using a cement-based capillary crystalline material, Penetron Admix (PA), to enhance the performance of a cement grout for sealing tunnel leakage. A series of experiments were carried out to investigate the effects of PA on the viscosity, setting time, concretion rate, permeability and compressive strength of the cement grout. The experimental results show that inclusion of PA into cement grout has no effect on its viscosity and setting time, but can markedly increase the concretion rate, and the compressive strength of the grout concrete and reduce its permeability. Micro structure characterizations by CT scanning indicate that cement-gravel grout concrete samples with additional PA show a compact and smooth structure compared to those without PA; SEM images show that the dendritic crystals are observable under high magnification in the cement grout concrete samples with PA, and the number of crystals increases as the amount of PA increases. Based on the experimental results and the micro structure characterizations, it can be concluded that PA can be used as an additive to improve the rate of concretion, compressive strength, and impermeability of cement grout. To achieve an optimum leakage-sealing effect, the weight ratio of PA to cement of 1.4-1.6% is recommended. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究研究了使用水泥基毛细管结晶材料的可行性Penetron Accix(PA),以增强用于密封隧道泄漏的水泥灌浆的性能。进行了一系列实验,以研究PA对水泥灌浆的粘度,设定时间,混凝土率,渗透性和抗压强度的影响。实验结果表明,将PA进入水泥灌浆对其粘度和设定时间没有影响,但可以显着提高灌浆混凝土的混凝土率和挤压力的抗压强度,降低其渗透性。 CT扫描的微结构表征表明,与没有PA的那些,水泥砾石灌浆混凝土样品具有额外PA的结构紧凑且平滑; SEM图像表明,在水泥灌浆混凝土样品中的高倍率下,树枝状晶体在具有PA的高倍率下,随着PA的增加而增加,晶体的数量增加。基于实验结果和微观结构特征,可以得出结论,PA可作为添加剂来提高混凝土速度,抗压强度和水泥灌浆的不渗透率。为了实现最佳的渗漏密封效果,建议使用1.4-1.6%的PA与水泥的重量比。 (c)2019 Elsevier Ltd.保留所有权利。

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