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Experimental Study of High Performance Synchronous Grouting Materials Prepared with Clay

机译:用粘土制备高性能同步灌浆材料的实验研究

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摘要

Shield construction discharges a large amount of soil and muck. The utilization of discharged soil of shield always has high energy consumption and a low utilization rate. Meanwhile, synchronous grouting is a key process for shield tunneling. The current studies show that the synchronous grouting materials applied now generally have the problem of mismatching among filling property, fluidity, and consolidation strength. In order to study the feasibility of using the excavated soil produced by shield construction in clay stratum as synchronous grouting material, high performance synchronous grouting material was studied by taking red clay as an example, modified by epoxy resin. The fluidity, stability, and strength were measured to evaluate performance of the grout. Material test results show that the addition of waterborne epoxy resin decreases density, improves the stability, the rate of stone, and the toughness of the grouting concretion. Finally, X-ray diffraction (XRD) and Scanning Electron Microscopy (SEM) were measured to analyze the cementitious mechanism of the grout, test results demonstrated that cement hydration and curing reaction of epoxy resin happened in the grout, the formed polymer film filled the voids in the mixture and effectively bound cement hydration gel and clay particles together.
机译:盾构建筑用大量的土壤和泥土排放。盾牌排出的土壤的利用始终具有高能耗和低利用率。同时,同步灌浆是盾构隧道的关键过程。目前的研究表明,现在应用的同步灌浆材料通常具有填充性,流动性和固结强度之间不匹配的问题。为了研究利用粘土层中屏蔽结构产生的挖掘土壤的可行性,作为同步灌浆材料,通过以红色粘土进行红色粘土研究了高性能同步灌浆材料,由环氧树脂改性。测量流动性,稳定性和强度以评估灌浆的性能。材料试验结果表明,加入水性环氧树脂降低密度,提高了稳定性,石材速率和灌浆凝固的韧性。最后,测量X射线衍射(XRD)和扫描电子显微镜(SEM)以分析灌浆的水泥结构,测试结果表明,环氧树脂发生在灌浆中的水泥水合和固化反应,所形成的聚合物膜填充混合物中的空隙,并有效地将水泥水合凝胶和粘土颗粒结合在一起。

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