Mei Yuan, Zhou Dongbo, Wang Rong, Zhang Miaomiao, Xu Wangyang, Zhang Yan, Ke Xin
School of Civil Engineering, Xi'an University of Architecture & Technology, Xi'an 710055, China.
Shaanxi Key Laboratory of Geotechnical and Underground Space Engineering, Xi'an 710055, China.
Materials (Basel). 2022 Apr 18;15(8):2938. doi: 10.3390/ma15082938.
Considering that it is difficult for traditional materials to simultaneously meet the requirements for filling grouting of water-filled karst caves and subsequent shield tunneling, an environmentally friendly and controllable new underwater cementitious filling material (NUC-FM) is developed, with abandoned shield mud as the basic raw material. Through laboratory tests, the mechanical property parameters of NUC-FM are tested, and its micromechanism is analyzed. The research results show that there is excellent synergistic interactions among shield mud, cement, flocculant, fly ash and other raw materials. The NUC-FM grouting filling material with superior performance can be prepared when the water binder ratio is between 0.45 and 0.6 and the water consumption is between 270 and 310 kg/m. It has the characteristics of non-dispersion underwater and moderate consolidated body strength. The compressive strength of the NUC-FM consolidated body samples under each mix proportion is much higher than 0.5 MPa, which meets the technical strength requirements of a construction site, and the microstructure shows that there is an obvious dense and stable block structure inside. The cost of the NUC-FM prepared with an optimized mix proportion is only 34.57 dollars/m, which is far lower than the market purchase price of concrete and cement mortar. It can be predicted that the NUC-FM is an ideal filling grouting material for water-filled karst caves in shield tunnels in water-rich karst areas.
考虑到传统材料难以同时满足充水岩溶洞穴注浆充填及后续盾构隧道施工的要求,以废弃盾构泥浆为基本原料,研制了一种环保可控的新型水下胶结充填材料(NUC-FM)。通过室内试验,测试了NUC-FM的力学性能参数,并分析了其细观机理。研究结果表明,盾构泥浆、水泥、絮凝剂、粉煤灰等原材料之间存在良好的协同作用。当水胶比在0.45~0.6之间,用水量在270~310kg/m时,可制备出性能优异的NUC-FM注浆充填材料。它具有水下不分散、固结体强度适中的特点。各配合比下NUC-FM固结体试样的抗压强度均远高于0.5MPa,满足施工现场技术强度要求,微观结构表明内部存在明显致密稳定的块状结构。优化配合比制备的NUC-FM成本仅为34.57美元/m,远低于混凝土和水泥砂浆的市场采购价格。可以预见,NUC-FM是富水岩溶地区盾构隧道充水岩溶洞穴理想的注浆充填材料。