Wang Yongsheng, Wan Huiwen, Liu Hao, Zhang Gaoke, Xu Xiaoyang, Shen Cong
China Construction Second Engineering Bureau Limited East China Branch, Shanghai 200135, China.
School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.
Materials (Basel). 2023 Jun 26;16(13):4604. doi: 10.3390/ma16134604.
Foamed lightweight soil (FLS) is a lightweight cementitious material containing a large number of tiny closed pores and has been widely used as a filler in places such as railways, roads and airports. However, there has been little research into the resistance of FLS to sulphate attack in practical engineering applications. The performance of FLS against different sulphate erosion concentrations was studied to elucidate the engineering characteristics of using large volumes of FLS as fill material for the road base in the construction of intelligent networked vehicle test sites. The results showed that the compressive strength of FLS prepared using 30% Portland cement (C), 30% granulated blast furnace slag (GBFS), 40% fly ash (FA) and a small amount of a concrete antiseptic agent (CA) as cementitious materials reached 0.8 and 1.9 MPa at 7 and 28 d, respectively, when the wet density was about 600 kg/m, which met the design requirements. The FLS prepared via the above-mentioned cementitious system had a low carbon emission, with a CO emission reduction rate of up to 70%. It also had excellent sulphate attack resistance: the corrosion resistance coefficient of the cementitious material system reached 0.97, which was considerably better than that of C (0.83). For an erosion medium environment with SO concentrations of less than 1000 mg/L (moderate), 40% GBFS or FA can be used to prepare FLS. When the concentration of SO is less than 4000 mg/L (severe), 30% C, 30% GBFS and 40% FA can be used as cementitious materials, preferably in combination with an appropriate amount of CA, to prepare FLS.
泡沫轻质土(FLS)是一种含有大量微小封闭孔隙的轻质胶凝材料,已被广泛用作铁路、道路和机场等地的填料。然而,在实际工程应用中,对泡沫轻质土抗硫酸盐侵蚀的研究很少。研究了泡沫轻质土在不同硫酸盐侵蚀浓度下的性能,以阐明在智能网联汽车试验场建设中大量使用泡沫轻质土作为道路基层填充材料的工程特性。结果表明,当湿密度约为600kg/m³时,以30%的普通硅酸盐水泥(C)、30%的粒化高炉矿渣(GBFS)、40%的粉煤灰(FA)和少量混凝土防腐剂(CA)作为胶凝材料制备的泡沫轻质土在7d和28d时的抗压强度分别达到0.8MPa和1.9MPa,满足设计要求。通过上述胶凝体系制备的泡沫轻质土碳排放低,CO₂减排率高达70%。它还具有优异的抗硫酸盐侵蚀性能:胶凝材料体系的抗腐蚀系数达到0.97,明显优于普通硅酸盐水泥(0.83)。对于SO₄²⁻浓度小于1000mg/L的侵蚀性中等环境,可使用40%的粒化高炉矿渣或粉煤灰制备泡沫轻质土。当SO₄²⁻浓度小于4000mg/L(严重)时,可使用30%的普通硅酸盐水泥、30%的粒化高炉矿渣和40%的粉煤灰作为胶凝材料,最好与适量的混凝土防腐剂配合使用来制备泡沫轻质土。