Department of Civil Engineering, 66952Balochistan University of Information Technology, Engineering and Management Sciences, 87300 Quetta, Pakistan.
Department of Civil Engineering, Faculty of Engineering, 37447Universiti Malaya, 50603 Kuala Lumpur, Malaysia.
Sci Prog. 2022 Apr-Jun;105(2):368504221091186. doi: 10.1177/00368504221091186.
Lightweight cementitious composite (LCC) produced by incorporating lightweight silica aerogel was explored in this study. Silica aerogel was incorporated as 60% replacement of fine aggregate (sand/crushed glass) in producing the LCC. The effect of aerogel on the drying shrinkage and alkali-silica expansion of LCC was evaluated and compared with those of lightweight expanded perlite aggregate. At the density of 1600 ± 100 kg/m, the aerogel/ expanded perlite LCC had attained compressive strength of about 17/24 MPa and 22/26 MPa in mixtures with sand and crushed glass as a fine aggregate, respectively. The inclusion of aerogel and expanded perlite increased the drying shrinkage. The drying shrinkage of aerogel LCC was up to about 3 times of the control mixtures. Although the presence of aerogel and expanded perlite could reduce the alkali-silica expansion when partially replacing crushed glass, the aerogel-glass LCC still recorded expansion exceeding the maximum limit of 0.10% at 14 days. However, when 15% cement was replaced with fly ash and granulated blast furnace slag, the alkali-silica expansion was reduced to 0.03% and 0.10%, respectively. Microstructural observations also revealed that the aerogel with fly ash can help in reducing the alkali-silica expansion in mixes containing the reactive crushed glass aggregate.
本研究探索了掺入轻质二氧化硅气凝胶的轻质水泥基复合材料(LCC)。在制备 LCC 时,将气凝胶作为细集料(砂/碎玻璃)的 60%替代物掺入。评估了气凝胶对 LCC 干燥收缩和碱-硅反应膨胀的影响,并与轻质膨胀珍珠岩骨料的影响进行了比较。在密度为 1600 ± 100 kg/m³时,气凝胶/膨胀珍珠岩 LCC 混合物中分别使用砂和碎玻璃作为细集料,其抗压强度约为 17/24 MPa 和 22/26 MPa。气凝胶和膨胀珍珠岩的掺入增加了干燥收缩。气凝胶 LCC 的干燥收缩高达对照混合物的约 3 倍。尽管气凝胶和膨胀珍珠岩的存在可以部分替代碎玻璃时减少碱-硅反应膨胀,但气凝胶-玻璃 LCC 在 14 天时仍记录到超过 0.10%的最大膨胀。然而,当用粉煤灰和粒化高炉矿渣替代 15%的水泥时,碱-硅反应膨胀分别降低至 0.03%和 0.10%。微观结构观察还表明,在含有反应性碎玻璃骨料的混合物中,掺有粉煤灰的气凝胶有助于减少碱-硅反应膨胀。