Martins Gabriel Lima Oliveira, Fraga Yuri Sotero Bomfim, de Paula Andréia, Rêgo João Henrique da Silva, Terrades Amparo Moragues, Rojas Moisés Frías
Department of Civil and Environmental Construction, University of Brasília, Brasilia 70910-900, Brazil.
Center for Exact and Technological Sciences, Federal University of Acre, Rio Branco 69920-900, Brazil.
Materials (Basel). 2023 Aug 18;16(16):5675. doi: 10.3390/ma16165675.
This research aims to analyze the effect of functionalized nanosilica (NSF) with different levels of amine groups in the formation of hydration products. Four cement pastes were investigated, one reference with Portland cement and three replacing 1% of Portland cement by nanosilica (NS), NSF with a low content of amine groups, and NSF with a high content of amine groups. The heat of hydration of the pastes was evaluated up to 7 days of hydration, the amount of calcium hydroxide (CH) and hydrated phases by means of the thermogravimetric analysis (TGA) test and compressive strength at 2, 7, and 28 days, and porosity through tests of mercury intrusion porosimetry and computed tomography at 28 days of hydration. It was possible to observe that the NSF directly influenced the hydration kinetics of the pastes, delaying the hydration of the Portland cement; however, it demonstrated a similar mechanical performance to the paste with NS at 2 days of hydration and an increase of 10% at 28 days of hydration due to the improvement in the hydration process. Thus, it is possible to conclude that the functionalization of NSF with a low 3-aminopropyltriethoxysilane (APTES) content is promising for use in cementitious materials and may improve hydration and mechanical performance at more advanced ages compared to NS.
本研究旨在分析具有不同胺基含量的功能化纳米二氧化硅(NSF)在水化产物形成过程中的作用。研究了四种水泥净浆,一种为普通硅酸盐水泥基准样,另外三种分别用纳米二氧化硅(NS)、低胺基含量的NSF和高胺基含量的NSF替代1%的普通硅酸盐水泥。对净浆水化7天内的水化热进行了评估,通过热重分析(TGA)试验测定了氢氧化钙(CH)和水化产物的含量,并测定了2天、7天和28天的抗压强度,通过压汞法和水化28天时的计算机断层扫描测试了孔隙率。可以观察到,NSF直接影响了净浆的水化动力学,延缓了普通硅酸盐水泥的水化;然而,它在水化2天时表现出与含NS的净浆相似的力学性能,并且由于水化过程的改善,在水化28天时强度提高了10%。因此,可以得出结论,低含量3-氨丙基三乙氧基硅烷(APTES)功能化的NSF有望用于胶凝材料,并且与NS相比,在更高龄期可能改善水化和力学性能。