Azevedo Nagilla, Neto José Andrade, de Matos Paulo, Betioli Andrea, Szeląg Maciej, Gleize Philippe
Laboratory of Application of Nanotechnology in Civil Construction (LabNANOTEC), Department of Civil Engineering, Federal University of Santa Catarina (UFSC), Florianópolis 88040-900, Brazil.
Department of Civil Engineering, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre 90035-190, Brazil.
Materials (Basel). 2021 Jul 21;14(15):4062. doi: 10.3390/ma14154062.
Nanomaterials are potential candidates to improve the mechanical properties and durability of cementitious composites. SiC nanowhiskers (NWs) present exceptional mechanical properties and have already been successfully incorporated into different matrices. In this study, cementitious composites were produced with a superplasticizer (SP) and 0-1.0 wt % SiC NWs. Two different NWs were used: untreated (NT-NW) and thermally treated at 500 °C (500-NW). The rheological properties, cement hydration, mechanical properties, and microstructure were evaluated. The results showed that NWs incorporation statistically increased the yield stress of cement paste (by up to 10%) while it led to marginal effects in viscosity. NWs enhanced the early cement hydration, increasing the main heat flow peak. NWs incorporation increased the compressive strength, tensile strength, and thermal conductivity of composites by up to 56%, 66%, and 80%, respectively, while it did not statistically affect the water absorption. Scanning electron microscopy showed a good bond between NWs and cement matrix in addition to the bridging of cracks. Overall, the thermal treatment increased the specific surface area of NWs enhancing their effects on cement properties, while SP improved the NWs dispersion, increasing their beneficial effects on the hardened properties.
纳米材料是改善水泥基复合材料力学性能和耐久性的潜在候选材料。碳化硅纳米晶须(NWs)具有优异的力学性能,并且已经成功地掺入到不同的基体中。在本研究中,使用高效减水剂(SP)和0-1.0 wt%的SiC NWs制备了水泥基复合材料。使用了两种不同的NWs:未处理的(NT-NW)和在500℃下热处理的(500-NW)。评估了流变性能、水泥水化、力学性能和微观结构。结果表明,掺入NWs在统计学上提高了水泥浆体的屈服应力(提高了10%),而对粘度的影响较小。NWs促进了水泥的早期水化,增加了主要热流峰。掺入NWs分别使复合材料的抗压强度、抗拉强度和热导率提高了56%、66%和80%,而对吸水率没有统计学影响。扫描电子显微镜显示NWs与水泥基体之间有良好的粘结,此外还有裂纹桥接现象。总体而言,热处理增加了NWs的比表面积,增强了它们对水泥性能的影响,而SP改善了NWs的分散性,增加了它们对硬化性能的有益影响。