Lee Gun-Cheol, Kim Youngmin, Seo Soo-Yeon, Yun Hyun-Do, Hong Seongwon
Department of Architectural Engineering, Korea National University of Transportation, Chungbuk, Chungju 27469, Korea.
Department of Architectural Engineering, Chungnam National University, Daejeon 34134, Korea.
Materials (Basel). 2021 Nov 8;14(21):6721. doi: 10.3390/ma14216721.
This study analyzed the influence of carbon nanotubes (CNTs) on the carbonation conductive cementitious composites. Two powder types of CNT, multi-walled and single-wall CNTs, were employed to give the cement mortar the conductivity, and four tests including the accelerated carbonation, compressive and flexural strength, electrical resistance, and porosity tests were carried out. To intentionally accelerate the carbonation, the prismatic specimens of conductive cement composites were fabricated and stored in the controlled environmental chamber at a constant temperature of 20 ± 2 °C, constant relative humidity of 60 ± 5%, and carbon dioxide (CO) concentration of 5% for 12 weeks. It was observed that carbonation resulted in only chemical damage so that there was no change in the electrical resistance value of conductive cementitious mortar that had undergone a carbonation attack.
本研究分析了碳纳米管(CNT)对碳化传导性水泥基复合材料的影响。采用多壁和单壁两种粉末类型的碳纳米管赋予水泥砂浆导电性,并进行了加速碳化、抗压和抗折强度、电阻及孔隙率四项试验。为有意加速碳化,制作了导电水泥复合材料的棱柱体试件,并将其储存在温度为20±2℃、相对湿度为60±5%、二氧化碳(CO)浓度为5%的可控环境箱中12周。观察到碳化仅导致化学损伤,因此遭受碳化侵蚀的导电水泥砂浆的电阻值没有变化。