Abdullah Ahmad, Taha Mohamed, Rashwan Mohamed, Fahmy Mohamed
Civil Engineering Department, College of Engineering, University of Bisha, Bisha 61922, Saudi Arabia.
Civil Engineering Department, Faculty of Engineering, Aswan University, Aswan 81542, Egypt.
Materials (Basel). 2021 Oct 30;14(21):6541. doi: 10.3390/ma14216541.
Incorporation of graphene oxide (GO) and silica fume (SF) to cement composites enhances their mechanical properties if suitable proportional amounts of GO and SF are used. This study presents a simplified approach to determine experimentally the optimum GO and SF contents that should be added to the cementitious mixture to obtain a proper and stable dispersion of GO sheets within the cement matrix. Composite mortar specimens with different GO and SF contents were designed and tested under flexural and compression loading. The phase formation and the microstructure of selected samples were also investigated to give an in-depth interpretation of the test results. The main criterion to determine the GO and SF contents was the ultimate strength required of the GO-cement composite. It was found that there was a composite interaction between the SF and GO contents in the cementitious mixture, which an envelope surface could describe if all other mix design parameters are kept constant.
如果使用合适比例的氧化石墨烯(GO)和硅灰(SF),将它们掺入水泥复合材料中可增强其力学性能。本研究提出了一种简化方法,通过实验确定应添加到胶凝混合物中的最佳GO和SF含量,以使GO片材在水泥基体中获得适当且稳定的分散。设计了具有不同GO和SF含量的复合砂浆试件,并在弯曲和压缩载荷下进行测试。还对选定样品的相形成和微观结构进行了研究,以深入解释测试结果。确定GO和SF含量的主要标准是GO-水泥复合材料所需的极限强度。结果发现,胶凝混合物中SF和GO含量之间存在复合相互作用,如果所有其他配合比设计参数保持不变,则可用一个包络面来描述这种相互作用。