Song Hongwei, Li Xinle
College of Civil Engineering, Dalian Minzu University, Dalian 116600, China.
Materials (Basel). 2021 May 30;14(11):2950. doi: 10.3390/ma14112950.
The most active research area is nanotechnology in cementitious composites, which has a wide range of applications and has achieved popularity over the last three decades. Nanoparticles (NPs) have emerged as possible materials to be used in the field of civil engineering. Previous research has concentrated on evaluating the effect of different NPs in cementitious materials to alter material characteristics. In order to provide a broad understanding of how nanomaterials (NMs) can be used, this paper critically evaluates previous research on the influence of rheology, mechanical properties, durability, 3D printing, and microstructural performance on cementitious materials. The flow properties of fresh cementitious composites can be measured using rheology and slump. Mechanical properties such as compressive, flexural, and split tensile strength reveal hardened properties. The necessary tests for determining a NM's durability in concrete are shrinkage, pore structure and porosity, and permeability. The advent of modern 3D printing technologies is suitable for structural printing, such as contour crafting and binder jetting. Three-dimensional (3D) printing has opened up new avenues for the building and construction industry to become more digital. Regardless of the material science, a range of problems must be tackled, including developing smart cementitious composites suitable for 3D structural printing. According to the scanning electron microscopy results, the addition of NMs to cementitious materials results in a denser and improved microstructure with more hydration products. This paper provides valuable information and details about the rheology, mechanical properties, durability, 3D printing, and microstructural performance of cementitious materials with NMs and encourages further research.
最活跃的研究领域是水泥基复合材料中的纳米技术,该技术具有广泛的应用,并在过去三十年中广受欢迎。纳米颗粒已成为土木工程领域可能使用的材料。先前的研究集中在评估不同纳米颗粒在水泥基材料中对改变材料特性的影响。为了全面了解纳米材料如何被使用,本文批判性地评估了先前关于流变学、力学性能、耐久性、3D打印以及微观结构性能对水泥基材料影响的研究。新拌水泥基复合材料的流动性能可以通过流变学和坍落度来测量。抗压、抗弯和劈裂抗拉强度等力学性能揭示了硬化后的性能。确定纳米材料在混凝土中耐久性的必要测试包括收缩、孔隙结构和孔隙率以及渗透性。现代3D打印技术的出现适用于结构打印,如轮廓工艺和粘结剂喷射。三维(3D)打印为建筑和施工行业迈向更数字化开辟了新途径。无论材料科学如何,都必须解决一系列问题,包括开发适用于3D结构打印的智能水泥基复合材料。根据扫描电子显微镜结果,向水泥基材料中添加纳米材料会导致更致密且改善的微观结构,并有更多的水化产物。本文提供了有关含纳米材料的水泥基材料的流变学、力学性能、耐久性、3D打印和微观结构性能的有价值信息和详细内容,并鼓励进一步研究。