Rutkowska Gabriela, Ogrodnik Paweł, Żółtowski Mariusz, Chyliński Filip
Institute of Civil Engineering, Warsaw University of Life Sciences, Nowoursynowska 166, Warsaw, 02-787, Poland.
Building Research Institute, Filtrowa 1, Warsaw, 00-611, Poland.
Sci Rep. 2025 Jul 1;15(1):20424. doi: 10.1038/s41598-025-06131-5.
Calcium ate-aluminate-cement (CAC) is a specialised building material that is mainly used in refractory concretes and some structural applications. It is characterised by fast hardening, high early strength, and resistance to chemical aggression. Reference samples (CON) and samples with the addition of calcium aluminate cement (ALU) in amounts ranging from 5 to 20% by weight were prepared. for the experimental studies. The concrete mix was tested for consistency using the slump cone method, apparent density by measuring the mass and volume, and mix viscosity using the tt method. For hardened concrete, the compressive strength, frost resistance, water absorption, and depth of water penetration were tested. To assess the effect of calcium aluminate cement on microstructural changes, a microstructure analysis was carried out. Studies indicate that calcium aluminate cement works well in low-temperature andenvironments and can be effectively used as an additive to Portland cement composites in small amounts. A CAC content of 5% has a positive effect on the mechanical properties and durability of concrete, making it particularly suitable for applications that require rapid strength and frost resistance. However, higher CAC concentrations require caution because of the potential reduction in the strength and durability of concrete over a longer service life.
铝酸钙水泥(CAC)是一种特殊的建筑材料,主要用于耐火混凝土和一些结构应用中。它的特点是硬化快、早期强度高以及耐化学侵蚀。制备了参考样品(CON)以及添加量为5%至20%(重量)的铝酸钙水泥样品(ALU)用于实验研究。使用坍落度筒法测试混凝土拌合物的稠度,通过测量质量和体积来测定表观密度,并使用tt法测量拌合物粘度。对于硬化混凝土,测试了抗压强度、抗冻性、吸水性和透水深度。为了评估铝酸钙水泥对微观结构变化的影响,进行了微观结构分析。研究表明,铝酸钙水泥在低温环境下效果良好,并且可以少量有效地用作波特兰水泥复合材料的添加剂。5%的CAC含量对混凝土的力学性能和耐久性有积极影响,使其特别适用于需要快速强度和抗冻性的应用。然而,由于在较长使用寿命期间混凝土强度和耐久性可能降低,较高的CAC浓度需要谨慎使用。