Lin Chan-Yi, Chen Tai-An
Department of Harbor and River Engineering, National Taiwan Ocean University, Keelung City 202301, Taiwan.
Polymers (Basel). 2021 Dec 24;14(1):63. doi: 10.3390/polym14010063.
The compressive strengths of fly ash-based alkali-activated materials (AAM), produced using various activators of only sodium hydroxide, were measured. Fly ash-based AAM specimens, produced by mixing different kinds of fly ash and ground granulated blast-furnace slag (GGBFs) with an activator containing only sodium hydroxide, were cured at ambient temperature, and then placed in air for different numbers of days. The short- and long-term compressive strengths and shrinkage of fly ash-based AAM were measured and compared to one another. The effects of type of fly ash, alkali-equivalent content, GGBFs replace percentage, and ages on the compressive strengths and shrinkage of fly ash-based AAM were investigated. Even when different fly ash was used as the raw material for AAM, a similar compressive strength can be achieved by alkali-equivalent content, GGBFs replaces percentage. However, the performance of shrinkage due to different types of fly ash differed significantly.
对仅使用氢氧化钠作为各种活化剂生产的粉煤灰基碱激发材料(AAM)的抗压强度进行了测量。通过将不同种类的粉煤灰和磨细粒化高炉矿渣(GGBF)与仅含氢氧化钠的活化剂混合制成的粉煤灰基AAM试样,在环境温度下养护,然后在空气中放置不同天数。测量并比较了粉煤灰基AAM的短期和长期抗压强度及收缩率。研究了粉煤灰类型、碱当量含量、GGBF替代率和龄期对粉煤灰基AAM抗压强度和收缩率的影响。即使使用不同的粉煤灰作为AAM的原材料,通过碱当量含量、GGBF替代率也可实现相似的抗压强度。然而,不同类型粉煤灰引起的收缩性能差异显著。