聚合物
泥浆
胶凝的
材料科学
风化
水泥
抗压强度
原材料
复合材料
固化(化学)
复合数
石膏
化学
有机化学
作者
Haotian Jiang,Ruohao Zhang,Chenhua Jin,Jingjing Cao,Wei Lu
出处
期刊:ACS omega
[American Chemical Society]
日期:2024-12-03
卷期号:9 (50): 49323-49335
标识
DOI:10.1021/acsomega.4c06335
摘要
In this project, cement-based composites reinforced with slag powder (abbreviated as SP), steel slag powder (abbreviated as SSP), and desulfurization gypsum (abbreviated as FGD) were used as the research objects, and the preparation, mechanical properties, and strengthening mechanism of the composites were systematically studied. A laser particle analyzer (Malvern Instruments Analysis) was used to determine that the particle sizes of the raw SSP, SP, and FGD materials were concentrated between 5 and 40 μm, indicating that they were fine-grained minerals. SSP and SP are highly active alkaline substances. With the two ratios of 6:3:1 (SP/SSP/FGD) and 7:2:1 (SP/SSP/FGD), the macroscopic mechanical properties and mechanism analysis results revealed that the alkali activator was incorporated into the composite material and that the compressive strength activation effects of the activators from strong to weak were as follows: Ca(OH)2, Na2SiO4, and NaOH. Microscopic scanning revealed that many AFt and C–S–H gels formed after hydration of the cementitious system. After water curing, efflorescence occurred on the surface of the test block, resulting in the formation of many pores inside the cementitious system.
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