期刊论文详细信息
Journal of Asian Ceramic Societies
Assessment of the effect of fiber percentage in glass fiber reinforced slag-based geopolymer
Fabio de Souza1  Lais Alves2  Nordine Leklou3  Silvio De Barros4 
[1] Department Of Administration, Federal Center of Technological Education (Cefet/rj), Rio De Janeiro, Brazi;Department Of Mechanical Engineering, Federal Center of Technological Education (Cefet/rj), Rio De Janeiro, Brazi;Iut Saint-Nazaire, GeM, Cnrs Umr 6183, Research Institute in Civil Engineering and Mechanics, University of Nantes, Saint Nazaire, Franc;LINEACT CESI EA 7527, Saint-Nazaire, Franc;
关键词: Ground blast furnace slag;    sodium silicate activating solution;    fiber percentage;    glass fiber;    reinforced geopolymer;   
DOI  :  10.1080/21870764.2021.1966977
来源: Taylor & Francis
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【 摘 要 】

Fibers can increase the ductility of geopolymer materials, acting as reinforcements to improve mechanical properties. These improvements depend on fiber content and quantity. This study evaluates the impacts of different percentages of glass fiber on a GBFS (ground blast furnace slag) geopolymer matrix. The glass fibers were used on the critical length of 20 mm, obtained by pull-out test in previous studies. Percentages of 0.25%, 0.50%, 0.75%, and 1.00% of glass fiber in mass were tested in fresh state, by flow measurement, and in hardened state, by variation of shrinkage, water porosity and response of composites under flexural and compressive load conditions at 7, 14, 28, and 90 days. The mixture resulted in a high porosity geopolymer paste. In addition, an analysis of variance (ANOVA) was performed to evaluate the statistical significance of fibers in compressive strength. The results show that increasing percentages glass fibers, until 0.75%, enhances mechanical properties. Percentage of 1.00% started to show accumulation of branch of multifilament fibers which contribute to higher drying shrinkage. The ANOVA test showed that the percentage of fibers can influence the compressive strength. With the results, the optimum percentage of fibers for his composite mixture was found at 0.75%.

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