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Comparison of strength and durability characteristics of a geopolymer produced from fly ash, ground glass fiber and glass powder

机译:用粉煤灰,磨碎的玻璃纤维和玻璃粉生产的地聚合物的强度和耐久性特性的比较

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Strength and durability characteristics of geopolymers produced using three precursors, consisting of fly ash, Ground Glass Fiber (GGF), and glass-powder were studied. Combinations of sodium hydroxide and sodium silicate were used as the activator solutions, and the effect of different sodium and silica content of the activators on the workability and compressive strength of geopolymers was investigated. The parameters used in this study were the mass ratio of Na2O-to-binder (for sodium content), and SiO2-to-Na2O of the activator (for silica content). Geopolymer mixtures that achieved the highest compressive strength from each precursor were assessed for their resistance to alkali-silica reaction and compared against the performance of portland cement mixtures. Test results revealed that GGF and fly ash-based geopolymers performed better than glass-powder-based geopolymer mixtures. The resistance of GGF-based and fly ash-based geopolymers to alkali-silica reaction was superior to that of portland cement mixtures, while glass-powder-based geopolymer showed inferior performance.
机译:研究了使用三种前驱物(由粉煤灰,磨碎玻璃纤维(GGF)和玻璃粉组成)生产的地聚合物的强度和耐久性特征。氢氧化钠和硅酸钠的组合用作活化剂溶液,并研究了活化剂的不同钠和二氧化硅含量对地质聚合物的可加工性和抗压强度的影响。这项研究中使用的参数是Na2O与粘结剂的质量比(用于钠含量)和SiO2与Na2O的活化剂(对于二氧化硅含量)。评估了从每种前体获得最高抗压强度的地聚合物混合物的耐碱二氧化硅反应性,并将其与硅酸盐水泥混合物的性能进行了比较。测试结果表明,GGF和粉煤灰基地质聚合物的性能优于玻璃粉基地质聚合物的混合物。 GGF基和粉煤灰基地质聚合物对碱硅石反应的抵抗力优于硅酸盐水泥混合物,而玻璃粉基地质聚合物则表现较差。

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