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Durability of Fly Ash Geopolymer Mortars in Corrosive Environments, Compared to that of Cement Mortars

机译:与水泥砂浆相比,腐蚀环境中的粉煤灰缘聚合物砂浆的耐久性

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In the present paper the durability of fly ash geopolymer mortars compared to that of cement mortars is investigated. Geopolymers can improve the ecological image of building materials, especially when their production is based on industrial by-products such as fly ash. Three series of fly ash based geopolymer mortars were prepared using calcareous sand to fly ash ratio (S/FA) varying from 0.5 to 2. In addition, cement mortar specimens were prepared using cement CEM 142.5 N and CEM II 32.5 N. Durability of geopolymer and cement mortars was evaluated by means of compressive strength development, acid resistance, chloride diffusion and sulfate resistance. It was found that fly ash can be effectively used to produce geopolymer mortars with calcareous sand. Geopolymers exhibit competitive compressive strength compared to that of cement mortars. Geopolymer mortars develop their maximum compressive strength a few days after their casting. Geopolymer and cement mortars exhibit satisfactory resistance to sulphate attack. Cement mortars, generally, show better behaviour (compared to geopolymers) in chloride diffusion. Finally, geopolymers indicate improved performance against acid attack, compared to that of cement mortars.
机译:在本文中,研究了粉煤灰地质砂浆与水泥砂浆相比的耐久性。地缘聚合物可以改善建筑材料的生态形象,特别是当它们的生产基于工业副产品,如粉煤灰。使用钙质砂制备三个系列的粉煤灰基质砂浆,以飞溅灰比(S / FA)从0.5到2。此外,使用水泥CEM 142.5 N和CEM II 32.5 N.23 N。通过压缩强度发育,耐酸,氯化物扩散和硫酸盐抗性来评估水泥砂浆。发现粉煤灰可以有效地用钙质沙子生产地质聚合物砂浆。与水泥砂浆相比,地质聚合物表现出竞争力的抗压强度。铸造后几天后磨牙砂浆在铸件后几天发挥最大压缩强度。地质聚合物和水泥迫击砂浆对硫酸盐发作表现出令人满意的抗性。水泥砂浆通常显示氯化物扩散中的更好的行为(与地质聚合物)。最后,与水泥迫击炮相比,地质聚合物表明改善的酸攻击性能。

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