首页> 外文会议>International Workshop on Durability and Sustainability of Concrete Structures >GEOPOLYMERIC AND CEMENTITIOUS MORTARS WITH THE SAME MECHANICAL STRENGTH CLASS: PERFORMANCES AND CORROSION BEHAVIOUR OF BLACK AND GALVANIZED STEEL BARS
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GEOPOLYMERIC AND CEMENTITIOUS MORTARS WITH THE SAME MECHANICAL STRENGTH CLASS: PERFORMANCES AND CORROSION BEHAVIOUR OF BLACK AND GALVANIZED STEEL BARS

机译:具有相同机械强度等级的地质聚合物和水泥砂浆:黑色和镀锌钢筋的性能和腐蚀行为

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In the prospect of reducing CO2 emissions and landfilling of waste materials, the preparation of sustainable mortars by alkali activation was studied. According to EN 1504-3:2005, geopolymeric and cementitious mortars belonging to different strength classes (R1 ≥ 10 MPa (1450 psi), R2 ≥ 15 MPa (2175 psi) and R3 > 25 MPa (3625 psi)) were tested and compared. Geopolymers were obtained with fly ash or metakaolin and a blend of sodium silicate and NaOH (or KOH). Mortars were tested in terms of workability, dynamic modulus of elasticity, drying and restrained shrinkage and porosimetry. Durability was also investigated in terms of water vapour permeability, capillary water absorption and corrosion of possible embedded rebars during the curing period and wet-dry cycles in 3.5% NaCl solution. Results showed that geopolymers are subjected to higher drying shrinkage but lower restrained shrinkage than cementitious mortars. Water vapour permeability was higher in geopolymers and capillary water absorption was lower especially in fly ash geopolymers than those of cementitious mortars. During the first month, the high alkalinity of geopolymers extends the active state of both black and galvanized steel bars. However, when exposed to chlorides, fly ash geopolymers offer a higher protection to reinforcements than cementitious mortars.
机译:在减少二氧化碳排放和废料填埋的前景中,研究了碱活化的可持续砂浆的制备。根据EN1504-3:2005,测试了属于不同强度等级的地质和水泥砂浆(R1≥10MPa(1450mPa),R2≥15MPa(2175psi)和R3> 25MPa(3625MPa))进行比较。用粉煤灰或咪催化和硅酸钠和NaOH(或KOH)的混合物获得地质聚合物。在可加工性,动态弹性模量,干燥和抑制收缩和孔隙率方面进行了测试。还在水蒸气渗透性,毛细管吸水和可能的嵌入式钢筋腐蚀方面进行耐久性,以及3.5%NaCl溶液中的湿干循环。结果表明,地质聚合物经受更高的干燥收缩,但较低的抑制收缩率小于水泥砂浆。岩土聚合物的水蒸气渗透性较高,毛细管吸水较低,特别是粉煤灰地质聚合物比水泥砂浆。在第一个月,地质聚合物的高碱度延伸了黑色和镀锌钢筋的活性状态。然而,当暴露于氯化物时,粉煤灰地质聚合物比胶泥砂浆提供更高的增强剂保护。

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