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Effect of temperature and type of sand on the magnesium sulphate attack in sulphate resisting Portland cement mortars

机译:砂对硫酸镁抗硫酸盐抗硫酸盐抗震水泥砂浆的影响

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摘要

External Sulphate Attack on sulphate-resisting Portland cement concretes is a well-researched field. However, the effect of temperature on the performance of sulphate attack requires further attention. For this purpose, cubic mortars were made with sulphate resisting Portland cement (low C(3)A) and two types of sand, silica and limestone, which were then immersed in a 5% MgSO4 solution at different temperatures: 5, 20 and 50 degrees C, for 24 months. The deterioration of mortars due to magnesium sulphate attack was evaluated by measuring changes in mass, compressive strength, porosity and sorptivity. The X-ray diffraction was also used to determine the different mineral phases, and the pH of the conservation solutions was monitored. No damage was observed on the samples exposed at 50 degrees C. However, serious damage was noted on mortars made with silica sand exposed at 5 degrees C. Results show that high temperature improved some physical and mechanical properties and do not necessarily accelerate the degradation due to magnesium sulphate attack. Sulphate-resisting Portland cements with limited C(3)A content was found to be susceptible to Thaumasite Sulphate Attack. The type of sand has a remarkable effect on the performance of mortars at low temperature compared to high temperature. The samples with limestone sand showed better resistance against magnesium sulphate attacks.
机译:对抗硫酸盐的波特兰水泥混凝土的外部硫酸盐攻击是一个研究良好的领域。然而,温度对硫酸盐攻击性能的影响需要进一步关注。为此目的,用硫酸盐抗抗植物水泥(低C(3))和两种类型的沙子,二氧化硅和石灰石制成立方体砂浆,然后在不同温度下浸入5%MgSO 4溶液中:5,20和50度C,24个月。通过测量质量,抗压强度,孔隙率和吸附性的变化来评估由于硫酸镁发作引起的砂浆的劣化。 X射线衍射还用于确定不同的矿物相,并监测保护溶液的pH。在50摄氏度暴露的样品上没有观察到损伤。然而,在5摄氏度下暴露的硅砂制成的砂浆上发现了严重的损伤。结果表明,高温改善了一些物理和机械性能,不一定加速降解到期硫酸镁攻击。抗硫酸盐的波特兰水泥与有限的C(3)发现含量易于硫酸盐侵袭。与高温相比,砂型对低温下砂浆的性能具有显着影响。具有石灰石砂的样品显示出对硫酸镁袭击的抗性更好。

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