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Alkali-activated geopolymer produced by seeded fly ash and rice husk bark ash

机译:粉煤灰和稻壳树皮灰生产的碱活化地聚合物

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In the present work, the fiexural strength, percentage of water absorption and pore structure of inorganic polymers (geopolymers) made from a combination of fine and coarse fly ash and rice husk bark ash (seeded mixture) have been investigated. Different specimens were subjected to strength, water absorption and porosimetry tests at 7 and 28 days of curing. The curing regime varied: one set of the specimens was cured at room temperature until 7 and 28 days and the other sets were oven-cured for 36 h at the range of 40 to 90°C and then cured at room temperature until 7 and 28 days. The results indicate that the specimens having a silicon dioxide/aluminium oxide ratio equal to 2.99 and cured at 80°C in both the 7 and 28-day regimes have the best fiexural strength and resistance to water absorption and their total specific pore volume is minimum. An empirical relationship was found to correlate the fiexural strength to the percentage of water absorption of the specimens at different ages of curing.
机译:在目前的工作中,已经研究了由细粉煤灰和粗粉煤灰与稻壳树皮灰(播种混合物)组成的无机聚合物(地聚合物)的弯曲强度,吸水率和孔隙结构。在固化的7天和28天,对不同的样品进行强度,吸水率和孔隙率测试。固化方式各不相同:一组样品在室温下固化直至7和28天,另一组样品在40至90°C的温度下烘箱固化36 h,然后在室温下固化直至7和28天。结果表明,二氧化硅/氧化铝比率为2.99且在7天和28天两种情况下均在80°C固化的样品具有最佳的抗弯强度和耐吸水性,并且其总比孔容最小。发现经验关系将抗弯强度与不同固化年龄下样品的吸水率相关。

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