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Drying shrinkage of fly ash geopolymeric mortars reinforced with polymer hybrid fibres

机译:聚合物杂化纤维增强的粉煤灰地聚合物砂浆的干缩率

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Drying shrinkage performance is a very important factor for reinforced concrete composites because a high shrinkage performance is associated with a high cracking tendency, which leads to future durability problems. Geopolymeric mortars show much higher drying shrinkage than Portland cement-based composites because they use a low amount of structural water and thus have a higher pore content than ordinary Portland cement composites. Therefore, the use of fibres is especially interesting to counteract the drying shrinkage tendency of geopolymeric mortars. This paper provides results on the restrained and unrestrained shrinkage performance of fly ash-based geopolymeric mortars reinforced with short polymer hybrid fibres (SPHF). The results show that SPHF reduces the shrinkage cracking tendency. A content of SPHF as low as 0.08% was able to reduce the average crack width by four times when compared with non-reinforced mortars. Increasing the content of SPHF from 0.08 to 0.8% reduces the time of appearance of the first crack by 25 h and reduces the average crack width by two times.
机译:干燥收缩性能对于钢筋混凝土复合材料是非常重要的因素,因为高收缩性能与高破裂趋势相关,这导致未来的耐久性问题。地聚合物砂浆显示出比波特兰水泥基复合材料高得多的干燥收缩率,因为它们使用少量的结构水,因此比普通波特兰水泥复合材料具有更高的孔隙率。因此,使用纤维来抵消地聚合物砂浆的干燥收缩趋势特别令人感兴趣。本文提供了用短聚合物杂化纤维(SPHF)增强的粉煤灰基聚合物砂浆的约束收缩性能和不受约束的收缩性能的结果。结果表明,SPHF降低了收缩开裂的趋势。与非增强砂浆相比,低至0.08%的SPHF含量可使平均裂缝宽度减小四倍。将SPHF的含量从0.08%增加到0.8%可以使第一次出现裂纹的时间减少25小时,并使平均裂纹宽度减少两倍。

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