Barabanshchikov Yurii, Pham Hien, Usanova Kseniia
Institute of Civil Engineering, Peter the Great St. Petersburg Polytechnic University, 195251 St. Petersburg, Russia.
Materials (Basel). 2021 Nov 16;14(22):6933. doi: 10.3390/ma14226933.
This work aimed to study the effect of a microfibrillated cellulose additive on strength, elastic modulus, heat release, and shrinkage of mortar and concrete. The dosage of the additive varies from 0.4 to 4.5% by weight of the cement. The change in strength with an increase in the dosage of the additive occurred in a wave-like manner. The uneven character of the change in the results also took place in the determination of heat release and shrinkage. In general, heat release and shrinkage decreased at increasing additive dosage. The additive showed the greatest decrease in the heat release of concrete at a content of 2%. The heat release of concrete practically differed little from the exotherm of the standard at an additive content of 1 and 1.5%. The addition of microfibrillated cellulose additive in small (0.5%) and large (1.5%) amounts reduced shrinkage compared to the reference, and at an intermediate content (1%), the shrinkage was higher than in the reference specimens. In this case, the water evaporation rate from concrete increased with an increase in the additive. With an increase in the additive dosage, the modulus of elasticity decreases. Thus, the microfibrillated cellulose additive provides concrete with lower values of the modulus of elasticity, heat release, and shrinkage, and the additive is recommended for use in concretes with increased crack resistance during the hardening period. The recommended additive content is 0.5% by weight of cement. At the specified dosage, it is possible to provide the class of concrete in terms of compressive strength C35/45.
这项工作旨在研究微纤化纤维素添加剂对砂浆和混凝土的强度、弹性模量、热释放和收缩率的影响。添加剂的用量按水泥重量计从0.4%变化到4.5%。随着添加剂用量的增加,强度变化呈波浪状。在热释放和收缩率的测定中,结果变化也呈现出不均匀的特征。总体而言,随着添加剂用量的增加,热释放和收缩率降低。当添加剂含量为2%时,混凝土的热释放下降幅度最大。当添加剂含量为1%和1.5%时,混凝土的热释放与标准放热曲线实际差异不大。与参比样相比,添加少量(0.5%)和大量(1.5%)的微纤化纤维素添加剂均可降低收缩率,而在中间含量(1%)时,收缩率高于参比样。在这种情况下,混凝土的水分蒸发率随添加剂用量的增加而增加。随着添加剂用量的增加,弹性模量降低。因此,微纤化纤维素添加剂可使混凝土具有较低的弹性模量、热释放和收缩率,建议在硬化期用于抗裂性增强的混凝土中。推荐的添加剂含量为水泥重量的0.5%。在规定用量下,可提供抗压强度等级为C35/45的混凝土。