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含SiO纳米颗粒的钢纤维增强混凝土的耐久性

Durability of Steel Fiber-Reinforced Concrete Containing SiO Nano-Particles.

作者信息

Zhang Peng, Li Qingfu, Chen Yuanzhao, Shi Yan, Ling Yi-Feng

机构信息

School of Water Conservancy and Environment, Zhengzhou University, Zhengzhou 450001, China.

Changjiang River Scientific Research Institute of Changjiang Water Resources Commission, Wuhan 430010, China.

出版信息

Materials (Basel). 2019 Jul 7;12(13):2184. doi: 10.3390/ma12132184.

Abstract

An experimental study was conducted to investigate the effect ofnano-SiO and steel fiber content on the durability of concrete. Five different dosages of nano-SiO particles and five volume dosages of steel fiber were used. The durability of concretes includes permeability resistance, cracking resistance, carbonation resistance, and freezing-thawing resistance, and these were evaluated by the water permeation depth, number of cracks, total cracking area per unit area of the specimens, carbonation depth of the specimens, and the relative dynamic elastic modulus of the specimens after freezing-thawing cycles, respectively. The results indicate that the addition of nano-SiO particles significantly improves the durability of concrete when the content of nano-SiO is limited within a certain range. With the increase of nano-SiO content, the durability of concrete first increases and then decreases. An excessive number of nano-SiO particles could have an adverse effect on the durability of the concrete. The addition of the correct amount of steel fibers improves the carbonation resistance of concrete containing nano-particles, but excessive steel fiber reduces the carbonation resistance. Moreover, the addition of steel fibers reduces the permeability resistance of concrete containing nano-particles. The incorporation of steel fiber enhanced the freezing-thawing resistance and cracking resistance of concrete containing nano-particles. With increasing steel fiber content, the freezing-thawing resistance of the concrete containing nano-particles increases, and the cracking resistance of the concrete decreases gradually.

摘要

开展了一项试验研究,以探究纳米二氧化硅和钢纤维含量对混凝土耐久性的影响。使用了五种不同剂量的纳米二氧化硅颗粒和五种体积剂量的钢纤维。混凝土的耐久性包括抗渗性、抗裂性、抗碳化性和抗冻融性,分别通过试件的水渗透深度、裂缝数量、单位面积试件的总开裂面积、试件的碳化深度以及冻融循环后试件的相对动弹性模量来评估。结果表明,当纳米二氧化硅含量限制在一定范围内时,添加纳米二氧化硅颗粒可显著提高混凝土的耐久性。随着纳米二氧化硅含量的增加,混凝土的耐久性先增加后降低。过量的纳米二氧化硅颗粒可能会对混凝土的耐久性产生不利影响。添加适量的钢纤维可提高含纳米颗粒混凝土的抗碳化性,但钢纤维过量会降低抗碳化性。此外,添加钢纤维会降低含纳米颗粒混凝土的抗渗性。掺入钢纤维增强了含纳米颗粒混凝土的抗冻融性和抗裂性。随着钢纤维含量的增加,含纳米颗粒混凝土的抗冻融性增加,而混凝土的抗裂性逐渐降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39ce/6651140/97f78dd2174f/materials-12-02184-g001.jpg

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