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活性粉末混凝土微观结构与颗粒堆积

Reactive Powder Concrete Microstructure and Particle Packing.

作者信息

Velichko Evgeny Georgievich, Vatin Nikolai Ivanovich

机构信息

Department of Building Materials, Moscow State University of Civil Engineering, 129337 Moscow, Russia.

Peter the Great Saint Petersburg Polytechnic University, 195251 Saint Petersburg, Russia.

出版信息

Materials (Basel). 2022 Mar 17;15(6):2220. doi: 10.3390/ma15062220.

Abstract

The subject of this study is the dispersed composition of multicomponent cement systems. This study aims to reduce interparticle voids, increasing the strength and concentration of the solid phase. The investigated concrete mixture contained two fine aggregate fractions, granite-gabbro crushed stone of 5-10 mm fraction, Portland cement of CEM I 42.5N class, finely dispersed granular blast furnace slag, microsilica, highly dispersed cement fraction, superplasticizer Glenium 430, and high-valence hardening accelerator. A laser analyzer determined the shape and size of dispersed particles of the components. The structure of the cement stone was studied by scanning microscopy, thermographic, and X-ray phase analysis methods. The strength of concrete with an optimized dispersed composition at the age of 2 days was 52, 63, and 74 MPa, while that at the age of 28 days was 128, 137, and 163 MPa. For this concrete, the consumption of multicomponent cement was 650, 700, and 750 kg/m, respectively. The high efficiency of the application of bimodal clinker component and granulated blast-furnace slag is shown. It is established that the optimal content of nanoscale additives, including microsilica, should be insignificant and determined experimentally.

摘要

本研究的主题是多组分水泥体系的分散组成。本研究旨在减少颗粒间孔隙,提高固相的强度和浓度。所研究的混凝土混合物包含两种细骨料级配、5 - 10毫米级配的花岗岩 - 辉长岩碎石、CEM I 42.5N级波特兰水泥、细分散粒状高炉矿渣、微硅粉、高分散水泥级配、高效减水剂Glenium 430以及高价硬化促进剂。激光分析仪测定了各组分分散颗粒的形状和尺寸。通过扫描显微镜、热成像和X射线相分析方法研究了水泥石的结构。优化分散组成的混凝土在2天时的强度分别为52、63和74兆帕,而在28天时的强度分别为128、137和163兆帕。对于这种混凝土,多组分水泥的用量分别为650、700和750千克/立方米。结果表明双峰熟料组分和粒化高炉矿渣的应用效率很高。已确定包括微硅粉在内的纳米级添加剂的最佳含量应极少,需通过实验确定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f064/8954861/5156fbee3272/materials-15-02220-g001.jpg

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