Abstract

Cement-containing building materials durability depends both on the original clinker composition and on the structure of hydrated portland cement compositions on micro and nanoscales. To calculate structural parameters of silicate-hydrate calcium nanoparticles during portland cement hydration process, the researchers applied the method of small-angle neutron scattering which included distribution of nanoparticles in size, medium nanoparticles radius, fractal dimension. Modifying nanoparticles blending with portland cement composition affects structural parameters of silicate-hydrate calcium nanoparticles. The authors used complex modifying nanoparticles in this study. Nanoparticle composition included a component that served as a filler and a chemically active component that was used as a modifier. The first component was a mixture of alpha oxide aluminum, gamma oxide aluminum and carbonate sludge. The second component presented a mixture of alumoalkaline sludge with alumocalcite sludge. These sludges were of technogenic origin. The research showed that application of complex nanoagents made it possible to control process of silicate-hydrate calcium nanoparticles structure formation, and, as the result, to influence durability of cement stone.

Highlights

  • At hydration of portland cement clinker the composite gel framework of calcium silicatehydrate (C-S-H) nanoparticles is formed [1, 2]

  • Such additives according to idiosyncrasies of their influence on properties of the turning-out building materials can be defined as nanoadditives or nanomaterials

  • To define structural parameters of C-S-H nanoparticles, in the range of 1 nm to 100 nm, it is possible to use a method of small-angle neutron scattering (SANS) [13]

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Summary

Introduction

At hydration of portland cement clinker the composite gel framework of calcium silicatehydrate (C-S-H) nanoparticles is formed [1, 2]. The additives affect material structure formation on a micro- and nanolevel in the course of hydration of the initial portland cement clinker and, thereby, influence operational properties of the turning-out materials [8,9,10,11]. Most vividly it is shown if in additives there is a nanodispersible component. Such additives according to idiosyncrasies of their influence on properties of the turning-out building materials can be defined as nanoadditives or nanomaterials

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