Detail publikace

The Influence of Cooling Process on the Formation of Dicalcium Silicate

RAVASZOVÁ, S. DVOŘÁK, K.

Originální název

The Influence of Cooling Process on the Formation of Dicalcium Silicate

Typ

článek ve sborníku ve WoS nebo Scopus

Jazyk

angličtina

Originální abstrakt

Of the existing modifications of dicalcium silicate (C2S), the β-C2S modification is the most important, because it is a regular constituent of Portland cement. β-C2S is a metastable modification at all temperatures, yet it can be stabilised at ambient temperature by doping with different foreign ions into its crystalline lattice. If β-C2S is produced in non-doped form, it is usually contaminated with variable amounts of γ-C2S. This article deals with the preparation of β-C2S without incorporating of different ions. The main aim of this article is to obtain β-C2S in the purest form with the lowest amount of γ-C2S. Stabilization of individual belite polymorphs affects many factors. For this article, one factor-cooling mode was chosen to stabilize β-C2S.

Klíčová slova

belite; temperature; cooling;

Autoři

RAVASZOVÁ, S.; DVOŘÁK, K.

Vydáno

19. 8. 2019

Nakladatel

Trans Tech Publications

Místo

Switzerland

ISBN

978-3-0357-1550-7

Kniha

Binders, Materials and Technologies in Modern construction V

Edice

2019

Číslo edice

296

ISSN

1012-0394

Periodikum

Solid State Phenomena

Ročník

296

Stát

Švýcarská konfederace

Strany od

41

Strany do

46

Strany počet

6

URL

BibTex

@inproceedings{BUT158052,
  author="Simona {Ravaszová} and Karel {Dvořák}",
  title="The Influence of Cooling Process on the Formation of Dicalcium Silicate",
  booktitle="Binders, Materials and Technologies in Modern construction V",
  year="2019",
  series="2019",
  journal="Solid State Phenomena",
  volume="296",
  number="296",
  pages="41--46",
  publisher="Trans Tech Publications",
  address="Switzerland",
  doi="10.4028/www.scientific.net/SSP.296.41",
  isbn="978-3-0357-1550-7",
  issn="1012-0394",
  url="https://www.scientific.net/SSP.296.41"
}