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RAVASZOVÁ, S. DVOŘÁK, K.
Original Title
Development of Crystallinity of Triclinic Polymorph of Tricalcium Silicate
Type
journal article in Web of Science
Language
English
Original Abstract
Tricalcium silicate phase is one of the main components of modern Portland cements. One of the major industrial challenges in the field of cement production is mapping the influence of individual clinker minerals and their polymorphs on the properties of industrially produced clinkers. The primary goal of this work is to improve the fundamental knowledge of understanding the process of alite formation and development from a crystallographic point of view. This study focuses on the observation of the crystallization process of triclinic alite during the firing process, which to date has not been thoroughly described. The effects of a wide range of temperatures and sintering periods on crystallinity were assessed on samples fired in platinum crucibles in a laboratory furnace. X-ray analysis—together with calculation of crystallinity using Scherrer’s equation—was used for observing the crystallite size changes of T1 alite polymorph. According to the acquired results, among the most technologically and economically advantageous regimes of production of a high-quality triclinic alite is the temperature of 1450 °C and sintering time of two hours. The most significant changes in the crystallite size occurred within the first hour of sintering for the whole investigated temperature range.
Keywords
triclinic tricalcium silicate; alite; crystallite size; Scherrer equation; growth rate
Authors
RAVASZOVÁ, S.; DVOŘÁK, K.
Released
24. 8. 2020
Publisher
MDPI
Location
Švýcarsko
ISBN
1996-1944
Periodical
Materials
Year of study
13
Number
17
State
Swiss Confederation
Pages from
10
Pages to
21
Pages count
11
URL
https://www.mdpi.com/1996-1944/13/17/3734
Full text in the Digital Library
http://hdl.handle.net/11012/194869
BibTex
@article{BUT164770, author="Simona {Ravaszová} and Karel {Dvořák}", title="Development of Crystallinity of Triclinic Polymorph of Tricalcium Silicate", journal="Materials", year="2020", volume="13", number="17", pages="10--21", doi="10.3390/ma13173734", issn="1996-1944", url="https://www.mdpi.com/1996-1944/13/17/3734" }