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Synchrotron powder diffraction study of cements pastes

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journal contribution
posted on 2015-01-01, 00:00 authored by Estela Oliari GarcezEstela Oliari Garcez, Laurie AldridgeLaurie Aldridge, M Raven, Will GatesWill Gates, Frank CollinsFrank Collins, M Franco, F Yokaichiya
Knowledge of the degree of hydration of cement pastes is critical for determining properties such as the durability of concrete. As part of an integrated study on the prediction of chloride ingress in reinforced concrete, synchrotron X-ray powder diffraction was used to estimate the degree of hydration of cement pastes. While for the past 20 years the composition of Portland cement has been determined by Rietveld analysis of X-ray diffraction, nevertheless there are a number of factors, including the amorphous content of the cement and relative proportion of mineral polymorphs present in the initial clinker, whose impact on the analysis are still not completely understood. Analysis of the resulting diffraction patterns indicated enhanced identification of polymorphs of alite, belite, ferrite and aluminate, which are present in the initial unhydrated cement and clinker, as well as improved quantification of hydrated crystalline phases such as calcium hydroxide and ettringite, which are key phases determining the speed of the chemical reactions in cement. In this paper we describe the experience that we have gained in the determination of the degree of hydration of cement pastes. We detail the standards and precautions that we took to characterize production cements and their hydration products.

History

Journal

Journal of the Australian ceramic society

Volume

51

Issue

2

Pagination

47 - 53

Publisher

Australian Ceramic Society

Location

Sydney, N. S. W.

ISSN

0004-881X

Language

eng

Publication classification

C Journal article; C1.1 Refereed article in a scholarly journal

Copyright notice

2015, Australian Ceramic Society

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