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Effects of drying and freeze/thaw cycling probed by 1H-NMR

Identifieur interne : 001D91 ( Main/Exploration ); précédent : 001D90; suivant : 001D92

Effects of drying and freeze/thaw cycling probed by 1H-NMR

Auteurs : Hans Chr. Gran [Norvège] ; Eddy Walther Hansen [Norvège]

Source :

RBID : ISTEX:AB829848EB44BE238158D9C7F55C438DD0B49055

Abstract

1H-NMR spin lattice relaxation times, T1, of water occupying the pore system in white hydrated cement pastes have been measured to probe the effect of drying and freeze/thaw cycling on the pore structure. Surface to volume ratios and specific surface areas are derived from these NMR measurements. Specific surface areas vary from 132 m2/g for wc = 0.30 to 242 m2/g for wc = 0.70. A significant increase in T1 is observed after drying tests performed at 105 °C on pastes with wc-ratios 0.30, 0.40, 0.60 and 0.70 corresponding to a reduction in specific surface area of 33.0, 25.0, 7.1 and 6.5%, respectively. Line width measurements showed significant reduction only for the wc = 0.30 sample. The results are in agreement with earlier work and imply that the pore structures related to micro and meso pores are more vulnerable to drying than the coarser pore structures. Freeze/thaw cycling show no significant changes in T1 after 25 cycles although all samples except one are fragmented by frost action. However, a small increase is observed after 175 cycles for samples with the lower wc-ratios.

Url:
DOI: 10.1016/S0008-8846(97)00137-3


Affiliations:


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<div type="abstract" xml:lang="en">1H-NMR spin lattice relaxation times, T1, of water occupying the pore system in white hydrated cement pastes have been measured to probe the effect of drying and freeze/thaw cycling on the pore structure. Surface to volume ratios and specific surface areas are derived from these NMR measurements. Specific surface areas vary from 132 m2/g for wc = 0.30 to 242 m2/g for wc = 0.70. A significant increase in T1 is observed after drying tests performed at 105 °C on pastes with wc-ratios 0.30, 0.40, 0.60 and 0.70 corresponding to a reduction in specific surface area of 33.0, 25.0, 7.1 and 6.5%, respectively. Line width measurements showed significant reduction only for the wc = 0.30 sample. The results are in agreement with earlier work and imply that the pore structures related to micro and meso pores are more vulnerable to drying than the coarser pore structures. Freeze/thaw cycling show no significant changes in T1 after 25 cycles although all samples except one are fragmented by frost action. However, a small increase is observed after 175 cycles for samples with the lower wc-ratios.</div>
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