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The Influence of Sodium and Potassium Hydroxide on Volume Changes in Cementitious Materials

  • Gaurav Sant
  • , Aditya Kumar
  • , Cedric Patapy
  • , Gwenn Le Saout
  • , Karen L. Scrivener

Research output: Contribution to journalArticlepeer-review

Abstract

This research investigates the influence of alkali hydroxides on unrestrained volume changes. A detailed multi-method approach is used to characterize the progress of cement hydration, autogenous and drying volume changes (i.e., shrinkage), autogenous RH decrease, compressive strength development, solid and liquid phases and the pore structure. It is noted that under autogenous conditions, alkalis magnify shrinkage; while upon external drying the extent of shrinkage is more similar. This is contrary to expectations which suggest that the reduction in the water activity and the negative pressure developed in the liquid phase, produced by alkali enrichment, should reduce shrinkage. Analysis of the autogenous RH decrease, pore solution chemistry and the mechanical properties indicates that the bulk shrinkage response is linked to multiple parameters including: (1) increased self-desiccation at early ages, (2) a reduction in the strength (and stiffness) of alkali-enriched systems and (3) liquid saturation effects.

Original languageAmerican English
JournalCement and Concrete Research
Volume42
DOIs
StatePublished - Nov 1 2012

Keywords

  • Alkalis (D)
  • Compressive strength
  • Drying (A)
  • Humidity
  • Shrinkage

Disciplines

  • Materials Science and Engineering

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