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Influence of Magnesia-to-Phosphate Molar Ratio on Microstructures, Mechanical Properties and Thermal Conductivity of Magnesium Potassium Phosphate Cement Paste with Large Water-to-Solid Ratio

Research output: Contribution to journalArticlepeer-review

Abstract

This paper describes the influence of the magnesia-to-phosphate (M/P) molar ratios ranging from 4 to 12, on the properties and microstructures of magnesium potassium phosphate cement (MKPC) pastes with a large water-to-solid ratio (w/s) of 0.50. The setting behavior, compressive strength, tensile bonding strength and thermal conductivity of the MKPC pastes, were investigated. The results show that an increase in the M/P ratio can slow down the setting reaction, and clearly degrade the mechanical strengths, but clearly improve the thermal conductivity of MKPC pastes. Furthermore, micro-characterizations including X-ray diffraction, scanning electron microscopy and thermogravimetric analysis, on the MKPC pastes reveal that a lower M/P ratio can facilitate better crystallization of the resultant magnesium potassium phosphate hexahydrate (MKP) and a denser microstructure. Moreover, strong linear correlations are found between the mechanical strengths and the MKP-to-space ratio, and between thermal conductivity and the volume ratio of the unreacted magnesia to the MKP.

Original languageAmerican English
JournalCement and Concrete Research
Volume68
DOIs
StatePublished - Feb 1 2015

Keywords

  • Cements
  • Chemically Bonded Ceramics
  • Compressive Strength
  • Linear Correlation
  • Magnesia
  • Magnesium
  • Magnesium Potassium Phosphate Cements
  • Magnesium Potassium Phosphate Hexahydrates
  • Mechanical Properties
  • MgO
  • Microstructure
  • Phosphates
  • Potassium
  • Properties and Microstructures
  • Scanning Electron Microscopy
  • Setting Reactions
  • Thermal Conductivity
  • Thermal Conductivity of Solids
  • Thermogravimetric Analysis
  • Transport properties
  • Water-to-solid Ratios
  • X Ray Diffraction

Disciplines

  • Civil Engineering

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