Setting of Portland cements is still not well understood. Previous studies used techniques that analyse the pastes as a whole to correlate setting times with degree of hydration. Here, in-situ synchrotron X-ray diffraction analysed by the Rietveld method, with internal standard methodology, is used to derive alite dissolution rate and the crystallization kinetics of ettringite and portlandite in three commercial cements. Moreover, C–S–H gel precipitation pace has also been determined. C–S–H gel precipitation is key to account for setting. For grey Portland cements with w/c = 0.5, initial setting is attained when alite degree of hydration is close to 20% and the C–S–H gel content reached approximately 6 vol%.This research has been supported ...
Synchrotron radiation X-ray powder diffraction has been used to monitor the evolution of ettringite ...
Synchrotron radiation X-ray powder diffraction has been used to monitor the evolution of hydrous pha...
The backbone of our infrastructure and modern architecture are cementitious materials. Despite their...
The hydration of ordinary Portland cements OPC was investigated with X-ray powder diffraction XRPD t...
The hydration of ordinary Portland cements (OPC) was investigated with X-ray powder diffraction (XRP...
The hydration of ordinary Portland cements (OPC) was investigated with X-ray powder diffraction (XRP...
Knowledge of the degree of hydration of cement pastes is critical for determining properties such as...
XRPD is a powerful tool for material characterization in general, and for in-situ studies of chemica...
We report the phase transformations in Portland cement before and after hydration. The hydration mec...
The present work describes some new improvements concerning the analysis of cement hydration process...
A comparison was made between the early-age hydration of cements blended with micronized zeolitite a...
Oil and gas well cements are multimineral materials that hydrate under high pressure and temperature...
Oil well cements are multimineral materials that hydrate under high pressure and temperature. Its ov...
We outline the need to study the early hydration of cements by dynamic diffraction methods, and demo...
Synchrotron radiation X-ray powder diffraction has been used to monitor the evolution of ettringite ...
Synchrotron radiation X-ray powder diffraction has been used to monitor the evolution of ettringite ...
Synchrotron radiation X-ray powder diffraction has been used to monitor the evolution of hydrous pha...
The backbone of our infrastructure and modern architecture are cementitious materials. Despite their...
The hydration of ordinary Portland cements OPC was investigated with X-ray powder diffraction XRPD t...
The hydration of ordinary Portland cements (OPC) was investigated with X-ray powder diffraction (XRP...
The hydration of ordinary Portland cements (OPC) was investigated with X-ray powder diffraction (XRP...
Knowledge of the degree of hydration of cement pastes is critical for determining properties such as...
XRPD is a powerful tool for material characterization in general, and for in-situ studies of chemica...
We report the phase transformations in Portland cement before and after hydration. The hydration mec...
The present work describes some new improvements concerning the analysis of cement hydration process...
A comparison was made between the early-age hydration of cements blended with micronized zeolitite a...
Oil and gas well cements are multimineral materials that hydrate under high pressure and temperature...
Oil well cements are multimineral materials that hydrate under high pressure and temperature. Its ov...
We outline the need to study the early hydration of cements by dynamic diffraction methods, and demo...
Synchrotron radiation X-ray powder diffraction has been used to monitor the evolution of ettringite ...
Synchrotron radiation X-ray powder diffraction has been used to monitor the evolution of ettringite ...
Synchrotron radiation X-ray powder diffraction has been used to monitor the evolution of hydrous pha...
The backbone of our infrastructure and modern architecture are cementitious materials. Despite their...