1H nuclear magnetic resonance (NMR) relaxometry, supported by X-Ray diffraction and thermogravimetric analysis, has been used to characterise microstructure of white cement pastes underwater cured at temperatures in the range 10°C to 60°C. As the temperature increases, so the C-S-H, capillary pore water and interhydrate pore water content all increase; the ettringite and gel pore water content decrease; and the Portlandite content stays constant. A non-linear increase in the C-S-H ‘solid’ and ‘bulk’ densities, that exclude and include gel pore water respectively, has been observed with the increase of temperature. This is accompanied by a decrease in C-S-H water content but no change in the Ca/(Si + Al) ratio. The increase in the C-S-H ‘sol...
The hydration temperature has a considerable effect on the microstructure of cement paste. The micro...
Portland cement pastes made at a water/cement ratio of 0.25 were precured at 4 deg. C for 3 to 15 hr...
This study investigates the structural evolution of the blended cement pastes at micro-, nano-, and ...
1H nuclear magnetic resonance (NMR) relaxometry, supported by X-Ray diffraction and thermogravimetri...
H-1 nuclear magnetic resonance (NMR) relaxometry, supported by X-Ray diffraction and thermogravimetr...
1H nuclear magnetic resonance (NMR) relaxometry is used to characterise cement paste microstructure ...
1H nuclear magnetic resonance (NMR) relaxometry is used to characterise cement paste microstructure ...
Changes of water state within the pore structure of cement paste due to temperature changes are foll...
H NMR has been used to characterise white Portland cement paste incorporating 10 wt.% of silica fume...
H-1 NMR has been used to characterise white Portland cement paste incorporating 10 wt.% of silica fu...
H NMR has been used to characterise white Portland cement paste incorporating 10 wt.% of silica fume...
Abstract1H NMR has been used to characterise white Portland cement paste incorporating 10wt.% of sil...
H-1 nuclear magnetic resonance (NMR), supported by a measurement of the degree of hydration using X-...
H nuclear magnetic resonance (NMR), supported by a measurement of the degree of hydration using X-ra...
The hydration temperature has a considerable effect on the microstructure of cement paste. The micro...
The hydration temperature has a considerable effect on the microstructure of cement paste. The micro...
Portland cement pastes made at a water/cement ratio of 0.25 were precured at 4 deg. C for 3 to 15 hr...
This study investigates the structural evolution of the blended cement pastes at micro-, nano-, and ...
1H nuclear magnetic resonance (NMR) relaxometry, supported by X-Ray diffraction and thermogravimetri...
H-1 nuclear magnetic resonance (NMR) relaxometry, supported by X-Ray diffraction and thermogravimetr...
1H nuclear magnetic resonance (NMR) relaxometry is used to characterise cement paste microstructure ...
1H nuclear magnetic resonance (NMR) relaxometry is used to characterise cement paste microstructure ...
Changes of water state within the pore structure of cement paste due to temperature changes are foll...
H NMR has been used to characterise white Portland cement paste incorporating 10 wt.% of silica fume...
H-1 NMR has been used to characterise white Portland cement paste incorporating 10 wt.% of silica fu...
H NMR has been used to characterise white Portland cement paste incorporating 10 wt.% of silica fume...
Abstract1H NMR has been used to characterise white Portland cement paste incorporating 10wt.% of sil...
H-1 nuclear magnetic resonance (NMR), supported by a measurement of the degree of hydration using X-...
H nuclear magnetic resonance (NMR), supported by a measurement of the degree of hydration using X-ra...
The hydration temperature has a considerable effect on the microstructure of cement paste. The micro...
The hydration temperature has a considerable effect on the microstructure of cement paste. The micro...
Portland cement pastes made at a water/cement ratio of 0.25 were precured at 4 deg. C for 3 to 15 hr...
This study investigates the structural evolution of the blended cement pastes at micro-, nano-, and ...