JoVE Logo

Entrar

In concrete, the pore size distribution significantly influences the material's properties. Capillary pores, markedly larger than gel pores, form a vast network within partially hydrated cement paste, reducing the concrete's strength and increasing its permeability. This heightened permeability leads to a greater risk of damage from environmental factors like freeze-thaw cycles and chemical attacks, with the extent of vulnerability also being tied to the water-to-cement ratio.

Adequate hydration disrupts this capillary network as new cement gel formation segments the pores, effectively enhancing strength and reducing permeability. The hydration level necessary to achieve this segmentation, and its resulting improved durability and lower porosity, is contingent on both the fineness of the cement and the water-to-cement ratio. Durable concrete can result from lower water-to-cement ratios, which require shorter curing periods to reach a specific degree of hydration.

Pore size distribution, rather than total porosity, is a more accurate measure of a cement paste's characteristics, influencing the concrete's structural integrity. Pores larger than 50 nanometers, known as macropores, substantially impact the concrete's strength and impermeability. On the other hand, smaller pores, or micropores, are significant for processes such as drying shrinkage and creep. This distribution is crucial for creating concrete that can withstand various environmental and structural stresses.

Tags

Pore Size DistributionConcrete PropertiesCapillary PoresGel PoresPermeabilityWater to cement RatioHydrationCement Gel FormationStructural IntegrityMacroporesMicroporesDrying ShrinkageCreepEnvironmental StressesDurability

Do Capítulo 7:

article

Now Playing

7.5 : Pore Size Distribution

Strength of Concrete

76 Visualizações

article

7.1 : Tensile Strength Considerations of Concrete

Strength of Concrete

96 Visualizações

article

7.2 : Behavior of Concrete Under Compressive Load

Strength of Concrete

121 Visualizações

article

7.3 : Porosity in Cement Paste

Strength of Concrete

95 Visualizações

article

7.4 : Total Voids in Concrete

Strength of Concrete

73 Visualizações

article

7.6 : Microcracking in Concrete

Strength of Concrete

87 Visualizações

article

7.7 : Water Cement Ratio

Strength of Concrete

73 Visualizações

article

7.8 : Aggregate Cement Ratio

Strength of Concrete

188 Visualizações

article

7.9 : Transition Zone

Strength of Concrete

64 Visualizações

article

7.10 : Relation Between Tensile Strength and Compressive Strength of Concrete

Strength of Concrete

133 Visualizações

article

7.11 : Fatigue Strength of Concrete

Strength of Concrete

140 Visualizações

article

7.12 : Impact Strength of Concrete

Strength of Concrete

142 Visualizações

article

7.13 : Abrasion Resistance of Concrete

Strength of Concrete

81 Visualizações

article

7.14 : Reinforcements in Concrete

Strength of Concrete

60 Visualizações

article

7.15 : Fiber Reinforced Concrete

Strength of Concrete

60 Visualizações

See More

JoVE Logo

Privacidade

Termos de uso

Políticas

Pesquisa

Educação

SOBRE A JoVE

Copyright © 2025 MyJoVE Corporation. Todos os direitos reservados