This covers reinforcement corrosion, carbonation, chloride ingress, alkali-aggregate reaction, freeze/thaw, sulfate attack, acid and seawater attack, cracking, abrasion, erosion, cavitation and weathering. With international standards, probabilistic design, mathematical modelling of deterioration mechanisms and performance-based tests.
This covers reinforcement corrosion, carbonation, chloride ingress, alkali-aggregate reaction, freeze/thaw, sulfate attack, acid and seawater attack, cracking, abrasion, erosion, cavitation and weathering. With international standards, probabilistic design, mathematical modelling of deterioration mechanisms and performance-based tests.
Mark G. Richardson is Professor Emeritus and formerly Head of the School of Civil Engineering at University College Dublin.
Inhaltsangabe
1. Durable concrete: the why and the how. 2. The prescriptive approach. 3. Durability design and the performance route to specification. 4. Permeability of traditional and innovative concretes. 5. Corrosion of reinforcement in concrete. 6. Carbonation. 7. Chloride ingress. 8. Freeze-thaw effects. 9. Chemical attack: sulfates. 10. Chemical attack: leaching, acid and seawater attack. 11. Alkali-aggregate reaction. 12. Cracking in reinforced concrete structures. 13. Abrasion, erosion and cavitation. 14. Weathering and efflorescence.
1. Durable concrete: the why and the how. 2. The prescriptive approach. 3. Durability design and the performance route to specification. 4. Permeability of traditional and innovative concretes. 5. Corrosion of reinforcement in concrete. 6. Carbonation. 7. Chloride ingress. 8. Freeze-thaw effects. 9. Chemical attack: sulfates. 10. Chemical attack: leaching, acid and seawater attack. 11. Alkali-aggregate reaction. 12. Cracking in reinforced concrete structures. 13. Abrasion, erosion and cavitation. 14. Weathering and efflorescence.
1. Durable concrete: the why and the how. 2. The prescriptive approach. 3. Durability design and the performance route to specification. 4. Permeability of traditional and innovative concretes. 5. Corrosion of reinforcement in concrete. 6. Carbonation. 7. Chloride ingress. 8. Freeze-thaw effects. 9. Chemical attack: sulfates. 10. Chemical attack: leaching, acid and seawater attack. 11. Alkali-aggregate reaction. 12. Cracking in reinforced concrete structures. 13. Abrasion, erosion and cavitation. 14. Weathering and efflorescence.
1. Durable concrete: the why and the how. 2. The prescriptive approach. 3. Durability design and the performance route to specification. 4. Permeability of traditional and innovative concretes. 5. Corrosion of reinforcement in concrete. 6. Carbonation. 7. Chloride ingress. 8. Freeze-thaw effects. 9. Chemical attack: sulfates. 10. Chemical attack: leaching, acid and seawater attack. 11. Alkali-aggregate reaction. 12. Cracking in reinforced concrete structures. 13. Abrasion, erosion and cavitation. 14. Weathering and efflorescence.
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