Chemical, Mechanical, and Durability Properties of Concrete with Local Mineral Admixtures under Sulfate Environment in Northwest China
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Summary
It is noteworthy that concrete containing local mineral admixtures exhibited much lower permeability than ordinary portland cement concrete while retaining the same mechanical properties; whereas concrete mixtures made with sulfate resistance cement had significantly reduced strength and much increased chloride penetration comparing to the other mixtures.
- Type
- article
- Published
- 2014-05-01
- Cited by
- 59
- References
- 48
- Access
- Open access
- OpenAlex
- https://openalex.org/W1984045938
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14848450
Keywords
Portland cement, Fly ash, Durability, Cement, Cementitious
References
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- Effect of fly ash replacement level on the shear strength of high-volume fly ash concrete beams
- Optimization of Cementitious Material Content for Sustainable Concrete Mixtures
- Sulfate attack on concrete with mineral admixtures
- Effects of fly ash and silica fume on the resistance of mortar to sulfuric acid and sulfate attack
- A new approach for the classification of coal fly ashes based on their origin, composition, properties, and behaviour
- Compressive strength and sulfate resistance properties of concretes containing Class F and Class C fly ashes
- Reexamination of ASTM C 1202 : Standard test method for electrical indication of concrete's ability to resist chloride ion penetration
- Effects of C3A and Mineral Admixtures on the Sulfate Attack Using ASTM C 1012
- Relationship between Autogenous Shrinkage and Tensile Strength of Cement Paste with SCM
- Strength Deterioration of Plain and Metakaolin Concretes in Aggressive Sulfate Environments
- Sulfate attack and role of silica fume in resisting strength loss
- Effect of High-Volume Fly Ash on Shear Strength of Concrete Beams
- Comparison of Rapid Tests for Evaluation of Chloride Resistance of Concretes with Supplementary Cementitious Materials
- Studies on the corrosion resistance of reinforced steel in concrete with ground granulated blast-furnace slag--An overview.
Cited by
- The Durability of Sulfate Resisting Cement Concrete Made with Fly Ash or Slag
- Strength Deterioration of Concrete in Sulfate Environment: An Experimental Study and Theoretical Modeling
- Numerical simulation of fly ash concrete under sulfate attack
- Using a Statistical Method for the Concrete Deterioration Assessment in Sulphate Environment
- Effects of Medium Temperature and Industrial By-Products on the Key Hardened Properties of High Performance Concrete
- Parametrical study of the cementitious materials degradation under external sulfate attack through numerical modeling
- Durability of mortar and concrete made up of pozzolans as a partial replacement of cement: A review
- Effect of internal sulfate attack on the properties of sulfate-resisting cement and alkali-activated slag
- Effect of sea water and MgSO4 solution on the mechanical properties and durability of self-compacting mortars with fly ash/silica fume
- Geochemistry of Ground and Groundwater Pertinent to Chemical Attacks Mitigation on Concrete Foundations; A Case Study of the City of Rasht, Northern Iran
- Reduced alkali-silica reaction damage in recycled glass mortar samples with supplementary cementitious materials
- Improving cracking resistance of cement mortar by thermo-sensitive poly N-isopropyl acrylamide (PNIPAM) gels
- Efficacy of carbonated petroleum coke fly ash as supplementary cementitious materials in cement mortars
- Examining the Effect of Asphalt Plant Surplus Filler on Water and Chloride Ion Permeability of Cement Mortar
- ANN Modeling to study strength loss of Fly Ash Concrete against Long term Sulphate Attack
- Evaluating the impact of nano-magnesium calcite waste on the performance of cement mortar in normal and sulfate-rich media
- More eco-efficient concrete: An approach on optimization in the production and use of waste-based supplementary cementing materials
- Fractal Cracking Patterns in Concretes Exposed to Sulfate Attack
- Corrosion and tensile behavior of 316L stainless steel concrete reinforcement in harsh environments containing a corrosion inhibitor
- Effect of fly ash on the corrosion performance and structural integrity of stainless steel concrete rebars in acid rain and saline environments
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