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INVESTIGATION OF CORRELATION OF CONCRETE CORROSION PARAMETERS
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References22
PCA, Types and Causes of Concrete Deterioration, Portland Cement Association, 2002.
ASTM C618-12a, Standard Specification for Coal Fly Ash and Raw or Calcined Natural Pozzolan for Use in Concrete, ASTM International, West Conshohocken, PA, 2012.
ASTM C989 / C989M-14, Standard Specification for Slag Cement for Use in Concrete and Mortars, ASTM International, West Conshohocken, PA, 2014.
Allahverdi A ., Škvára F., Acidic corrosion of hydrated cement based materials, Part I. – mechanisms of the phenomenon, Ceramics – Silikáty, vol. 44/issue 3, pp 114-120, 2000.
Torii K. , Kawamura M., Effects of f ly ash and silica fume on the resistance of mortar to sulfuric acid and sulfate attack. Cement Concrete Research, vol. /issue 2, pp 361-370, 1994.
Robin B. E., Horst W. D., Modelling Acid Attack on Concrete (Part I): The Essential Mechanisms. Cement and Concrete Research, vol. 35/issue 12, pp 2333- 2339, 2005.
Hewayde E., Nehdi M., Allouche E. N. , Experimental Investigations of the Effect of Selected Admixtures on the Resistance of Concrete to Sulfuric Acid Attack, Proceeding of International on Pipeline Engineering and Construction. Baltimore, ASCE, pp 504-513, 2003.
Zhang W., Song Z., Prediction of Concrete Corrosion in Sulfuric Acid by SVM- Based Method, 2 nd International Conference on Electronic & Mechanical Engineering and Information Technology (EMEIT-2012), 2012.
Kreyszig E., Advanced Engineering Mathematics, John Wiley and sons, 10 th edition, 2011.
Dodge Y., The Oxford Dictionary of Statistical Terms, OUP Oxford, 2003.
Closs G., Downes B., Boulton A. Freshwater Ecology: A Scientific Introduction, Wiley, 2003. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
PCA, Types and Causes of Concrete Deterioration, Portland Cement Association, 2002.
ASTM C618-12a, Standard Specification for Coal Fly Ash and Raw or Calcined Natural Pozzolan for Use in Concrete, ASTM International, West Conshohocken, PA, 2012.
ASTM C989 / C989M-14, Standard Specification for Slag Cement for Use in Concrete and Mortars, ASTM International, West Conshohocken, PA, 2014.
Allahverdi A ., Škvára F., Acidic corrosion of hydrated cement based materials, Part I. – mechanisms of the phenomenon, Ceramics – Silikáty, vol. 44/issue 3, pp 114-120, 2000.
Torii K. , Kawamura M., Effects of f ly ash and silica fume on the resistance of mortar to sulfuric acid and sulfate attack. Cement Concrete Research, vol. /issue 2, pp 361-370, 1994.
Robin B. E., Horst W. D., Modelling Acid Attack on Concrete (Part I): The Essential Mechanisms. Cement and Concrete Research, vol. 35/issue 12, pp 2333- 2339, 2005.
Hewayde E., Nehdi M., Allouche E. N. , Experimental Investigations of the Effect of Selected Admixtures on the Resistance of Concrete to Sulfuric Acid Attack, Proceeding of International on Pipeline Engineering and Construction. Baltimore, ASCE, pp 504-513, 2003.
Zhang W., Song Z., Prediction of Concrete Corrosion in Sulfuric Acid by SVM- Based Method, 2 nd International Conference on Electronic & Mechanical Engineering and Information Technology (EMEIT-2012), 2012.
Kreyszig E., Advanced Engineering Mathematics, John Wiley and sons, 10 th edition, 2011.
Dodge Y., The Oxford Dictionary of Statistical Terms, OUP Oxford, 2003.
Closs G., Downes B., Boulton A. Freshwater Ecology: A Scientific Introduction, Wiley, 2003. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
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