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Laboratory Corrosion Test of Steel in Concrete
A method for laboratory corrosion testing of steel in concrete was correlated to previous laboratory and field investigations. Included in the report are derived mathematical relationships of the influence of moist or steam curing, admixtures, mixing water, entrained air, and cement content of concrete to the time of an active half-cell potential of the embedded steel. Some statistical data are presented which indicate the numerical value which demarks the upper limit of a passive half-cell potential of the steel. Other data show the measured corrosion loss of the steel and the quantity of chloride found in concrete fragments. Also presented is what is believed a new method for applying a regression analysis to the distribution of test values. (BPR Abstract)
Laboratory Corrosion Test of Steel in Concrete
A method for laboratory corrosion testing of steel in concrete was correlated to previous laboratory and field investigations. Included in the report are derived mathematical relationships of the influence of moist or steam curing, admixtures, mixing water, entrained air, and cement content of concrete to the time of an active half-cell potential of the embedded steel. Some statistical data are presented which indicate the numerical value which demarks the upper limit of a passive half-cell potential of the steel. Other data show the measured corrosion loss of the steel and the quantity of chloride found in concrete fragments. Also presented is what is believed a new method for applying a regression analysis to the distribution of test values. (BPR Abstract)
Laboratory Corrosion Test of Steel in Concrete
D. L. Spellman (author) / R. F. Stratfull (author)
1968
44 pages
Report
No indication
English
Construction Equipment, Materials, & Supplies , Iron & Iron Alloys , Reinforced concrete , Reinforcing materials , Corrosion , Composite materials , Steel , Electrochemistry , Sea water , Liquid immersion tests , Real time , Aging(Materials) , Statistical analysis , Mixtures , Pavements , Laboratory equipment , Cements , Chlorides , Crack propagation , Water , Test methods
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