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Anticorrosion Performance and Field Application of a New Rebar Inhibitor
The anticorrosion performance and field application of a new rebar inhibitor were evaluated through the tests of half-cell potential and weight loss. The results indicated that half-cell potential of rebar had a negative shift with the addition of chloride ion, so it took long time to reach the stable potential. With the increase of chloride ion in the system, half-cell potential was more difficult to achieve stability. When chlorine ion content was low, inhibition effect was very obvious. Inhibition efficiency was 85.53% without chlorine ion and 85.74% with 1.0%NaCl by weight loss. New Rebar Inhibitor had no effect on the mechanical properties of concrete, which had good protective effect on concrete pipe rack in using.
Anticorrosion Performance and Field Application of a New Rebar Inhibitor
The anticorrosion performance and field application of a new rebar inhibitor were evaluated through the tests of half-cell potential and weight loss. The results indicated that half-cell potential of rebar had a negative shift with the addition of chloride ion, so it took long time to reach the stable potential. With the increase of chloride ion in the system, half-cell potential was more difficult to achieve stability. When chlorine ion content was low, inhibition effect was very obvious. Inhibition efficiency was 85.53% without chlorine ion and 85.74% with 1.0%NaCl by weight loss. New Rebar Inhibitor had no effect on the mechanical properties of concrete, which had good protective effect on concrete pipe rack in using.
Anticorrosion Performance and Field Application of a New Rebar Inhibitor
Applied Mechanics and Materials ; 310 ; 95-100
2013-02-27
6 pages
Article (Journal)
Electronic Resource
English
Anticorrosion Performance of a New Rebar Inhibitor
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