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The aggressive solution of 1 M H2SO4 was prepared by H2SO4 98%% (Merck) with distilled water.
The aggressive solution of 1.0 M HCl was prepared by dilution of analytical reagents grade of 37 % HCl with distilled water.
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On the other hand, a significant effect of the temperature can be found, independently of the aggressive solution, on the impact performance and residual bending strength.
Attack of the aggressive solution on the metal surface made it rough is evident from Fig. 12b.
Polished metal specimen exposed to the aggressive solution with an area of 1 cm2 acted as working electrode.
It can be seen from Table 1 that the addition of inhibitor concentrations to the aggressive solution reduces the corrosion rate of mild steel, and hence the inhibition efficiency (P%) increased, suggesting that the inhibitor molecules act by adsorption on the metal surface.
Before starting the electrochemical study, it is necessary to estimate the metal oil system behavior in the presence of an aggressive solution.
The corrosion protection of superhydrophobic films was attributed to small area of real contact with the aggressive solution.
The monitoring parameter is the mass loss resulted from the treatment of MS specimens with the aggressive solution.
Combined wear corrosion conditions have been achieved by sliding an alumina antagonist on the lateral surface of coated steel cylinders, during their exposure to the aggressive solution.
The inhibitive action of olive extracts acts as a barrier between the steel surface and the aggressive solution, leading to a decrease in the corrosion rate.
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