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Later embryonic stages have been studied using corrosion casting and electron microscopy [31].
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The corrosion properties of one representative coating have been studied using potentio-dynamic method and the corrosion response has been correlated with the microstructure.
Pitting corrosion of Pb in Na2CO3 solutions (pH=10.8) containing NaNO3 as a pitting corrosion agent has been studied using potentiodynamic anodic polarization, cyclic voltammetry and chronoamperometry techniques, complemented with scanning electron microscopy (SEM) examinations of the electrode surface.
Coupling of metal oxidation in crevice corrosion to both O2 reduction on surfaces external to the crevice and H+ reduction occurring within the crevice, was studied using a galvanostatic crevice corrosion technique in conjunction with weight loss analyses.
The effect of temperature on the corrosion and corrosion inhibition is studied using Arrhenius equation and transition state plots.
The differences in oil-soluble corrosion inhibitor (CIC) and water-soluble corrosion inhibitor (CID) were studied using the optical profile method.
Corrosion behavior was studied using potentiodynamic polarization and electrochemical impedance spectroscopy.
The corrosion resistance was studied using potentiodynamic polarization, electrochemical impedance spectroscopy (EIS) test and the immersion test were carried out in simulated body fluid (SBF) at 36.5 ± 0.5 °C.
Hydrogen absorption into ASTM Grade-2 titanium (Ti-2) under actual crevice corrosion conditions was studied using a galvanic coupling technique.
The surface area changes, film breakdown susceptibility, and protectiveness of the corrosion products were studied using Potentiodynamic Polarization, Cyclic Voltammetry, Cyclic Polarization, and Electrochemical Impedance Spectroscopy.
The effect of TPB length on the cathode and corrosion process was studied using steady state polarization technique, electrochemical impedance spectroscopy (EIS) and linear polarization resistance (LPR) technique.
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