Measurement Of Localized Corrosion Resistance In Additively Manufactured Ti-6al-4v Alloys Using Electrochemical Critical Localized Corrosion Temperature (E-Clct) Versus Electrochemical Critical Localized Corrosion Potential (E-Clcp)

CORROSION SCIENCE AND TECHNOLOGY-KOREA(2021)

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摘要
Additively manufactured (AM) Ti-6Al-4V alloys exhibit a dominant acicular martensite phase (a'), which is characterized by an unstable energy state and highly localized corrosion susceptibility. Electrochemical critical localized corrosion temperature (E-CLCT, ISO 22910: 2020) and electrochemical critical localized corrosion potential (E-CLCP, ISO AWI 4631: 2021) were measured to analyze the localized corrosion resistance of the AM Ti-6Al-4V alloy. Although E-CLCP was measured under mild corrosive conditions such as human body, the validity of evaluating localized corrosion resistance of AM titanium alloys was demonstrated by comparison with E-CLCT. However, the mechanisms of resistance to localized corrosion on the as-received and heat-treated AM Ti-6Al-4V alloys under E-CLCT and E-CLCP differ at various temperatures because of differences in properties under localized corrosion and repassivation. The E-CLCT is mainly measured for initiation of localized corrosion on the AM titanium alloys based on temperature, whereas the E-CLCP yields repassivation potential of re-generated passive films of AM titanium alloys after breaking down.
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关键词
Ti-6Al-4V, Additive manufacturing, E-CLCT, E-CLCP, Repassivation
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