Kyushu University · Engineering
Professor Muye Yang's research lab specializes in corrosion science and engineering, with a focus on galvanic corrosion mechanisms in dissimilar metal-composite systems, particularly involving carbon fiber-reinforced polymer (CFRP)-strengthened steel structures. The lab investigates electrochemical behaviors under atmospheric and marine conditions, emphasizing the influence of environmental factors such as humidity, temperature, and electrolyte distribution. Innovative cathodic protection systems using moisture-absorbing fibers and sacrificial anodes are also a key research direction, aiming to enhance the durability of aging steel infrastructure.
Figures are computed from collected data and may differ slightly.
For a steel structure with carbon fiber-reinforced polymer (CFRP) bonded reinforcement, galvanic corrosion is thermodynamically favored between the carbon fiber and metal. However, understanding of corrosion behaviors and mechanisms between two materials in atmospheric environments remain limited. This study investigated the galvanic corrosion behavior between carbon fiber and steel based on activation-controlled kinetics. The inhibition and facilitation factors of galvanic corrosion in an atmos
To examine the macro-galvanic corrosion of carbon steel near the air–liquid interface, a test panel of array electrodes was developed for investigating the corrosion behaviour in NaCl solution and wet soil environment. The corrosion rates were evaluated by electrochemical approaches and verified by the corrosion exposure tests. The analysis focused on the interaction between the macrocell and microcell according to the ZRA, EIS, and OCP measurements. Test results reveal that the coexisting of ma
In this study, we developed a cathodic protection (CP) system, which includes a sacrificial anode and a moisture-absorbent fiber sheet, and applied it to old steel structures exposed in a chloride environment, especially localized steel members susceptible to corrosion. Additionally, we evaluated the effects of environmental changes caused by the electrolyte and anodic material on the durability and effectiveness of the CP system. To verify the corrosion kinetics of steel affected by the sacrifi
Carbon fiber-reinforced plastic (CFRP)-strengthened steel structures are susceptible to galvanic corrosion, especially in high-humidity and marine environments. This study evaluated the key factors influencing galvanic corrosion coupled between carbon fiber and common steel. These factors include the specific electrochemical properties of unidirectional carbon fiber (CF) materials, contact mode between dissimilar materials, and environmental temperature. The results reveal that the carbon filame
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