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Updated: Jan 7, 2026

Determining Tribocorrosion Rate and Wear-Corrosion Synergy of Bulk and Thin Film Aluminum Alloys
Published on: September 11, 2018
Effect of Laser Power on the Corrosion and Wear Resistance of Laser Cladding TC4 Alloy
Xiaolei Li1,2,3, Sen Zhao1,2, Kelun Zhang1,2
1School of Mechanical & Electronic, Zhongyuan University of Technology, Zhengzhou 450007, China.
Abstract:
TC4 alloy coatings were fabricated on a titanium alloy substrate using laser cladding. The influence of laser power ranging from 1000 W to 2200 W on the microhardness, wear resistance, and electrochemical corrosion behavior in 3.5% NaCl solution was systematically investigated. Results demonstrate that the TC4 coating exhibited a 35.17% enhancement in microhardness compared to the substrate, with an average value reaching 500 HV. As the laser power increased from 1000 W to 2200 W, the maximum wear depth progressively decreased, indicating significantly improved wear resistance, with fatigue wear being identified as the dominant mechanism. The coating prepared at 1400 W showed the best corrosion performance, displaying the highest self-corrosion potential of -0.110 V, the lowest corrosion current density of 0.125 μA·cm-2, and the largest polarization resistance of 2.057 × 106 Ω·cm2. The charge transfer resistance initially increased and then decreased with increasing laser power. Numerical simulations revealed that when exposed to seawater, galvanic couples formed between the α and β phases on the TC4 titanium alloy surface, resulting in preferential dissolution of the β-phase.
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