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Published on: March 13, 2018
Surface Enhancement of Titanium Ti-3Al-2.5V Through Laser Remelting Process-A Material Analysis
Esmaeil Ghadiri Zahrani1,2, Babak Soltani1, Bahman Azarhoushang1
1Institute for Advanced Manufacturing (KSF), Furtwangen University, 78532 Tuttlingen, Germany.
Abstract:
This study evaluates the effects of laser parameters on the surface remelting of the Ti-3Al-2.5V alloy. A ms-laser equipped with a coaxial gas-pressure head integrated into a Swiss-type turning machine is used for the laser remelting process of cylindrical parts. The influence of different pulse frequencies, as well as varying intensities, is investigated. The results reveal that surface micro-cracks can be eliminated through laser remelting. Increasing the input laser intensity also increases the size of the melting pool. A similar effect is observed with higher pulse frequencies. The metallurgical microstructure and the size of the heat-affected zone of the remelted surface at different input laser energy levels are also examined. The results indicate that input laser energy influences phase transformation in the metallurgical microstructure, which correspondingly results in variations in micro-hardness within the heat-affected zone. The variations in laser fluence lead to a surface hardness improvement of approximately 15%.

