研究目的
Investigating the effects of multiple laser re-melt treatments on the microhardness of laser additive repaired Ti-6Al-4V components.
研究成果
High deposition and re-melt laser power at high scanning speed significantly influenced microhardness in the HAZ and the FZ. The highest microhardness was obtained at 1.9 kW deposition and re-melt laser powers applied at 2 m/min laser scanning speed. Multiple laser re-melt treatments posed re-heat effects and densely fused the melted powder onto the substrate, producing rectangular columnar beta grains with dendrites sinking in the HAZ.
研究不足
The study is limited to the effects of laser re-melt treatments on microhardness and does not explore other mechanical properties or long-term performance of the repaired components.