Laser & Optoelectronics Progress, Volume. 56, Issue 5, 051401(2019)
Microstructure and Copper Contamination Phenomenon of Laser Cladded Aluminum Bronze Coatings on Carbon Steel Surface
Fig. 1. Morphology of aluminum bronze coating. (a) Overall; (b) upper region; (c) middle region; (d) bottom region
Fig. 2. Microstructure and element distribution in upper region of aluminum bronze coating. (a) Microstructure; (b) Cu; (c) Al; (d) Fe
Fig. 5. SEM morphology of copper contamination and EDS analysis results of element distribution. (a) Copper contamination morphology; (b) #1 spot; (c) #2 spot; (d) #3 spot
Fig. 7. Morphology of fusion zone and average depth of copper contamination under different laser parameters. (a) P=4 kW, s=4 mm·s-1, Q=12.5 g·min-1; (b) P=4 kW, s=3 mm·s-1, Q=12.5 g·min-1; (c) P=4 kW, s=2 mm·s-1, Q=12.5 g·min-1; (d) P=3.5 kW, s=2 mm·s-1, Q=12.5 g·min-1; (e) P=4.5 kW, s=2 mm·s-1, Q=12.5 g·min-1; (f) P=4 kW, s=2 mm·s-1, Q=15 g·min-1; (g) P=4 kW, s=2 mm·s-1, Q=10 g·min-1
Fig. 8. Width of fusion zone and average depth of copper contamination versus different process parameters. (a) Laser power; (b) scanning speed; (c) powder feeding rate
Fig. 9. Schematic of microstructure evolution and copper contamination under thermal cycle of laser cladding
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Xiangxiang Huang, Kai Feng, Lijie He, Jian Gong, Jiang Chen, Zhuguo Li. Microstructure and Copper Contamination Phenomenon of Laser Cladded Aluminum Bronze Coatings on Carbon Steel Surface[J]. Laser & Optoelectronics Progress, 2019, 56(5): 051401
Category: Lasers and Laser Optics
Received: Aug. 7, 2018
Accepted: Sep. 12, 2018
Published Online: Jul. 31, 2019
The Author Email: Zhuguo Li (lizg@sjtu.edu.cn)