Tạp chí: 5th International Conference on Machining, Materials and Mechanical Technologies (IC3MT2024), September 11th – 15th, 2024, Phan Thiet City, Vietnam
Laser machining has become an excellent choice for cutting thin metal substrates due to its ability to deliver high-quality cuts with minimal material waste and fast processing times. In this research, a Nd: YAG nanosecond laser was studied for cutting a hole of a thin electrical steel, with a thickness of 0.1 mm. The trepanning technique was targeted for cutting a circle with a diameter of 1 mm. The three process parameters: laser power (P), scanning speed (v), and pulse frequency (f), are examined to evaluate their influences on the four cutting qualities of the heat affected-zone (HAZ), height of recast layer (HR), width of recast layer (WR) and error of diameter (ED). Each process parameter is selected with three levels and a total of 27 experimental datasets are achieved. Based on the experimental results, the preference selection index (PSI) method was used to determine a set of process parameters through the best cutting multi-quality. Through implementing the PSI calculation, the result shows that the best quality is found by the qualities of HAZ = 82.1 µm, HR = 17.4 µm, WR = 24.2 µm and ED = 14 µm at process parameters of P = 9 W, v = 600 mm/s, and f = 30 kHz.
Tạp chí khoa học Trường Đại học Cần Thơ
Lầu 4, Nhà Điều Hành, Khu II, đường 3/2, P. Xuân Khánh, Q. Ninh Kiều, TP. Cần Thơ
Điện thoại: (0292) 3 872 157; Email: tapchidhct@ctu.edu.vn
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