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Experimental Study of Back Wall Dross and Surface Roughness in Fiber Laser Microcutting of 316L Miniature Tubes

机译:316L微型管光纤激光微切割后壁污垢和表面粗糙度的实验研究

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摘要

Laser cutting is a key technology for the medical devices industry, providing the flexibility, and precision for the processing of sheets, and tubes with high quality features. In this study, extensive experimentation was used to evaluate the effect of fiber laser micro-cutting parameters over average surface roughness (Ra) and back wall dross (Dbw) in AISI 316L stainless steel miniature tubes. A factorial design analysis was carried out to investigate the laser process parameters: pulse frequency, pulse width, peak power, cutting speed, and gas pressure. A real laser beam radius of 32.1 μm was fixed in all experiments. Through the appropriate combination of process parameters (i.e., high level of pulse overlapping factor, and pulse energy below 32 mJ) it was possible to achieve less than 1 μm in surface roughness at the edge of the laser-cut tube, and less than 3.5% dross deposits at the back wall of the miniature tube.
机译:激光切割是医疗设备行业的一项关键技术,它为处理具有高质量特征的薄板和管提供了灵活性和精度。在这项研究中,广泛的实验用于评估AISI 316L不锈钢微型管中光纤激光微切割参数对平均表面粗糙度(Ra)和后壁浮渣(Dbw)的影响。进行了析因设计分析,以研究激光加工参数:脉冲频率,脉冲宽度,峰值功率,切割速度和气压。在所有实验中,实际激光束半径为32.1μm。通过适当组合工艺参数(即高水平的脉冲重叠因子和低于32 mJ的脉冲能量),可以在激光切割管的边缘实现小于1μm的表面粗糙度,并小于3.5 %的渣s沉积在微型管的后壁。

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