A Study of Fiber Laser Micro-Grooving of 316L Stainless Steel at Different Temperatures

A. Sen, B. Doloi, B. Bhattacharyya
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引用次数: 2

Abstract

The present article deals with the generation of micro-grooves on 316L stainless steel (SS) by a nanosecond pulsed fiber laser system. Fabrication of micro-grooves on 316L SS has immensely contributed to the biomedical and automotive industries through improving the mechanical, lubrication, and corrosion resistance properties. In the present work, the considered process parameters are the preheating temperature (100°C and 200°C), along with the room temperature (24°C), cutting speed, sawing angle, pulse frequency, and laser power. The ranges of cutting speed and sawing angle are 0.1–1.1 mm s−1 and 0.1°–1°, respectively. Besides, pulse frequency and laser power vary from 55 kHz to 85 kHz and from 15 W to 45 W, respectively. The constant parameters are the pulse width of 99% and assist air pressure of 6 kgf cm−2. The variable parameters for the analysis are cut width and heat-affected zone (HAZ) width. The article aims to showcase a comprehensive study of fiber laser process parameters at different temperatures (preheated condition and room temperature) with variable sawing angles to produce better process control and bring about each considered process parameter’s critical value. The experimental results show that higher dimensions of cut width and HAZ width are observed at 200°C with the increment of sawing angle and laser power, compared to other temperatures. With the increment of cutting speed and laser power, the HAZ width tends to rise sharply. A significant drop in cut width and HAZ width dimensions is observed with the increment in pulse frequency for any temperature.
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不同温度下316L不锈钢光纤激光微刻槽的研究
本文研究了用纳秒脉冲光纤激光系统在316L不锈钢(SS)上产生微凹槽。在316L SS上制造微凹槽通过改善机械,润滑和耐腐蚀性,为生物医学和汽车工业做出了巨大贡献。在本工作中,考虑的工艺参数为预热温度(100°C和200°C),以及室温(24°C),切割速度,锯切角度,脉冲频率和激光功率。切割速度范围为0.1 ~ 1.1 mm s−1,锯切角度范围为0.1°~ 1°。脉冲频率为55 kHz ~ 85 kHz,激光功率为15 W ~ 45 W。恒定参数为脉冲宽度为99%,辅助气压为6 kgf cm−2。用于分析的可变参数是切割宽度和热影响区宽度。本文旨在全面研究不同温度(预热状态和室温)、不同锯切角度下的光纤激光工艺参数,以便更好地进行工艺控制,并得出所考虑的各个工艺参数的临界值。实验结果表明,与其他温度相比,在200°C时,随着锯切角度和激光功率的增加,切割宽度和热影响区宽度的尺寸增大。随着切割速度和激光功率的增加,热影响区宽度有急剧上升的趋势。在任何温度下,随着脉冲频率的增加,切割宽度和热影响区宽度尺寸显著下降。
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