Observation of Thermocapillary Effect in Gas -Assisted CO2 Laser Cutting of Steel

ALT Proceedings Pub Date : 2012-11-01 DOI:10.12684/ALT.1.48
A. V. Dubrov, Y. Zavalov, V. D. Dubrov
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Abstract

Investigations of melt’s dynamics have been performed with pyrometer in the gasjet-assisted CO2 laser cutting. Pyrometer consists of 4 sensors and local luminosity of metal melt has been measured precisely on different depth along front of cutting with long dimension resolution about 0.1 mm and with time resolution as short as 0.06 ms. The results of data processing of brightness temperature are reported for laser cutting of mild-steel plate 3 mm, 6 mm and 10 mm thick, that allows obtaining spectra of melt’s surface deformation for different values of cutting velocity and assisted gas pressure. The generation of capillary-wave turbulence following thermo-capillary effect can be observed in the locations, where intensity of radiation of CO2 laser on melt’s surface exceeds 1 MW/cm2. The R-M-S of temperature fluctuations is greater than 10 K in the range of sub-millimeter capillary waves. Thus, an additional mechanism of the anomalous absorption on the front of cutting can compensate the low absorption of the metal in case of 10.6 μm laser in comparison with the absorption of the metal in the near infrared range.
气体辅助CO2激光切割钢的热毛细效应观察
用高温计对气体射流辅助CO2激光切割过程中熔体的动力学进行了研究。高温计由4个传感器组成,在切割前方不同深度上精确测量了金属熔体的局部亮度,长尺寸分辨率约为0.1 mm,时间分辨率短至0.06 ms。本文报道了激光切割3mm、6mm和10mm厚的低碳钢板的亮度温度数据处理结果,得到了不同切割速度和辅助气体压力值下熔体表面变形的光谱。当CO2激光在熔体表面的辐射强度超过1 MW/cm2时,可以观察到热毛细效应引起的毛细波湍流的产生。在亚毫米毛细波范围内,温度波动的R-M-S大于10 K。因此,切割前的异常吸收机制可以补偿在10.6 μm激光下金属的低吸收,而在近红外范围内金属的吸收较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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