Experimental research methods for CO2 laser cutting of HARDOX400 steel

C. C. Gîrdu, B. Lepădătescu
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Abstract

he laser beam is a source of radiation with concentrated energy. The characteristics of the laser beam (spot energy, focal spot diameter, spot temperature) are aspects theoretically researched in this paper. The intensity of the laser beam transmitted to the surface of the part has a Gaussian shape. A CO2 laser was used in the processing of parts from a HARDOX400 steel sheet with a thickness g = 8mm. The values of the cutting parameters were established by sample tests. An experimental design with 27 observations was analyzed. The width of the cutting slot at the straight profile was measured. Physical quantities derived from the cutting parameters and working parameters used were calculated. Spot energy, cost and interaction time were determined and evaluated using the mathematical model given by GRAPH. The research findings show that the best values of the factors studied converge to average values in minimizing Kerf.
二氧化碳激光切割HARDOX400钢的实验研究方法
激光束是一种能量集中的辐射源。本文从理论上研究了激光束的特性(光斑能量、焦点光斑直径、光斑温度)。激光束传输到零件表面的强度呈高斯形状。采用CO2激光对厚度为g = 8mm的HARDOX400钢板进行零件加工。通过试样试验确定了切削参数的取值。分析了一个有27个观察值的实验设计。测量了直线轮廓处切割槽的宽度。计算了切削参数和加工参数的物理量。利用GRAPH给出的数学模型确定并评价了现场能量、成本和作用时间。研究结果表明,在使切口最小化的过程中,所研究因子的最佳值收敛于平均值。
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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