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Investigation of the laser engraving of AISI 304 stainless steel using a response-surface methodology

机译:使用响应面方法研究AISI 304不锈钢的激光雕刻

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In this paper we present the laser-beam engraving of a cold-rolled AISI 304 stainless-steel plate used for intaglio printing (e.g., banknotes and passports). This intaglio printing process allows the ink from a desired engraved pattern (e.g., microletters and images) to be transferred to a sheet of paper. The intensity of the colour and the ability to prevent the forgery of raised characters that appear on the paper correspond to the channel geometries formed by the laser-beam engraving. In order to obtain the appropriate channel geometry, and to avoid time-consuming, trial-and-error experiments, the engraving parameters must be optimized. For this purpose the Design of Experiments method and the orthogonal array L27 (34) were selected. A statistical analysis ANOVA at the 95 % confidence level was performed using the statistical software. It was found that the scan speed is the most significant factor affecting the groove geometry.
机译:在本文中,我们介绍了用于凹版印刷(例如钞票和护照)的AISI 304冷轧不锈钢板的激光束雕刻。这种凹版印刷方法允许将来自所需雕刻图案(例如,小写字母和图像)的墨水转移到纸张上。颜色的强度和防止伪造出现在纸张上的凸起字符的能力对应于由激光束雕刻形成的通道几何形状。为了获得适当的通道几何形状,并避免费时的反复试验,必须优化雕刻参数。为此目的,选择了实验设计方法和正交阵列L27(34)。使用统计软件以95%置信水平进行统计分析ANOVA。发现扫描速度是影响凹槽几何形状的最重要因素。

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