纳秒光纤激光加工中聚合物和有机硅薄膜质量标记的对比试验

E. Pryakhin, E. Troshina
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引用次数: 0

摘要

为了在生产的各个阶段识别产品,二维数据矩阵条形码使用代码标记。由于存在不同类型的表面,借助自粘聚合物薄膜材料进行标记,其中信息由激光使用DPM(直接零件标记)方法记录,正变得越来越流行。这些薄膜被称为“激光薄膜”,通常用于制造业,特别是在汽车工业中,因为与其他信息载体相比,它们具有许多优点。然而,这类薄膜(tesa 6930, 3M 7847)大多是进口的,价格昂贵,而且工作温度限制也高达250°C,有时是不够的。本文讨论了国内外的薄膜,包括聚合物NPM012和有机硅LP2。LP系列是一组新的有机硅氧烷基激光薄膜,允许对高达1000°C的部件使用激光打标。根据自动识别和数据采集技术的国际标准,对聚合物薄膜和有机硅薄膜的标签进行了比较分析。激光打标使用纳秒光纤激光器,功率为30瓦,波长为1064微米。DataMatrix (GS1)是根据俄罗斯“诚实标志”商品标记和跟踪系统使用的条形码。通过扫描验证者进行标记质量评估,以检查ISO/IEC标准的符合性验证。本文介绍了激光条码技术参数的调整,以保证高质量的打标。
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Comparative test for polymer and organosilicon film quality marking in nanosecond fiber laser processing
To identify products at all stages of production, a code mark is used by two-dimensional DataMatrix barcoding. Due to the fact that there are different types of surfaces, marking with the help of self-adhesive polymer film materials, where the infor-mation is recorded by a laser using the DPM (Direct Part Marking) method, is becoming increasingly popular. These films, called "laser films", are often used in manufacturing, especially in the automotive industry, as they have a number of ad-vantages compared to other information carriers. However, such films (tesa 6930, 3M 7847) are mostly imported and expen-sive, and also have an operating temperature limit of up to 250 °C, which is sometimes insufficient. The article discusses foreign and domestic films, including polymer NPM012 and organosilicon LP2. LP series are a new group of organosilox-ane–based laser films allowing the use of laser marking for parts operating up to 1000 °C. The article provides a compara-tive analysis of the labeling of polymer films and organosilicon films in accordance with international standards of auto-matic identification and data collection technologies. Laser marking is performed using a nanosecond fiber laser with a power of 30 watts and a wavelength of 1,064 microns. DataMatrix (GS1) is used as a barcode according to the Russian sys-tem of marking and keeping track of goods "Honest Mark". Marking quality assessment is carried out by scanning verifier to check the compliance validation for ISO/IEC standards. The article describes the adjustment of laser barcoding technologi-cal parameters for ensuring high-quality marking.
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