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Print Quality of Laser-Engraved Cliches for Pad Printing

机译:打印激光雕刻素材的质量用于垫印刷

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Polymer and steel are widely used materials for making pad-printing cliches. Polymer cliches are typically produced in house using a photographic method involving exposure with film positives followed by development. There are many steps in the process, which affects consistent quality. The production of steel cliches is usually outsourced to professional etching houses because aggressive chemicals are used in the etching process. It is difficult to get straight-walled etching because pooling of the chemicals causes uneven edges and rough bottoms. Computer to plate (CTP) systems utilizing laser engraving to make cliches are available in the market today. They eliminate film and chemicals. They ensure direct image output and eliminate the myriad variables and time-consuming steps required in conventional methods. However, little research has been done yet to evaluate the print quality of laser-engraved cliches. In this study, a CO_2 laser cutter from Universal Laser Systems was used to engrave the image areas on polymer cliches. The laser system has a power of 150 watts and the laser beam has a spot size of 0.001 inch, which ensures fine detail reproduction. Image resolutions are determined by pulses per inch (ppi) in the lateral direction and dots per inch (dpi) in the downward direction. Highest available resolution was used, which was 1000 ppi by 1000 dpi. Laser power and engraving speed determines the depth of the ink wells. These two engraving parameters were varied to obtain optimum results. It was found that 100% speed with 11% power created an optimum etch depth. A vector image and images with large open areas that were screened with different settings were laser-engraved on cliches and printed on a pad printer Model Sealcup 60 from Trans Tech. The engraved sidewalls appeared to be straight and pooling of ink did not occur in the printing process, thus produced high print quality of line arts. Images with large open areas that were screened at a maximum angle of 45° with the doctoring direction and a high screen frequency of 200 lpi had the best print quality and highest print density. Differences between dot shapes were only observed when the screen frequency was low.
机译:聚合物和钢是广泛使用的用于制造垫印刷素的材料。使用涉及薄膜阳性的照相的摄影方法,通常在房屋中生产聚合物陈词。过程中有许多步骤,这会影响一致的质量。钢结构的生产通常外包给专业的蚀刻房屋,因为蚀刻过程中使用了侵蚀性化学品。由于化学物质的汇集导致粗糙的底部,很难获得直白蚀刻。利用激光雕刻制作陈词滥调的电脑(CTP)系统可在市场上获得。他们消除了电影和化学品。它们确保直接图像输出并消除传统方法所需的无数变量和耗时的步骤。然而,尚未进行小型研究尚未评估激光雕刻素的印刷质量。在本研究中,来自通用激光系统的CO_2激光切割器用于雕刻聚合物陈词上的图像区域。激光系统的功率为150瓦,激光束的光斑尺寸为0.001英寸,确保细节再现。图像分辨率由横向方向上的脉冲(PPI)和向下方向上每英寸(DPI)的点来确定。使用最高的可用分辨率,其中1000 ppi为1000 dpi。激光功率和雕刻速度决定了油墨井的深度。这两个雕刻参数变化以获得最佳结果。发现100%的速度具有11%的功率产生了最佳的蚀刻深度。矢量图像和带有不同设置筛选的敞开区域的矢量图像和图像在陈词滥调上激光刻,并在跨技术的垫打印机模型密封件60上印刷。雕刻的侧壁似乎是直的,并且在印刷过程中没有发生墨水的汇集,从而产生高印刷线条的线条。具有大开放区域的图像,在俄罗斯教练的最大角度为45°,高屏幕频率为200LPI具有最佳的印刷质量和最高的印刷密度。只有在屏幕频率低时才观察到点形状之间的差异。

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