3D printed lithophane

Jure Klokočovnik, Deja Muck
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Abstract

Lithophane is a transparent plate on which, with the help of the different thickness of this plate, an image is formed. Light that passes through the plate from the back side of the plate shows a clear gray image on the front side of this plate. The strength of the transparency is determined by the material of the plate and the light source coming from behind. Without backlighting, the subject on the lithophane cannot be seen. Lithophanes in the form of porcelain vases were discovered in China long before the technique made its way to Europe. In Europe the origins of lithophanes date back to the early 19th century in France. Europeans perfected the technique and also used it to reproduce famous portraits and paintings. Today, the production of lithophanes is experiencing a renaissance with the advent of 3D printing technologies. In the research paper, the process of making lithophane using 3D printing is presented. First, 3D printing technologies are presented, more specifically the technology of extrusion of materials or thermoplastics modelled by joining layers. Then, the materials used for 3D printing with the mentioned technology are presented. Next, the procedures for 3D acquisition and reproduction of reliefs are described, and at the end, the lithophane itself is presented. In the practical part, the whole process of making lithophane is presented. For the creation of the lithophane model, the 3D modelling program Blender was used, and the lithophanes in physical form were made with the Creality Ender 3 3D printer using PLA filament. Droplet and electrophotographic printers were also used to produce colour lithophanes. The influence of LED and halogen lamps on the final impression of lithophane reproduction was also compared. Lithophanes produced with different print settings and different colour reproductions were compared. The results showed that the best wall thickness is one millimetre, and the layer thickness is the smallest value allowed by the printer. The orientation of the lithophane during printing has a great influence on the final image of the design. The best orientation is upright. Color reproduction is best when using electrophotographic printing in combination with acrylic varnish. Lighting research showed that LED is better than halogen lamps. The finished lithophane was of satisfactory quality and could be used as a decoration for the home or to organize an art exhibition with a large number of coloured lithophanes reproducing various artworks and motifs.
3D打印光石
光版是一种透明的印版,借助印版的不同厚度,在其上形成图像。从板的背面穿过板的光在板的正面显示出一个清晰的灰色图像。透明度的强度是由板的材料和后面的光源决定的。在没有背光的情况下,无法看到光刻纸上的主体。早在这种技术传入欧洲之前,中国就发现了以瓷器花瓶形式存在的石版画。在欧洲,lithopene的起源可以追溯到19世纪初的法国。欧洲人完善了这项技术,也用它来复制著名的肖像和绘画。今天,随着3D打印技术的出现,石版印刷的生产正在经历复兴。本文介绍了利用3D打印技术制作石版纸的工艺过程。首先,介绍了3D打印技术,更具体地说,是通过连接层建模的材料或热塑性塑料的挤出技术。然后,介绍了采用上述技术进行3D打印的材料。接下来,描述了浮雕的3D获取和复制过程,最后介绍了石版版画本身。在实践部分,介绍了光石的整个生产过程。对于石版画模型的创建,使用3D建模程序Blender,并使用Creality Ender 3 3D打印机使用PLA长丝制作物理形态的石版画。液滴和电子照相打印机也被用来生产彩色光版。比较了LED灯和卤素灯对光刻版画再现效果的影响。用不同的印刷设置和不同的颜色复制版画进行了比较。结果表明,最佳壁厚为1毫米,层厚为打印机允许的最小值。在印刷过程中,光刻版画的方向对设计的最终图像有很大的影响。最好的姿势是直立。当与丙烯酸清漆结合使用时,电照相印刷的色彩再现效果最好。照明研究表明,LED灯优于卤素灯。完成的石版具有令人满意的质量,可以用作家庭装饰或组织艺术展览,其中有大量再现各种艺术品和图案的彩色石版。
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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