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Duplication of uniqueness: electrotyping in nature printing and its application in contemporary art

机译:独特性的重复:自然印刷中的电化及其在当代艺术中的应用

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摘要

The nature printing technique was designed for the electrotyping reproduction of leaves and other natural products. Authentic impressions could be performed by inserting leaves between two lead plates or pressing leaves into the lead plate by a press. The impression obtained in the soft lead plate could then be further reproduced by copper electroplating. Electrochemically deposited copper is hard-wearing and therefore very suitable for the production of printing plates. However, depending on the technical implementation and the choice of the materials used, decisive differences in the faithfulness of reproductions of original motifs may occur during the electrochemical deposition. A central topic in electroforming of printing plates is the choice of the conductive layer on the mould. In the present study, it has been shown that graphite powder represents a conductive phase on the siloxane mould superior to silver and copper powder. The grain size of the copper electrodeposit depended on the powder grain size. The copper plate deposited on graphite powder showed the lowest grain size (5–20 µm) and the highest homogeneity of the print background. Hand polishing of the printing plate resulted in a much better faithfulness of the motif details than that of the machine polished version. However, the background of the print derived from the machine polished plate was the most homogeneous. Electrochemical investigation showed that remnants of the silver powder could result in local elements that could enhance corrosion and thus impair the durability of the printing plates. This phenomenon was negligible with the conductive layers consisting of graphite and copper.
机译:自然印刷技术被设计用于对叶子和其他天然产品进行电化复制。可以通过在两个铅板之间插入叶片或通过压力机将叶片压入铅板来执行真实的印模。然后可以通过电镀铜进一步复制在软铅板上获得的压痕。电化学沉积的铜很耐磨,因此非常适合生产印版。但是,根据技术实施和所用材料的选择,在电化学沉积过程中可能会出现原始图案复制真实性的决定性差异。电铸版的中心主题是模具上导电层的选择。在本研究中,已经表明石墨粉在硅氧烷模具上代表的导电相优于银和铜粉。电沉积铜的晶粒尺寸取决于粉末的晶粒尺寸。沉积在石墨粉上的铜板显示出最小的晶粒尺寸(5–20 µm)和最高的打印背景均匀性。与机械抛光版本相比,手工抛光印刷版可以使图案细节更加真实。但是,从机抛光板得到的印刷背景是最均匀的。电化学研究表明,残留的银粉可能会导致局部元素腐蚀,从而加剧印刷版的耐用性。对于由石墨和铜组成的导电层,这种现象可以忽略不计。

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