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Optimization of Fine Line Screen Printing Using In-depth Screen Mesh Analysis

机译:深线丝网印刷优化使用深度屏幕网格分析

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In today's fine line screen printing of Si-solar cells, the screen geometry plays an important role to further optimize the paste transfer while reducing electrode widths. The screen design parameters such as mesh count, wire diameter, screen angle and channel width highly influence the opened areas inside the channel. Therefore, this work presents a comprehensive study of the shape, size and location of all existing opened areas as well as the distribution of wire cross sections inside the screen channel depending on all screen design parameters. In order to analyze the data, novel evaluation parameters e.g. local open area, its standard deviation and its periodic length are introduced. It was found that screen angles of e.g. 35° show a better compromise between low standard deviation and low periodic length of the local open area and are therefore more beneficial in terms of homogeneity of the printed electrode than the industry standard of 22.5°.
机译:在当今的Si太阳能电池的细纹丝网印刷中,屏幕几何形状起到了重要作用,以进一步优化糊状转移,同时减少电极宽度。屏幕设计参数,如网状数,线径,屏幕角和通道宽度高度影响通道内的开口区域。因此,这项工作提出了全面研究了所有现有开放区域的形状,大小和位置以及根据所有屏幕设计参数分布屏幕通道内的线横截面。为了分析数据,例如新颖的评估参数。介绍了本地开放区域,其标准偏差及其定期长度。发现屏幕角度为例如35°在局部开放区域的低标准偏差和低周期长度之间显示出更好的折衷,因此在印刷电极的均匀性方面比22.5°的行业标准更具有益。

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