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UV-Curable Technique of Magnetic Roller Soft Mold and Microstructure Pattern Replication

机译:电磁辊软模的紫外线固化技术和微观结构图案复制

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摘要

This study adopted the novel magnetic roller soft mold embossing technique of the soft mold preparation method, embossing, combined with the existing gas-assisted UV-curable technique, to develop an innovative magnetic-assisted continuous roller platform. Using the advantages of uniform and accurate control of applied pressure of the magnetic disk, this study used the magnetic roller soft mold embossing and UV-curable technique for replicating microstructure patterns, resulting in a more mature micro-nano embossing technology and application. The experimental results showed that the new magnetic roller soft mold preparation method can accurately cast and replicate micro-nano structures of Polydimethylsiloxane (PDMS) composite magnetic iron powder, and the magnetic disk can impose uniform pressure to effectively implement complete filling during the rolling process. This innovative process provides a simple and rapid molding mechanism, which significantly improves the microstructure pattern replication technique.
机译:这项研究采用了软模制备方法的新型磁辊软模压花技术,即压花,并结合现有的气体辅助的UV固化技术,开发了一种创新的磁辅助连续辊平台。利用均匀,精确控制磁盘施加压力的优势,本研究利用磁辊软模压花和紫外线固化技术复制微结构图案,从而产生了更加成熟的微纳米压花技术和应用。实验结果表明,新的磁辊软模制备方法能够准确铸造和复制聚二甲基硅氧烷(PDMS)复合磁性铁粉的微纳米结构,并且磁盘可以施加均匀的压力,从而有效地完成轧制过程中的完全填充。这种创新的工艺提供了一种简单而快速的成型机制,极大地改善了微结构图案复制技术。

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