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Fabrication of a Metal Micro Mold by Using Pulse Micro Electroforming

机译:脉冲微电铸成形金属微模具

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摘要

Microfluidic devices have been widely used for biomedical and biochemical applications. Due to its unique characteristics, polymethyl methacrylate (PMMA) show great potential in fabricating microfluidic devices. Hot embossing technology has established itself as a popular method of preparing polymer microfluidic devices in both academia and industry. However, the fabrication of the mold used in hot embossing is time-consuming in general and often impractical for economically efficient prototyping. This paper proposes a modified technology for preparing metal micro molds by using pulse micro electroforming directly on metallic substrate, which could save time and reduce costs. In this method, an additive was used to avoid surface defect on deposited nickel. A chemical etching process was performed on the metallic substrate before the electroforming process in order to improve the bonding strength between the deposited structure and substrate. Finally, with the aim of obtaining a metal micro mold with high surface quality (low surface roughness), an orthogonal experiment was designed and conducted to optimize the electroforming parameters. Additionally, metal micro molds with different structures were well prepared by using the optimized parameters.
机译:微流体装置已被广泛用于生物医学和生化应用。由于其独特的特性,聚甲基丙烯酸甲酯(PMMA)在制造微流体装置方面显示出巨大的潜力。热压印技术已成为学术界和工业界制备聚合物微流体装置的流行方法。然而,用于热压花的模具的制造通常是耗时的,并且对于经济有效的原型制作通常是不切实际的。本文提出了一种通过在金属基板上直接进行脉冲微电铸来制备金属微模具的改进技术,可以节省时间并降低成本。在这种方法中,使用了一种添加剂来避免沉积镍表面的缺陷。在电铸工艺之前,对金属基板执行化学蚀刻工艺,以提高沉积结构和基板之间的结合强度。最后,为了获得具有高表面质量(低表面粗糙度)的金属微模具,设计并进行了正交试验以优化电铸参数。此外,通过使用优化的参数可以很好地制备具有不同结构的金属微模具。

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