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首页> 外文期刊>Journal of Micromechanics and Microengineering >The effect of oxidation concentration on the adhesion between flexible substrate and metal layer in metal transfer process using UV curable polymer
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The effect of oxidation concentration on the adhesion between flexible substrate and metal layer in metal transfer process using UV curable polymer

机译:使用UV可固化聚合物氧化浓度对金属转移过程中柔性基板和金属层粘附性的影响

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There has been a recent trend towards the application of transfer processes to produce an electric circuit on a flexible polymer substrate. However, adhesion between the circuit layer and the target substrate in the transfer process is typically insufficient due to non-conformal contact between two layers or low-surface energy of the target substrate. To solve this problem, ultraviolet (UV) curable resin was proposed as an adhesive layer between the circuit layer and the polymer substrate. This study experimentally analyzed the effect of oxidation concentration on the adhesion between a substrate and metal layer in metal transfer process using UV curable polymer. We also demonstrated that controlling the degree of cure of acrylate UV-curable resin, which varies depending on the oxygen concentration of the atmosphere, was shown to be an effective method to improve adhesion to the polymer substrate and prevent metal patterns from being damaged in the transfer process by adjusting the oxygen concentration under atmospheric conditions. As a feasibility study on the transfer process for actual electronic devices, a metal pattern for RFD (resistance temperature detector) was transferred on a polymer film and characterized with the electrical resistance of the pattern.
机译:最近朝着在柔性聚合物基板上产生电路的转移过程的趋势。然而,由于两层或目标基质的低表面能之间的非共形接触,电路层和目标基板之间的粘附通常不足。为了解决这个问题,提出紫外(UV)可固化树脂作为电路层和聚合物基材之间的粘合剂层。该研究通过UV可固化聚合物分析了氧化浓度对金属转移过程中的基材和金属层之间粘附性的影响。我们还证明,控制丙烯酸酯UV可固化树脂的固化程度,其根据大气的氧浓度而变化,这是一种改善与聚合物基材的粘附性的有效方法,并防止金属图案在损坏通过调节大气条件下的氧浓度来转移过程。作为对实际电子器件的转移过程的可行性研究,将RFD(电阻温度检测器)的金属图案转移在聚合物膜上并具有图案的电阻。

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