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Improvement in surface characterisitcs of polymers for subsequent electroless plating using liquid assisted laser processing

机译:使用液体辅助激光加工改进聚合物的表面特性,以进行后续的化学镀

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摘要

Metallization of polymers is a widely used process in the electronic industry that involves their surface modification as a pre-treatment step. Laser-based surface modification is one of the commonly used techniques for polymers due to its speed and precision. The process involves laser heating of the polymer surface to generate a rough or porous surface. Laser processing in liquid generates superior surface characteristics that result in better metal deposition. In this study, a comparison of the surface characteristics obtained by laser processing in water vis-à-vis air along with the deposition characteristics are presented. In addition, a numerical model based on the finite volume method is developed to predict the temperature profile during the process. Based on the model results, it is hypothesized that physical phenomena such as vapor bubble generation and plasma formation may occur in the presence of water, and it is because of these effects that causes an increase in surface porosity.
机译:聚合物的金属化是电子工业中广泛使用的过程,涉及将其表面改性作为预处理步骤。基于激光的表面改性由于其速度和精度而成为聚合物的常用技术之一。该方法涉及激光加热聚合物表面以产生粗糙或多孔的表面。在液体中进行激光加工会产生出众的表面特性,从而导致更好的金属沉积。在这项研究中,提出了在水中对空气进行激光处理获得的表面特性以及沉积特性的比较。另外,建立了基于有限体积法的数值模型来预测过程中的温度分布。基于模型结果,假设在水的存在下可能会发生诸如蒸汽气泡产生和等离子体形成的物理现象,并且正是由于这些影响导致表面孔隙率增加。

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