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Improvement of Adhesion Between Liquid Crystalline Polyester Films by Plasma Treatment

机译:通过等离子处理改善液晶聚酯薄膜之间的粘合力

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Surface modification of thermotropic liquid crystalline aromatic polyester (LCP) films was carried out by low-pressure plasma treatment to improve the initial adhesion as well as the long-term adhesion reliability, a measure of durability between the LCP films used as substrates for printed circuit boards. Plasma irradiation was carried out in various plasma gases with different plasma modes such as reactive-ion-etching, and direct-plasma (DP) with pressures ranging from 6.7 Pa to 26.6 Pa. The introduction of polar groups on the film surface such as phenolic hydroxyl groups and carboxyl groups enhanced the initial adhesion by increased chemical interaction. However, if the concentration of polar groups became too high, the long-term adhesion reliability estimated by the pressure cooker test was degraded due to the acceleration of the penetration of water molecules into the interface. A large surface roughness was also effective in preventing the decrease in the long-term adhesion reliability. However, too much increase in surface roughness decreases the long-term adhesion reliability. The DP-treatment in the O2 atmosphere at a gas pressure of 6.7 Pa was found to be the best plasma condition for both the initial adhesion as well as the long-term adhesion reliability between the LCP films.
机译:通过低压等离子体处理对热致液晶芳族聚酯(LCP)膜进行表面改性,以改善初始粘合性和长期粘合可靠性,这是用作印刷电路基板的LCP膜之间的耐久性的一种度量板。等离子辐射是在各种等离子气体中以不同的等离子模式进行的,例如反应性离子蚀刻和直接等离子(DP),压力范围为6.7 Pa至26.6 Pa。在膜表面引入极性基团,例如酚醛羟基和羧基通过增加化学相互作用来增强初始粘附力。但是,如果极性基团的浓度太高,则由于水分子渗透到界面中的加速,通过压力锅试验估计的长期粘合可靠性降低。大的表面粗糙度对于防止长期粘合可靠性的降低也是有效的。然而,表面粗糙度的过多增加降低了长期粘合可靠性。发现在O2气氛中以6.7 Pa的气压进行DP处理对于LCP膜之间的初始粘附以及长期粘附可靠性而言,都是最佳的等离子体条件。

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