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Atmospheric pressure plasma press for improved adhesion between flexible polymer(Prepreg) and inorganic material(BaTiO3)

机译:大气压等离子压力机可改善柔性聚合物(预浸料)与无机材料(BaTiO3)之间的附着力

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Summary form only given. For the strongest bonding between two different materials, a novel adhesion process called “plasma press” has been studied using an atmospheric pressure plasma and the effect of plasma press between a flexible substrate (adhesive polymer substrate; Prepreg) and an inorganic material (BaTiO3) has been investigated as an application to the multilayer flexible printed circuit board for next generation flexible mobile electronics and wearable electronics, where, the adhesion between the flexible polymer substrate and an inorganic material is very important. Plasma press is a process of hot pressing two different surfaces for adhesion while operating a plasma between the surfaces for the activation of the surfaces. Compared to conventional hot pressed sample, the plasma pressed sample showed about 130 % increase in the adhesion strength between the Prepreg and BaTiO3. The surfaces inspected after the adhesion test showed that the fracture surface is BaTiO3 material itself not the interface between the BaTiO3 and Prepreg for the plasma press indicating a much stronger bonding at the interface than the BaTiO3 material itself. The stronger bond for the plasma pressed sample is believed to be related to the formation of active carboxyl functional groups such as CO, OCO, OCOO, etc. and unsaturated dangling bonds on the materials surfaces by the plasma operating during the hot press for bonding.
机译:仅提供摘要表格。为了使两种不同材料之间实现最牢固的粘合,已经研究了一种使用大气压等离子体的新型粘合工艺,称为“等离子压制”,以及在柔性基板(粘合剂聚合物基板;半固化片)和无机材料(BaTiO3)之间进行等离子压制的效果。已经研究了其作为用于下一代柔性移动电子设备和可穿戴电子设备的多层柔性印刷电路板的应用,其中柔性聚合物基板和无机材料之间的粘附性非常重要。等离子压制是热压两个不同表面以进行粘合的过程,同时在两个表面之间操作等离子以激活表面。与常规热压样品相比,等离子压制样品的预浸料与BaTiO3之间的粘合强度提高了约130%。粘附性测试后检查的表面表明,断裂表面是BaTiO3材料本身,而不是等离子压机的BaTiO3和Prepreg之间的界面,表明在界面处的结合力比BaTiO3材料本身要强得多。据信,等离子压制样品的更强键与活性羧基官能团(如CO,OCO,OCOO等)的形成以及通过在热压键合过程中进行等离子体操作而在材料表面上形成的不饱和悬空键有关。

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