首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Effects of copper interfacial layer on surface characteristics, adhesion and wear durability of fluorocarbon thin film sputtered onto polyimide film substrate
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Effects of copper interfacial layer on surface characteristics, adhesion and wear durability of fluorocarbon thin film sputtered onto polyimide film substrate

机译:铜界面层对溅射在聚酰亚胺薄膜基材上的碳氟化合物薄膜的表面特性,附着力和耐磨性的影响

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摘要

Sputtering is one of effective technologies to enhance functions of polymer film surfaces, and polymer film coating by the sputtering is one of the surface modification technologies. Polyimide (PI) has good thermal and chemical stabilities, and excellent mechanical property, and high performance PI films can be achieved by controlling of nanostructured surfaces, e.g., hydrophobic PI film can be applied for precision instruments such as printer transfer belt. Polytetrafluoroethylene (PTFE) has also excellent thermal and chemical stabilities, lubricant and insulating properties and hydrophobicity, however, it is difficult to form the PTFE thin film on a polymer film substrate without peeling. Although PTFE thin film was deposited onto a PI film substrate by r.f. sputtering to enhance the hydrophobicity of the PI film substrate, there still remains a serious drawback in the adhesion between the sputtered PTFE thin film and the PI film substrate. A copper (Cu) thin film was introduced between the PTFE thin film and PI film substrate (PTFE/Cu/PI). Although the surface roughness and hydrophobicity of the PTFE/PI laminate decreased due to the introduction of the Cu thin film layer, the adhesion between the sputtered PTFE thin film and PI film substrate was improved without deterioration of wear durability. (C) 2014 Elsevier Ltd. All rights reserved.
机译:溅射是增强聚合物膜表面功能的有效技术之一,通过溅射涂覆聚合物膜是表面改性技术之一。聚酰亚胺(PI)具有良好的热稳定性和化学稳定性,并且具有出色的机械性能,并且可以通过控制纳米结构表面来获得高性能的PI膜,例如,疏水性PI膜可以用于精密仪器,例如打印机转印带。聚四氟乙烯(PTFE)还具有优异的热稳定性和化学稳定性,润滑性和绝缘性以及疏水性,但是,很难在不剥离的情况下在聚合物膜基材上形成PTFE薄膜。尽管通过r.f将PTFE薄膜沉积在PI膜基底上。通过溅射以增强PI膜基材的疏水性,在溅射的PTFE薄膜与PI膜基材之间的粘合方面仍然存在严重的缺点。在PTFE薄膜和PI薄膜基材(PTFE / Cu / PI)之间引入铜(Cu)薄膜。尽管由于引入了Cu薄膜层而降低了PTFE / PI层压材料的表面粗糙度和疏水性,但是溅射的PTFE薄膜与PI膜基材之间的粘合性得到了改善,而耐磨性并未降低。 (C)2014 Elsevier Ltd.保留所有权利。

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