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Surface characteristics and adhesion performance of black oxide coated copper substrates with epoxy resins

机译:涂有黑色氧化物的铜基环氧树脂的表面特性和粘合性能

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摘要

Black oxide is a conversion coating applied onto the copper substrate to improve its interfacial adhesion with polymeric adhesives. A comprehensive study is made to characterize the black oxide coating using various characterization techniques, including SEM, XPS, AFM, XRD, Auger electron spectroscopy, TEM, D-SIMS, RBS and contact angle measurements. It was found that the oxide coating consisted of cupric and cuprous oxide layers from the top surface to insdie. The cuprous oxide layer was formed on the copper crystal surface, on which densely-packed fibrillar cupric oxide grew continuously until saturation. The cuprix oxide had a fibrillar structure with high roughness at the nanoscopic scale, whereas the cuprous oxide was rather flat and granular. There was a continuous change in oxide composition with no distinct boundary between the two oxide layers. The bond strength between the epoxy resin and the oxide coated copper substrate increased rapidly at a low level of oxide thickness, and became saturated at thickness greater than about 800 nm. There were similar dependences of bond strength on surface roughness, oxide thickness especially of cupric oxide and surface energy, reflecting the importance of these surface characteristics in controlling the interfacial adhesion.
机译:氧化黑是一种转换涂层,涂在铜基板上,可改善其与聚合物粘合剂的界面粘合力。使用各种表征技术,包括SEM,XPS,AFM,XRD,俄歇电子能谱,TEM,D-SIMS,RBS和接触角测量,对黑氧化物涂层进行了全面的研究。发现该氧化物涂层由从顶表面到插入物的氧化铜和氧化亚铜层组成。在铜晶体表面上形成氧化亚铜层,在其上连续生长致密堆积的原纤维状氧化铜直至饱和。氧化铜具有在纳米级具有高粗糙度的原纤维结构,而氧化亚铜相当平坦和颗粒状。氧化物组成连续变化,两个氧化物层之间没有明显的边界。环氧树脂和氧化物涂覆的铜基材之间的结合强度在低的氧化物厚度水平下迅速增加,并且在厚度大于约800 nm时达到饱和。粘结强度对表面粗糙度,氧化物厚度(尤其是氧化铜的氧化物厚度)和表面能也有类似的依赖性,反映出这些表面特性在控制界面粘附力中的重要性。

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