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Surface characterization and adhesion of black-oxide-coated copper substrate:effect of surface hardening processes

机译:黑色氧化物涂层铜基板的表面特性和附着力:表面硬化过程的影响

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摘要

The effects of surface-hardening processes on the changes in surface characteristics and adhesion of black copper oxide substrate with epoxy resins are studied.Various techniques,namely SEM,XPS,AFM,XRD,Auger electron spectroscopy,contact angle goniometry,D-SIMS and RBS,were used to identify the changes in surface characteristics.Dense,fibrillar cupric oxide crystals characterized the as-deposited oxide coating with high surface roughness.The surface-hardening process flattened and consolidated the fibrils without changing the compositional and thermodynamic characteristics of the coated surface.The surface-hardening process reduced the total thickness of copper oxide by approximately 50-150 nm.The reduction in oxide thickness was not a predominant factor for the reduced bond strength of the surface-hardened coating.The bond strengths of both the as-deposited and surface-hardened black oxide coatings increased with oxidation time,until saturation at about 120-150 s.For the as-deposited oxide coating,mechanical interlocking,high wettability and resistance to surface contamination are the three major sources for improved adhesion,amongst which the enhanced mechanical interlocking provided by the fibrillar cupric oxide is the most important.Surface hardening reduced the efficiency of mechanical interlocking mechanism.There was close functional dependence between the button-shear strength and surface characteristics,such as surface roughness,coating thickness and surface free energy.
机译:研究了表面硬化工艺对黑色氧化铜基体与环氧树脂表面性能和粘合性变化的影响。SEM,XPS,AFM,XRD,俄歇电子能谱,接触角测角法,D-SIMS和RBS用于鉴定表面特性的变化。致密的原纤维状氧化铜晶体表征了具有高表面粗糙度的沉积氧化物涂层。表面硬化过程使原纤维变平并固结,而不会改变涂层的成分和热力学特性表面硬化过程使氧化铜的总厚度减少了约50-150 nm。氧化物厚度的减少不是降低表面硬化涂层的结合强度的主要因素。沉积和表面硬化的黑色氧化物涂层随氧化时间的增加而增加,直至饱和时间约为120-150 s。氧化物涂层,机械互锁,高润湿性和抗表面污染性是改善附着力的三大来源,其中最重要的是由纤维状氧化铜提供的增强机械互锁。表面硬化降低了机械互锁机理的效率。纽扣剪切强度和表面特性(例如表面粗糙度,涂层厚度和表面自由能)之间密切​​相关。

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