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Adhesive Bonding and Corrosion Performance Investigated as a Function of Aluminum Oxide Chemistry and Adhesives

机译:研究了作为氧化铝化学和胶粘剂功能的胶粘剂粘结和腐蚀性能

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摘要

The long-term strength and durability of an adhesive bond is dependent on the stability of the oxide-adhesive interface. As such, changes in the chemistry of the oxide and/or the adhesive are expected to modify the interfacial properties and affect the joint performance in practice. The upcoming transition to Cr(VI)-free surface pretreatments makes it crucial to evaluate how the incorporation of electrolyte-derived sulfate and phosphate anions from, respectively, phosphoric acid anodizing and sulfuric acid anodizing affect the interfacial chemical properties. Hence, different types of featureless aluminum oxides with well-defined surface chemistries were prepared in this study. The relative amounts of O2−, OH−, , and surface species were quantified using x-ray photoelectron spectroscopy. Next, bonding with two types of commercial aerospace adhesive films was assessed by peel and bondline corrosion tests. The presented results indicate that the durability of the oxide-adhesive interface depends on the interplay between oxide and adhesive chemistries. Epoxy adhesion is highly affected by changes in the oxide surface chemistry, especially the amount of surface hydroxyls. However, the performance of anodic oxides with a lower hydroxyl fraction can be significantly enhanced by the presence of covalent bonds using a silane coupling agent, γ-amino propyl triethoxy. On the contrary, results with Redux 775 adhesive exhibit very low sensitivity to variations in the surface chemistry. Bondline corrosion resistance of the joints is mainly determined by the nature of the adhesive, independent of the varying oxide chemistries.
机译:胶粘剂的长期强度和耐久性取决于氧化物-胶粘剂界面的稳定性。这样,预期氧化物和/或粘合剂的化学变化会改变界面性能并在实践中影响接头性能。即将过渡到无Cr(VI)的表面预处理使得评估分别来自磷酸阳极氧化和硫酸阳极氧化的电解质衍生的硫酸根和磷酸根阴离子的结合对界面化学性能的影响至关重要。因此,本研究制备了具有明确表面化学性质的不同类型的无特征氧化铝。使用X射线光电子能谱对O2-,OH-和表面物质的相对量进行了定量。接下来,通过剥离和粘结线腐蚀测试评估与两种类型的商业航空航天粘合剂膜的粘结。提出的结果表明,氧化物-粘合剂界面的耐久性取决于氧化物与粘合剂化学之间的相互作用。环氧粘附力受氧化物表面化学变化的影响很大,尤其是表面羟基的数量。但是,使用硅烷偶联剂γ-氨基丙基三乙氧基可以通过共价键的存在显着提高具有较低羟基分数的阳极氧化物的性能。相反,使用Redux 775粘合剂的结果对表面化学变化的敏感性非常低。接头的粘结线耐腐蚀性主要取决于胶粘剂的性质,与各种氧化物化学性质无关。

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