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The role of acid-base properties in the interactions across the oxide-primer interface in aerospace applications

机译:酸碱性质在航空航天应用中穿过氧化物-底漆界面的相互作用中的作用

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In the transition to environmentally friendly production, chromic acid anodizing is being replaced by sulfuric acid, phosphoric acid or phosphoric-sulfuric acid anodizing. While it is known that using these acids leads to the incorporation of anions into the oxide, little is known on how they affect the nature of the oxide and how this, in turn, affects the interactions across the oxide-primer interface. In the current work, we investigate these changes in the interactions, especially the acid-base bonding, across the interface as a function of the pretreatment. To exclude contribution of surface roughness, oxides with no surface features were prepared in the aforementioned anodizing solutions by stopping the oxide growth during the formation of the barrier layer. Treatments in alkaline solution and boiling water were also included. XPS and Fourier transform infrared were first used to probe the acid-base properties of the oxide before its interactions with 4-ethylphenol (4-EP), and 4-hydroxybenzyl alcohol (4-HbA) was measured. These two molecules represent functional groups of phenolic-based thermoset resins with different acidities. Results show that both the pretreatments and the choice of molecule play a role in the interactions across the interface. While 4-HbA showed no preference, thin films of 4-EP were not detected on oxides that were prepared in phosphoric acid. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:在向环保生产的过渡中,铬酸阳极氧化被硫酸,磷酸或磷酸-硫酸阳极氧化所代替。虽然已知使用这些酸会导致阴离子掺入氧化物中,但人们对它们如何影响氧化物的性质以及继而如何影响跨氧化物-底漆界面的相互作用的了解很少。在当前的工作中,我们研究了界面上相互作用的这些变化,尤其是酸碱键的变化,这是预处理的函数。为了排除表面粗糙度的影响,通过在阻挡层的形成过程中停止氧化物的生长,在上述阳极氧化溶液中制备了没有表面特征的氧化物。还包括在碱性溶液和沸水中的处理。在将氧化物与4-乙基苯酚(4-EP)相互作用之前,首先使用XPS和傅里叶变换红外光谱检测该氧化物的酸碱性质,并测量了4-羟基苄醇(4-HbA)。这两个分子代表具有不同酸度的酚基热固性树脂的官能团。结果表明,预处理和分子的选择均在整个界面的相互作用中起作用。尽管4-HbA没有偏爱,但在磷酸中制备的氧化物上未检测到4-EP薄膜。版权所有(C)2015 John Wiley&Sons,Ltd.

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