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Surface oxide formation during corona discharge treatment of AA 1050 aluminium surfaces

机译:aa 1050铝表面电晕放电处理过程中表面氧化物的形成

摘要

Atmospheric plasmas have traditionally been used as a non-chemical etching process for polymers, but the characteristics of these plasmas could very well be exploited for metals for purposes more than surface cleaning that is presently employed. This paper focuses on how the corona discharge process modifies aluminium AA 1050 surface, the oxide growth and resulting corrosion properties. The corona treatment is carried out in atmospheric air. Treated surfaces are characterized using XPS, SEM/EDS, and FIB-FESEM and results suggest that an oxide layer is grown, consisting of mixture of oxide and hydroxide. The thickness of the oxide layer extends to 150-300 nm after prolonged treatment. Potentiodynamic polarization experiments show that the corona treatment reduces anodic reactivity of the surface significantly and a moderate reduction of the cathodic reactivity.
机译:传统上,大气等离子体已用作聚合物的非化学蚀刻工艺,但是这些等离子体的特性可以很好地用于金属,而不仅仅是目前使用的表面清洁。本文重点介绍电晕放电过程如何修饰AA 1050铝表面,氧化物的生长以及所产生的腐蚀性能。电晕处理在大气中进行。使用XPS,SEM / EDS和FIB-FESEM表征处理过的表面,结果表明生长了一层氧化物和氢氧化物混合物。长时间处理后,氧化物层的厚度延伸至150-300nm。电位动力极化实验表明,电晕处理显着降低了表面的阳极反应性,并适度降低了阴极反应性。

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