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      Enhanced corrosion resistance of epoxy-films on ultra-thin SiOx PECVD film coated laser surface melted Al-alloys

      , , ,
      SN Applied Sciences
      Springer Science and Business Media LLC

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          Abstract

          The influence of ultra-thin SiO x plasma deposited films on the corrosion resistance of adhesive films on a laser surface melted 7075 aluminium alloy was investigated by means of complementary techniques in comparison to the just laser surface melted state. Laser surface melting (LSM) was performed using a continuous wave mode at a wavelength of 1064 nm. Ultra-thin plasma polymer films were deposited from a mixture of hexamethyldisilane (HMDSO), oxygen, and argon by means of an audio-frequency glow discharge. The surface morphology and surface chemistry compositions were investigated by employing field emission scanning electron microscopy, energy-dispersive X-ray spectroscopy (EDX), diffuse reflection infrared Fourier transform spectroscopy, and X-ray photoelectron spectroscopy. The corrosion resistance of plasma polymer coated LSM Al-7075 alloy was studied using linear sweep voltammetry and electrochemical impedance spectroscopy in a chloride-containing electrolyte. The electrochemical studies showed an improved corrosion resistance for plasma film-coated alloys compared to the just laser surface melted state. To study the corresponding surface adhesive properties, the samples were coated with an epoxy amine adhesive. 90°-peel test under humid conditions confirmed the improvement of interfacial wet-adhesion corrosion tests showed a strong improvement of the delamination resistance of adhesives caused by the ultra-thin interfacial SiO x-films.

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          Porous anodic aluminum oxide: anodization and templated synthesis of functional nanostructures.

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            Verwendung von schwingquarzen zur wagung dunner schichten und zur mikrowagung

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              Surface rippling induced by surface‐tension gradients during laser surface melting and alloying

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                Author and article information

                Contributors
                Journal
                SN Applied Sciences
                SN Appl. Sci.
                Springer Science and Business Media LLC
                2523-3963
                2523-3971
                January 2023
                December 17 2022
                January 2023
                : 5
                : 1
                Article
                10.1007/s42452-022-05244-0
                febfb5a6-09cc-47f0-98c5-f22b3f4a6217
                © 2023

                https://creativecommons.org/licenses/by/4.0

                https://creativecommons.org/licenses/by/4.0

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