Selective Formula as A Corrosion Inhibitor to Protect the Surfaces of Antiquities Made of Leather-Composite Brass Alloy | ||||
Egyptian Journal of Chemistry | ||||
Article 49, Volume 63, Issue 12, December 2020, Page 5269-5287 PDF (2.97 MB) | ||||
Document Type: Original Article | ||||
DOI: 10.21608/ejchem.2020.41575.2841 | ||||
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Authors | ||||
Mohamed Moatamed Megahed1; Mohamed Youssif2; Ashraf M El-Shamy ![]() ![]() | ||||
1El Fayom university | ||||
2Miser University of Science and Technology, 6th of October City, Egypt | ||||
3Physical chemistry department | ||||
Abstract | ||||
The interactions between the metal and the surroundings are responsible for electrochemical reactions that contribute to corrosion. To mitigate or deter corrosion of exposed metal in a corrosive environment, and corrosion agent must be applied to the metal surface to prevent further oxidation and therefore the presence of corrosion materials. One of the common techniques used by professionals associated in conservation-restoration to preserve metallic cultural heritage is the corrosion inhibitors. The second section of the thesis deals with the conservation and management by using an environmentally friendly corrosion agent of the corrosion of brass composite brass leather parts from the Bulaq Museum, Cairo, Egypt. Microscope Optical and scanning electron Analysis was performed to determine the microstructure of the alloy. Determining the alloy chemical composition of the identified objects using dispersive energy spectroscopy (EDS). Using X-ray diffraction (XRD), corrosion products were established. Finally, the effectiveness of composites between industrial corrosion inhibitors and surfactant materials was identified by the positive effects of (TTA + SLS) on handling. Before and after treatments the brass surfaces were described using SEM, EDS, XRD, FTIR, and XPS. | ||||
Keywords | ||||
Brass; Conservation; Coating; Electrochemical Characterization; Corrosion Control | ||||
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