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Enhanced corrosion resistance and mechanical properties of nanostructured graphene-polymer composite coating on copper by electrophoretic deposition / S. Kumari in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 15, N° 3 (05/2018)
[article]
Titre : Enhanced corrosion resistance and mechanical properties of nanostructured graphene-polymer composite coating on copper by electrophoretic deposition Type de document : texte imprimé Auteurs : S. Kumari, Auteur ; A. Panigrahi, Auteur ; S. K. Singh, Auteur ; S. K. Pradhan, Auteur Année de publication : 2018 Article en page(s) : p. 583-592 Note générale : Bibliogr. Langues : Américain (ame) Catégories : Adhésion
Anticorrosifs
Anticorrosion
Composites
Dépôt électrophorétique
Electrochimie
Essais (technologie)
Oxyde de graphène
Poly(4-vinylpyridine-méthacrylate de butyle)
Résistance à la fissurationIndex. décimale : 667.9 Revêtements et enduits Résumé : Composite coating of reduced graphene oxide (RGO) and poly (4-vinylpyridine-co-butyl methacrylate) (PVPBM) on copper was produced by electrophoretic deposition (EPD) technique. The structural and morphological characterizations of the RGO-PVPBM coating were carried out using a Raman spectrometer and a field emission scanning electron microscope, respectively. The thermal stability of the coating was analyzed by thermo-gravimetric analysis, and the corrosion resistance properties were examined by potentiodynamic polarization measurements and electrochemical impedance spectroscopy in 3.5% NaCl solution. At optimal EPD conditions of operating voltage of 5 V and total deposition time of 15 min, a uniform crack-free RGO-PVPBM composite coating is obtained. The microscratch experiment has shown an enhancement in the crack propagation resistance of RGO-PVPBM composite coating up to 3.7 times and adhesive strength increased ~2 times compared to PVPBM coating, thereby making it a potential damage tolerance surface coating on Cu substrate. The potentiodynamic measurements clearly show that RGO-PVPBM acts as a protective coating for Cu in 3.5% NaCl solution. The corrosion inhibition efficiency for RGO-PVPBM coating was calculated to be 95.4% which clearly indicates that the tailored RGO-PVPBM composite is an excellent barrier coating to ion diffusion and corrosive electrolyte with considerably enhanced corrosion resistance. Note de contenu : - EXPERIMENTAL : RGO-PVPBM - Characterization techniques - Electrochemical tests
- RESULTS AND DISCUSSION : Structural investigations - Microstructural investigations of EPD coating - Thermo-gravimetric analysis (TGA) - Microscratch adhesion and crack propagation resistance of coating - Electrochemical measurement and corrosion resistance properties of coating - Microstructural changes after electrochemical testDOI : 10.1007/s11998-017-0001-z En ligne : https://link.springer.com/content/pdf/10.1007%2Fs11998-017-0001-z.pdf Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=30754
in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH > Vol. 15, N° 3 (05/2018) . - p. 583-592[article]Réservation
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Code-barres Cote Support Localisation Section Disponibilité 20024 - Périodique Bibliothèque principale Documentaires Disponible Erosion behavior of glass-epoxy composites filled with SiC from bamboo leaf / Sisir Mantry in INTERNATIONAL POLYMER PROCESSING, Vol. XXVI, N° 2 (05/2011)
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Titre : Erosion behavior of glass-epoxy composites filled with SiC from bamboo leaf Type de document : texte imprimé Auteurs : Sisir Mantry, Auteur ; Sankar Mohapatra, Auteur ; S. Mohapatra, Auteur ; S. K. Singh, Auteur ; A. Mandal, Auteur ; A. Satapathy, Auteur Année de publication : 2011 Article en page(s) : p. 164-172 Note générale : Bibliogr. Langues : Anglais (eng) Catégories : Carbure de silicium
Composites à fibres de verre -- Détérioration
Composites à fibres végétales
Epoxydes
Fibres de bambous
Taguchi, Méthodes de (Contrôle de qualité)
Technique des plasmasIndex. décimale : 668.4 Plastiques, vinyles Résumé : The present article reports the processing, mechanical characterization and solid particle erosion response of a new class of multi phase composites consisting of epoxy resin reinforced with E-glass fiber and SiC particulates. The SiC powder synthesized from bamboo leaf employing DC extended thermal plasma technique has been used as the filler in this glass-epoxy composite. It is observed that with increasing percentage of filler particles, there is a decline in tensile and flexural strength, but there is significant improvement in hardness and erosion wear performance. It is also observed that, among all the factors, impact velocity is the most significant factor followed by filler percentage and impingement angle, while erodent size has the least significance on erosion of the hybrid composite. Taguchi’s orthogonal arrays have been used to identify the controlling factors influencing the erosion wear rate. DOI : 10.3139/217.2401 En ligne : https://drive.google.com/file/d/1mnGLk5UFuFSopaETNF_V4GMTkx-889P5/view?usp=drive [...] Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=11517
in INTERNATIONAL POLYMER PROCESSING > Vol. XXVI, N° 2 (05/2011) . - p. 164-172[article]Réservation
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Code-barres Cote Support Localisation Section Disponibilité 012997 - Périodique Bibliothèque principale Documentaires Disponible