Gözenekli Malzemeler Üzerinde Elektro-Birikimli Krom-Nano Elmas Kompozit Kaplamanin Üç Farkli Korozyon Davrani-Şinin, Pasivasyonun, Çukurlaşmanin Ve Homojenliğin Deneysel Analizi

Nano ölçekli parçacıkların metal kaplamalarına dahil edilmesi, nano kompozit kaplamalar olarak bilinir ve artan sertlik, aşınma ve korozyon direncine sahip yeni bir malzeme şeklidir. Bu çalışmada, ön alaşımlı metal toz metalurji numuneleri, saf krom ve Cr-ND'nin (Krom-nano elmas) elektrolitik kaplamasına tabi tutulmuştur. Birlikte biriktirilen ND parçacıklarının krom kaplamaların pasivasyon, çukurlaşma ve üniform korozyon davranışı üzerindeki etkileri deneysel olarak incelenmiş ve saf krom kaplama ve kaplanmamış numunelerle karşılaştırılmıştır. Numunelerin korozyon davranışları, Polarizasyon Direnci, Dönüşümlü Voltametri ve Elektrokimyasal Empedans Spektroskopi ölçüm yöntemleri ile ağırlıkça %3,5 NaCl çözeltisinin altında analiz edilmiştir.. Ayrıca optik mikroskop, SEM (Taramalı Elektron Mikroskobu), EDS (Energy Dispersive X-Ray Spektroskopi), XRD (X-Ray Difraction) ve AFM (Atomic Force Microscope) kullanılarak karakterizasyon testleri gerçekleştirilmiştir. Elde edilen sonuçlara göre, saf krom kaplamalar ve kaplanmamış numunelerle karşılaştırıldığında, ND partiküllerinin krom matrisine dahil edilmesi nedeniyle Cr-ND kaplamaların korozyon davranışında ikna edici bir iyileşme elde edildiği gözlenmiştir.

An Experimental Evaluation of The Three Types of Corrosion, Passivation, Pitting, and Uniform Corrosion, by Electrodeposited Chromium-Nano Diamond Composite Coating on Porous Materials

Incorporation of nano scale particles in coatings of metals are known as nano composite coatings are a new form of materials with enhanced hardness, wear, and corrosion resistances. In this study, pre-alloy metal powder metallurgy specimens were subjected to electrolytic coating of pure chromium and Cr-ND (Chromium-nano diamond). The influences of the co-deposited ND particles on passivation, pitting and uniform corrosion behavior of the chromium coatings were experimentally inspected and compared with pure chromium coating and non-coated specimens. The corrosion behaviors of the samples were analyzed by Polarization Resistance, Cyclic Voltammetry and Electrochemical Impedance Spectroscopy measurement methods under 3.5 %wt. NaCl solution. Furthermore, characterization tests were carried out using an optical microscope, SEM (Scanning Electron Microscope), EDS (Energy Dispersive X-Ray Spectroscopy), XRD (X-Ray Diffraction) and AFM (Atomic Force Microscope). According to the obtained results, it was observed that as compared to pure chromium coatings and non-coated specimens, a convincing improvement in the corrosion behavior of the Cr-ND coatings was obtained because of the incorporation of the ND particles in the chromium matrix.

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