首页> 外文期刊>Journal of Thermal Spray Technology >Characterizations and Hot Corrosion Resistance of Cr{sub}3C{sub}2-NiCr Coating on Ni-Base Superalloys in an Aggressive Environment
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Characterizations and Hot Corrosion Resistance of Cr{sub}3C{sub}2-NiCr Coating on Ni-Base Superalloys in an Aggressive Environment

机译:腐蚀性环境下镍基高温合金上Cr {sub} 3C {sub} 2-NiCr涂层的表征和耐高温腐蚀性能

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In the current study, Cr{sub}3C{sub}2-NiCr coating was deposited on the Ni-base superalloys by using high velocity oxyfuel (HVOF) process for high temperature corrosive environment applications. Optical microscopy (OM), x-ray diffraction (XRD), scanning electron microscopy/energy-dispersive analysis (SEM/EDAX), microhardness tester, and electro probe microanalyzer (EPMA) techniques were used to characterize the coating with regard to coating thickness, porosity, microhardness, and microstructure. The thermogravimetric technique was used to establish kinetics of corrosion. The hot corrosion behaviors of the bare and Cr{sub}3C{sub}2-NiCr coated superalloys were studied after exposure to aggressive environment of Na{sub}2SO{sub}4-60%V{sub}2O{sub}5 salt mixture at 900 ℃ under cyclic conditions. The structure of the as-sprayed Cr{sub}3C{sub}2-NiCr coating mainly consisted of 7-nickel solid solution along with minor phases of Cr{sub}7C{sub}3 and Cr{sub}2C{sub}3. Coating has porosity less than 1.5% and microhardness in the range of 850-900 Hv (Vickers hardness). Some inclusions, unmelted and semimelted powder particles were observed in the structure of the coatings. The Cr{sub}3C{sub}2-NiCr coating has imparted necessary resistance to hot corrosion, which has been attributed to the formation of oxides of nickel and chromium, and spinel of nickel-chromium.
机译:在当前的研究中,通过在高温腐蚀环境中使用高速氧燃料(HVOF)工艺,在Ni基高温合金上沉积Cr {sub} 3C {sub} 2-NiCr涂层。使用光学显微镜(OM),X射线衍射(XRD),扫描电子显微镜/能量色散分析(SEM / EDAX),显微硬度测试仪和电探针显微分析仪(EPMA)技术来表征涂层的涂层厚度,孔隙率,显微硬度和显微组织。使用热重技术来建立腐蚀动力学。在暴露于Na {sub} 2SO {sub} 4-60%V {sub} 2O {sub} 5的侵蚀性环境中后,研究了裸露和Cr {sub} 3C {sub} 2-NiCr涂层的高温合金的热腐蚀行为盐混合物在900℃循环条件下。喷涂后的Cr {sub} 3C {sub} 2-NiCr涂层的结构主要由7镍固溶体以及Cr {sub} 7C {sub} 3和Cr {sub} 2C {sub}的次要相组成。 3。涂层的孔隙率小于1.5%,显微硬度为850-900 Hv(维氏硬度)。在涂层的结构中观察到一些夹杂物,未熔融和半熔融的粉末颗粒。 Cr {sub} 3C {sub} 2-NiCr涂层具有必要的抗热腐蚀性能,这归因于形成镍和铬的氧化物以及镍铬的尖晶石。

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