Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

MICROSTRUCTURE CHARACTERISTICS OF Cr3C2-NiCr COATINGS DEPOSITED WITH THE HIGH-VELOCITY OXY-FUEL THERMAL-SPRAY TECHNIQUE

View through CrossRef
With the goals of protecting boiler tubes from hostile surroundings, increasing thermal efficiency, and minimizing time losses from damage, thermal-spray coating methods for high-temperature operations were created. Ceramic-metal composite materials (e.g., Cr3C2-NiCr) are well known for protecting components from erosion decay in a high-temperature environment. In this investigation, the high-velocity oxy-fuel (HVOF) thermal-spray technique was employed to successfully deposit several variations of feedstocks containing Cr3C2-NiCr and NiCr powders onto a medium-carbon steel substrate, with and without filtering through a 400-mesh screen. Utilizing X-ray fluorescence (XRF), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS) and X-ray diffraction (XRD), the microstructure features of the deposited coatings were assessed. The experiment results demonstrate that the crystallite and grain sizes of the deposited coatings can be increased by reducing the powder size through a sifting process using a 400-mesh sieve. This procedure also resulted in a coating with a higher density and lower porosity. Furthermore, new compounds including Cr2O3 and MnCr2O4 were formed in the coating layers as indicated by the XRD spectra. These phenomena are in good agreement with the EDS mapping of Cr and O, which reveals highly similar distributions. Manganese was originally a part of the substrate composition. Manganese could diffuse rapidly across the Cr2O3 layer and form the MnCr2O4 compound, indicating the manganese diffusion from the substrate into the Cr3C2-NiCr coating. The formation of MnCr2O4 can be attributed to the prior emergence of the Cr2O3 compound.
Title: MICROSTRUCTURE CHARACTERISTICS OF Cr3C2-NiCr COATINGS DEPOSITED WITH THE HIGH-VELOCITY OXY-FUEL THERMAL-SPRAY TECHNIQUE
Description:
With the goals of protecting boiler tubes from hostile surroundings, increasing thermal efficiency, and minimizing time losses from damage, thermal-spray coating methods for high-temperature operations were created.
Ceramic-metal composite materials (e.
g.
, Cr3C2-NiCr) are well known for protecting components from erosion decay in a high-temperature environment.
In this investigation, the high-velocity oxy-fuel (HVOF) thermal-spray technique was employed to successfully deposit several variations of feedstocks containing Cr3C2-NiCr and NiCr powders onto a medium-carbon steel substrate, with and without filtering through a 400-mesh screen.
Utilizing X-ray fluorescence (XRF), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS) and X-ray diffraction (XRD), the microstructure features of the deposited coatings were assessed.
The experiment results demonstrate that the crystallite and grain sizes of the deposited coatings can be increased by reducing the powder size through a sifting process using a 400-mesh sieve.
This procedure also resulted in a coating with a higher density and lower porosity.
Furthermore, new compounds including Cr2O3 and MnCr2O4 were formed in the coating layers as indicated by the XRD spectra.
These phenomena are in good agreement with the EDS mapping of Cr and O, which reveals highly similar distributions.
Manganese was originally a part of the substrate composition.
Manganese could diffuse rapidly across the Cr2O3 layer and form the MnCr2O4 compound, indicating the manganese diffusion from the substrate into the Cr3C2-NiCr coating.
The formation of MnCr2O4 can be attributed to the prior emergence of the Cr2O3 compound.

Related Results

STRESS OXY HÓA VỚI BỆNH TẬT
STRESS OXY HÓA VỚI BỆNH TẬT
Stress oxy hóa là tình trạng mất cân bằng giữa gốc tự do hay gốc có oxy hoạt động và chất chống oxy hóa. Cơ thể cần một số lượng gốc tự do, gốc có oxy hoạt động cho hoạt động bình ...
Influence of Cr3C2 and VC Content on WC Grain Size, WC Shape and Mechanical Properties of WC–6.0 wt. % Co Cemented Carbides
Influence of Cr3C2 and VC Content on WC Grain Size, WC Shape and Mechanical Properties of WC–6.0 wt. % Co Cemented Carbides
In this paper, the influences of Cr3C2/VC content on WC grain size, WC grain shape and mechanical properties of WC–6 wt. % Co cemented carbides were investigated. The results showe...
Techno-Economic Feasibility Study of the Commercial-Scale Oxy-CFB Carbon Capture System in Turkey
Techno-Economic Feasibility Study of the Commercial-Scale Oxy-CFB Carbon Capture System in Turkey
Oxy-fuel combustion is a promising technology for the reduction of carbon dioxide emissions, in coal-fired power plants that allow the clean use of fossil fuels. Circulating fluidi...
Cyclic Hot Corrosion of High-Velocity Oxy Fuel Sprayed Coatings on Steel at 900°C
Cyclic Hot Corrosion of High-Velocity Oxy Fuel Sprayed Coatings on Steel at 900°C
Chromium carbide nickel chrome (Cr3C2-NiCr), nickel chrome (NiCr), tungsten carbide cobalt (WC-Co), and UNS R30006 metallic coatings were sprayed onto ASTM SA213-T22 steel by the h...
Experimental Investigation on Friction and Wear Performance of C/C Composite Finger Seal
Experimental Investigation on Friction and Wear Performance of C/C Composite Finger Seal
Abstract In order to find a good friction pair for the finger seal, the pin-on-disc friction tests matching the actual working conditions of finger seal are designed...
An Experimental Investigation on the Spray Characteristics of Dimethyl Ether(DME)
An Experimental Investigation on the Spray Characteristics of Dimethyl Ether(DME)
<div class="htmlview paragraph">A series of tests were conducted using scattered laser light photography to study the spray characteristics of DME and diesel fuel. The photog...
Desarrollo y optimización de recubrimientos HVOF base WC-CoCr para aplicaciones aeronáuticas
Desarrollo y optimización de recubrimientos HVOF base WC-CoCr para aplicaciones aeronáuticas
Material engineering has always played a defining role in industry by improving materials and tribological properties, increasing lite­ time use and thus ultimately reducing materi...
Effect of laser power on microstructure and tribological behavior of laser clad NiCr coating
Effect of laser power on microstructure and tribological behavior of laser clad NiCr coating
Abstract NiCr coatings were prepared on H13 steel by laser cladding with different laser power. The microstructure and phases of the obtained coatings were analyzed ...

Back to Top