トゥルアージョアン

Laser Wire Directed Energy Deposition (L-DED) of Ti-6Al-4V

Laser Wire Directed Energy Deposition (L-DED) of Ti-6Al-4V Ti-6Al-4V is one of the most widely used titanium alloys in laser wire directed energy deposition (L-DED) due to its excellent mechanical properties, corrosion resistance, and strong industrial adaptability. It shows significant potential for aerospace applications. Compared with other methods, the L-DED process offers higher material utilization, […]

Laser Wire Directed Energy Deposition (L-DED) of Ti-6Al-4V 続きを読む "

Surface Repair of 7075 Aluminum Alloy by AFSD

Surface Repair of 7075 Aluminum Alloy by AFSD 7075 aluminum alloys are widely used in aerospace and transportation due to their high strength and excellent corrosion resistance. However, under extreme service conditions, these aluminum alloy components are prone to surface damage such as wear, impact, and corrosion. Traditional repair methods often deteriorate the material’s properties,

Surface Repair of 7075 Aluminum Alloy by AFSD 続きを読む "

TiN Powder

TiN Powder TiN powder (Titanium Nitride powder) is a ceramic compound and a material with distinct properties and applications for its extreme hardness, high melting point, chemical stability, and electrical conductivity, making it useful in wear-resistant coatings, cutting tools, electronics, and decorative finishes.  Our Titanium Nitride (TiN) powder is produced by Vacuum Nitriding or Spray

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WC-Ni60 Powder

WC-Ni60 Powder WC-Ni60 powder is a composite material combining tungsten carbide (WC) and Ni60 nickel-based alloy (NiCrBSiFe), primarily used in wear-resistant coatings for components like brake discs. The tungsten carbide provides extreme hardness to resist wear, while the Ni60 alloy offers good corrosion, oxidation, and heat resistance, acting as a binder to form dense, high-performance coatings with

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TiCパウダー

TiC Powder TiC powder, or Titanium Carbide powder, is a gray, metallic, extremely hard material known for its exceptional wear resistance, high melting point, excellent corrosion resistance, and good thermal and electrical conductivity. It is used in manufacturing wear-resistant materials, cutting tools, abrasives, high-temperature components, and cermets. It is also used in the coatings and thermal spraying industries

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 Laser powder bed fusion process and mechanical properties of Haynes 188 (GH5188) 

Laser powder bed fusion process and mechanical properties of Haynes 188 (GH5188) Haynes 188 (GH5188) is used in heavy-duty gas turbine combustors due to its balanced high-temperature performance (maximum service temperature 980°C). The mechanical properties of Haynes 188 produced by laser powder bed fusion (LPBF) have not been thoroughly studied. In this study, our engineers

 Laser powder bed fusion process and mechanical properties of Haynes 188 (GH5188)  続きを読む "

Control of oxide inclusions in ODS FeCrAl steel by LPBF parameters

Control of oxide inclusions in ODS FeCrAl steel by LPBF parameters

Control of oxide inclusions in ODS FeCrAl steel by LPBF parameters Heat input is correlated with melt pool geometry and oxide inclusion content. Our researchers have modified laser powder bed melting parameters to produce an ODS-FeCrAl steel free of Y-Al-O oxide inclusions from a Fe-22Cr-5.1Al-0.5Ti-0.26Y and TiO₂powder mixture. This research provides a feasible method for

Control of oxide inclusions in ODS FeCrAl steel by LPBF parameters 続きを読む "

Cavitation Erosion Resistance of Fe50Mn30Co10Cr10 High Entropy Alloy

Cavitation Erosion Resistance of Fe50Mn30Co10Cr10 High Entropy Alloy

Cavitation Erosion Resistance of Fe50Mn30Co10Cr10 High Entropy Alloy HEA powder, composed of Fe50Mn30Co10Cr10, with a particle size ranging from 45 to 105 μm, was prepared in an argon atmosphere using gas atomization method. The substrate is AISI 304 stainless steel board. The laser scanning follows zig-zag route. And the powder is transferred in a speed

Cavitation Erosion Resistance of Fe50Mn30Co10Cr10 High Entropy Alloy 続きを読む "

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