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It is reported that researchers from the European Room Agency have successfully printed a small S-curve on the International Spaceport Station for the first time with the help of 3D steel printing innovation. This development notes a big jump in the area of on-orbit production. The steel 3D printer was manufactured by an industrial team led by Airbus, which authorized an advancement agreement with the European Room Agency’s Human and Robotic Expedition Directorate. The demo printer came to the International Space Station in January this year and was subsequently mounted in the European Tractor Mark II of the Columbus module. The standard printing steps of this printer are: a stainless steel cord is fed right into the printing area, and a high-power laser with a power of concerning 1 million times that of a typical laser reminder warms the area. When the steel cable is immersed in the heated molten swimming pool, completion of the steel wire thaws, thereby including steel to the printed things.


(3D Printing Technology Applied in Space)

Application of spherical tungsten powder in 3D printing and aerospace areas

Round tungsten powder has shown distinct worth in the aerospace application of 3D printing technology. With its high thickness, high strength, and exceptional heat resistance, it has actually ended up being a suitable product for producing parts in extreme settings. In engines, rocket nozzles, and thermal defense systems, tungsten’s high melting factor and excellent temperature resistance ensure the stable procedure of elements under extreme stress and temperature level problems. 3D printing technology, specifically powder bed blend (PBF) and guided power deposition (DED) makes it possible to accurately diagnose complex geometric frameworks, promote light-weight design and performance optimization of aerospace components, and accomplish reliable thermal administration with the preparation of useful gradient materials (FGMs) and the mix of tungsten and other product properties, such as tungsten-copper compounds.

On top of that, 3D printing technology makes use of round tungsten powder to support the repair service and remanufacturing of high-value components, lowering resource usage, prolonging life span, and regulating expenses. By precisely transferring different products layer by layer, a functional slope framework can be formed to improve component efficiency even more. This mix not only advertises the innovative research and development of new products and frameworks in the aerospace area yet also satisfies the market’s search of sustainability and economic benefits, revealing double benefits in environmental protection and price control.


(Spherical Tungsten Powder)

Supplier of Spherical Tungsten Powder

TRUNNANO is a supplier of 3D Printing Materials with over 12 years experience in nano-building energy conservation and nanotechnology development. It accepts payment via Credit Card, T/T, West Union and Paypal. Trunnano will ship the goods to customers overseas through FedEx, DHL, by air, or by sea. If you want to know more about k tungsten, please feel free to contact us and send an inquiry.

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