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SPEE3D, 3D printed parts on US Naval Ship

https://www.spee3d.com/
By SPEE3D

The WarpSPEE3D printer test yielded a successful result by producing a bronze anchor intended for use on a US Naval Ship

Industry: Shipping Technology: Supersonic 3D Deposition Material: Metal powder Machine: WarpSPEE3D
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SPEE3D, 3D printed parts on US Naval Ship

The WarpSPEE3D printer test yielded a successful result by producing a bronze anchor intended for use on a US Naval Ship



                        

Description

SPEE3D is a leading provider of cutting-edge technology for metal additive manufacturing. Their primary focus is on the research, development, and supply of metal 3D printers and integrated systems that utilize their patented cold-spray technology. SPEE3D printers are exceptional in that they are the only metal printers in the world capable of producing parts on demand at costs that are competitive with traditional manufacturing methods. What sets SPEE3D apart is their patented technology, which is an impressive significantly faster than other metal 3D printers, able to print parts at 100g or 3.5oz a minute. Rather than relying on high-powered lasers and costly gases, SPEE3D's innovation leverages kinetic energy, making it possible to print with more affordable production costs. This technology allows for the quick production of parts, often in mere minutes, using over 12 different material sets, including copper, stainless steel, titanium, high-strength aluminium, and nickel-based carbides. Remarkably, SPEE3D achieved a significant milestone by successfully 3D print parts on a US Naval ship. Their WarpSPEE3D printer, equipped with Supersonic 3D Deposition Technology, effectively printed a bronze anchor five times while the vessel was at sea. Each bronze anchor part was produced within just six minutes. This process relies on the kinetic energy of particles colliding, resulting in the powders binding together to create high-density parts with metallurgical properties that surpass those of traditional casting. SPEE3D's offerings enable the production of various metals, such as copper, stainless steel, titanium, high-strength aluminum, and nickel-based carbides, with considerably increased speed, reduced costs, and enhanced scalability compared to conventional metal printing methods.

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