A perfect balance of hardness and toughness. High-speed tool steel that can be manufactured with a metal 3D printer.
The 3D-printed Vibenite 280 improves existing high-speed steel (HSS) applications that require higher hardness or wear resistance. Due to its high carbide content, it offers the best wear resistance and hardness. The additive manufacturing (AM) process allows for the design of complex shapes, the integration of multiple parts into one, the addition of cooling channels, weight reduction, and the incorporation of other features. The time required for sample prototyping and trial production is very fast, enabling rapid development of new products. Furthermore, near-net-shape manufacturing eliminates the need for rough machining and reduces grinding.
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Advantages: - Excellent wear resistance - High fatigue resistance - No pores and uniform hardness - Uniform microstructure due to AM-HSS process - Capable of 3D printing layered manufacturing
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Applications/Examples of results
Vibenite 280: Gear cutting hobs, broaches, shaper cutters, power skiving cutters, drills, taps, hot working tools, erosion-resistant and wear parts, etc.
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Vibenite 280 | Perfect balance of hardness and toughness. High-speed tool steel that can be shaped with a metal 3D printer. |
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As a technology trading company, we leverage our years of experience in the sales of various 3D printer devices with different molding methods and semiconductor manufacturing equipment, as well as after-sales maintenance services, to provide our customers with total solutions, including application support. In the field of 3D printer devices, we handle three main types of metal additive manufacturing methods: electron beam powder bed, laser powder bed, and laser deposition, allowing us to make proposals suitable for our customers' applications. We also sell metal powders with high hardness and high wear resistance characteristics for metal 3D printers. Furthermore, in the field of semiconductor manufacturing equipment, we also handle atomic layer deposition (ALD) devices.