Can be manufactured with a metal 3D printer. Improved high-temperature hardness and wear resistance, enhancing high-speed steel (HSS) applications through complex shapes and lightweight design.
Vibenite 480 is a 3D printing alloy that significantly improves high-temperature hardness and wear resistance due to its high carbide content. Its metal structure is stable under temperature changes, making it ideal for metal parts that require high-temperature durability. The 3D printing process allows for the creation of free and complex shapes, enabling the combination of multiple alloy components into a single part, lightweight design, and the internal design of various refrigerant flow paths. By shortening the lead time for prototype and initial mass production, it becomes possible to release new products in a timely manner. A major feature is that near-net-shape manufacturing eliminates the need for rough machining using machining centers, resulting in less grinding.
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basic information
Advantages: - Extremely stable temperature characteristics - Materials for additive manufacturing ultra-hard alloy type (for 3D printing) - Excellent high-temperature hardness - High wear resistance - High hardness of 67 HRC - No porosity and uniform hardness - Uniform microstructure due to AM-HSS process
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Applications/Examples of results
Vibenite 480: Gear cutting hobs, power skiving cutters, shaper cutters, woodworking tools, blades for the textile, paper, and food industries.
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Vibenite 480 | Can be shaped with a metal 3D printer. Improves high-temperature hardness and wear resistance, enhancing high-speed steel (HSS) applications through complex shapes and lightweight design. |
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Company information
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.