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Stainless steel 3D printing powder
aluminumtitaniumnickel

stainless steel 3D printing powder
stainless steel 3D printing powder
stainless steel 3D printing powder
stainless steel 3D printing powder
stainless steel 3D printing powder
stainless steel 3D printing powder
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Characteristics

Composition
titanium, aluminum, nickel, chromium, cobalt, stainless steel
Applications
medical, for the aerospace industry, dental

Description

Combined with our proven parameters, our powders competitively provide performance, quality and safety when used in our metal additive machines. Powder selection Selecting powder is a key piece of establishing a business case. Powder can be a significant driver of final part cost and quality. Not all powders are created equal. Even if they meet the same chemical and particle size distributions, they may not act the same in the machine. For example: • Powder morphology is an important factor. It can drive flowability, spreadability, and packing characteristics within a machine. • Powders can affect surface roughness of final parts. • Powders with high amounts of existing porosity within individual powder particles can make their way into final parts, which is undesirable for material performance. Through the Advanced Plasma Atomization process, AP&C powders are produced in such a way to maximize performance, minimize the impact of the above and drive optimal performance in machines

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.