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Stainless Steel 304L Spherical Powder

Stainless Steel 304L Spherical Powder

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Stainless Steel 304L Spherical Powder
Product No NRE-9048
CAS 65997-19-5
Purity 99.9%
Formula FeCrNi
APS <40um (can be customized)
Color NA
Molecular Weight NA
Density 7.9 g/cm³
Melting Point 1400 – 1450 °C
Boiling Point NA

Stainless Steel 304L Spherical Powder

Applications

Additive Manufacturing (3D Printing):

Stainless Steel 304L spherical powder is widely used in metal 3D printing processes like Selective Laser Sintering (SLS) and Direct Metal Laser Sintering (DMLS). These processes create complex 3D geometries and customized parts that are difficult to manufacture with traditional methods. Industries such as aerospace, automotive, and medical devices benefit from the precision and design flexibility that 3D printing with 304L spherical powder offers.

Medical Devices and Implants:

Due to its biocompatibility, corrosion resistance, and high strength, Stainless Steel 304L spherical powder is often used to produce custom implants and surgical instruments in the medical field. The powder is also used for customized implants through 3D printing technology, allowing for tailored solutions for patients with specific anatomical requirements.

Aerospace Components:

In the aerospace industry, 304L spherical powder is used for high-performance parts such as turbine blades, aircraft engine components, and structural components. The material’s excellent corrosion resistance and ability to withstand high temperatures make it suitable for aircraft and spacecraft parts that operate in demanding environments.

Automotive Industry:

In the automotive sector, 304L spherical powder is used to create parts that need to withstand high thermal loads and corrosive environments. Examples include exhaust components, fuel systems, and engine parts. The 3D printing capability allows for rapid prototyping and manufacturing of complex, optimized designs that improve performance and fuel efficiency.

Energy and Chemical Processing:

Stainless Steel 304L powder is utilized in the energy and chemical industries for the production of parts exposed to harsh environments, such as heat exchangers, piping, and reactor components. Its resistance to oxidation, corrosion, and thermal stability make it ideal for these demanding applications.

 

 

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