SS4552 Metal Injection Molding Feedstock 440C (MIM)

Catalog No. SS4552
Material 440C
Sintered density (g/cm3) ≥7.6
Yield Strength (MPa) 1241

Metal Injection Molding Feedstock 440C (MIM) is martensitic stainless steel. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality Metal Injection Molding Feedstock 440C (MIM).

Related products: Metal Injection Molding Feedstock 316L (MIM)Metal Injection Molding Feedstock 304L (MIM)Metal Injection Molding Feedstock 420 (MIM)

Metal Injection Molding Feedstock 440C (MIM) Description

Metal Injection Molding Feedstock 440C (MIM) is martensitic stainless steel. The properties of this alloy include excellent strength, hardness, and wear resistance. This stainless steel alloy is often used in applications where high strength, hardness, wear resistance, and some corrosion resistance are required.

Metal Injection Molding (MIM) means using metal powder as raw material, adding composite particles of polymer materials in the mixing and refining process, and using the "forming + sintering" method to manufacture materials and product powders materials, so as to be applied to precision structural parts. MIM can realize the integrated manufacturing of parts of different materials. It has the characteristics of wide material adaptability, a high degree of automation, and a high degree of batch production.

Metal Injection Molding Feedstock 440C (MIM) Specifications

Chemical Composition (%)

C

Cr

Mo

Fe

0.95-1.2

16.0-18.0

≤0.75

Bal.

 

Yield Strength (MPa)

1241

Sintered density (g/cm3)

≥7.6

Hardness

≥49 HRC

Tensile Strength (MPa)

≥1600

Elongation

≥1

 

Metal Injection Molding Feedstock 440C (MIM) Applications

Metal Injection Molding Feedstock 440C (MIM) is mainly used in automotive, power hand tools, pumps, and sporting equipment.

Metal Injection Molding Feedstock 440C (MIM) Packaging

Our Metal Injection Molding Feedstock 440C (MIM) is carefully handled during storage and transportation to preserve the quality of our product in its original condition.

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