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100 Mesh MIM Iron Metal Powder For Metal Injection Molding Cas 7439-89-6

100 Mesh MIM Iron Metal Powder For Metal Injection Molding Cas 7439-89-6

100 mesh MIM Iron Metal Powder

Iron Metal Powder 7439-89-6

mim metal powder 7439-89-6

Place of Origin:

China

Brand Name:

Zhongli

Certification:

ISO,CE,MSDS

Model Number:

SSP-01

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Product Details
Solubility:
Insoluble In Water
Shelf Life:
2 Years
Applications:
Metal Injection Molding, Powder Metallurgy, Magnetic Materials, Welding Electrodes, Etc.
Cas Number:
7439-89-6
Purity:
99.9%
Storage Condition:
Store In A Cool, Dry Place
Boiling Point:
2862°C
Melting Point:
1538°C
Particle Size:
100 Mesh
Appearance:
Dark Grey Powder
Chemical Formula:
Fe
Density:
7.87 G/cm3
Molecular Weight:
55.845 G/mol
Highlight:

100 mesh MIM Iron Metal Powder

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Iron Metal Powder 7439-89-6

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mim metal powder 7439-89-6

Payment & Shipping Terms
Minimum Order Quantity
1kg
Packaging Details
plastic+drum
Delivery Time
within 15 days
Payment Terms
L/C,T/T,Western Union,MoneyGram
Supply Ability
15-20ton per month
Product Description
100 Mesh MIM Iron Metal Powder For Metal Injection Molding (CAS 7439-89-6)
MIM Grade Iron Powder: Ideal for Metal Injection Molding Components
In advanced manufacturing, Metal Injection Molding (MIM) combines plastic injection molding versatility with metal strength and durability. MIM grade iron powder is crucial for defining final product quality and performance.
Understanding MIM Grade Iron Powder
MIM grade iron powder consists of finely atomized iron particles engineered for metal injection molding. These powders feature controlled particle size, high purity, and excellent flowability for producing complex, high-precision shapes.
Key Properties
  • Particle Size: 10-100 microns for optimal surface finish and dimensional accuracy
  • Purity: High purity with low oxygen/nitrogen content for component strength
  • Flowability: Spherical shape ensures easy mold flow and packing
Benefits in Metal Injection Molding
  • Excellent sintering properties for high density and strength
  • Versatile alloy composition capabilities
  • Consistent batch quality through strict quality control
Applications
  • Automotive: Gears, valve springs, steering components
  • Medical: Implantable joints, bone screws
  • Aerospace: Bearings, structural components
Material Comparison
Property Iron-Based Alloys Stainless Steel (316L) Nickel Alloys Titanium
Density (g/cm³) 7.4-7.9 7.9 8.4 4.4
Tensile Strength (MPa) 300-1,500+ 500-700 900-1,200 900-1,100
Cost (vs. Pure Fe) 1x-5x 3x-5x 10x-20x 20x-30x
Powder Specifications
Particle Size Tapping Density (g/cm³) Particle Size Distribution (μm)
D50:12μm >4.8 D10: 3.6-5.0 | D50: 11.5-13.5 | D90: 22-26
D50:11μm >4.8 D10: 3.0-4.5 | D50: 10.5-11.5 | D90: 19-23
Production Equipment
100 Mesh MIM Iron Metal Powder For Metal Injection Molding Cas 7439-89-6 0
Global Distribution
100 Mesh MIM Iron Metal Powder For Metal Injection Molding Cas 7439-89-6 1 100 Mesh MIM Iron Metal Powder For Metal Injection Molding Cas 7439-89-6 2 100 Mesh MIM Iron Metal Powder For Metal Injection Molding Cas 7439-89-6 3 100 Mesh MIM Iron Metal Powder For Metal Injection Molding Cas 7439-89-6 4
Frequently Asked Questions
What types of stainless steel powders are used in 3D printing?
Common grades include 316L (excellent corrosion resistance), 17-4 PH (high strength and hardness), 304L (general-purpose use), and 420 (wear resistance). Each grade has specific properties suited for different applications.
What is the typical particle size for stainless steel powders in 3D printing?
The particle size typically ranges from 15 to 45 micrometers (μm). Spherical particles are preferred for better flowability and packing density.
Can stainless steel powders be reused?
Yes, unused powder can often be recycled by sieving and blending with fresh powder. However, excessive reuse can degrade powder quality, so regular testing is recommended.
What safety precautions should be taken when handling stainless steel powders?
  • Avoid inhalation or skin contact by using gloves, masks, and protective clothing
  • Store powders in a dry, airtight container to prevent moisture absorption
  • Handle powders in a well-ventilated area or under inert gas to minimize explosion risks

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