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Product Description

Spherical Carbonyl Iron Powder

  • YW1 / YW2 / YW3 / YW4 / YW5 / YW6
  • Entrepreneur

Description:

For 20 years, we have been dedicated to the research of carbonyl iron powder with a focus on microwave absorption and electromagnetic compatibility requirements. The result is the development of carbonyl iron powder with typical nanocrystalline characteristics, characterized by fine and uniform particle size, excellent flowability, high purity, and easy compatibility with adhesives. The absorption materials and electromagnetic compatibility devices made from this powder exhibit excellent processability, mechanical and thermal stability, reliability, outstanding absorption performance, and wide operating bandwidth. These products find extensive applications in military, radar, microwave communication, satellite ground stations, microwave instrument equipment, electromagnetic shielding (EMI) devices, and everyday microwave pollution absorption materials.

In recent years, we have further advanced its technology in the field of microwave absorption, developing high magnetic flux micro-nano sheet iron-based materials, as well as FeC composite materials.

Applications:

1. Electromagnetic Wave Absorption Materials
It can be added to various materials to enhance their ability to absorb electromagnetic waves, making it useful in industries such as telecommunications and electronics.
2. Electromagnetic Interference (EMI) Shielding
Flake carbonyl iron powder is often used as a filler material in EMI shielding coatings and composites due to its high electrical conductivity and ability to absorb electromagnetic radiation.
3. Radar Absorbing Materials (RAM)
It is used in the production of RAM coatings for military and aerospace applications to reduce radar reflections and enhance stealth capabilities.
4. Magnetic Inks and Toner
Flake carbonyl iron powder is used in the formulation of magnetic inks and toners for printing applications, such as barcodes and magnetic stripes on cards.
5. High-Frequency Absorption
Due to its unique structure, it is utilized in microwave and high-frequency absorbing materials, particularly in the gigahertz frequency range.
6. Magnetic Resonance Imaging (MRI) Contrast Agents
In the medical field, it can be employed as a contrast agent in MRI applications to enhance image quality and visibility of specific tissues.
7. Catalysts
It can serve as a catalyst or catalyst support in various chemical reactions and processes.
8. Automotive and Industrial Coatings
Flake carbonyl iron powder is used in coatings for automotive and industrial applications to provide corrosion resistance and enhance durability.
9. Conductive Adhesives
It is used in conductive adhesives for bonding electronic components and providing electrical conductivity.


Carbonyl Iron Powder Grades for Microwave Absorption and Electromagnetic Shielding:

Grades

Particle Size Distribution(μm)

Bulk Density

Tap Density

Elemental Composition

D10

D50

D90

g/cm3

g/cm3

C

O

N

Fe

YW1

<5.5

<8.0

<16

≥2.4

≥4.0

<0.75

<0.50

<0.75

Residue

YW2

<4.0

<6.5

<12

≥2.0

≥4.0

<0.78

<0.55

<0.75

Residue

YW3

<2.5

<5.0

<10

≥1.8

≥3.8

<0.80

<0.60

<0.75

Residue

YW4

<1.8

<3.5

<8.0

≥1.6

≥3.6

<0.80

<0.60

<0.75

Residue

YW5

<1.5

<2.0

<6.0

≥1.5

≥3.4

<0.85

<0.65

<0.75

Residue

YP

Unreduced Flake Powder

RW

<4.0

<6.5

<8.0

≥2.2

≥3.8

<0.05

<0.40

<0.05

Residue

RP

Reduced Flake Powder

Insulation and SiO2 coating can be applied to the above-mentioned   grades of products according to customer requirements for material compositing.

Grade Explanation:

Y: Unreduced carbonyl iron powder with a layered structure, suitable for manufacturing microwave absorption materials in higher frequency ranges.

R: Reduced carbonyl iron powder, reduction eliminates the layered structure within particles, higher purity, suitable for manufacturing microwave absorption materials in relatively lower frequencies.

W: Indicates use for microwave absorption materials.

P: Flake.

Suffix Numbers 1 to 5: Indicates particle sizes from large to small.