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Iron Boron Alloy Powder

Iron Boron Alloy Powder

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Iron Boron Alloy Powder
Product No NRE-9013
CAS No. 11108-67-1
Formula Fe-B
Molecular Weight  66.656 g/mol
APS <40 um  (Can be Customized)
Purity 99.9%
Density 3.3 g/cm3
Color Gray
Melting Point >1500 °C
Boiling Point NA

 

Iron Boron Alloy Powder

Applications

Magnetic Materials:

Permanent Magnets: Iron boron alloys are used in the production of permanent magnets for applications such as electric motors, magnetic sensors, speakers, and magnetic actuators. The iron-boron combination offers a good balance of cost and performance for these applications, especially when compared to other high-performance magnetic materials.

Magnetic Cores: The alloy is used in magnetic cores for transformers, inductors, and electromagnetic coils, where high magnetic permeability is crucial for efficient operation.

Powder Metallurgy:

Industrial Components: Iron boron alloy powder is frequently used in powder metallurgy to produce components such as gears, bearing surfaces, and shafts. The powder can be sintered to form high-strength parts that benefit from the alloy’s hardness and wear resistance properties.

Tooling and Molds: Due to its high hardness and wear resistance, iron boron alloys are used in manufacturing cutting tools, dies, and molds that require superior abrasion resistance and durability.

Steel Manufacturing:

Boronized Steel: In steelmaking, iron boron alloys can be used in the process of boronizing steel, where a layer of boron is introduced to the surface of steel to significantly improve its hardness and wear resistance. This process is widely used for parts in the automotive and mining industries where components face high wear.

Heat Treating: Iron boron alloys are used in heat treatment processes to improve the performance of steel parts by enhancing their toughness and strength.

Magnetic Sensors and Electronics:

Magnetic Sensors: Iron boron alloys are often used in the production of magnetic sensors that are employed in various automotive and industrial automation systems. These sensors rely on the alloy’s magnetic properties to detect changes in magnetic fields and provide feedback for controlling machinery and systems.

Electromagnetic Shielding: The alloy is used in the manufacturing of electromagnetic shielding materials for sensitive electronics, protecting them from external magnetic interference.

 

 

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