Ferromolybdenum(FeMo 65)

Ferromolybdenum(FeMo 65)

Ferromolybdenum(FeMo 65) refers to a type of ferroalloy that contains primarily iron (Fe) and molybdenum (Mo), with the specific composition being approximately 65% molybdenum by weight. Ferroalloys are used in the production of steel and other metals to enhance certain properties, such as strength, hardness, and resistance to corrosion. The FeMo 65 alloy is one of the commonly used grades of ferro-molybdenum, which is primarily added to steel to improve its performance.
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Product Introduction

 

 

 

The Specifications of Ferromolybdenum

 

 

 

 

Choose the specificationsthat suits you best 

 

Grade Molybdenum Content (Mo) Iron Content (Fe) Carbon (C) Silicon (Si) Sulfur (S) Phosphorus (P) Typical Uses
FeMo 65 65% Balance ≤ 0.15% ≤ 1.0% ≤ 0.02% ≤ 0.02% Used for stainless and tool steels

 

Notes:

Molybdenum (Mo) is the primary alloying element.

Iron (Fe) forms the balance of the material.

The carbon, silicon, sulfur, and phosphorus contents are typically low to maintain high quality and desirable alloy characteristics.

The percentages mentioned above are typically the minimum content of Molybdenum, with the rest being iron and a very small amount of other elements.

 

 

Ferromolybdenum(Ferromolybdenum(FeMo 65))

 

 

Ferromolybdenum(FeMo 65) refers to a type of ferroalloy that contains primarily iron (Fe) and molybdenum (Mo), with the specific composition being approximately 65% molybdenum by weight. Ferroalloys are used in the production of steel and other metals to enhance certain properties, such as strength, hardness, and resistance to corrosion. The Ferromolybdenum(FeMo 65) alloy is one of the commonly used grades of ferro-molybdenum, which is primarily added to steel to improve its performance.

 

Ferro-Molybdenum 1

Composition

 

 

  • Typically contains around 65% molybdenum.

 

  • The balance is primarily iron, along with trace amounts of other elements, depending on the manufacturing process.

 

 

 

Production Process

 

  • Ferromolybdenum(FeMo 65) is typically produced by reducing molybdenum oxide (MoO₃) with iron at high temperatures in a furnace.
  • The process may also involve reduction using hydrogen or carbon, depending on the specific production method.

 

 

 

Steelmaking Process

 

 

 

 

In the steelmaking process, Ferromolybdenum(FeMo 65) is added to molten steel during the alloying process to achieve the desired level of molybdenum content.

This helps in improving various mechanical properties of steel, such as tensile strength, creep resistance, and pitting resistance in corrosive environments.

 

 

Properties

 
 
01

Molybdenum is known for its ability to improve the strength, toughness, and wear resistance of steel, particularly at high temperatures.

 
02

It also enhances the corrosion resistance and hardness of the alloy, making it particularly useful in industries requiring high-performance materials, such as aerospace, automotive, and heavy machinery.

Fe-Mo-resized
Ferromolybdenum6

Applications

 

 

  • Ferromolybdenum(FeMo 65) is used in the production of high-strength steels and alloy steels.

 

  • It is commonly used in the manufacturing of tool steels, stainless steels, and superalloys.

 

  • Molybdenum is also added to alloy steels to increase their resistance to oxidation and corrosion, particularly in high-temperature and high-stress environments.

 

 

 

summary

Ferromolybdenum(FeMo 65) is an important ferroalloy that plays a crucial role in enhancing the properties of steel, particularly in high-performance applications. The high molybdenum content (around 65%) makes it valuable for industries that require materials with exceptional strength, resistance to high temperatures, and corrosion.

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