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Ferro Molybdenum Price Ferro Molybdenum Price Per kg

 
How to mine ferromolybdenum alloy?
 

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01/

Ferromoly alloy is made of a mixed alloy of metal elements such as molybdenum and iron, and is mainly used to produce high-strength and high-wear-resistant materials. It is commonly used in the manufacture of steel alloys, refractory materials, electronic components and special steel alloys. The mining of ferromolybdenum alloy usually requires multiple links such as ore mining, ore dressing, ore concentration and smelting.

02/

In the mining process of Femo60, the ore needs to be mined. Ferromolybdenum alloy generally exists in ore, so the ore needs to be mined. In the mining process, traditional mining methods can be used, or open-pit mining and underground mining can be used. The ore is mined by blasting, bulldozers, excavators and other equipment, and the ore is mined and sent to subsequent beneficiation equipment for processing.

03/

After the ore is mined, it needs to be processed. Ore dressing refers to the process of crushing, grading, flotation and other processes of the ore to extract useful minerals and remove other impurities. In the ore dressing process of molybdenum-iron alloy, physical methods, chemical methods and other means can be used to grind, float, dehydrate and other treatments on the ore to extract the ore containing molybdenum-iron alloy.

04/

The ore after ore dressing needs to be concentrated. Concentration refers to the process of refining and purifying the useful components in the ore. In the ore concentration process of molybdenum-iron alloy, smelting, purification, alloying and other processes can be used to extract metal elements such as molybdenum and iron in the ore and make alloys.

05/

Through smelting and other technologies, the extracted alloy is processed into the required product. For example, the extracted alloy can be used to produce high-strength and high-wear-resistant materials, or to manufacture special steel alloys, electronic components, etc. In the production process of the alloy, smelting, casting, processing and other processes are required to process the alloy into finished products and put them on the market.

06/

The mining process of molybdenum-iron alloy needs to go through multiple links such as mining, ore dressing, concentration, smelting, etc., and it needs to use a variety of processes and equipment to realize the processing and treatment of the ore and make it a commercialized molybdenum-iron alloy product.

What is the price of ferro molybdenum? Ferro molybdenum price per kg

 

Reference price of molybdenum products at the terminal end on June 17
time Ferromolybdenum transaction price 45-50% molybdenum concentrate cost price (ideal valuation) Remark
25/6/17 24.3-24.55 3802-3843 cash
time 45-50% Molybdenum Concentrate Price Ferromolybdenum cost price (ideal valuation) Remark
25/6/17 3830 24.47 cash
Notes: 1. The recovery rate of molybdenum concentrate above 45% is calculated as 97.5%, and the processing fee is 9,000 yuan/ton. 2. Price unit: 60B ferromolybdenum, 10,000 yuan/ton; 45-50% molybdenum concentrate, yuan/ton. 3. The cost price of molybdenum concentrate (ideal valuation) refers to the theoretical price of molybdenum concentrate inferred from the current molybdenum Ferro market transaction price (steel bidding price); the cost price of Femo Ferromolybdenum (ideal valuation) refers to the theoretical price of ferromolybdenum inferred from the current sales quotation of molybdenum concentrate mines.
Ferro-molybdenum price chart
 

Ferro molybdenum price per kg

China's ferromolybdenum prices from June 1 to 17 (with monthly average price)
Ferromolybdenum 60B Unit: 10,000 yuan/ton; Ex-factory price including tax
date Cash quotation Rise and Fall Cash transaction price Rise and Fall Acceptance quotation Rise and Fall Acceptance transaction price Rise and Fall
Average price in June 24.6   24.49   24.8   24.64  
2025/6/17 24.5-24.6 0.05 24.3-24.55 0.025 24.7-24.8 0.05 24.45-24.7 0.025
2025/6/16 24.4-24.6 -0.05 24.3-24.5 -0.075 24.6-24.8 -0.05 24.45-24.65 -0.075
2025/6/13 24.4-24.7 -0.05 24.35-24.6 -- 24.6-24.9 -0.05 24.5-24.75 --
2025/6/12 24.4-24.8 -- 24.35-24.6 -- 24.6-25 -- 24.5-24.75 --
2025/6/11 24.4-24.8 -- 24.35-24.6 -- 24.6-25 -- 24.5-24.75 --
2025/6/10 24.4-24.8 -0.05 24.35-24.6 -0.05 24.6-25 -0.05 24.5-24.75 -0.05
2025/6/9 24.5-24.8 -- 24.4-24.65 -0.025 24.7-25 -- 24.55-24.8 -0.025
2025/6/6 24.5-24.8 -- 24.45-24.65 0.025 24.7-25 -- 24.6-24.8 0.025
2025/6/5 24.5-24.8 -- 24.4-24.65 -- 24.7-25 -- 24.55-24.8 --
2025/6/4 24.5-24.8 -- 24.4-24.65 0.025 24.7-25 -- 24.55-24.8 0.025
2025/6/3 24.5-24.8 -- 24.4-24.6 0.05 24.7-25 -- 24.55-24.75 0.05
Ferro molybdenum price per kg
Ferro molybdenum price per kg
 Ferro molybdenum price
Ferro molybdenum price
What elements does ferromolybdenum alloy contain?
 

Femo alloy is a rare metal alloy, mainly composed of molybdenum and iron, and usually contains a small amount of other elements. Depending on the specific composition, Metallurgical Ferro Molybdenum may also contain some other elements, and its main components include:

 

Molybdenum (Mo): Molybdenum is the main component of Molybdenum iron lump, usually more than 50%. Molybdenum is a metal with high melting point, high hardness and wear resistance, so ferromolybdenum alloy has very good wear resistance and corrosion resistance.

 

Iron (Fe): Iron is another main component of ferro moly alloy, usually accounting for a considerable proportion. Iron is a common metal with good strength and toughness, and also plays an important role in the performance of ferromolybdenum alloy.

 

Carbon (C): Ferromolybdenum alloy may also contain a small amount of carbon, usually between 1-3%. Carbon can improve the hardness and strength of ferromolybdenum alloy, but also affect its cold working performance.

 

Silicon (Si): Silicon is one of the common alloying elements in ferromolybdenum alloy, usually between 2-5%. Silicon can improve the cold brittleness and strength of the alloy, and also improve its high temperature performance.

 

Manganese (Mn): A small amount of manganese may also exist in molybdenum-iron alloy, usually accounting for 1-3% of its content. Manganese can improve the cold brittleness and strength of the alloy, and can also improve its hot processing performance.

 

Phosphorus (P): Phosphorus is one of the impurity elements in molybdenum-iron alloy, usually with a content of less than 0.05%. Phosphorus can improve the brittleness and strength of the alloy, but too high a content will have an adverse effect on its performance.

 

In general, molybdenum-iron alloy is a complex alloy material. In addition to the main molybdenum and iron, its composition may also contain a small amount of carbon, silicon, manganese, phosphorus and other elements. The content and ratio of these elements will have an important impact on the performance of molybdenum-iron alloy, so its composition and proportion need to be precisely controlled during the preparation and application process.

 

 

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