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Molybdenum And Its Applications

Molybdenum And Its Applications

Ferromolybdenum 1

 

The properties of molybdenum are close to those of tungsten, its melting point is about 2620°C, and it has high high-temperature strength at high temperatures. Above 1000°C, molybdenum has a relatively high specific strength, so it is an extremely useful high-temperature structural material.

 

 

Ferromolybdenum 2

 

FeMo has better high-temperature conductivity than iron and nickel, and its expansion coefficient is about 30% that of copper, which is almost the same as that of special glass used in electron tubes.

 

Ferromolybdenum 3

 

Molybdenum has good corrosion resistance and its acidity is second only to tungsten. In the metallurgical industry, molybdenum is an important additive: adding molybdenum can improve the heat resistance, corrosion resistance, wear resistance, toughness and hardenability of the alloy, so it is a very beneficial element in the alloy.

 

Ferromolybdenum 4


Because molybdenum has a high melting point and good electrical and thermal conductivity, it can be used as a heating element and heat reflective material for high-temperature furnaces.

 

Ferromolybdenum 5

 

The operating temperature of an electric furnace using molybdenum as a heating element can reach 1700°C.

 

 

Ferromolybdenum 6


In the electronic and electrical industry, it can be used to produce electron tube cathodes, grids, high-voltage rectifier components, and filament supports in incandescent lamps.

 

 

Ferromolybdenum 7

 

Its wear-resistant, heat-resistant and corrosion-resistant properties make it commonly used in the metal processing industry, and can be used as extruded films, die-cast films and casting mold cores.

 

Ferromolybdenum 8


Molybdenum alloy has high high-temperature strength and specific strength.Under the protection of coating, it can be used to make rocket engine nozzles, heat shields and other parts.

 

Ferromolybdenum 9

 

Because molybdenum and molybdenum alloys have small thermal neutron absorption cross-sections, good stability to nuclear fuel and resistance to liquid metal corrosion, they can be used as cladding materials and core structural materials for gas-cooled reactors in the atomic energy industry.

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