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18.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod For Aviation Chemical Field

Place of Origin China
Brand Name PRM
Certification ISO9001
Model Number custom
Minimum Order Quantity 1kg
Price $50~80/kg
Packaging Details Plywood case
Delivery Time 7~10 work days
Payment Terms T/T
Supply Ability 2000kgs/month

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Product Details
Name 18g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod Material W-Ni-Fe/W-Ni-Cu
Density 18.0/cm3 Surface Polished
Standard ASTM B777 Diameter 1~50mm
Length 50~500mm Hardness ≥30HRC
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Tungsten Nickel Iron Alloy Rod

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Aviation Chemical Tungsten Nickel Iron Alloy

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Polished Tungsten Alloy Rod

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Product Description

18.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod 

 

1. Information Of 18.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod:

 

Tungsten-nickel-iron alloy rod is a high-performance metal material, also known as tungsten-based alloy rod. It is composed of three metals: tungsten, nickel and iron. It has high strength, high temperature strength, high corrosion resistance, high thermal stability and low thermal expansion coefficient. and other excellent characteristics. It is an important heat-resistant and corrosion-resistant metal material.

 

2. Specifications and Performance Of 18.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod:

 

Diameter 1~50mm(±0.05mm)
Length 50~500mm(±0.5mm)
Density 18g/cm3
Tensile strength ≥800MPa
Yield strength ≥600MPa
Elongation ≥5%
Hardness ≥30HRC
Coefficient of thermal expansion 5.0×10⁻⁶/K
 

3. Advantage Of 18.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod:

 

High strength: The tensile strength and yield strength of tungsten-nickel-iron alloy rods are high, which can withstand large mechanical stress.


High temperature strength: The alloy rod still maintains good mechanical properties at high temperature, and can withstand high temperature creep and thermal stress.


High corrosion resistance: This alloy rod has excellent corrosion resistance and can be used for a long time in corrosive media such as acid and alkali.


High thermal stability: The alloy rod has good thermal stability and can maintain stable performance at high temperatures.


Low thermal expansion coefficient: The alloy rod has a low thermal expansion coefficient, and the thermal expansion is close to that of the metal matrix. Mechanical failure caused by thermal expansion can be avoided.


Good processability: The alloy rod has good processability, and can be used for drilling, milling, turning and other processing operations.

 

18.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod For Aviation Chemical Field 018.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod For Aviation Chemical Field 1

18.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod For Aviation Chemical Field 218.0g/Cm3 High Strength Tungsten Nickel Iron Alloy Rod For Aviation Chemical Field 3

 

4. The main uses of tungsten-nickel-iron alloy rods are as follows:

 

Aerospace field: The alloy rod can maintain stable performance under high temperature and high strength conditions, so it is widely used in the aerospace field, such as manufacturing parts such as aero engines and rocket engines.


Chemical industry: The alloy rod has excellent corrosion resistance and can be used for a long time in corrosive media such as strong acid and alkali, so it is widely used in the chemical industry, such as manufacturing chemical containers, pipes, valves and other equipment.


Electronic field: The alloy rod has good thermal stability and low thermal expansion coefficient, and can maintain stable size and performance, so it is widely used in the electronic field, such as manufacturing high-temperature resistors, integrated circuit substrates and other devices.


Automobile manufacturing: The alloy rod has high strength and hardness, and can withstand large mechanical stress, so it is widely used in the field of automobile manufacturing, such as manufacturing engine parts, transmission system parts, etc.


In short, tungsten-nickel-iron alloy rod is a high-performance alloy material with excellent performance and wide application. Its use covers many industrial fields and has made important contributions to the development of these fields.

 


 

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