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3D Printing Powder

3D Printing Alloy Spherical Tungsten Nickel Iron Alloy Powder

Spherical Tungsten Nickel Iron Alloy is powder, chemical formula W Ni Fe, submicron and nanopowder forms may be considered for industrial and application purpose.
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Description
3D Printing Alloy Spherical Tungsten Nickel Iron Alloy Powder Properties

About 3D Printing Alloy Spherical Tungsten Nickel Iron Alloy Powder:
Tungsten-nickel-iron alloy is an alloy based on tungsten (about 90-98%) and adding nickel, iron, copper or other components, and its specific gravity is generally 17.0-18.5.


Product name: Spherical Tungsten Nickel Iron Alloy Powder

Product Specifications: 15-45μm, 15-53μm, 45-75μm, 45-105μm, 75-150μm.  (Can be customized according to customer requirements) 

 

Powder characteristics:  High purity (≥99.9%), low oxygen (≤300ppm), high sphericity (≥98%), smooth surface, no satellite ball, full density inside the particle, no hollow powder and uniform particle size distribution, with excellent flow performance (≤8.0s/50g) and high loose density (≥8.5g/cm3) and vibration density (≥9.5g/cm3).  

 

Applicable technology: Laser/electron beam additive manufacturing (SLM/EBM), laser direct deposition (DLD), hot isostatic powder molding (HIP), metal injection molding (MIM), powder metallurgy (PM), laser deposition (LC) and other processes.  
 

How to produce spherical tungsten nickel iron alloy powder?

Spherical tungsten-nickel-iron alloy powder can be produced by a variety of methods, and the common ones are mechanical alloying method, sol-gel method, high-temperature reduction method, and so on.

 

The mechanical alloying method is prepared by mixing, crushing, and sintering tungsten, nickel, iron, and other raw materials in a series of processes through a high-energy ball mill. The powder particles prepared by this method are uniform in shape, narrow in size distribution, and smooth in surface, with high specific surface area and activity, which are suitable for preparing high-performance catalysts and electrode materials.

 

The sol-gel method is to take metal salt as raw material, prepare the precursor of metal oxides through chemical reaction, and then reduce the precursor at high temperature to get metal monomers. The tungsten-nickel-iron alloy powder prepared by this method is uniform in size and narrow in particle size distribution, but the production cost is higher.

 

The high-temperature reduction method reduces metal oxides or sulfides at high temperatures to get metal monomers. The tungsten-nickel-iron alloy powder prepared by this method has high purity and low impurity content, but the production process needs to consume a lot of energy and time.
 

What is the application of spherical tungsten nickel iron alloy powder?

Spherical tungsten-nickel-iron alloy powder is widely used in aerospace, aviation, navigation, military, national defense, automotive, chemical industry, and other fields.

 

In the electronics industry, spherical tungsten-nickel-iron alloy powder has good electrical conductivity and thermal stability and is often used to prepare electrical contact materials for electronic devices. As a raw material for electrical contact materials, it can provide good electrical conductivity and stability, which makes electronic devices have better performance.

 

In addition, spherical tungsten-nickel-iron alloy powder plays an important role in preparing metal-ceramic materials. Metal-ceramic material is a composite material composed of metal and ceramic phases, which has the toughness of metal and the hardness of ceramic. Spherical tungsten-nickel-iron alloy powder, as a raw material for metal-ceramic materials, can provide a good combination between the metal phase and the ceramic phase, which makes the metal-ceramic materials have better mechanical properties and wear-resistant properties.


Composition (percentage by mass) of Tungsten Nickel Iron Alloy powder:

 

Storage Condition of Spherical Tungsten Nickel Iron Alloy Powder:

Damp reunion will affect Spherical Tungsten Nickel Iron Alloy powder dispersion performance and using effects, therefore,Spherical Tungsten Nickel Iron Alloy Powder should be sealed in vacuum packing and stored in cool and dry room, the Spherical Tungsten Nickel Iron Alloy Powder can not be exposure to air. In addition, the Spherical Tungsten Nickel Iron Alloy powder should be avoided under stress.

 

Packing & Shipping of Spherical Tungsten Nickel Iron Alloy Powder:

We have many different kinds of packing which depends on the Spherical Tungsten Nickel Iron Alloy Powder quantity.

Spherical Tungsten Nickel Iron Alloy Powder packing:vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.

Spherical Tungsten Nickel Iron Alloy Powder shipping:could be shipped out by sea , by air, by express as soon as possible once payment receipt.
 


Luoyang Tongrun Nano Technology Co. Ltd. (TRUNNANO) is a trusted global chemical material supplier & manufacturer with over 12-year-experience in providing super high-quality chemicals and Nanomaterials, including boride powder, nitride powder, graphite powder, sulfide powder, 3D printing powder, etc.
If you are looking for high-quality Spherical Tungsten Nickel Iron Powder, please feel free to contact us and send an inquiry. ([email protected])

3D Printing Alloy Spherical Tungsten Nickel Iron Alloy Powder Properties

Other Names Tungsten Nickel Iron Alloy Powder
CAS No. N/A
Compound Formula W-Ni-Fe Alloy
Molecular Weight N/A
Appearance Gray metallic solid in various forms (ingot, tubing, pieces, powder)
Melting Point N/A
Solubility in water N/A
Density NA
Purity N/A
Particle Size 0-20μm, 15-45μm, 15-53μm, 53-105μm, 53-150μm, 105-250μm
Boling point N/A
Specific Heat N/A
Thermal Conductivity N/A
Thermal Expansion N/A
Young's Modulus N/A
Exact Mass N/A
Monoisotopic Mass N/A
   
   

3D Printing Alloy Spherical Tungsten Nickel Iron Alloy Powder Health & Safety Information

Safety Warning N/A
Hazard Statements N/A
Flashing point N/A
Hazard Codes N/A
Risk Codes N/A
Safety Statements N/A
RTECS Number N/A
Transport Information N/A
WGK Germany N/A
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