Tungsten Carbide WC Powder Cas 12070-12-1

PRODUCT PARAMETERS

Description
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Description

Tungsten Carbide Properties
Other Names tungsten(IV) carbide, WC powder
CAS No. 12070-12-1
Compound Formula WC
Molecular Weight 195.86
Appearance Gray Black Powder
Melting Point 2870
Boiling Point 6000
Density 15 g/cm3
Solubility in H2O N/A
Electrical Resistivity 1 10x Ω-m
Poisson's Ratio  0.24
Specific Heat 280 J/kg-K
Tensile Strength 350 MPa
Thermal Conductivity 85 W/m-K
Thermal Expansion 5.4 µm/m-K
Young's Modulus 630 GPa
Exact Mass N/A
   
   
Tungsten Carbide Health & Safety Information
Signal Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Statements N/A
Transport Information N/A


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(Tungsten Carbide WC Powder Cas 12070-12-1)

Overview of Tungsten Carbide WC Powder  

Tungsten Carbide WC Powder, also known as Tungsten Carbide Powder, is a hard alloy powder composed of tungsten and carbon elements. It has high hardness, wear resistance, corrosion resistance, and good chemical stability, making it widely used in the industrial field. Tungsten carbide powder can be prepared by various methods, such as carbon thermal reduction method, chemical vapor deposition method, etc. Its unique physical and chemical properties make tungsten carbide powder play an important role in cutting tools, wear-resistant parts, thermal spraying, and other fields. In addition, tungsten carbide powder can also be used to prepare other tungsten based composite materials to expand its application fields. In short, tungsten carbide powder is an important industrial raw material, which is of great significance for improving product quality, reducing production costs, and promoting the development of related industries.

Features of Tungsten Carbide WC Powder  

High hardness: Tungsten carbide powder has a hardness second only to diamonds and is one of the hardest known materials.

High wear resistance: Due to its high hardness, tungsten carbide powder has excellent wear resistance and is suitable for high wear environments.

High chemical stability: Tungsten carbide powder exhibits good stability in various chemical environments and is not easily corroded.

Good thermal stability: Tungsten carbide powder can maintain stability at high temperatures and is not easily deformed or lose performance.

High thermal conductivity: Tungsten carbide powder has good thermal conductivity, which helps to reduce heat accumulation during operation.

Application of Tungsten Carbide WC Powder    

Cutting tools: Tungsten carbide powder is commonly used in the manufacturing of cutting tools, drills, milling cutters, and other cutting tools. Due to its high hardness and wear resistance, it can effectively improve the service life and cutting efficiency of tools.

Wear resistant parts: Tungsten carbide powder can be used to manufacture wear-resistant parts, such as bearings, gears, etc., which can significantly improve the wear resistance and service life of the parts.

Thermal spraying: Tungsten carbide powder can be used in thermal spraying technology to form a hard tungsten carbide coating on the metal surface, enhancing the wear and corrosion resistance of the substrate.

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Application of Tungsten Carbide WC Powder 

Powder metallurgy: Tungsten carbide powder can also be used in powder metallurgy processes, mixed and pressed with other metal powders to prepare high-performance composite materials.

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Application of Tungsten Carbide WC Powder 

Other fields: Tungsten carbide powder has also been applied in electronics, aviation, medical and other fields, such as wear-resistant coatings for manufacturing electronic devices, cutting parts for medical equipment, etc.

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Application of Tungsten Carbide WC Powder 

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Company Profile

NANOTRUN(www.rboschco.com) 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.

The company has a professional technical department and Quality Supervision Department, a well-equipped laboratory, and equipped with advanced testing equipment and after-sales customer service center.

If you are looking for high-quality Tungsten Carbide WC Powder, please feel free to contact us or click on the needed products to send an inquiry. 

Payment Term

L/C, T/T, Western Union, Paypal, Credit Card etc.

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Shipment Term

By sea, by air, by express, as customers request.

FAQ

Q1

What are the unique physical properties of Tungsten Carbide WC Powder?

Answer: Tungsten Carbide WC Powder has unique physical properties such as extremely high hardness, excellent wear resistance, good chemical stability, and high thermal conductivity, making it widely used in the industrial field.

Q2

What is the impact of the chemical composition of Tungsten Carbide WC Powder on its performance?

Answer: The chemical composition of Tungsten Carbide WC Powder determines its hardness and wear resistance. As the carbon content increases, its hardness increases, but excessive carbon content may lead to an increase in material brittleness.

Q3

What are the preparation methods for Tungsten Carbide WC Powder and what are their advantages and disadvantages?

Answer: The preparation methods of Tungsten Carbide WC Powder include carbon thermal reduction method, chemical vapor deposition method, etc. The carbon thermal reduction method has a simple process and low cost, but may produce impurities; The chemical vapor deposition method has high purity, but the equipment cost is relatively high.

Q4

What are the applications of Tungsten Carbide WC Powder in cutting tools?

Answer: The application of Tungsten Carbide WC Powder in cutting tools includes cutting tools, drills, milling cutters, etc. Its high hardness and wear resistance enable cutting tools to have a longer lifespan and higher cutting efficiency.

Q5

What is the function of the surface treatment agent for Tungsten Carbide WC Powder?

Answer: The surface treatment agent of Tungsten Carbide WC Powder is mainly used to improve its dispersibility, stability, and processing performance. These processing agents can reduce agglomeration between powders, improve their dispersibility in solvents, and help to obtain more uniform and dense coatings or composite materials.

 

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