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Stable High thermal conductivity Silicon Carbide for Deoxygenation

Silicon carbide can be used as a new type of compound deoxidizer in the steelmaking process. Compared with the traditional silicon powder carbon powder to stop deoxidizing, silicon carbide has more stable physicochemical properties, faster deoxidizing speed and shorter deoxidizing time, which can save energy, improve the efficiency of steelmaking, improve the quality of steel, reduce the consumption of raw and auxiliary materials, reduce environmental pollution, and improve the comprehensive economic efficiency of electric furnace.
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Product Description

Characteristics:
1.High Thermal Conductivity: SiC effectively conducts heat, allowing for better temperature control during steel production.
2.Chemical Stability: It is resistant to oxidation and chemical attack, making it suitable for use in aggressive environments typical of metallurgical processes.
3.High Strength and Hardness: SiC's mechanical properties make it durable and able to withstand the harsh conditions of steelmaking.

4.Low Thermal Expansion: Its low thermal expansion coefficient helps maintain dimensional stability under temperature fluctuations.


Advantages:

1. Enhanced Melting Efficiency: SiC can be added to steel melts to improve the melting process, reducing energy consumption and time.

2. Refining Agent: It serves as a deoxidizer and can improve the quality of steel by reducing impurities.

3. Improved Casting: SiC improves the fluidity of molten steel, leading to better casting outcomes and reducing defects.

4. Wear Resistance: Its hardness makes SiC ideal for lining furnaces and other equipment, extending their lifespan and reducing maintenance costs.

5. Energy Savings: Utilizing SiC in processes can lead to significant energy savings, contributing to more sustainable steel production.


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Silicon carbide (SiC) is increasingly utilized in the steelmaking metallurgical industry due to its beneficial properties that enhance processes such as melting, refining, and casting. Its unique characteristics contribute to improved efficiency, quality, and performance in steel production.


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