Calcium Boride (CaB6) CAS 12007-99-7: Properties, Applications, and Benefits in High-Conductivity Copper
Discover the exceptional properties and versatile applications of Calcium Boride, a vital material in advanced industrial processes.
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Calcium Boride
Calcium Boride (CaB6), identified by CAS 12007-99-7, is a key industrial material renowned for its unique characteristics and wide-ranging applications. Its primary utility lies in its role as a superior deoxidizing agent for high-conductivity copper, where it enhances conductivity and strength without degradation. This makes it invaluable in metallurgical processes aiming for optimal material performance.
- As a calcium boride deoxidizing agent for copper, it significantly improves the conductivity and strength of the final product.
- The antioxidant properties of calcium boride make it ideal for refractory compositions, enhancing thermal strength and resistance to corrosive environments.
- With a high melting point of 2235°C and stability at elevated temperatures, it excels in high-temperature applications.
- Its insolubility in water and resistance to common acids contribute to its durability and ease of handling in various industrial settings.
Key Advantages
Enhanced Copper Purity
Utilizing calcium boride as a deoxidizer for high-conductivity copper ensures that the material's intrinsic electrical properties are preserved and even enhanced, a critical factor in the electronics and electrical industries.
Superior Refractory Performance
The antioxidant capabilities of calcium boride protect refractory materials, like unfired MgO bricks, from aggressive alloys and oxidation, thereby prolonging their service life in demanding environments such as steel production.
High-Temperature Stability
With a melting point exceeding 2200°C, calcium boride exhibits excellent thermal stability, making it suitable for applications requiring resistance to extreme heat and wear.
Key Applications
Copper Refining
As a deoxidizing and degassing agent for high-conductivity copper, it improves electrical conductivity and mechanical strength, crucial for electrical components.
Refractory Materials
Acting as an antioxidant and anti-erosion additive in dolomite and magnesium dolomite refractories, it enhances thermal strength and durability.
Nuclear Industry
It is considered for use as a new material for neutron prevention in nuclear reactors, highlighting its advanced material properties.
Semiconductor Technology
Its potential as a semiconductor material in spintronic components, with a notable Curie temperature, points to future high-tech applications.
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