Showing 25–32 of 32 results
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- High Hardness: Provides superior wear resistance.
- Thermal Stability: Excellent performance in high-temperature environments.
- Electrical Conductivity: Suitable for use in electronic and thermal applications.
- Corrosion Resistance: Durable in harsh chemical environments.
- Versatility: Applicable in coatings, composites, and alloy enhancements.
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- Exceptional Hardness: Provides excellent wear resistance in demanding conditions.
- High Thermal Conductivity: Ensures superior performance in high-temperature applications.
- Oxidation Resistance: Maintains stability in oxidative environments.
- Chemical Stability: Resistant to chemical degradation and corrosion.
- Versatility: Suitable for various industrial and scientific applications.
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- High Hardness: TiB₂ has one of the highest hardness values among borides, making it ideal for creating hard coatings that resist wear and abrasion.
- Thermal Stability: It has excellent thermal conductivity and stability at high temperatures, which is critical for coatings used in high-temperature applications.
- Electrical Conductivity: TiB₂ is a good conductor of electricity, allowing its use in thin-film applications that require conductivity without sacrificing durability.
- Corrosion Resistance: TiB₂ is resistant to many corrosive environments, especially when exposed to molten metals or extreme industrial conditions.
- Strong Adhesion: TiB₂ coatings bond strongly to a variety of substrates, ensuring long-lasting performance in industrial and electronic applications.
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- Exceptional Hardness: Highly resistant to wear and abrasion.
- High Thermal Conductivity: Ideal for heat dissipation applications.
- Excellent Corrosion Resistance: Stable in molten metals and harsh chemical environments.
- Electrical Conductivity: Suitable for conductive ceramics and electrodes.
- High Melting Point: Withstands extreme temperatures without degradation.
- Customizable Particle Size: Tailored to specific application requirements.
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- Exceptional Hardness: Provides superior durability and wear resistance.
- High Thermal Stability: Performs well under extreme temperatures.
- Electrical Conductivity: Suitable for electronic applications requiring conductive layers.
- Corrosion Resistance: Withstands harsh chemical environments.
- High Purity: Ensures consistent thin-film quality and reliable performance.
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- Exceptional Hardness: VB₂ coatings provide unmatched surface durability and wear resistance.
- High Electrical Conductivity: Ensures efficient conductivity for electronic applications.
- Thermal Stability: Retains structural integrity under high-temperature conditions, making it suitable for extreme environments.
- Chemical Stability: Resists corrosion in aggressive chemical and environmental conditions.
- Customizable Dimensions: Tailored to specific application needs with a range of sizes and shapes available.
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- High Purity: ≥99.9% purity, ensuring high performance and minimal contamination in sensitive applications.
- Electrical Conductivity: Exceptional conductivity makes it ideal for use in electrical and electronic components.
- Thermal Stability: High resistance to thermal shock and high-temperature environments, retaining properties in extreme conditions.
- Chemical Resistance: Resistant to oxidation and corrosion, enhancing the longevity and reliability of components.
- Durability: Excellent wear resistance and mechanical strength, making it suitable for heavy-duty applications.
- Versatile Particle Size: Available in nano to micron-sized powders, allowing for customization based on specific application requirements.
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- High Hardness: ZrB₂ is an extremely hard material, making it ideal for wear-resistant and protective coatings.
- Thermal Stability: ZrB₂ sputtering targets produce thin films that can withstand high temperatures, making them suitable for use in harsh environments.
- High Thermal Conductivity: ZrB₂ has excellent thermal conductivity, which is advantageous for heat management in high-performance coatings.
- Chemical Resistance: ZrB₂ thin films are resistant to chemical attack, especially in high-temperature, corrosive environments.