Showing 13–24 of 39 results
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- High Hardness and Wear Resistance: Cr₂O₃ thin films provide exceptional protection against abrasion and mechanical wear, extending the life of coated surfaces.
- Corrosion Resistance: Cr₂O₃ coatings protect against corrosion and oxidation, especially in harsh environments.
- Thermal Stability: The material has excellent stability at high temperatures, making it suitable for use in high-temperature processes and environments.
- Optical Properties: Cr₂O₃ can be used in optical coatings for anti-reflective, decorative, or other optical layer applications.
- Good Adhesion: Cr₂O₃ films adhere well to a variety of substrates, including metals and ceramics.
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- High purity (≥99.5%).
- Exceptional hardness and wear resistance.
- Superior thermal and chemical stability.
- Consistent pellet size for uniform performance.
- Customizable specifications for diverse industrial applications.
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- High Hardness: Cr3C2 offers excellent wear resistance and high hardness, making it ideal for abrasive applications.
- High Thermal Stability: With a melting point of 2,480°C, it retains its strength and properties even at elevated temperatures.
- Corrosion Resistance: Chromium carbide is highly resistant to oxidation and corrosion, ideal for harsh, high-temperature environments.
- Excellent Wear Resistance: Offers superior resistance to friction and abrasion, ideal for applications where surfaces experience intense wear.
- Versatile Applications: Used in coatings, composite materials, and hardfacing to improve the longevity and durability of components.
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- Exceptional Hardness: Ensures long-lasting and wear-resistant coatings.
- High Corrosion Resistance: Protects against oxidation and chemical exposure.
- Thermal Stability: Reliable performance in high-temperature conditions.
- High Purity: Supports defect-free deposition for critical applications.
- Versatile Applications: Applicable in multiple industries, including aerospace and automotive.
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- High Hardness: Outstanding mechanical strength and resistance to wear.
- High Melting Point: Melts at approximately 2,200°C, making it suitable for high-temperature applications.
- Corrosion Resistance: Excellent stability in oxidative and corrosive environments.
- Thermal Conductivity: Good heat transfer properties, essential for thermal protection applications.
- Versatile Applications: Compatible with a range of industrial uses, including coatings and advanced composites.
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- Superior Hardness: Produces coatings with excellent wear resistance.
- High Thermal Stability: Ideal for high-temperature environments.
- Corrosion Resistance: Protects components exposed to harsh conditions.
- High Purity: Ensures consistent deposition and defect-free thin films.
- Customizable Design: Available in various sizes and configurations to suit diverse sputtering systems.
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- High Hardness: Exceptional resistance to wear, abrasion, and surface degradation.
- Corrosion and Oxidation Resistance: Outstanding protection in harsh environments, especially at elevated temperatures.
- Thermal Stability: Maintains stability under high temperatures without degradation.
- Good Electrical Conductivity: Provides useful properties in electronic and conductive applications.
- Customizable Particle Size: Available in a range of sizes to suit different applications and processing methods.
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- High Hardness: Enhances wear resistance for durable applications.
- Corrosion Resistant: Protects against harsh environmental conditions.
- Thermally Stable: Maintains integrity under high temperatures.
- Excellent Adhesion: Forms strong bonds with a variety of substrates.
- Customizable: Available in a range of sizes, shapes, and purity levels.
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- High Purity: Ensures the production of defect-free thin films with superior properties.
- Thermal Stability: Withstands high-temperature processes without degradation.
- Excellent Conductivity: Suitable for electronic and optoelectronic applications.
- Customizable Design: Available in a variety of shapes and sizes to fit specific sputtering systems.
- Durable Material: Resistant to oxidation and corrosion for reliable long-term use.
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- Superior Electrical Conductivity: Ensures efficient current flow in electrical applications.
- High Thermal Stability: Performs reliably under extreme temperatures.
- Excellent Wear Resistance: Durable material ideal for high-stress environments.
- Customizable Compositions: Flexible Cu-Cr ratios to meet specific requirements.
- Versatile Particle Sizes: Available in nano and micrometer scales for diverse applications.
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- High Entropy Alloy: The near-equal combination of five elements offers unique mechanical and thermal properties, including high strength, excellent wear resistance, and thermal stability.
- Corrosion Resistance: The alloy’s thin films offer exceptional resistance to oxidation and corrosion, even in harsh environments.
- Magnetic Properties: FeCoCrNiMn alloy sputtering targets produce films with strong magnetic properties, ideal for magnetic and electronic devices.
- Customizable Size and Shape: FeCoCrNiMn alloy sputtering targets are available in discs, plates, or custom shapes to meet the requirements of different deposition systems.
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- Corrosion Resistance: The high chromium content in FeCr alloys provides excellent resistance to corrosion, making the alloy ideal for environments exposed to moisture, chemicals, or harsh conditions.
- Magnetic Properties: FeCr alloys offer stable magnetic properties, making them suitable for use in various magnetic storage and electronic devices.
- High-Temperature Stability: FeCr thin films maintain their mechanical strength and performance even at elevated temperatures, making them useful for applications in energy, aerospace, and other industries requiring heat-resistant coatings.
- Wear Resistance: The wear resistance of FeCr thin films ensures long-lasting durability for coated components, reducing wear and tear in mechanical systems and industrial tools.
- Customizable Composition: The ratio of iron to chromium can be adjusted to optimize the properties such as corrosion resistance, magnetic performance, or wear resistance, based on the application’s specific requirements.