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Aluminum oxide abrasion resistant powder (For coating)

  • Product Name: Aluminum Oxide Abrasion Resistant Powder
  • Intended Use: Coating Applications
  • Chemical Formula: Al2O3
  • Purity: Typically >99%
  • Particle Size: Various grades available (e.g., sub-micron to micron-sized)
  • Appearance: White powder
  • Density: ~3.95-4.1 g/cm³
  • Melting Point: ~2,072°C
  • Pack Sizes: 100g, 500g, 1kg, 10kg, 100kg, 500kg, 1000kg

Product Overview

Hiyka's Aluminum Oxide Abrasion-Resistant Powder for Coating is a premium material designed to provide superior wear resistance and durability to coatings applied in harsh operational environments. This high-purity Al2O3 powder is engineered to optimize the performance of coatings, offering exceptional hardness and thermal stability. Ideal for use in industrial, automotive, and aerospace applications, our aluminum oxide powder ensures coatings that can withstand extreme abrasion, corrosion, and high temperatures, extending the lifespan of coated surfaces and components.

Key factor

  • High Abrasion Resistance: Maximizes the wear resistance of coatings, protecting surfaces from scratches, abrasion, and erosion.
  • Enhanced Durability: Offers coatings improved longevity and durability, reducing maintenance needs and costs.
  • Chemical Stability: Resistant to acids, alkalis, and other corrosive agents, ensuring coatings maintain their integrity in challenging chemical environments.
  • Thermal Resistance: Maintains performance in high-temperature applications, making it suitable for coatings exposed to heat.
  • Versatile Application: Compatible with a variety of coating processes, including thermal spraying, electrostatic deposition, and more.

Applications

  • Industrial Machinery: Critical for protecting equipment and components in mining, construction, and manufacturing from wear and tear.
  • Automotive Components: Enhances the abrasion resistance of parts exposed to friction and environmental elements, including engines and chassis.
  • Aerospace Coatings: Provides protective coatings for aircraft components, ensuring resistance to abrasion and thermal stress.
  • Protective Equipment: Applied to safety gear and tools, offering additional durability and resistance to wear.
  • Energy Sector: Used in coatings for wind turbines, pipelines, and other energy infrastructure to withstand harsh operational conditions.

Advantages

  • Improved Coating Performance: Significantly increases the life expectancy of coated surfaces, offering long-term protection against wear.
  • Cost-Efficient: Reduces the need for frequent maintenance and replacement of components, offering economic benefits over time.
  • High-Quality Material: Produced with a focus on purity and particle size distribution, ensuring consistent application and coating quality.
  • Environmentally Friendly: Supports sustainability by enhancing the durability and lifespan of products and components.
  • Adaptable to Various Coatings: Suitable for integration into a wide range of coating formulations, offering flexibility in application.

References 

  • Synthesis of aluminum oxide coating with carbon nanotube reinforcement produced by chemical vapor deposition for improved fracture and wear resistance, AK Keshri, J Huang, V Singh, W Choi, S Seal… - Carbon, 2010 - Elsevier
  • Preparation of aluminum oxide-coated carbon nanotubes and the properties of composite epoxy coatings research,H Yi, C Chen, F Zhong, Z Xu - High Performance Polymers, 2014 - journals.sagepub.com

  • Characterization and wear-and corrosion-resistance of microarc oxidation ceramic coatings on aluminum alloy, T Wei, F Yan, J Tian - Journal of Alloys and Compounds, 2005 - Elsevier, H Yi, C Chen, F Zhong, Z Xu - High Performance Polymers, 2014 - journals.sagepub.com

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