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Ceramic Powders

Quality High-Purity 99.6% Alpha Alumina Powder with Low Shrinkage and High Density for Structural and Electronic Ceramics factory

High-Purity 99.6% Alpha Alumina Powder with Low Shrinkage and High Density for Structural and Electronic Ceramics

High-Purity 99.6% Alpha Alumina Powder (CA & CN Series) | Low Shrinkage for Structural & Electronic Ceramics Discover our CA & CN series 99.6% Alpha Alumina powder. Featuring small shrinkage, high density (≥3.95 g/cm³), and controlled crystal size for superior structural ceramics, electronic ceramics, and porous filters. 99.6% Alpha Alumina Powder for Advanced Ceramics | Low Shrinkage & High Performance Our premium Alpha Alumina (α-Alumina) powders are engineered for high
Quality High Purity Approximate Spherical Alpha Alumina Powder with Controlled Particle Size and Optimized Morphology for Thermal Conduction factory

High Purity Approximate Spherical Alpha Alumina Powder with Controlled Particle Size and Optimized Morphology for Thermal Conduction

Approximate Spherical Alpha Alumina Powder | High-Purity Thermal Conduction Filler Enhance Thermal Management with Precision-Engineered Alumina Fillers Our high-purity approximate spherical alpha alumina powder is specifically formulated to maximize thermal conductivity in polymer composites and thermal interface materials. With controlled particle size distribution and exceptional purity, this advanced ceramic filler enables superior heat dissipation in demanding electronic
Quality High-Purity Alpha Alumina Powder for Thermal Management with Controlled Particle Size Distribution and High Packing Density factory

High-Purity Alpha Alumina Powder for Thermal Management with Controlled Particle Size Distribution and High Packing Density

D50 Aluminum Oxide Ceramic Powder - High-Purity Alpha Alumina Spheres for Thermal Management Superior Thermal Conductivity for Demanding Electronics Our D50 Aluminum Oxide Ceramic Powder (Alpha Alumina) is a high-purity, spherical powder engineered for advanced thermal management solutions. With a consistent spherical morphology and tightly controlled particle size distribution, it enables superior filler loading in thermal interface materials (TIMs), resulting in exceptional
Quality High Purity 99.99% Gamma Alumina Powder with Nanoscale Particle Size 20-50 nm and High Surface Area 100 m²/g for Calcined Alumina Ceramic Parts factory

High Purity 99.99% Gamma Alumina Powder with Nanoscale Particle Size 20-50 nm and High Surface Area 100 m²/g for Calcined Alumina Ceramic Parts

High Purity Gamma Alumina Powder & Calcined Alumina Ceramic Parts Our High Purity Gamma Alumina Powder (CAS 21645-51-2) is a nanomaterial engineered for advanced industrial applications. Produced by calcining pseudo-boehmite at low temperatures, it offers high reactivity and strong adsorbability due to its exceptional purity and significant surface area. This powder also serves as the primary raw material for our high-performance Calcined Alumina Ceramic Parts. Product
Quality 0.1-0.3µm Calcined Alumina Powder with 9 Mohs Hardness and High Purity for Precision Polishing factory

0.1-0.3µm Calcined Alumina Powder with 9 Mohs Hardness and High Purity for Precision Polishing

0.1-0.3µm Calcined Alumina Powder | 9 Mohs High Hardness for Precision Polishing Our Calcined Alumina Powder is engineered for precision polishing applications where surface quality is critical. With a controlled particle size of 0.1-0.3 micrometers and exceptional 9 Mohs hardness, this premium alumina powder delivers outstanding polishing performance for the most demanding industrial applications. Key Product Advantages Exceptional Hardness - 9 Mohs hardness ensures
Quality High Purity Ultrafine Silicon Carbide Micropowder with Large Specific Surface Area for Advanced Ceramics factory

High Purity Ultrafine Silicon Carbide Micropowder with Large Specific Surface Area for Advanced Ceramics

High-Purity Ultrafine Silicon Carbide (SiC) Micropowder for Advanced Ceramics Our high-purity ultrafine Silicon Carbide (SiC) Micropowder is the premier raw material for manufacturing pressureless-sintered silicon carbide (SSIC) ceramics. Engineered for excellence, it delivers superior wear resistance, exceptional chemical stability, and high-temperature strength, making it ideal for demanding industrial applications. Key Specifications & Features High Purity: Exceeds 98.5%