Silicon Carbide Micron Powder (SiC, 98+%, 125-180 μm )


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Silicon Carbide Micron Powder (SiC, 98+%, 125–180 µm) is a robust and high-performance ceramic material recognized for its exceptional hardness, thermal conductivity, and chemical stability. With a particle size range of 125 to 180 micrometers and a purity of 98+%, this material is specifically designed for industrial applications requiring high durability, heat dissipation, and resistance to wear and corrosion. It is widely utilized in industries such as abrasives, automotive, aerospace, and energy systems.

1. Key Properties

Exceptional Hardness Delivers superior abrasion and wear resistance, making it ideal for high-stress applications.
Thermal Conductivity Ensures effective heat dissipation, maintaining stability in high-temperature environments.
Chemical Resistance Withstands chemical attack and oxidation, ensuring long-term durability under aggressive conditions.
Mechanical Strength Retains structural integrity under significant mechanical and thermal stress.
Particle Size (125–180 µm) Optimized for applications requiring larger particles to enhance mechanical and thermal performance.
Purity (98+%) Provides reliable performance while balancing cost efficiency for large-scale industrial applications.

2. Applications

Abrasives and Cutting Tools Commonly used in grinding, polishing, and cutting tools for its hardness and wear resistance.
Thermal Management Systems Ideal for heat sinks, thermal coatings, and components requiring efficient thermal regulation.
Industrial Ceramics Incorporated into high-strength ceramics for use in refractory and high-temperature processes.
Automotive Components Applied in brake systems, clutches, and other wear-resistant parts to improve durability and performance.
Aerospace Engineering Supports lightweight, durable materials for components exposed to extreme mechanical and thermal conditions.
Energy Systems Utilized in renewable energy technologies, including high-temperature batteries and fuel cells.

3. Advantages

Superior Wear Resistance Enhances the durability and service life of tools and components in high-abrasion environments.
Thermal Stability Ensures consistent performance in high-temperature and heat-intensive applications.
Chemical Durability Maintains integrity in chemically aggressive and oxidizing environments.
Optimized Particle Size Ensures uniformity and efficiency in manufacturing and application processes.
Cost-Effective Purity Offers a practical balance of performance and affordability for industrial-scale applications.

4. Recent Trends and Research

Advanced Abrasive Technologies Research focuses on optimizing SiC for high-performance grinding, cutting, and polishing tools.
Thermal Management Innovations Efforts are directed toward enhancing SiC’s role in advanced heat dissipation systems for industrial and electronic applications.
Automotive and Aerospace Materials Studies aim to integrate SiC into durable and lightweight components for modern vehicles and aircraft.
Energy Solutions Investigations explore SiC’s application in renewable energy systems, such as fuel cells and high-temperature batteries.
Additive Manufacturing Developments leverage SiC powders for creating high-precision, high-performance parts through 3D printing technologies.

5. Future Prospects

Abrasive Applications SiC will remain a critical material for developing durable and precise abrasive tools for industrial use.
Thermal Management Systems Its role in heat dissipation technologies will expand with advancements in energy and electronic systems.
Aerospace and Automotive Engineering SiC’s properties will support innovations in next-generation vehicles and aircraft components.
Renewable Energy Technologies The use of SiC in sustainable energy systems will grow with increasing global focus on green technologies.
Sustainable Manufacturing Research into eco-friendly production and recycling methods will enhance SiC’s adoption in environmentally conscious industries.

With its 125–180 µm particle size, 98+% purity, and outstanding hardness, thermal, and chemical properties, Silicon Carbide Micron Powder (SiC) is a versatile material for advanced applications in abrasives, thermal management, and industrial manufacturing. Its reliability and adaptability ensure its continued importance in modern materials science and engineering.

SKU: MN10MP0433 Category:
Measurement (gr)

100 grams, 500 grams, 1000 grams