Product Features
1. Unleashing extraordinary performance: Immerse yourself in a world of unparalleled chemical stability and a low thermal expansion coefficient. Our product is not only a testament to exceptional thermal conductivity but also stands resilient against the harshest of temperatures.
characteristics contrasting to conventional metals;
2. With a formidable Mohs hardness of 9.5, this product reigns supreme as the industry's leading wear-resistant additive, assuring unmatched hardness.
3. This is your ultimate defense against wear, soaring temperatures, and corrosive conditions. Engineered with exceptional acid and alkali solvent resistance, it promises enduring durability.
4. Featuring remarkable toughness, superior grinding capabilities, and exceptional electrical and thermal conductivity, this product defines excellence.
Products Application
Silicon carbide, affectionately dubbed 'corundum', flaunts an impressive Mohs hardness between 9.2-9.8 and a density from 3.06-3.20 g/cm³. Melting at near 2700°C, it boasts high hardness, incredible strength, formidable toughness, superior chemical stability, and remarkable corrosion resistance.
Its resilience to high temperatures, impact resistance, and outstanding thermal performance position it as a highly valued semiconductor material.
The unmatched versatility of silicon carbide consistently reveals new applications in cutting-edge technologies.
Currently, its principal applications are detailed as follows:
1. Crucial to electronic products, ceramic materials, and semiconductor innovations.
2. A pivotal component in abrasives, enabling precision in grinding and polishing applications.
3. Vital in refractory materials, celebrated for its superior durability.
4. Key roles in metallurgy, casting, and as a proficient deoxidizer.
Products Characteristics
- High density
Achieve perfection with Bamac, combined with a breakthrough plastic surgery machine for revolutionary cyclic shaping, reaching an extraordinary maximum loose density of 1.65 grams/m³.
- High particle size group
Artfully crafted through multi-level mechanized grading and precise screening.
- High size uniformity
Our state-of-the-art intelligent mixing system, combined with advanced packaging technology, ensures a particle size error of less than 10 grams per product for optimal performance.
- Low iron
By utilizing premium raw materials and maintaining stringent production line control, we guarantee unparalleled quality.
- Low carbon
Through an advanced closed system dust removal process, we achieve a free carbon content that is over 10% lower than the national standards.
- Low magnetic
Employing cutting-edge three-roll high-strength magnetic separation technology to maintain purity.

With a remarkable production capacity of 2000 tons, Qinyuan Fuda New Materials stands at the pinnacle of the industry, offering a diverse range of zirconium series ceramic materials. Our extensive product collection, including sandblasted ceramic beads, zirconia microbeads, high-purity zirconia beads, and zirconium aluminum composite beads, is meticulously crafted to surpass industry standards and meet your diverse needs.
Our comprehensive range includes premium glass beads, zirconia powders, and stabilized zircon products. By partnering with leading domestic enterprises, we are pioneers in innovations related to basalt fiber filaments and advanced technology solutions, driving the future of material innovation.
Fuda New Materials stands as a beacon of leadership, offering an extensive array of premium zirconium series products and pioneering basalt fiber filaments. Our solutions serve critical industries such as sandblasting, grinding, construction, and aerospace, delivering unmatched quality to both domestic and international arenas.
Our unwavering commitment to excellence ensures clients worldwide receive unparalleled material quality, solidifying our reputation as a globally trusted partner.
We consistently uphold our promise to deliver unmatched product excellence, ensuring our clients worldwide receive nothing but the best.
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