ATH
19 Years of Proven Engineering Excellence
JACAN Powder Equipment

Leading Equipment for ATH Grinding, Classification & Surface Modification

Harness JACAN's industry-leading processing technology for Aluminum Hydroxide (ATH, also known as Alumina Trihydrate). We provide high-performance intelligent systems for low-temperature grinding, precision classification and surface activation modification, delivering powder with stable particle size, high whiteness, consistent flame retardancy and excellent filling performance. From R&D testing to mass production, we set professional standards for advanced mineral filler processing.
JACAN Powder Equipment

Main Processes: High-Performance ATH Precision Deep Processing

From low-temperature flash drying and iron-free precision grinding to high-accuracy air classification and functional surface modification, our four-step core process prevents Aluminum Hydroxide (ATH, also Alumina Trihydrate) thermal decomposition while ensuring narrow particle size distribution, high whiteness and excellent polymer compatibility for flame retardant and general industrial filler applications.

Low-Temperature Flash Drying & Deagglomeration

Turbo rotor disintegrates wet ATH filter cake lumps; tangential hot airflow held below 110°C instantly removes surface free moisture. Working temperature stays far below ATH's 150°C crystal water loss threshold, avoiding crystal damage and flame retardant activity loss while preserving original morphology for both flame retardant and filler uses.

Closed-Circuit Ultrafine Low-Temp Grinding

Water-jacket cooled ring roller or air classifier mills keep material peak temperature ≤110°C, far below ATH's 150°C crystal water decomposition threshold. Intensive grinding disperses hard agglomerates, retaining original high whiteness and purity. Optional ceramic lining limits iron impurity ≤10ppm for high-end flame retardant and industrial filler standards.

High-Precision Air Classification

High-efficiency turbine classification disperses micro-agglomerates, delivering sharp cut-point and narrow particle size distribution. Oversized residue above target D97 is controlled ≤0.1% (meets low-smoke zero halogen cable ±3μm tolerance), ensuring stable D97 and consistent filler performance for cable, plastic, coating and artificial stone uses.

Functional Surface Activation Modification

Customized silane / stearic acid surface modification evenly coats ATH particles during high-shear vortex mixing. Modifier utilization exceeds 90% and particle coverage reaches ≥95%, boosting compatibility with polymer resin and enhancing finished products' mechanical strength, flame retardant uniformity and filler dispersion.
JACAN Powder Equipment

China's Premier Provider of Precision ATH Processing Equipment & Technology

The preferred choice of 100+ industry leaders, a testament to our equipment's superior performance and efficiency.
28%
28%+ Coverage of top-tier ATH filler processors in China.
* Statistics as of November 2025
JACAN Powder Equipment

Precision Engineering. Global Impact.

Driven by a passion for precision, JACAN integrates cutting-edge technology with world-class manufacturing to lead the ultra-fine grinding industry. We are dedicated to creating sustainable value for our global partners through unparalleled expertise and continuous innovation.

Since 2007

Established in 2007, JACAN has dedicated nearly two decades to perfecting ultra-fine grinding technology. As an industry pioneer, we continue to set new benchmarks through relentless innovation and a commitment to engineering excellence.

1,200+ Clients

Empowering partners worldwide with high-efficiency solutions.

150+ Engineers

A specialized R&D team delivering precision-engineered solutions.

19 Years Exp.

19 years of deep cultivation in the industry, accumulating hundreds of technical patents and successfully overcoming thousands of complex engineering challenges for our global partners.

50+ Countries

Extensive service network ensuring peak operational efficiency globally.

3 Smart Bases

50,000m² of advanced infrastructure for large-scale production.
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