The production of 95 zirconia beads adheres to strict industry standards and quality systems. Its chemical composition (ZrO₂ 94.5±0.2%, Y₂O₃ 5.2±0.5%) and physical properties (density >6.0g/cm³, wear <1ppm) have all passed precise testing to ensure the stable performance of each batch of products. In industries such as medicine and food, zirconia beads meet the certification requirements of FDA, GMP, etc., ensuring safe usage; in the field of electronic materials, their low metal ion leaching characteristics comply with international standards like ISO. The enterprise has obtained ISO9001 quality management system certification and implements full-process control from raw material procurement to finished product delivery, ensuring the consistency of indicators such as particle size, hardness, and wear resistance of zirconia beads, thus providing customers with reliable grinding media.
Core Advantages Breakdown:
Composition and Performance
High-purity zirconia (ZrO₂ content 94.5±0.2%) combined with stabilizing agent Y₂O₃ (5.2±0.5%) forms a dense crystal structure.
Density exceeding 6.0g/cm³ and excellent wear resistance (wear amount <1ppm) make it suitable for high-intensity grinding scenarios.
Industry Compliance
|
Application Field |
Certification Standards |
Core Advantages |
|
Medicine/Food |
FDA, GMP |
No harmful substance precipitation, meeting hygiene safety requirements |
|
Electronic Materials |
ISO standards |
Low metal ion leaching to avoid contamination |
Quality Control System
Full-process control: Raw material screening → proportion mixing → sintering → precision processing → quality inspection and warehousing, ensuring uniformity of indicators such as particle size (error ≤±0.01mm) and hardness (Rockwell hardness >85HRA).
Certification endorsement: ISO9001 system certification, with test reports attached to each batch of products for traceability throughout the production chain.
Extended Application Scenarios:
New Energy Field: Used for ultra-fine grinding of lithium battery cathode materials (such as ternary lithium and lithium iron phosphate) to improve material consistency.
Ceramic Preparation: Processes electronic ceramics and structural ceramic powders to ensure the density and mechanical properties of sintered products.
Coatings and Inks: Disperses pigment particles to improve the gloss and uniformity of coatings, meeting high-end printing requirements.
Quality Control System
Full-process control: Raw material screening → proportion mixing → sintering → precision processing → quality inspection and warehousing, ensuring uniformity of indicators such as particle size (error ≤±0.01mm) and hardness (Rockwell hardness >85HRA).
Certification endorsement: ISO9001 system certification, with test reports attached to each batch of products for traceability throughout the production chain.
Quality Control System
Full-process control: Raw material screening → proportion mixing → sintering → precision processing → quality inspection and warehousing, ensuring uniformity of indicators such as particle size (error ≤±0.01mm) and hardness (Rockwell hardness >85HRA).
Certification endorsement: ISO9001 system certification, with test reports attached to each batch of products for traceability throughout the production chain.
Extended Application Scenarios:
New Energy Field: Used for ultra-fine grinding of lithium battery cathode materials (such as ternary lithium and lithium iron phosphate) to improve material consistency.
Ceramic Preparation: Processes electronic ceramics and structural ceramic powders to ensure the density and mechanical properties of sintered products.
Coatings and Inks: Disperses pigment particles to improve the gloss and uniformity of coatings, meeting high-end printing requirements.
Contant Us
Tina Email: tina@fudanewmaterial.com
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