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Yttria Stabilized Zirconia Nano-Grinding & Mixing Jars for Planetary Ball Mill

Categories Ball Mill Jar
Brand Name: Zoli
Model Number: BMJ-01
Certification: ISO CE
Place of Origin: China
MOQ: 1 piece
Payment Terms: L/C,T/T,Western Union
Supply Ability: 10000 pcs per month
Delivery Time: within 15 days
Packaging Details: carton+Pearl wool+wood
Number Of Grinding Balls: 100
Grinding Speed: 0-580 rpm
Feature: excellent wear resistance
Power Source: Electric
Purity: >99.9% ZrO₂
Total Height: 56mm
Density: 6.05 g/cm³
Timer: 0-99 hours
Grinding Ball Material: Zirconia
Outer Diameter: 49mm
Max Speed: 670rpm
Jar Style: Vertical
Usage: Accessories for Planetary Ball Mill
Compatible Ball Size: 10mm
Control System: Microcomputer
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Yttria Stabilized Zirconia Nano-Grinding & Mixing Jars for Planetary Ball Mill

Description: These are premium-grade grinding jars manufactured from yttria-stabilized zirconia (YSZ), specifically engineered for nano-scale grinding and ultra-homogeneous mixing in planetary ball mills. They represent the ultimate solution for applications where achieving and maintaining nanometer particle sizes without contamination is the critical goal.

1. Core Material: Why Zirconia for Nano-Grinding?

The choice of YSZ is fundamental to nano-scale processing:

  • Unmatched Wear Resistance: Zirconia is the hardest and most wear-resistant material commonly used for mill jars. This is the single most important property for nano-grinding, as any abrasion from the jar itself introduces coarse particles, preventing the achievement of a consistent nano-scale grind and contaminating the sample.
  • Extreme Fracture Toughness: Zirconia is exceptionally impact-resistant and less brittle than alumina or agate. It can withstand the extreme mechanical stresses of long-duration, high-energy nano-milling without micro-cracking or chipping.
  • Minimal & Biocompatible Contamination: While no jar is 100% wear-free, zirconia jars introduce only negligible traces of zirconium and yttrium oxides. These are often inert in many chemical processes and are considered biocompatible, making them acceptable for a wider range of advanced applications than other ceramics.
  • High Density: The high density of zirconia enhances the milling energy during the planetary ball mill's operation, making the grinding process more efficient for breaking down particles to the nano range.
2. Key Features for Nano-Scale Applications
  • Ultra-Smooth Internal Surface: The jars are processed to have a vitrified, mirror-like finish that minimizes surface area for particle adhesion and facilitates easy, complete cleaning to prevent cross-contamination between batches.
  • Hermetic Sealing: The lid is designed with a precision sealing mechanism (often using a PTFE or silicone O-ring) to allow for:
    • Inert Atmosphere Processing: Critical for nano-grinding of air-sensitive materials (e.g., metallic nano-powders, certain battery materials) which can oxidize or become pyrophoric.
    • Solvent Retention: Essential for wet nano-milling processes, which are often more efficient than dry milling for achieving small particle sizes.
  • Precision Engineering: Perfectly balanced for high-speed rotation (often up to 800 RPM or more) to ensure stable operation without vibration, which is crucial for consistent and reproducible results.
3. Advantages Summary
  • Achieves True Nano-Sizes: The minimal wear prevents re-introduction of larger particles, allowing for the creation of stable and consistent nano-suspensions and powders.
  • Longest Service Life: The exceptional wear resistance means the jar's internal dimensions and surface finish remain stable over a very long period, ensuring consistent results batch after batch.
  • Superior Chemical Stability: Inert to almost all chemicals and solvents, making it ideal for a vast range of nano-dispersion and synthesis reactions.
  • High Mechanical Strength: Withstands the high-impact forces required for nano-comminution and mechanical alloying.
4. Typical Nano-Grinding Applications
  • Battery Materials: Synthesis and processing of nano-structured cathode (e.g., NMC, LFP) and anode materials (e.g., nano-silicon, graphite) to enhance ion diffusion and battery performance.
  • Pharmaceuticals: Production of nano-crystalline APIs (Active Pharmaceutical Ingredients) to improve solubility and bioavailability.
  • Pigments & Dyes: Creating nano-pigments for high-quality inks, coatings, and cosmetics that require exceptional color strength and stability.
  • Advanced Ceramics: Preparation of nano-powders for sintering advanced ceramics like ZTA (Zirconia Toughened Alumina) with superior mechanical properties.
  • Electronics: Manufacturing nano-powders for conductive inks, ferrites, and other electronic components.
5. Comparison for Nano-Scale Use
Jar MaterialSuitability for Nano-GrindingPrimary ContaminantKey Limitation
Zirconia (YSZ)Excellent (Best Choice)ZrO₂, Y₂O₃High Cost
Alumina (99%)GoodAl₂O₃Higher wear than ZrO₂
Tungsten CarbideExcellentW, CVery High Cost, C contamination
AgateFairSiO₂Very Brittle, poor wear resistance
Stainless SteelNot SuitableFe, Cr, NiHigh contamination, prevents nano-scale
Conclusion

For researchers dedicated to nano-scale grinding, zirconia planetary jars are not just an option—they are a necessity. They provide the essential combination of near-zero contamination and extreme durability required to reliably achieve and maintain particle sizes in the nanometer range. The investment in a zirconia jar is an investment in the integrity, reproducibility, and success of advanced nanomaterial research and development.

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