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Ultra Fine Polished Tungsten Sphere WC Media Steel Ball Submicron For Precision Grinding

Ultra Fine Polished Tungsten Sphere WC Media Steel Ball Submicron For Precision Grinding

Precision Grinding polished tungsten sphere

Submicron polished tungsten sphere

Polished tungsten steel ball

Place of Origin:

China

Brand Name:

Zhongli

Certification:

ISO CE

Model Number:

ZWC-01

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Product Details
Impact Toughness:
High
Advantages:
High Hardness, High Density, Excellent Wear Resistance
Application Industries:
Mining, Cement, Power Plants, Chemicals, Etc.
Color:
Silver
Usage:
Grinding And Milling Applications
Crushing Load:
≥ 2000N
Wear Rate:
≤ 0.5 G/t
Shape:
Spherical
Size:
1mm-20mm
Hardness:
HRA 92-94
Chemical Composition:
WC-Co
Material:
Tungsten Carbide
Density:
14.95 G/cm3
Abrasion Resistance:
Excellent
Highlight:

Precision Grinding polished tungsten sphere

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Submicron polished tungsten sphere

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Polished tungsten steel ball

Payment & Shipping Terms
Minimum Order Quantity
1kg
Packaging Details
plastic+barrel
Delivery Time
within 15 days
Payment Terms
L/C,T/T,Western Union
Supply Ability
40-200 ton per month
Product Description
Ultra Fine Polished Tungsten Sphere WC Media Steel Ball Submicron For Precision Grinding
Ultra Fine Grain WC Media Sub Micron Structure for Precision Grinding
In today's industrial landscape, precision grinding is essential for manufacturing processes requiring high precision and durability. Ultra fine grain WC media with sub micron structures enhances grinding efficiency while improving finished product quality.
Understanding Ultra Fine Grain WC Media
What is Ultra Fine Grain WC Media?
Ultra fine grain WC (tungsten carbide) media consists of tungsten carbide particles reduced to sub micron sizes. These particles offer exceptional hardness and wear resistance, ideal for precision grinding applications.
Why Sub Micron Structure Matters
The sub micron structure ensures uniform particle distribution, improving grinding consistency and quality. This structure facilitates cobalt binder spreading, promoting WC-Co agglomerate formation.
Benefits of Ultra Fine Grain WC Media
  • Enhanced Grinding Efficiency: Smaller particle size enables better material contact for faster, more effective grinding
  • Improved Surface Finish: Uniform particle distribution minimizes surface irregularities for smoother finishes
  • Increased Wear Resistance: Ideal for high-stress environments like mining and tunnel boring
  • Versatility: Suitable for electronics, ceramics, cosmetics, and more
Mechanical & Physical Properties
Property Tungsten Carbide (WC-6%Co) Alumina (99%) Zirconia (YTZP) Steel (440C)
Density (g/cm³) 14.6-15.0 3.9 6.0 7.8
Hardness (HRA) 90-92 80-85 88-90 60-65
Fracture Toughness (MPa*m½) 10-12 4-5 7-10 15-20
2× Harder than alumina, 3× harder than steel - Minimal wear in abrasive environments
Highest density - Superior kinetic energy for efficient grinding
Exceptional compressive strength - Withstands high-load milling
Wear & Durability Performance
Media Type Relative Wear Rate Lifespan (vs. Steel) Cost Efficiency
Tungsten Carbide 1× (Benchmark) 20-50× longer Best long-term
Zirconia 1.5-2× 10-15× longer High upfront
YG8 Polishing WC Balls
Ultra Fine Polished Tungsten Sphere WC Media Steel Ball Submicron For Precision Grinding 0 Ultra Fine Polished Tungsten Sphere WC Media Steel Ball Submicron For Precision Grinding 1 Ultra Fine Polished Tungsten Sphere WC Media Steel Ball Submicron For Precision Grinding 2
Performance Summary: Why Choose Tungsten Carbide?
  • Unmatched Hardness - Lowest wear rate in extreme abrasion
  • High Density - Faster grinding with less energy
  • Chemical Stability - Resists most solvents/slurries
  • Longest Lifespan - ROI justified in 6-12 months
FAQ
What is tungsten carbide grinding media?
Tungsten carbide grinding media consists of WC particles bonded with cobalt or nickel. It's the hardest and most wear-resistant grinding material available, ideal for abrasive and high-impact milling.
What are the advantages over steel, alumina, or zirconia media?
- Hardness (HRA 90+): 3× harder than steel
- Density (14-15 g/cm³): Higher kinetic energy for faster grinding
- Wear Resistance: Lasts 20-50× longer than steel
- Contamination-Free: No iron/nickel leaching

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