Silicon Nitride Grinding Vial Set
Silicon Nitride Grinding Vial Set, Jar
Silicon Nitride Grinding Vial Set, Angle
Silicon Nitride Grinding Vial Set
Silicon Nitride Grinding Vial Set, Jar
Silicon Nitride Grinding Vial Set, Angle

8008 - Silicon Nitride Grinding Vial Set

$2075.00

Part Number: 8008

45 mL silicon nitride grinding vial set.

  • Ideal for grinding hard, brittle samples to an analytical fineness in the 8000M Mixer/Mill® and 8000D Dual Mixer/Mill®.
  • Also useful for blending powders and mixing emulsions.
  • Extremely high resistance to abrasion and very long-wearing due to superior hardness.
  • Moderate efficiency but very low levels of contamination.
  • Suitable for slurry grinding.
  • Volume: 45 mL.
  • Recommended grinding load: 2-8 grams.
  • Recommended mixing load: 20 mL.
  • Typical composition: Major Elements – Si; Minor Elements – Y, Al, Fe, Ca.
  • Hardness: Mohs: 8 ½ + Knoop 1600.
 

Use with high-energy Mixer/Mill® grinders to pulverize and mix samples. Crush, grind, and mill various materials. Optimize performance of your Cole-Parmer® Freezer/Mill® grinders with a wide range of vial sets suitable for your application.

 

Silicon nitrite offers extremely high resistance to abrasion and very long-wearing due to superior hardness. Ideal for grinding hard, brittle samples to an analytical fineness in the Mixer/Mill® grinders. Vial exhibits moderate efficiency but very low levels of contamination and is suitable for slurry grinding.

 

Vial is 2 1/4 in.diameter x 2 11/16 in. long (6.35 cm x 6.8 cm). Set includes one solid silicon nitride vial and slip-on cap, two 8008A Silicon Nitride Balls, ½ in. (12.7 mm), and seven corprene gaskets.

Diameter 2 1/2 in.
Height 2 11/16 in.
Sample Capacity - Grinding 2 to 8 mL
Sample Capacity - Mixing 20 mL
Typical Sample Size 10 g
Durability Very long wearing
Major Elements Si
Minor Elements Y, Al, Fe, Ca
Resistance to Abrasion Extremely High
Slurry Grinding Yes
Comparative Efficiency Moderate
For Use With 8000D Mixer/Mill, 8000M Mixer/Mill
Notes Very low levels of contamination

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