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YSZ (95% Tetragonal Phase Purity) Milling Balls (0.1-25 mm), 1 kg/bag, MBYSZ

YSZ (95% Tetragonal Phase Purity) Milling Balls (0.1-25 mm), 1 kg/bag, MBYSZ

$109.00 USD
In Stock SKU: MBYSZ25
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YSZ (95%) Milling Balls—chemically composed of approximately 95 wt% Zirconium Dioxide (ZrO2, including a natural fraction of HfO2) and stabilized with ~5 wt% Yttrium Oxide (Y2O3, equivalent to 3 mol%)—represent the absolute premier class of high-density ceramic grinding media for high-energy planetary ball milling, attritor mills, and vertical/horizontal bead mills.

The defining engineering feature of 95% YSZ is its exceptional resistance to cracking, driven by a phenomenon known as stress-induced transformation toughening. The 5 wt% yttria stabilizer locks the zirconia grains into a metastable tetragonal crystal phase at room temperature. When a high-energy impact creates a microscopic stress crack inside a milling ball, the localized stress triggers a phase transition from the tetragonal structure to a larger monoclinic structure. This crystal transformation causes a localized volumetric expansion of roughly 3–4%. The expanding crystal structure aggressively squeezes the crack shut, halting crack propagation in its tracks. This gives YSZ a fracture toughness unmatched by any other advanced structural ceramic.

Part Number
  • MBYSZ
Chemical Composition/Phase
  • 95wt% ZrO2 / 5wt% Y2O3 (~3mol%), Tetragonal Phase
Specific Gravity
  • 6 g/cc
Hardness
  • 1250HV1
Spherical Level
  • >95%, polished surface
Ball Sizes
  • 0.1-3.0 mm, ±0.3 mm
  • 3.0-10.0 mm, ±0.5 mm
  • 5.0-25.0 mm, ±1.5 mm
Package Grade
  • 1 kg/bag

 

References:

J. Zhang, et al., Crystal defects and phase transitions of nanocrystalline yttria-stabilised zirconia induced by high-energy ball milling, Ceramics International, 2021,47, 16432-16440

M. Bumrungpon, et al., Synthesis and thermoelectric properties of bismuth antimony telluride thermoelectric materials fabricated at various ball-milling speeds with yttria-stabilized zirconia ceramic vessel and balls, Ceramics International, 2020, 46, 13869-13876

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