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Mean Particle Size Yttrium Oxide (Y2O3) Powder 0.032-0.036

Mean Particle Size Yttrium Oxide (Y2O3) Powder 0.032-0.036

SKU:YTT-728331

High-grade Yttrium Oxide (Y2O3) Powder, 0.032-0.036 mean particle size. Ideal for infrared applications.

Regular price $45.99
Regular price Sale price $45.99
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Mean Particle Size Yttrium Oxide (Y2O3) Powder 0.032-0.036

Mean Particle Size Yttrium Oxide (Y2O3) Powder 0.032-0.036

$45.99

Quantity: 1

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Mean Particle Size Yttrium Oxide (Y2O3) Powder 0.032-0.036

Mean Particle Size Yttrium Oxide (Y2O3) Powder 0.032-0.036

$45.99

Quantity: 1

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Our Yttrium Oxide (Y2O3) Powder, with a mean particle size of 0.032 to 0.036, is sourced from Goodfellow Corp. This spherical powdery form exhibits a density of 5.030 g·cm-3 and high thermal stability. Ideal for applications requiring infrared transmission, thermal conductivity, and resistance to erosion and thermal shock. Perfect for stabilizing Zirconia, silicon nitride sintering aids, and protection domes for infrared sensors.

Product Specifications

Material Material
Yttrium OxideYttrium Oxide is mainly extracted from the mineral Xenotime (YPO4). Its properties include high thermal stability and good transparency to infrared radiation. It has an affinity for oxygen and sulfur and is used as an additive to stabilise Zirconia and as a sintering aid in Sialons and silicon nitride. As an optical ceramic, it transmits well in the infrared range, from 1 to 8 microns wavelength. The high infrared transmission, together with good resistance to erosion and thermal shock, makes it ideal for protection domes for infrared sensors.
Physical Properties Density
5.030 g·cm-3
Specifications Form
Powder
Specifications Mean Particle Size
0.032 to 0.036
Specifications Product Shape
Spherical
Specifications Weight
50 to 500 g
Thermal Properties Coefficient Of Thermal Expansion At 20 To 100
8.100 x10-6 K-1
Thermal Properties Melting Point
2400.00 ºC
Thermal Properties Thermal Conductivity At 20 Degree Celsius C T
8.00 to 12.00 W m-1K-1
Type Type
CeramicCeramics are non-metallic, non-organic materials. They exhibit excellent resistance to high temperatures. Although they have comparatively low densities, they are extremely hard but tend to be brittle. They show good resistance to both abrasives and chemicals.