Zirconia for Ceramic Injection Molding

Zirconia for Ceramic Injection Molding

XY-GLOBAL manufactures precision ceramic parts, which can be made from high-purity ceramic raw materials according to customer requirements, resulting in 92-97% alumina, 99.5% alumina, or 99.9% alumina. These parts are then produced through CIP cold isostatic pressing, high-temperature sintering, and precision machining, achieving dimensional accuracy of ±0.001mm, a surface finish of Ra0.1, and a maximum operating temperature of 1600 degrees Celsius.

  • High strength and toughness for demanding structural applications
  • Good wear and corrosion resistance for long-term performance
  • Suitable for complex CIM geometries with repeatable mass production
CIM Services

Zirconia Material Property Analysis Table

Material Zirconia
ZrO2 86–97%
Y2O3 2.5–5.2%
Al2O3 ≤0.8%
Zirconia ZrO2 Zirconia ZrO2
Color — Light Gray Milky Black
Density g/cm³ 6.05 6.02 5.90
Water Absorption % 0 0 0
Vickers Hardness GPa 13 12.2 12
Vickers Hardness HV 1200 — —
Bending Strength MPa 1500 1200 900
Compressive Strength MPa — — —
Elastic Modulus GPa — — —
Fracture Toughness MPa·m1/2 12 6–7 —
Volume Resistance Ω·cm >10¹² >10¹² —
Permittivity 1MHz 34 33 —
Dielectric Dissipation Factor 1MHz 25×10⁻⁴ — —
Insulation Endurance kV/mm — — —
Coefficient of Thermal Expansion 10⁻⁶/℃ 10.9 9.09 16
Thermal Conductivity W/m·K 3.03 3 —
Maximum Use Temperature ℃ 1100 1100 —
Heat-resistant Impact Temperature ℃ 400 200 350
Main Features — High Strength
High Toughness
High Impact Strength
High Impact Strength
Abrasion Resistance
High Toughness
Wear Resistance
High Toughness
Main Uses — Industrial Cutting Tools
Wear-Resistant Components
Structural Components
Wear-Resistant Components
Structural Components
Wear-Resistant Components
Structural Components

Material Characteristics Comparision Table

Thermal Expansion

Thermal Expansion

Thermal Conductivity

Thermal Conductivity

Heat Shock Resistance

Heat Shock Resistance

Compresslve Strength

Compresslve Strength

Young s Modulus of Elasticty

Young's Modulus of Elasticty

Max use TemperatureIn Atmosphere

Max.use TemperatureIn Atmosphere

Hardness

Hardness

Chemical Durability

Chemical Durability

Flesural Strength UnderDifferent Temperature

Flesural Strength UnderDifferent Temperature