Zirconia Ceramic Components from China Factory – Durable and Chemical-Resistant Suppliers for Medical and Industrial Applications
Excellent mechanical property
Through phase change toughening technology, the fracture toughness can reach 8–10 MPa·m¹/², with excellent impact resistance;
Mohs hardness ≥ 8.5, and wear resistance is over 15 times that of stainless steel, making it suitable for high-frequency friction scenarios;
high bending strength: can reach ≥ 1200 MPa, with compressive strength ≥ 2.0 GPa.
Critical environment stability
The long-term operating temperature ranges from 800 to 1400°C (depending on the type of stabilizer), with a high strength retention rate at elevated temperatures;
It exhibits chemical inertness, resisting strong acids (except for hydrofluoric acid), strong bases, and organic solvents, and shows no corrosion in biological fluids and high-temperature steam;
With low thermal conductivity, it is suitable for insulation components, thereby reducing thermal transfer losses.
Electromagnetism and Special Properties
High insulation properties, with a room temperature resistivity of ≥10¹⁰ Ω·cm, suitable for electronic insulation components;
Also possesses ionic conductivity with oxygen ion conductivity at high temperatures, used as an electrolyte in solid oxide fuel cells.
Frequently Asked Questions
What is the fracture toughness and impact resistance of this material?
Through phase change toughening technology, the fracture toughness of this material can reach 8–10 MPa·m¹/², providing excellent impact resistance.
How wear-resistant is this material compared to stainless steel?
It features a Mohs hardness of ≥ 8.5, and its wear resistance is over 15 times that of stainless steel, making it ideal for high-frequency friction scenarios.
What are the bending and compressive strength limits of the material?
The material exhibits a high bending strength of ≥ 1200 MPa and a compressive strength of ≥ 2.0 GPa.
What is the maximum operating temperature range?
The long-term operating temperature ranges from 800 to 1400°C (depending on the type of stabilizer), maintaining a high strength retention rate at elevated temperatures.
Does this material resist chemical corrosion?
Yes, it exhibits chemical inertness, resisting strong acids (except for hydrofluoric acid), strong bases, and organic solvents. It shows no corrosion in biological fluids and high-temperature steam.
What are its electrical and special properties?
It features high insulation properties with a room temperature resistivity of ≥10¹⁰ Ω·cm, suitable for electronic insulation. It also possesses ionic conductivity with oxygen ion conductivity at high temperatures, allowing it to be used as an electrolyte in solid oxide fuel cells.




