Cerámica de circonio estabilizada con magnesio (MSZ)
- Descripción
- Consulta
As an advanced ceramic material, magnesium-stabilized zirconia ceramic (MSZ) has the characteristics of high melting point, alta dureza, excelente resistencia al desgaste, alta tenacidad, good thermal stability, corrosion resistance and high strength. It has wide application prospects in the fields of aerospace, energy, Equipo medico, and electronics, providing new possibilities for the development of modern science and technology.
Basic characteristics of zirconia ceramics
Bola de rodamiento de cerámica de circonio is a ceramic material with high melting point, alta dureza, and excellent wear resistance. It has the following basic characteristics:
1) Alto punto de fusión: The melting point of zirconia ceramic is as high as 2700°C, giving it excellent stability in high temperature environments.
2) alta dureza: Zirconia ceramic has extremely high hardness and can resist scratches and wear, maintaining its long-term stability.
3) Excelente resistencia al desgaste.: Zirconia ceramic has excellent wear resistance, allowing it to perform well in various harsh environments.
- Advantages of Magnesium Stabilized Zirconia Ceramics (MSZ)
Magnesium-stabilized zirconia ceramics (MSZ) are based on zirconia ceramics, and their performance is further improved by adding an appropriate amount of magnesium stabilizer. Magnesium stabilized zirconia ceramics (MSZ) have the following advantages:
- Alta tenacidad
- Good thermal stability
- Excelente resistencia a la corrosión.
- Alta resistencia
- Application of magnesium-stabilized zirconia ceramics (MSZ) in the field of modern science and technology
The following are the applications of magnesium stabilized zirconia ceramics (MSZ) in different fields:
1) Aeroespacial
2) Energy
3) Medical devices
4) Electrónica
- Materials Propertiesof magnesium-stabilized zirconia ceramics (MSZ)
Bola de rodamiento de cerámica de circonio | Propiedades | Bola de rodamiento de cerámica de circonio | Valor |
Color | Marfil / Gray-White | ||
Propiedades mecánicas | Densidad | g/cm3 | 5.70-5.75 |
Dureza de Vickers | promedio general | 11-12 | |
Three point bending strength | Mpa | 500 | |
Fracture toughness KIC | Mpa•m1/2 | 6-10 | |
Propiedades termales | Conductividad térmica | W/mK | 2-3 |
Coeficiente de expansión térmica | 1×106/℃ | 10 | |
Thermal shock temperature | ℃ | 350 | |
Maximum operating temperature | ℃ | 1000 |