What ‘s the advantage of ZTA toughened wear resistant ceramics
ZTA toughed ceramic is a new material with excellent performance and wide application prospects. ZTA, also known as alumina-zirconia composite phase ceramic, is a composite material composed of two ceramic phases, alumina and zirconia. It is a multi-phase ceramic with excellent chemical stability, thermal stability and high strength. It inherits the high hardness of alumina ceramics and the high toughness of zirconia ceramics, and has excellent wear resistance, high temperature stability and toughness.
1. Anti-wear performance:
ZTA toughed ceramics have excellent wear resistance. It has high hardness and can maintain good wear resistance under harsh conditions such as high speed and high pressure. This makes ZTA tough ceramics widely used in high-speed friction, motorcycle brake pads and other fields.
2. High temperature stability:
ZTA toughed ceramics have a high melting point and good high temperature stability. In high temperature environments, it can maintain its original strength and hardness and is not easily deformed and ablated. Therefore, ZTA tough ceramics are widely used in high-temperature equipment, heat treatment processes and other fields.
3.Strong characteristics:
The uniqueness of ZTA toughed ceramics is that it has both high hardness and high toughness. Traditional ceramic materials often exhibit high hardness but low toughness, while ZTA toughness ceramics achieve a balance in this aspect.
This characteristic makes ZTA toughed ceramic an excellent structural material suitable for impact resistance, bulletproof and other fields.
Alumina has high hardness and zirconia has good toughness. ZTA ceramics, a high-strength and high-toughness composite prepared by combining the two materials, can be used in the production of ceramic cutting tools to process cast iron and alloys; It is used to make the interface structure of engineering ceramics to extend the service life of engineering materials; it is used to make wear-resistant ceramic balls; relying on the excellent biocompatibility of alumina ceramic materials, it can be made into biomedical materials and applied to hard tissues of the body ( such as the reconstruction and repair of teeth
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