Precision Ceramic Plunger/Rod Product
Including advanced ceramic materials such as zirconia, alumina, silicon nitride, and aluminum nitride, precision ceramic plungers are recognized for their excellent wear resistance, corrosion resistance, and high temperature performance, playing a crucial role in hydraulic, pneumatic, and other systems. Whether you need seals that can operate reliably in harsh environments for extended periods or precision and wear-resistant components, we offer a variety of specifications and materials to meet your engineering needs. We are committed to providing customers with reliable, high-performance precision ceramic plunger products.
By material

High Precision 95% 96% 99% Alumina Ceramic Piston Pump
Our alumina ceramic plungers are manufactured with high-purity alumina oxide, offering outstanding hardness, wear resistance, and corrosion protection. They are ideal for high-pressure and precision pump systems, ensuring stable performance and extended service life.
As a leading ceramic component manufacturer, we provide customized ceramic plungers to meet various industrial applications, ensuring superior sealing and durability even under extreme conditions.

High Precision ZrO2 Zirconia Ceramic Piston
We specialize in providing zirconium oxide (ZrO₂) ceramic plungers, which are made of high-purity materials and precision processes. They have ultra-high hardness, chemical corrosion resistance and high-temperature stability. They are widely used in medical pumps, high-pressure cleaning machines, chemical equipment and other fields. Customized sizes and surface treatments are available, and the service life is more than 3 times that of metal plungers!

Corrosion-resistant Alumina Ceramic Rotor Shaft
Corrosion-resistant Alumina Ceramic Rotor Shaft, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

High Precision Alumina Ceramic Components for Industrial Applications
High Precision Alumina Ceramic Components for Industrial Applications, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

Customize Alumina Structural Parts Processing 99.5/99.7 Ceramic Manufacturer
Alumina Structural Parts Processing 99.5/99.7 Ceramic Manufacturer, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

99% Alumina Ceramic Protection Tubes
99% Alumina Ceramic Protection Tubes, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

99% 99.5% Al2O3 Alumina Ceramic Polished Rods
99% 99.5% Al2O3 Alumina Ceramic Polished Rods, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

Mirror Polish Custom Zirconia Ceramic Rod
Mirror Polish Custom Zirconia Ceramic Rod ,also used in food filling as metering pump components. These precision-engineered units offer precise fluid control with high hardness and strength, ensuring stable performance and longevity under demanding conditions of pressure and flow.

High Precision Yellow Zirconia Industrial Ceramic Threaded Rod
High Precision Yellow Zirconia Industrial Ceramic Threaded Rod ,also used in food filling as metering pump components. These precision-engineered units offer precise fluid control with high hardness and strength, ensuring stable performance and longevity under demanding conditions of pressure and flow.
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