The innovative technological engine in the field of fluid control

Advanced ceramics, with their unique properties such as high-temperature resistance, corrosion resistance, high hardness, low friction coefficient, and excellent chemical stability, are gradually becoming key materials in the fluid control field. From industrial fluid transportation systems to aerospace fluid control devices, from precision instruments and meters to microfluidic chips, advanced ceramics, with their reliable, efficient, and precise performance, provide strong support for the upgrading and innovation of fluid control technology.

Industrial Fluid Control Valves

In industries such as oil, chemical, and power, fluid control valves are crucial for ensuring the safe and stable operation of production processes. Advanced ceramic materials are widely used in the manufacturing of core components of valves such as seals, seats, and discs. For instance, valves seals made of alumina ceramics and silicon carbide ceramics can achieve reliable sealing in high-temperature, high-pressure, and highly corrosive conditions, effectively preventing fluid leakage and extending the service life and reliability of valves. Compared with traditional metal valves, ceramic valves have better corrosion resistance and wear resistance, significantly reducing maintenance costs and downtime, and improving production efficiency.

Microfluidic chips and biomedical fluid control

Microfluidic chips are a technological platform for precisely manipulating and analyzing fluids at the micrometer scale, widely used in fields such as biomedicine, chemical analysis, and environmental monitoring. Advanced ceramic materials, due to their excellent biocompatibility, chemical stability, and processability, have become one of the ideal materials for manufacturing microfluidic chips. For instance, alumina ceramics and glass ceramics can be used to fabricate the substrates and channels of microfluidic chips. Through processes such as photolithography and etching, micrometer-scale channel structures can be precisely fabricated, enabling the precise control and detection of minute fluids such as biological samples and chemical reagents. In the biomedical field, ceramic microfluidic chips can be used for cell separation, drug screening, and genetic analysis, providing powerful tools for biomedical research and clinical diagnosis.

Aerospace fluid control systems

The aerospace industry has extremely strict requirements for the performance of fluid control systems, demanding materials with high-temperature resistance, high-pressure resistance, and lightweight properties. Advanced ceramics, with their outstanding performance, have been widely applied in aerospace fluid control systems. For instance, in the fuel control system of aircraft engines, ceramic nozzles can achieve precise fuel injection control, enhancing the combustion efficiency and performance of the engine. In the propulsion systems of spacecraft, ceramic valves and pipes can withstand extreme environmental conditions, ensuring the reliable transportation and control of propellants. Additionally, advanced ceramics can also be used to manufacture sensors and actuators in the aerospace field, providing support for the intelligence and automation of fluid control systems.

Precision instruments and meters for fluid control

In the field of precision instruments and meters, such as optical instruments, analytical instruments, and semiconductor manufacturing equipment, the requirements for the accuracy and stability of fluid control are extremely high. Advanced ceramic materials can be used to manufacture high-precision fluid control components, such as flow meters, pressure sensors, and regulating valves. For instance, a pressure sensor made of zirconia ceramic has high sensitivity, high precision, and good stability, and can accurately measure fluid pressure in harsh environments; a ceramic flow meter has the advantages of corrosion resistance, wear resistance, and high measurement accuracy, and is suitable for the flow measurement of various industrial fluids and chemical reagents.

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We have a wide range of technologies such as material technology, process technology, design technology, measurement/evaluation technology, and integrated processes from materials to products in-house, so we can respond to various customizations. Please feel free to contact us first.
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