Brief: Get a guided demo that shows common workflows and troubleshooting tips for the Silicon Carbide Ceramic Sleeve Assembly. This video provides a detailed walkthrough of its unique multi-hole design, precision manufacturing process, and real-world applications in high-temperature pump seals, semiconductor handling, and chemical equipment. Learn how its exceptional wear and corrosion resistance ensures reliable performance in extreme industrial environments.
Related Product Features:
Exceptional wear resistance with a hardness up to 2800HV, offering 10 times the durability of steel.
Excellent thermal conductivity of 150W/m*K for rapid heat dissipation and prevention of thermal deformation.
High temperature resistance, enabling stable operation in environments up to 1600°C.
Superior corrosion resistance against acids and alkalis, suitable for harsh working conditions.
Low friction coefficient of 0.1 for smooth operation and energy efficiency.
Good insulation properties with a volume resistivity greater than 10¹³Ω*cm.
Lightweight design with a density of only 3.1g/cm³, reducing equipment load.
Precision-engineered with a multi-hole distribution for optimized fluid passage and structural strength.
FAQs:
What are the advantages of silicon carbide ceramic sleeves compared to zirconia ceramics?
Silicon carbide offers better thermal conductivity and higher temperature resistance, making it more suitable for high-temperature heat conduction applications.
Do you support custom non-standard sizes for the sleeve assembly?
Yes, we support customization of various sizes and hole patterns according to specific customer requirements.
How is the assembly fit tolerance guaranteed during manufacturing?
Using precision machining processes, the assembly fit tolerance can reach IT5 grade, ensuring high accuracy and reliability.
What is the expected service life in strong acid environments?
The sleeve assembly can guarantee a service life of over 10,000 hours within a pH range of 2 to 12, thanks to its excellent corrosion resistance.