Our company manufactures high-performance Carbon Seals for Steam Rotary Joints, engineered for efficient sealing in high-temperature and high-pressure steam environments. These products are used in diverse industrial applications such as paper manufacturing, textile processing, plastics, rubber, chemical, and food industries. Designed for durability and consistent sealing performance, these carbon seals enhance operational safety and efficiency in rotary systems.
Our carbon seals are available in a wide range of diameters and thicknesses to fit various rotary joint configurations. Standard and custom sizes can be manufactured to meet the exact dimensions of the client's equipment, including single and double rotary joint systems.
Built to withstand extreme steam temperatures and rotational pressures, our carbon seals maintain structural integrity and sealing performance over long operational cycles. They handle high RPMs and steam pressures up to 150 PSI, ensuring low leakage and reduced maintenance.
Carbon seals are supplied with precision-machined surfaces, ready for direct installation into rotary joints. Installation involves aligning the carbon ring with the mating surface, ensuring flush contact, and securing it with recommended torque values. Detailed installation guides are provided with each order.
Our carbon seals are compatible with a wide range of rotary joints, including single-flow, dual-flow, and self-supporting types. They work effectively with steam, thermal oil, and other heating media used in rotating drum or cylinder applications.
Routine inspection for wear, surface cracks, and dimensional changes is advised. Cleaning the mating surfaces and ensuring no debris or buildup is present before each installation helps prolong the lifespan. Our carbon seals are designed for easy replacement and minimal maintenance.
These seals reduce the risk of steam leakage, equipment overheating, and operational hazards. Their self-lubricating nature prevents friction-induced damage, while thermal stability ensures safe performance under continuous load.