Features
1.Reliable Sealing & Corrosion-Resistant Design: The valve core utilizes a bronze alloy material (bronze core), offering excellent wear and corrosion resistance, and is tightly integrated with the cast iron valve body. The sealing pair is precision-machined and matched to ensure long-term, reliable, and tight sealing with media such as water, steam, and oil, effectively preventing leakage.
2.Compact Structure & Convenient Connection: Features an internal thread connection, requiring no additional flanges or fittings. It can be directly screwed into the pipeline system, enabling simple and quick installation. Particularly suitable for piping layouts where space is limited and a lightweight, compact structure is required.
3.Easy Operation & Reliable Opening/Closing: The valve is typically handwheel-operated with an ergonomic design, requiring low operating torque. The valve stem transmission is smooth, and the disc's lifting trajectory is accurate, ensuring smooth opening/closing operations and reliable shut-off functionality. Suitable for applications requiring frequent operation.
4.Cost-Effective Durability & Easy Maintenance: The valve body is made of cast iron, providing high strength at an economical cost. The bronze core disc extends the service life of the sealing surfaces. The overall simple structure allows for easy disassembly and maintenance, with low daily upkeep requirements, effectively reducing long-term usage and maintenance costs.
5.Strong Versatility & Wide Media Compatibility: Suitable for various common media including water, steam, and non-corrosive oils at a nominal pressure of PN16 or lower. Widely used in civil buildings, water supply and drainage systems, HVAC systems, and general industrial pipelines, meeting standard shut-off and flow regulation needs.
6.Clear Flow Direction & Optimized Flow Resistance: The valve is typically designed with a low-inlet, high-outlet flow direction, reducing the impact of upstream pressure on operating force. The medium flow path is optimized to minimize flow resistance while ensuring functionality, thereby improving system energy efficiency.