feature
1. Sturdy structure and strong applicability: adopting flange connection, the valve body structure is relatively stable, which can better withstand pipeline stress and slight vibration, suitable for gas pipeline systems such as ventilation, dust removal, and environmental control.
2. Flexible opening and closing, good adjustment performance: the butterfly plate can be quickly opened and closed by rotating 90 °, and the operation is simple. By controlling the opening of the butterfly plate, it is easy to adjust the gas flow rate linearly or approximately linearly.
3. Low fluid resistance: When fully open, the thickness of the butterfly plate is the main resistance of the medium flow channel, and the shape of the channel is approximately circular, so it has less obstruction to gas flow and lower pressure drop, which is conducive to energy conservation.
4. There are various forms of sealing: usually using metal (such as stainless steel) sealing or non sealed design. For ventilation environments with lower requirements, non sealed structures can be used to reduce costs; For situations that require a certain degree of sealing, specially designed metal seals or soft hard composite sealing structures can be used.
5. Relatively easy to maintain and wear-resistant: The valve structure is relatively simple, and key components such as valve stem and bearing seat are easy to maintain and replace. Its sealing structure design (especially metal sealing) usually has good wear resistance and erosion resistance, and is suitable for gas media containing dust or particles.
6. Specialized use: Designed specifically for the flow control of gas media such as air, flue gas, coal gas, dusty gases, etc. The valve body material is often carbon steel, stainless steel, etc. The butterfly plate can be made of carbon steel, stainless steel, or coated with wear-resistant and corrosion-resistant coatings, and is widely used in ventilation and environmental protection systems in industries such as metallurgy, building materials, chemical engineering, and power.