Customization: | Available |
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Media: | Sulfuric Acid |
Working Temperature: | -29°c to 150°c |
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Nominal Diameter: 15-100mm
Nominal Pressure: 1.0-6.4MPa
Suitable Temperature: -29°C ~ 150°C
Suitable Medium: Water, steam, oil, and gas
Body Material: Stainless steel, WCB (carbon steel), or optional alloys
Sealing Material: PTFE, RPTFE, or other high-performance soft seals
Connection Type: Female threaded (NPT/BSPT)
Actuation Type: Pneumatic actuator (double-acting or single-acting)
Structure Type: Three-way, L-port or T-port internal flow path
Design Standard: ANSI, DIN, GB/T, ISO
Operation Pressure: Compatible with compressed air 4-7 bar
Leakage Class: ANSI B16.104 Class VI
Control Options: Solenoid valve, limit switch, positioner optional
Surface Treatment: Polished or sandblasted
The Q61F pneumatic threaded tee ball valve is engineered for automatic flow switching and control in pipelines where media direction must be redirected among multiple outlets. The three-way design, combined with L-port or T-port internal structure, allows for effective media diversion, mixing, or shut-off in complex piping systems. Its compact threaded connection provides excellent sealing performance and makes it suitable for small-scale and medium-scale industrial applications.
The Q61F Pneumatic Threaded Tee Ball Valve is a high-performance solution ideal for use in automated fluid control systems requiring directional flow switching, especially in compact pipelines where flanged installations are not suitable. With its three-way configuration, the valve offers two common internal flow path options: L-port (for diverting flow between two ports) and T-port (for mixing or distributing flow to two or more ports simultaneously).
This type of valve is widely adopted in a broad spectrum of industries due to its automation capability and flexible routing. Powered by a pneumatic actuator, it provides rapid open/close operations and ensures consistent flow control without manual intervention. It also allows for remote operation, improving operational safety and system efficiency, particularly in inaccessible or hazardous environments.
Oil & Gas Pipelines:
In upstream and midstream operations, the Q61F valve helps route oil or natural gas between storage tanks, filtration systems, and refining equipment. It facilitates safe switching between different processing lines or bypass loops during maintenance.
Steam Distribution Networks:
In heating or process steam systems, the valve can direct high-temperature steam to various branches, shut off unnecessary lines, or alternate between primary and backup heat exchangers.
Water Treatment Plants:
This valve supports the mixing of treated and raw water flows, directing water to filtration units or chemical dosing lines, and isolating sections during cleaning and maintenance.
Chemical and Pharmaceutical Plants:
Due to its corrosion-resistant materials and high-pressure capability, it is ideal for dosing systems, solvent distribution, and batch mixing where precise control of flow direction is required.
Food & Beverage Industry:
With the use of sanitary-grade stainless steel, this valve can be installed in beverage pipelines, dairy systems, and brewing equipment to direct liquids to bottling, mixing, or CIP (Clean-In-Place) systems.
HVAC Systems and Compressed Air Networks:
In air distribution systems, it ensures alternate line switching, pressure relief paths, or rerouting in building automation setups.
The threaded design provides easy installation in confined areas, making the Q61F especially popular in retrofitting or compact systems where flanged valves are too large or costly to install. Its sealing reliability prevents leakage even under high-cycle operations, and the modular design allows for integration with solenoid valves, limit switches, or positioners, enabling flexible PLC or DCS-based control.
Furthermore, it is suitable for both liquid and gas media, including but not limited to water, steam, compressed air, petroleum, chemical solvents, and inert gases. Its robust construction and soft-seal combination ensure long-term service life, even under challenging conditions involving frequent switching and high-pressure flow.