Electric three-way ball valve
The Electric Three-Way Ball Valve is a high-performance automated valve designed for efficient flow switching, mixing, and distribution control in industrial pipeline systems. It combines a precision-engineered three-way ball valve structure with an electric actuator, providing reliable operation, accurate flow direction control, and excellent sealing performance.
With its L-port or T-port ball design, the valve can achieve multiple flow control functions, including media diversion, mixing, switching, and shut-off. The electric actuator enables remote automatic operation and easy integration with PLC, DCS, and industrial automation systems.
Designed for applications requiring flexible pipeline control, the Electric Three-Way Ball Valve offers low operating torque, compact structure, long service life, and stable performance under demanding industrial conditions. It is widely used in industries requiring automated flow switching, process control, and reliable media management.
Electric three-way ball valve
We provide professional OEM manufacturing and customized solutions according to customer requirements, including:
Our Electric Three-Way Ball Valves are manufactured under strict quality management systems and comply with international valve industry standards, including:
Parameter Specifications
| Parameter | Specification |
|---|---|
| Product Name | Electric Three-Way Ball Valve |
| Valve Type | Three-Way Ball Valve with Electric Actuator |
| Valve Structure | L-Port / T-Port Ball Design |
| Flow Function | Switching / Mixing / Diverting |
| Nominal Size | DN15 – DN300 (Customized Available) |
| Pressure Rating | PN10 – PN420 / Class 150 – Class 2500 |
| Connection Type | Flanged, Threaded, Socket Weld, Butt Weld |
| Valve Body Material | Stainless Steel, Carbon Steel, Alloy Steel, Duplex Steel |
| Ball Material | Stainless Steel / Alloy Materials |
| Stem Material | Stainless Steel / Special Alloy |
| Seat Material | PTFE, RPTFE, PEEK, Metal Seat, Graphite |
| Actuator Type | Electric Actuator |
| Operation Mode | On-Off Control / Modulating Control |
| Power Supply | AC220V / AC380V / DC24V (Customized Available) |
| Control Method | PLC / DCS / Remote Control |
| Operating Temperature | -196°C to +500°C (Depending on Materials) |
| Applicable Media | Water, Oil, Gas, Steam, Chemical Fluids, Slurry |
| Leakage Class | ANSI Class V / VI / Bubble Tight Shut-off |
| Flow Direction | L-Port / T-Port Customized |
| Design Standard | ASME B16.34 / API 6D / API 608 |
| Pressure Test Standard | API 598 / EN 12266 |
| Flange Standard | ANSI B16.5, EN1092, JIS, GB/T |
| Anti-Static Design | Available |
| Blowout Proof Stem | Available |
| Fire Safe Design | Optional |
| Explosion-Proof Actuator | Optional |
| Communication Interface | Modbus / Profibus / HART / Fieldbus Optional |
| Manual Override | Available |
| Corrosion Protection | Coating / Special Surface Treatment |
| Certification | ISO, API, CE, ATEX, IECEx, SIL, Fire Safe |
| OEM Service | Available |
Industry Applications
✔ Flexible flow switching and mixing capability
✔ L-port and T-port configuration options
✔ Electric remote automation control
✔ Excellent sealing performance
✔ Low operating torque
✔ Compact and reliable structure
✔ Suitable for complex pipeline systems
✔ Wide range of material selections
✔ Intelligent control system integration
✔ Full OEM customization capability
Material customization plan
Customized 316L stainless steel valves forGerman chemical enterprises. Resistant tostrong corrosion, suitable for their acidicmedium transportation systems, with aservice life extended to over 8 years.
Structural optimization design
For the Saudi desert project, the valve stemsealing structure was changed to a doublebellows design to address the leakage issuein the high-temperature and dustyenvironment, and it was highly recognizedby the customers.
Interface standard adaptation
Customized API 600 standard valves for acertain company in the United States. Theflange size is fully compatible with ANSIB16.5, ensuring zero error during on-siteinstallation and reducing the constructionperiod by 30%.
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