When analyzing a Kogelklep met draaipunt, the defining feature is the mechanical anchoring system. The ball is securely held in place by trunnions (shafts) at both the top and bottom. This design constraint prevents the ball from displacing axially (moving up or down/sideways) under high line pressure. Instead of the ball pressing against the seat (as in floating valves), the line pressure forces the spring-loaded seats against the ball. This architecture significantly enhances stability and sealing integrity in High-Pressure Applications.
Energie-efficiëntie: Because the trunnion supports the pressure load, the operating torque is substantially lower. This allows for the use of smaller, more cost-effective actuators, reducing overall energy consumption.
| Aspect | Beschrijving |
|---|---|
| Koppelvereiste | Significantly reduced operating torque minimizes actuator size and energy usage. |
| Service Life Extension | Reduced friction on the seats translates to less wear and extended operational lifespan. |
This design minimizes seat wear, ensuring the valve maintains its performance integrity even under extreme pressure differentials (-196°C to +450°C), distinguishing the trunnion design as the superior choice for critical infrastructure.
Trunnion Type Ball Valve Basics
Key Features and Operation
De Kogelklep met draaipunt is engineered for robustness. Its core assembly includes the ball, stem, independent spring-loaded seats, body, and the critical trunnion anchors. These anchors absorb the thrust from the line pressure, preventing it from being transmitted to the seats. This “fixed ball” concept ensures low friction operation.
- Load Absorption: Trunnion-mounted stems absorb line pressure thrust.
- Lage wrijving: The design minimizes friction between the ball and seats.
- Laag koppel: Operability remains smooth even at maximum pressure ratings.
For industries like Oil & Gas requiring Hermetisch afgesloten, companies rely on JH-klep‘s trunnion designs. Our valves are manufactured to meet the most stringent international standards:
| Standard/Certification | Beschrijving |
|---|---|
| API 6D | Specification for Pipeline and Piping Valves (Oil & Gas). |
| API 608 | Metal Ball Valves for Flanged, Threaded, and Welding End. |
| API 607 | Fire Test for Quarter-turn Valves with Soft Seats. |
| ISO 17292 | Metal Ball Valves for Petroleum and Petrochemical Industries. |
| ISO 5211 | Dimensions for Attachment of Part-Turn Actuators. |
| ASME B16.34 | Valves – Flanged, Threaded, and Welding End (Pressure/Temp ratings). |
Anchor Function in Trunnion Type Ball Valve
The “anchor” (trunnion) is the pivotal component. The ball is mechanically connected to the stem at the top and a trunnion shaft at the bottom. This fixation ensures the ball rotates on a precise axis without lateral movement. Consequently, the valve provides a verifiable seal (Double Block and Bleed) and requires minimal force to actuate, making it highly dependable for automated systems.
Tip: For high-pressure applications requiring precise flow control and long-term reliability, specify a JH-klep Trunnion Type Ball Valve. The anchored design is synonymous with safety.
Trunnion Anatomy and Support
Structure and Placement
In a Trunnion Type Ball Valve, mechanical anchors (trunnions) are located at the vertical axis of the ball. These shafts rigidly support the ball, preventing “floating” downstream. This fixed structure allows the upstream and downstream seats to move independently against the ball to form a seal. This configuration is standard for Vaste kogelkranen in large-diameter pipelines.
| component | Beschrijving |
|---|---|
| Tap | Upper and lower shafts that anchor the ball, providing structural stability. |
| Bal | A sphere with a flow passage, fixed in position to facilitate rotation under load. |
| Seat Rings | Spring-energized rings that press against the ball surface to maintain sealing. |
| Ontwerpkenmerken | Optimized for high-pressure classes (ANSI 600+) and large bores (>4″). |
Dual Anchor Design
The dual-anchor system distributes the mechanical stress evenly. Instead of the seat absorbing the full force of the line pressure (as in floating valves), the trunnion bearings take the load. This results in:
- Lower Actuation Torque: Reducing the cost and size of automation.
- Minimized Wear: Less friction on the seats prevents premature degradation.
- Consistent Sealing: Reliable performance even under pressure fluctuations.
Anchor Importance in Performance
Pressure Handling and Sealing
For applications demanding zero leakage at high pressures, the trunnion design is non-negotiable. The anchors ensure the ball maintains perfect alignment, allowing the spring-loaded seats to maintain contact pressure. This “floating seat” design provides effective sealing at both low and high pressures.
JH-klep trunnion valves are engineered to handle pressure ranges from 150 psi to 2500 psi, ensuring system safety in the most demanding environments.
Longevity and Reliability
Longevity is a direct result of the trunnion architecture. By decoupling the sealing force from the pressure load, the valve components experience significantly less fatigue.
- Extended Lifecycle: Trunnion valves typically outlast floating valves by years in high-pressure service.
- Maintenance Intervals: High-quality trunnion valves can operate for decades with proper maintenance.
- Severe Service: Metal-seated trunnion valves are essential for abrasive or high-temperature media.
Draaipunt- versus zwevende kogelkranen
Support and Movement Differences
The distinction lies in the ball’s freedom of movement. In a Vlottende kogelklep, the ball is free to move laterally, pushed by the fluid into the downstream seat to seal. In a Draaipunt kogelklep, the ball is mechanically constrained, and the seats move to the ball.
| Functie | Vlotterkogelkranen | Kogelkranen met draaipuntbevestiging |
|---|---|---|
| Balsteun | Supported by seats; floats downstream. | Anchored by stem and trunnion. |
| Stability | Pressure-dependent sealing; less stable at high pressure. | Mechanically stable; ideal for high pressure. |
| Complexiteit | Simple design; economical. | Complex design; higher performance. |
Advantages of Trunnion Design
Trunnion valves offer distinct operational advantages, particularly for larger sizes and critical applications.
| Functie | Vlottende kogelklep | Draaipunt kogelklep |
|---|---|---|
| Koppel | High (increases with pressure) | Low (bearing supported) |
| Maatbereik | Typically < 6 inches | Standard for > 6 inches |
| Veiligheid | Standaard | Double Block & Bleed capable |
Practical Benefits and Applications
Reduced Wear and Maintenance
Trunnion valves are designed for durability. The anchored ball prevents uneven wear on the seats. Additionally, features like Emergency Sealant Injection ports allow for temporary sealing in emergencies, keeping the plant running until scheduled maintenance.
Tip: For critical safety systems like firewater mains, the reliability of a JH Valve Trunnion Ball Valve ensures readiness when it matters most.
High-Pressure Suitability
Trunnion valves are the industry standard for high-pressure sectors:
- Olie en gas: Pipeline transmission, wellheads, and manifolds.
- Petrochemicals: High-pressure reactors and distribution lines.
- Power Generation: High-pressure steam and gas isolation.
Key safety features include:
- Dubbelzuigereffect (DPE): Self-relieving seats or double isolation.
- Antistatisch apparaat: Prevents electrostatic buildup.
- Uitstootbestendige stuurpen: Ensures stem retention under pressure.
- Brandveilig ontwerp: Tested to API 607 for performance during a fire.
The trunnion anchor mechanism is the defining feature that elevates this valve type above standard floating designs. By ensuring stability, lowering torque, and enabling high-pressure sealing, JH-klep Trunnion Ball Valves provide the reliability needed for severe service applications. While the initial investment is higher, the long-term value in reduced maintenance and operational safety makes it the preferred choice.
| Ventieltype | Initiële kosten | Onderhoudskosten | Total Value |
|---|---|---|---|
| Vlottende kogelklep | Laag | Higher (seat replacement) | Best for utilities |
| Draaipunt kogelklep | Hoger | Lower (durable components) | Best for critical process |
Need Reliable High-Pressure Valves?
JH Valve manufactures API 6D Trunnion Ball Valves designed for the world’s toughest environments. Contact us for a technical consultation.
Veelgestelde vragen
What makes a trunnion type ball valve different from a floating ball valve?
The primary difference is the mechanical anchoring. A Trunnion Valve uses a shaft to hold the ball in a fixed position, whereas a Floating Valve allows the ball to move downstream under pressure to create a seal.
Can you use trunnion type ball valves for both gas and liquid?
Yes. Trunnion valves are excellent for both gas and liquid applications. Their spring-loaded seats provide a positive seal even at low pressures (where floating valves might leak), making them ideal for gas transmission.
How do you know when to choose a trunnion type ball valve?
Specify a Trunnion Ball Valve if your application involves Hoge druk (Class 600+), Large Diameters (>4 inches), requires Low Torque actuation, or demands Dubbele blokkering en bloeding functionality.
Do trunnion type ball valves need a lot of maintenance?
No. Due to the reduced friction and wear on the seats, Trunnion valves typically require less maintenance than floating valves. Features like sealant injection allow for simple in-line servicing if minor leaks occur.

