Quality management system certification document.

Quality management system certification document.
Selecting the right ball valve for high-pressure applications is critical for system safety, reliability, and long-term performance. This comprehensive guide will walk you through the essential factors to consider when making this important decision.
High-pressure applications, typically defined as systems operating above 600 PSI, require specialized ball valve designs to handle the increased mechanical stresses and ensure reliable sealing. The selection process involves careful consideration of multiple factors including valve design, materials, and operational requirements.
At YHK VALVE, I’ve seen many installations fail due to improper valve selection. The cost of valve failure in high-pressure systems extends far beyond replacement costs – it includes downtime, safety risks, and potential environmental impact.
The fundamental decision in high-pressure ball valve selection is choosing between trunnion mounted and floating ball designs. This choice significantly impacts valve performance, operating torque, and maintenance requirements.
Floating ball valves work by allowing the ball to move slightly downstream under pressure, creating a tight seal against the downstream seat. While effective for many applications, they have limitations in high-pressure service:
Trunnion mounted designs use a fixed ball supported by bearings at the top and bottom. The seats move to create the seal, offering several advantages for high-pressure applications:
– Dr. Zhang Wei, Senior Valve Engineer, YHK VALVE
“In my 15 years of valve engineering experience, I’ve found that trunnion mounted ball valves consistently outperform floating ball designs in high-pressure applications above 1000 PSI. The investment in trunnion design pays off through reduced maintenance and increased reliability.”
Learn how YHK VALVE supplied critical 48″ ball valves for a major pipeline project. Challenges overcome, solutions implemented, and project outcomes.