Orbital Ball Valve

The valve is suitable for use in petrochemical industry, liquefied petroleum gas storage, refinery, natural gas, compressor system, oil and gas transportation pipeline, light industry, textile and other industries.

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Orbital Ball Valve

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The valve is suitable for use in petrochemical industry, liquefied petroleum gas storage, refinery, natural gas, compressor system, oil and gas transportation pipeline, light industry, textile and other industries.

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  • Description
  • Specifications
  • Applications

The valve is suitable for use in petrochemical industry, liquefied petroleum gas storage, refinery, natural gas, compressor system, oil and gas transportation pipeline, light industry, textile and other industries.

1. Top Entry Structure

The valve adopts the top entry structure. The most distinctive difference between this kind of valve and
others is that the online maintenance function can be realized without the need of removing the valve
from the pipeline.

2. Integral Structure

The body adopts the integral structure, so as to ensure that it has enough strength and rigidity under the
maximum rated working pressure. The valve trims have been carefully designed and selected to ensure
reliability under various service conditions. The sufficient wall thickness and the connections bolts of high
strength are very helpful to the maintenance and servicing of valves and are able to endure pipeline
stress.

3. Lower Torque Operation

The stem structure is specially designed and there is no friction between seat and ball sealing faces.
Therefore the stem can turn easily with low opening and closing torque.


1. Opening of Orbit Ball Valve
When it is the closed position, the ball is closely pressed onto the seat under the mechanical pressure of stem. When the handwheel is turned counterclockwise, the stem will move upward, and the angular plane at the bottom of stem will make the ball sealing face leave the seat. The stem will continue rising and interact with the guide pin in the stem spiral groove to make the ball turn 90° it out friction until the stem rises to the ultimate position and the ball hole is aligned with the valve channel.
2. Closing of Ball Valve
During the closing, turn the handwheel clockwise, the stem will move downward and make the ball start rotation. Continue turning the handwheel, and the stem will make the stem and ball turn 90° together under the action of guide pin in the spiral groove embedded in the stem. When it is nearly closed, the ball has turned 90° without contact with the seat. The stem will continue moving downward, the ball sways to press the seat so as to make the sealing face in the seat produce elastic deformation and closely fit the ball sealing face, and therefore, ensuring safe and reliable zero leakage.




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