Stainless steel globe valves are commonly used in pipelines to control the flow of viscous fluids such as oil. These Stainless steel globe valves for sale are suitable for both on/off operation and throttling - flow control. In this type of valve, flow control is determined by the difference in distance between the poppet and the seat. It is important to note that globe valves have a higher pressure drop than many other types of valves due to their S-shaped passage.
Globe valves are ideal when the goal is to reduce the pressure of the medium in the piping system. The dynamics of flow through a globe valve require a change in direction, which results in increased resistance to flow and a significant drop in pressure as the medium passes through the valve.
The closing mechanism is achieved by flowing the valve flap against the fluid rather than across it, which minimizes wear on the closing parts. As the valve flap approaches full closure, fluid pressure is limited to the level required by the piping system. Compared to various other types of valves, globe valves have been specifically designed to perform effectively in harsh conditions where fluid flow is restricted.
Both throttling and shut-off function, small valve stroke.
Specialized stainless steel material for the whole series, more corrosion-resistant
Good sealing performance, no wear and tear, no scratches, long service life.
Chemical Processing
Wastewater
Mining
Food Processing
Pulp and Paper
Fertiliser processing
Stainless steel globe valves are designed to stop, start and control the flow of media.
The device features a removable disc and a fixed ring seat in a roughly spherical body.
The seat of this glove valve is located in the center of the pipe and parallel to the pipe.
In addition, the opening in this seat is closed by the valve disc.
When you turn the handle manually or by means of an actuator, the valve disc is lowered or raised by the stem.
However, when the disc is fully lowered, it cuts off the flow of liquid.
However, when the disc is fully raised, the liquid flow rate is maximized.
The disc can be raised to slightly below its maximum height.
In this case, fluid flow is controlled proportionally to the vertical travel of the disc.
Simply put, when the valve is turned clockwise, the disc descends to the seat.
This will physically obstruct the path of the fluid, thereby reducing or completely blocking the fluid depending on how low or low the disc moves.
When the valve is moved counterclockwise, the disc rises.
This, of course, will increase the flow of fluid or allow it to flow completely.
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