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2022-03-12
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We are the butterfly valve manufacturer which is also a provider of two types of eccentric butterfly valves, the double and triple eccentric butterfly valve. The double eccentric butterfly valve is mostly used in power generation and petrochemical applications, while the triple eccentric butterfly valve is used in more demanding industrial applications.
The butterfly valve comes from the family of the quarter-turn valve. It is named for its butterfly disk, which serves as a gate to open or shut the valve. The butterfly valve looks identical to the ball valve. The benefits of our butterfly valves include reliability, simple working, and fewer maintenance needs.
The butterfly valve is a flow control device that utilizes a rotary disk to control the flow medium in a system. Disk stays in the passage but because it’s very thin, offers very less resistance to the flow.
Butterfly valve technology has grown significantly over the last half-century, and also its industrial popularity. This popularity is due to its quarter-turn operation, the tight closure, and its availability in a variety of design materials and sizes.
Butterfly valves have many advantages over other types of valves, such as an economic design that is built of fewer parts which makes it easy to maintain and repair. The wafer-design body and comparatively lightweight minimize the expense and installation cost, equipment, piping support, labor, and time of installation.
Initially, butterfly valves are used for water applications only, but improvements in designs and materials have made it possible for them to be used in growing industrial fluid applications. Nowadays, butterfly valves can be used in almost any plant handling many fluids.
Some of the industrial applications for which Butterfly valves are used, are Supply of water, wastewater treatment, Lube System, Fire protection services, Food processing, pharmaceuticals, and many more.
The disk is similar to a plug, or a ball. Rotating the disk with a one-quarter or 90-degree turn opens and shuts the butterfly valve.
The stem is shielded from the media in most resilient seated projects, allowing for effective material selection in terms of cost and mechanical properties.
In high-performance designs, the stems are in contact with the media and must thus be compliant and have the requisite strength for seating and disk removal from the bench.
In the case of high-performance butterfly valves, the sealing can be created by an interference-fit seat or a line-energized seat design, where the pressure within the pipe helps it to maximize the interference between the seat and the disk outer edge. The commonly used seat materials are polytetrafluoroethylene (PTFE) or reinforced PTFE (RTFE) due to a broader functionality and temperature range.
Metal seats are also provided in high-performance butterfly valves. These metal seats facilitate the use of a butterfly valve at a much higher temp. up to 1,000 degrees, F. Fire-safe variants are also provided that include the shut-off of the valve well before a fire, and the metal seal ensures sealing during and after a fire.
There are three main designs when it comes to actuator failure:
A butterfly valve is one of the quarter turns valves that are used for shut-off or regulating services when placed in a pipeline. They house a ‘butterfly’ or a disc that looks like a butterfly that is connected to a stem rod which rotated the disc to close the valve when it is turned to a position perpendicular to the flow.
When choosing a butterfly valve for your service, you will need to decide a few things before you check the technical specs of the valve. These specific details are the application of the valve, the type of fluid, the mode of operation, and the mode of installation listed below.
Low-pressure applications are typical uses of this valve. These valves are also known as a central butterfly valve, a centrerline butterfly valve, or a resilient-sealed valve.
The second offset is the shaft positioned not in the middle line of the piping, but slightly to the right side of the centerline. This arrangement would make the seat feel less pressure than the concentric butterfly valve and therefore extend its life.
This arrangement would mean that the seat does not have pressure or friction when closing or opening. This arrangement would therefore result in the valve having a bubble-tight application and a much longer life than a double-offset butterfly valve.
There are two ways by which a Butterfly valve can be operated i.e. Manually (using a lever or a handle) or Automatically (using an actuator). These actuators can work using electrical power, hydraulic, or using pressurized air.
Butterfly valves are cost-effective and usually smaller than other types of valves. A butterfly valve with a wide diameter pipe is way smaller than the equivalent of the ball valve.
Butterfly valves do not close as fully as ball valves and are not used to regulate the flow of gas. Ball valves show a reliable seal.
In high-pressure systems, the ball valve can have superior cutting properties as well as little difficulties in rotating or requiring a pressure balancing scheme.