Fugitive Emission Globe valve

Fugitive Emission Globe valve

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1.Specification
Size: 2"-24"
Pressure: 150LB-2500LB
Body Material: WCB, WC6, WC9, CF8, CF8M, CF3, CF3M, CN7M, LC1, LC2, LC3, LCB, LCC, Monel, 20# Alloys, 4A, 5A, C95800, C95500, A105, F304, F304L, F316, F316L, LF1, LF2, LF3, LF9, F51, F53, F11, F22, etc.
Seal Material: STELLITE, 13Cr, SS304, SS316, etc.
Connection Type: Flanged, Butt Welded, Socket Welded, NPT
Operation: Handwheel, gear operated, pneumatic, motorized
Face to Face Dimension: ASME B16.10
Flange End Dimension: ASME B16.5
Butt Welded Dimension: ASME B16.25
Design and Manufacture: BS1873,API623
Test Standard: API 598,API 6FA, ISO 15848-1-2
2.Features

Zero leakage in seat part, fugitive emission in stem packing part

Particularly suitable for pipelines with toxic, flammable, and combustible media

Use fugitive emission packing to achieve low leakage standard

Stem with better smoothness, bonnet with special structure

Certified by industrial fugitive emissions standards API 624 and ISO 15848-1

3.FAQ
Do you use globe valves on a steam system

Yes, globe valves are commonly used in steam systems for various purposes due to their ability to provide precise flow control and regulation. Steam systems involve the transportation of steam, which is a high-temperature and high-pressure fluid. Globe valves can be well-suited for these systems, especially when specific control over steam flow is necessary. Here are some ways in which globe valves are used in steam systems:

1.Flow Control and Regulation: In steam systems, it's often essential to regulate the flow of steam to achieve the desired temperature, pressure, and energy transfer. Globe valves allow for fine adjustments in steam flow, making them suitable for maintaining the required conditions within the system. api 6d ball valve

2.Throttling: Globe valves are excellent for throttling or modulating the flow of steam. This is crucial in processes where precise control of temperature and pressure is necessary for effective heat transfer or other industrial applications.

3.Start-up and Shut-down: Globe valves can be used to control the flow of steam during start-up and shut-down procedures. They allow for gradual adjustments in flow, preventing sudden changes that could lead to thermal shock or system damage.

4.Safety Systems: Steam systems often include safety measures such as pressure relief valves or bypass lines. Globe valves can be used in these systems to regulate the pressure and control the flow of steam to maintain safe operating conditions.

5.Steam Traps: Steam traps are devices used to remove condensate (water) from steam systems to ensure efficient steam flow. Globe valves can be used in conjunction with steam traps to control the discharge of condensate and maintain proper system operation. forged ball valve

6.Control Valves: In more complex steam systems, control valves are employed to manage the flow of steam based on signals from sensors or controllers. Globe valves are commonly used as control valves in these setups to ensure precise adjustment of steam flow.

7.Process Industries: Industries such as power generation, chemical processing, and manufacturing often use steam as a heat source or energy carrier. Globe valves can be found in these industries, ensuring that steam is distributed, controlled, and regulated effectively. carbon steel gate valves

It's important to note that while globe valves are suitable for many steam system applications, the specific valve design, material, and size should be carefully chosen to match the requirements of the system and its operating conditions. Additionally, maintenance and regular inspection of these valves are crucial to ensure their proper functioning and longevity in steam service. high temperature gate valves

How to refill a leaky globe valve

Refilling a leaky globe valve involves taking steps to address the leak and restore the valve's proper functioning. Here's a general procedure you can follow if you're dealing with a leaky globe valve:

Note: If you are not familiar with working on valves or if the leak is significant, it's advisable to consult a professional plumber or valve technician to handle the repair.

1.Safety Precautions:

Before starting any work, make sure to turn off the fluid supply to the valve and release pressure from the system. This will help prevent accidents and ensure your safety, low temperature ball valves.
2.Assessment:

Identify the source of the leak. Determine whether the leak is originating from the valve stem, the valve body, or the valve seat. This will guide your repair approach.
3.Tightening Packing Nut:

If the leak is coming from around the valve stem, you may need to tighten the packing nut that surrounds the stem. Use a wrench to gently tighten the nut. Be careful not to overtighten, as this could cause damage or hinder the valve's operation.
4.Replacing Packing Material:

If tightening the packing nut doesn't stop the leak, the packing material around the stem may be worn or damaged. You might need to disassemble the valve partially to access the packing area. Remove the old packing material and replace it with new packing. Make sure to use the appropriate packing material for the fluid being controlled, api602 forged gate valve.
5.Checking Valve Seat:

If the leak is occurring around the valve seat, the seat might be damaged or worn. Disassemble the valve to access the seat area. Inspect the seat for any visible damage or wear. If necessary, clean or replace the valve seat.
6.Reassembly:

Carefully reassemble the valve components, ensuring that everything is properly aligned and tightened. Follow any manufacturer-specific guidelines for reassembly.
7.Testing:

Once the valve is reassembled, turn on the fluid supply and gradually increase the pressure. Check for any signs of leaks. If the leak persists, you might need to revisit the packing or seat areas and make further adjustments or repairs.
8.Professional Assistance:

If you're unable to stop the leak or if the valve appears to be severely damaged, it's recommended to seek assistance from a professional plumber or valve technician. They can diagnose the issue accurately and provide appropriate solutions.
Remember that working on valves, especially in critical systems, requires caution and expertise. If you're unsure about the repair process or if the valve is part of a complex system, it's best to consult professionals who have experience in valve maintenance and repair.

What is the difference between globe valves and ball valves

Globe valves and ball valves are two different types of valves commonly used to control fluid flow within piping systems. They have distinct designs and characteristics that make them suitable for specific applications. Here's a comparison of the key differences between globe valves and ball valves:

1. Design and Operation:

Globe Valve: Globe valves have a spherical or globe-shaped body with a movable disc (plug) that moves linearly or vertically to control the flow. The disc obstructs the flow path when the valve is closed and allows for throttling or modulation of the flow when partially open.
Ball Valve: Ball valves have a spherical ball with a hole (bore) through its center. The ball is rotated by the valve handle, which aligns or blocks the bore to control the flow. Ball valves are generally used for quick open/close operations and provide full flow when fully open.
2. Flow Control:

Globe Valve: Globe valves are designed for precise flow control and throttling. They offer the ability to make fine adjustments to the flow rate, which makes them suitable for applications requiring accurate regulation.
Ball Valve: Ball valves are primarily used for on/off control. They are not as well-suited for precise flow regulation due to their quick and full open/close action.
3. Pressure Drop:

Globe Valve: Globe valves generally have a higher pressure drop compared to ball valves due to the flow having to change direction as it passes through the valve body and disc.
Ball Valve: Ball valves typically have a lower pressure drop because the flow path is unobstructed when the valve is fully open.
4. Leak Tightness:

Globe Valve: Globe valves offer good sealing characteristics, especially in partially open positions, which helps minimize leakage when the valve is throttled.
Ball Valve: Ball valves also provide good sealing when fully closed, but their design might not be as effective for throttling applications, potentially leading to some leakage.
5. Applications:

Globe Valve: Globe valves are often used in applications where precise flow control, throttling, or modulation is required. They are suitable for industries such as oil and gas, chemical processing, and water treatment.
Ball Valve: Ball valves are commonly used in applications requiring quick on/off control, such as shut-off valves in pipelines, and they are also used in various industrial and commercial applications.
6. Size and Weight:

Globe Valve: Globe valves tend to be larger and heavier due to their design, which can make them less suitable for applications with space and weight constraints.
Ball Valve: Ball valves are generally more compact and lightweight, which makes them easier to install in tight spaces.
In summary, the choice between a globe valve and a ball valve depends on the specific requirements of the application. Globe valves are better suited for precise flow control and throttling, while ball valves are favored for quick open/close operations and low-pressure drop scenarios.

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