Alloy Globe Valve

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Alloy Globe Valve – available in high-temperature alloys plus special alloys. Handwheel or gear operation. A globe valve for on-off and throttling in extreme conditions where standard materials fail. Used in refineries, power plants, and chemical facilities. High-temperature strength won’t soften under extreme heat, and corrosion resistance won’t weaken in aggressive media – so you keep running longer, with fewer unplanned shutdowns.

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Specification

Size: 2″-24″
Pressure: 150LB-2500LB
Body Material: WC6, WC9, CF8, CF8M, CF3, CF3M, CN7M, LC1, LC2, LC3, LCB, LCC, Monel, 20# Alloys, 4A, 5A, C95800, C95500, 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

 

Features

Available in material of WC6, WC9, C5, C12, etc. and other special alloy such as Alloy 20, Titanium Alloy, Hastelloy Steel, Inconel Alloy, etc.

Typically with disc type shape as plug disc, needle disc, parabolic disc, ball type disc, etc.

Applicable in structure of Y type, angle type, straight type, etc.

Allow the medium in uni-directional flow

Bonnet type: bolted bonnet, pressure seal bonnet, welded bonnet, union bonnet, etc.

Frequently Asked Questions

Can a globe valve be installed vertically

Yes, a globe valve can be installed vertically, horizontally, or at an angle, depending on the specific requirements of the application and the design of the valve. Globe valves are versatile and can function effectively in various orientations. However, it’s essential to consider the manufacturer’s guidelines and recommendations when installing valves to ensure proper functionality, longevity, and safety. api 6d ball valve

Where should the pressure enter a globe valve

In a globe valve, the pressure is typically intended to enter from the bottom and flow upwards through the valve. This is the recommended orientation for most globe valves. Here’s why:

1.Flow Characteristics: Globe valves are designed with a disc or plug that moves perpendicular to the flow direction when the valve is operated. This design allows for precise control of flow by adjusting the position of the disc. When pressure enters from the bottom and flows upward, it aligns with the natural movement of the disc. forged ball valve

2.Pressure Balance: The upward flow direction helps to balance the pressure across the valve and reduces the chances of pressure-induced forces affecting the valve’s operation.

3.Leakage Prevention: When pressure enters from the bottom, any potential leaks at the stem or gland packing are less likely to result in fluid loss due to the pressure differential.

4.Minimized Erosion: Flowing from the bottom to the top helps minimize erosion of the valve internals by reducing the direct impact of the fluid on critical components.

However, it’s important to note that there might be specific applications or cases where installing the valve in a different orientation is necessary. Always refer to the manufacturer’s guidelines and recommendations for the proper installation of a particular globe valve, as some valves may have unique designs or requirements. carbon steel gate valves

Why globe valve is unidirectional

A globe valve is considered unidirectional because of its design and functionality, which are optimized for controlling flow in one specific direction. Here’s why globe valves are generally unidirectional:

1.Flow Control: Globe valves are primarily designed for precise flow control, allowing you to regulate the amount of fluid passing through the valve. The disc or plug inside the valve moves perpendicular to the flow direction, creating a variable opening that can be adjusted for controlling flow rates. high temperature gate valves

2.Pressure Drop: The design of a globe valve involves a seat and disc arrangement that can cause significant pressure drop across the valve when fluid flows against the closed disc. This design feature is not suitable for bidirectional flow, as it could lead to excessive pressure drop and inefficient operation, low temperature ball valves.

3.Leakage Prevention: Globe valves are intended to provide good shutoff capabilities, meaning they can effectively seal off the flow path when the valve is closed. However, this sealing capability is optimized for one specific flow direction. Using a globe valve in the opposite direction could compromise its ability to prevent leakage.

4.Cavitation and Erosion: In some cases, fluid flow in the reverse direction could lead to issues such as cavitation and erosion, which can damage the valve internals and reduce its operational lifespan.

While globe valves are primarily designed for unidirectional flow, there are other types of valves, such as check valves, which are specifically designed for bidirectional flow and preventing backflow. Check valves allow flow in one direction while preventing flow in the opposite direction, making them suitable for applications where bidirectional flow control is required.

It’s important to consult the manufacturer’s specifications and guidelines when selecting and installing valves to ensure that they are used correctly and effectively for their intended purpose, api602 forged gate valve.

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