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Weld Neck Stainless Steel Pipe Flanges WN ASTM A182 ASME ANSI B16.5
  • Weld Neck Stainless Steel Pipe Flanges WN ASTM A182 ASME ANSI B16.5

Weld Neck Stainless Steel Pipe Flanges WN ASTM A182 ASME ANSI B16.5

Place of Origin China
Brand Name Kasugai
Model Number SW ASME / ANSI 16.5
Document Product Brochure PDF
Product Details
Material:
Stainless Steel
Standard:
ASTM A182
Size Range:
1/2" To 24" , Customized Acc. To Drawing
Thickness:
Sch5S To Sch160 , XXS
Pressure Rating:
150 To 2500
Application:
Piping System Of Marine, Pumping, Chemical Production, Food Industry, Irrigation, Etc
Highlight: 

Weld Neck Stainless Steel Pipe Flanges

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ANSI 16.5 Weld Neck Flange

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ANSI 16.5 Stainless Steel Pipe Flanges

Payment & Shipping Terms
Minimum Order Quantity
10
Price
Negotiable
Packaging Details
Seaworthy Packng
Delivery Time
30 - 60 working days
Payment Terms
L / C , T / T
Supply Ability
1000 tons per month
Product Description

Weld Neck Flange WN ASTM A182 ASME / ANSI B16.5 Class 150 to 2500

Weld Neck Flange

A weld neck flange, also called a tapered hub flange or high-hub flange, is a kind of flange that can relocate stress to the pipes, ensuring a decrease in high-stress concentration at the bottom of the flange. There are two welding neck flanges designs – the first type is used with pipes while the second, longer type cannot be used with pipes but with a process plant. The weld neck flange comprises of a round fitting that extends beyond the rim of the circumference. These flanges, typically manufactured from forging, are actually welded to pipes.

 

Product Information

Product Name Weld Neck Stainless Steel Flange
Size Range 1/2’ to 24”
Pressure Class 150, 300, 400, 600, 900, 1500, 2500,
Standards ASTM A182
Face Type Weld Neck (WN), Long Weld Neck (LWN), Reducing Weld Neck
Dimensions ANSI B16.5, Custom Drawings
Thickness Sch5S to Sch160, XXS
Origin China
Applications Marine, pumping, chemical production, food industry, irrigation
Test Direct-reading Spectrograph, Hydrostatic testing machine, X-ray detector, Ultrasonic flaw detector, Magnetic particle detector
Test Certificates Raw Materials Certificate, 100% Radiography Test Report, Third Party Inspection Report

 

Long Weld Neck Flanges (LWN)

Weld Neck Stainless Steel Pipe Flanges WN ASTM A182 ASME ANSI B16.5 0

 

This flange type is regarded as high-hub flanges, which were created so stress could be transferred to the pipe and decreasing the stress concentration at the bottom of the flange.

 

The long welding neck flange is mainly applied to the construction of pressure vessel functioning as a nozzle (such as a thermowell nozzle). To attach a common welding neck flange to a pressure vessel, a piece of pipe is required with additional welding. A LWN flange on the other hand attaches directly to the vessel, hence, it can be viewed as an integrally reinforced nozzle. It avoids making a weld seam at pipe to flange and provides self-reinforcement.

 

Reducing Weld Neck Flange

It is also called reducing welding neck flange, because the flange neck has a reducing diameter that to weld to a smaller diameter pipe.

 

Weld Neck Stainless Steel Pipe Flanges WN ASTM A182 ASME ANSI B16.5 1

The reducing flange is used to make a reduction in the diameter of the pipe. A reducing flanged joint consists of a reducing flange and a standard flange, functioning like a reducer fitting. As illustrated in Figure-1, the larger end of reducing flange A, which is in contact with the standard flange B, is known as “the size from which the reduction is being made”; the smaller end of the reducing flange A, which will be welded to a pipe, is known as “the size to which the reduction is being made”. The flow should travel from the smaller size to the larger. If the flow direction were reversed, severe turbulence could develop.

 

In order to make a reduction in the pipe line with two standard welding neck flanges, an additional reducer shall be used as illustrated in Figure-2. The overall length of this configuration is 2L+H, which is much longer than L+M of a reducing flanged joint as illustrated in Figure-1. It means that the use of reducing flanges can effectively save space in crowed situation. In fact, the reducing flange is most frequently used in installations with limited space.

 

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