Ring Joint Gasket

Ring Joint Gaskets are machined from a variety of types forged solid metal such as Soft iron, ANSI304, ANSI316, F5, Low carbon, and special materials of alloy metals, Inconel Duplex, Monel, Hastelloy, Titanium, etc.

They are designed for high pressure and temperature applications by selecting the suitable shape and material. The hardness of the RTJ gasket body should always be 20-30HB less than the hardness of the flanges to prevent flange deformation.

SKU: GS002 Category: Tag:

Description

Oval Style  R type oval ring joint gasket

Ring joint gasket with oval cross-section is initially developed for high temperature and pressure applications. It is still used in the old type round bottom groove today.

Oct Style  R type Octagonal ring joint gasket

Ring joint gasket with Octagonal cross-section is preferred by modern grooved flanges and has a higher sealing efficiency than oval types

RX Style   RX Ring Joint Gasket 

RX is used at pressures up to 15,000 psi (103 MPa). RX type Ring Joint Gasket is made to API 6A and interchangeable with standard Octagonal rings, it can take advantage of container fluid pressure well to effect a seal.

BX  Style  BX Ring Joint Gakset 
All BX Ring Joint Gasket incorporate a pressure balance hole to ensure equalization of pressure which may be trapped in the grooves, it is only be used in API 6BX flanges. BX is used at pressures up to 15,000 psi.

Material

Material Identification Max Hardness(HB)
Soft Iron D 90
Low Carbon Steel S 120
5Cr0.5Mo F5 130
SS304 SS304 160
SS316 SS316 160
SS316L SS316L 160
SS321 SS321 160
SS347 SS347 160
Hastelloy Hastelloy 200
Alloy 625 INC 625 195
Alloy 825 INC825 195

Application

The Ring Joint Gasket was initially developed for high pressure and temperature applications found in the petroleum industry and is primarily used in the oil field on drilling and completion equipment.

Furthermore, the Ring Type Joint product range can also be found on flange and pipework assemblies, along with some high integrity pressure vessel joints.

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