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Trelleborg launches a wellhead sealing solution

Apr 18, 2018
2 min read
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Trelleborg Sealing Solutions has launched a new metal end cap seal specifically engineered for High Temperature High Pressure (HTHP) wellhead, tubing and casing hanger sealing environments.

The new sealing solution combines the pressure and extrusion resistance of a metal-to-metal bonded component with the flexibility of an elastomer.

The high performance elastomer-to-metal bonded sealing elements provide the high level of extrusion resistance necessary for high pressure and temperature casing and tubing hanger applications. Combining the range of proprietary XploR Rapid Gas Decompression (RGD) and sour gas resistant elastomers with corrosion resistant metal end caps, Trelleborg Sealing Solutions engineers can design a customized sealing solution to meet specific oil field requirements.

Eric Bucci, Trelleborg Sealing Solutions Segment Manager Oil & Gas Americas, said: “High pressure wellhead sealing environments, such as casing strings and tubing hangers, are safety critical applications requiring a robust and capable sealing product. The new metal end cap seal that Trelleborg Sealing Solutions has developed uses our proprietary and proven XploR materials, which provide superior explosive decompression resistance, oilfield fluid compatibility and longevity in HTHP environments. These benefits accelerate the performance of our customers, allowing them to operate oil & gas equipment with optimal safety and reliability.”

Sealing in the elastomer-to-metal design solution is achieved by controlled deformation of the elastomer and metal end cap elements during installation and operation. Optimal stress distribution throughout the elastomer body is modeled through Finite Element Analysis (FEA) to ensure appropriate design standards are applied to each customer’s unique application. Extrusion resistance is provided by the specially designed metal end caps that provide positive metal-to-metal sealing interference with the hardware upon assembly and conform with any potential extrusion gaps under pressure.


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