IP Library Granted Patent US 9,951,893
Granted Patent B2
US 9,951,893 · App. 15/031,702 · Granted Apr 24, 2018

Flexible pipe body and method of producing same

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Quick Facts
Patent No.
US 9,951,893
App. No.
15/031,702
Granted
Apr 24, 2018
Kind
B2
Abstract

A flexible pipe comprising a tubular layer comprising a polymer that is crosslinked to a greater degree at an outer region of the tubular layer than at an inner region of the tubular layer, wherein the outer region is defined by the outer surface of the tubular layer to a depth of 5% of the total thickness of the tubular layer and the inner region is defined by the inner surface of the tubular layer to a depth of 5% of the total thickness of the tubular layer.

Claims (13)

1. A flexible pipe comprising a tubular layer comprising a polymer that is crosslinked to a greater degree at an outer region of the tubular layer than at an inner region of the tubular layer, wherein the outer region is defined by the outer surface of the tubular layer to a depth of 5% of the total thickness of the tubular layer and the inner region is defined by the inner surface of the tubular layer to a depth of 5% of the total thickness of the tubular layer, wherein the degree of crosslinking in the outer region is at least 50% gel content and the degree of crosslinking in the inner region is less than 40% gel content, and wherein the flexible pipe additionally comprises an armour layer positioned around the tubular layer.

2. A pipe as claimed in claim 1 , wherein the degree of crosslinking is determined by ISO 10147:2011.

3. A pipe as claimed in claim 1 , wherein the elastic modulus of the polymer in the outer region is greater than the elastic modulus of the polymer in the inner region.

4. A pipe as claimed in claim 3 , wherein the polymer in the outer region has an elastic modulus that is at least 10% greater than the polymer in the inner region.

5. A pipe as claimed in claim 1 , wherein the tubular layer is formed from a single polymer composition.

6. A pipe as claimed in claim 1 , wherein the tubular layer comprises an outer sub-layer and an inner sub-layer, wherein the outer sub-layer is formed from a first polymer composition and the inner sub-layer is formed from a second polymer composition, whereby the first polymer composition is crosslinked to a greater extent than the second polymer composition.

7. A pipe as claimed in claim 1 , wherein the polymer in the inner region of the tubular layer is not crosslinked.

8. A pipe as claimed in claim 1 , wherein the polymer in a region defined by the outer surface of the tubular layer to a depth of x % of the total thickness of the tubular layer, wherein x is a value that is greater than 5% to less than 50%, is crosslinked to a greater degree than the polymer in a region defined by the inner surface of the tubular layer to a depth of x % of the total thickness of the tubular layer.

9. A pipe as claimed in claim 1 , wherein the degree of crosslinking decreases from the outer surface of the tubular later to the inner surface of the tubular layer.

10. A method for the production of a flexible pipe as claimed in claim 1 , said method comprising:

a. extruding a tubular layer comprising a polymer, and

b. crosslinking the polymer to a greater degree at the outer region of the tubular layer than at the inner region of the tubular layer.

11. A method as claimed in claim 10 , wherein crosslinking is performed by irradiating the outer surface using e-beam radiation.

Assignments (2)
CHANGE OF NAME Recorded Apr 7, 2022
From: GE OIL & GAS UK LIMITED
To: BAKER HUGHES ENERGY TECHNOLOGY UK LIMITED
Reel/Frame 059630/0444 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2016
From: LAYCOCK, MARK ANTHONY; LATTO, JAMES
To: GE OIL & GAS UK LIMITED
Reel/Frame 039783/0923 →