IP Library Granted Patent US 8,407,878
Granted Patent B2
US 8,407,878 · App. 13/199,912 · Granted Apr 2, 2013

Tubing connector and method for coupling two coiled tubing strings

Inventor: Tommie Carroll Gipson (Eaton, CO)
Assignee: RRI Holdings, Inc.
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Quick Facts
Patent No.
US 8,407,878
App. No.
13/199,912
Granted
Apr 2, 2013
Kind
B2
Abstract

A simple flexible coiled tubing connector couples the ends of two separate sections of tubing so that mutual axial tensile forces can be transferred between the two sections. The tubing connector is intended for use with tubing which may be coiled on a storage reel and freely run through a coiled tubing straightener or tensioning device. The tubing connector is not required to contain pressure, transfer compressive axial loads, torsion, or loads transverse to the axes of the tubes.

Claims (33)

1. A method for coupling the ends of two tubing segments comprising:

(a) notching an internal end of a first tubing segment with a plurality of end notches and an internal end of a second tubing segment with a plurality of end notches;

(b) aligning a first end of a tubing connector with the internal end of the first tubing segment and a second end of the tubing connector with the internal end of the second tubing segment, wherein the tubing connector comprises

(i) a wire rope segment having a first end, a second end, and an interior mid-point;

(ii) a first rope socket having an interior end facing the wire rope mid-point and an exterior end attached to the wire rope segment proximal to the first end of the wire rope segment;

(iii) a second rope socket having an interior end facing the wire rope mid-point and an exterior end attached to the wire rope segment proximal to the second end of the wire rope segment;

(iv) a first cylindrical retainer ring slidably positioned along a length of the wire rope segment between the first rope socket and the wire rope mid-point; and

(v) a second cylindrical retainer ring slidably positioned along the length of the wire rope segment between the second rope socket and the wire rope mid-point;

(c) inserting the interior end of the first rope socket into a bore of the notched internal end of the first tubing segment and the interior end of the second rope socket into a bore of the notched internal end of the second tubing segment;

(d) inwardly bending the end notches of the first tubing segment toward a tapered end nose of the first rope socket and the end notches of the second tubing segment toward a tapered end nose of the second rope socket;

(e) sliding a first end of a bore of the first retainer ring to abut the bent end notches of the first tubing segment and a first end of a bore of the second retainer ring to abut the bent end notches of the second tubing segment; and

(f) attaching several points of the first end of the bore of the first retainer ring to the bent end notches of the first tubing section and several points of the first end of the bore of the second retainer ring to the bent end notches of the second tubing section.

2. The method of claim 1 , wherein the tubing connector is flexible and the aligned first end of the tubing connector is in a non-linear relationship with the aligned second end of the tubing connector.

3. The method of claim 1 , wherein the internal end of the first and second tubing segments are notched with multiple equispaced tapered end notches.

4. The method of claim 1 , further comprising the step of attaching the exterior end of the first and second rope socket to the wire rope segment with a smelter connection.

5. A method for coupling the ends of two tubing segments comprising:

(a) notching an internal end of a first tubing segment with a plurality of end notches and an internal end of a second tubing segment with a plurality of end notches;

(b) obtaining a tubing connector comprising

(i) a wire rope segment having a first end, a second end, and an interior mid-point;

(ii) a first rope socket having an interior end facing the wire rope mid-point, wherein said interior end has a nose section on an outer surface of the interior end of the first rope socket;

(iii) a second rope socket having an interior end facing the wire rope mid-point, wherein said interior end has a nose section on an outer surface of the interior end of the second rope socket;

(iv) a first cylindrical retainer ring slidably positioned along a length of the wire rope segment between the first rope socket and the wire rope mid-point; and

(v) a second cylindrical retainer ring slidably positioned along the length of the wire rope segment between the second rope socket and the wire rope mid-point;

(c) attaching an exterior end of the first rope socket to the wire rope segment proximal to the first end of the wire rope segment with a smelter connection;

(d) attaching an exterior end of the second rope socket to the wire rope segment proximal to the second end of the wire rope segment with a smelter connection;

(e) aligning a first end of the tubing connector with the internal end of the first tubing segment;

(f) aligning a second end of the tubing connector with the internal end of the second tubing segment;

(g) inserting the interior end of the first rope socket into a bore of the notched internal end of the first tubing segment;

(h) inserting the interior end of the second rope socket into a bore of the notched internal end of the second tubing segment;

(i) inwardly bending the end notches of the first tubing segment toward the nose section of the first rope socket and the end notches of the second tubing segment toward the nose section of the second rope socket;

(j) sliding a first end of a bore of the first retainer ring to contact the bent end notches of the first tubing segment and a first end of a bore of the second retainer ring to contact the bent end notches of the second tubing segment; and

(k) welding several points of the first end of the bore of the first retainer ring to the bent end notches of the first tubing segment and several points of the first end of the bore of the second retainer ring to the bent end notches of the second tubing segment.

6. The method of claim 5 , wherein the wire rope segment of the tubing connector coupling the two tubing segments is flexible.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2016
From: RRI HOLDINGS, INC.
To: TOM C. GIPSON D/B/A NEW FORCE ENERGY
Reel/Frame 038877/0541 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2011
From: GIPSON, TOMMIE CARROLL
To: RRI HOLDINGS, INC.
Reel/Frame 027062/0783 →
Continuity (2)
Provisional Application 61574749 · Aug 9, 2011
Related Publication 20130038051A1 · Feb 14, 2013