1. Field of the Invention
The invention relates generally to devices and methods for rapidly interconnecting tubular members.
2. Description of the Related Art
In steerable drilling liner systems, the steerable liner is subject to high drag and torque. Tubular members should be connected prior to running in or during portions of the run-in operation in a manner that resists inadvertent uncoupling during operation.
The invention provides quick connect arrangements that allow two tubular members to be rapidly connected together and be secured against axial and rotational movement with respect to one another. According to particular aspects, the quick connect arrangements are designed to maintain internal pressure within the tubular members when interconnected. The devices and methods of the present invention are particularly useful for interconnecting sections of drilling liners used in steerable drilling operations. The quick connect arrangements of the present invention include securing sleeves that help secure the first and second tubular members together. Once the quick connect arrangements are made up, the securing sleeves are prevented from unthreading by locking mechanisms.
A first quick connection arrangement is described wherein locking mechanism is an axial locking mechanism. The securing sleeve is locked against axial movement and rotation with respect to the first and second tubular members by interlocking of an anchor latch formed on the second tubular member and barbed collet heads formed on the securing sleeve. In preferred embodiments, the anchor latch presents a negative rake angle that can be securely engaged by the barb.
An alternate quick connection arrangement is described wherein the locking mechanism is a rotational locking mechanism. The securing sleeve is locked against rotation and axial movement with respect to the first and second tubular member by a ratchet-style anti-rotation lock. In a described embodiment, one or more radially-tapered anti-rotation tabs that are formed on the outer radial surface of the second tubular member. The securing sleeve has axially-extending collet fingers that have complementary anti-rotation tabs. Unthreading of the securing sleeve is prevented by the engagement between anti-rotation tabs on the securing sleeve and those on the second tubular member.
A release mechanism is described for each of the quick connection arrangements which allows the securing sleeve to be released from a locked configuration with the second tubular member. One or more threaded members, such as screws, are threaded into threaded openings in the collet fingers of the securing sleeve and are tightened against the outer radial surface of the second tubular member. This causes the collet to be backed away from the second tubular member and release the barb or anti-rotation tab from engagement, thereby allowing the securing sleeve to be unthreaded.
The advantages and further aspects of the invention will be readily appreciated by those of ordinary skill in the art as the same becomes better understood by reference to the following detailed description when considered in conjunction with the accompanying drawings in which like reference characters designate like or similar elements throughout the several figures of the drawing and wherein:
The first tubular member 12 includes an enlarged diameter chamber portion 18. A stop shoulder 20 is formed on the outer radial diameter surface 22 of the first tubular member 12. Axially projecting fingers 24 are formed at the axial end 26 of the first tubular member 12. A recess 28 is formed between each pair of fingers 24.
The second tubular member 14 presents an outer radial surface 30 having a raised ring 32 which presents an axially-facing stop shoulder 34. Radially raised fingers 36 are formed upon the outer radial surface 30. Radially reduced recesses 38 are formed in between each pair of fingers 36. Preferably, the fingers 36 and recesses 38 are formed by machining the outer radial surface 30.
Threads 40 are formed on the outer radial surface 30 of the second tubular member 14. In a currently preferred embodiment, the threads 40 are located axially between the raised ring 32 and the fingers 36.
The axial end of the second tubular member 14 has a portion with a radially-reduced diameter outer radial surface 42. This radially reduced portion 42 is shaped and sized to reside within the enlarged diameter chamber portion 18 of the first tubular member 12. Preferably, metallic or elastomeric fluid seals 44 radially surround the radially reduced diameter portion 42. When the radially reduced diameter portion 42 is inserted into the enlarged diameter chamber portion 18 of the first tubular member 12, the fluid seals 44 seal against the enlarged diameter chamber portion 18 to ensure that fluid pressure is retained within the axial bore 16.
An annular anchor latch 46 projects radially outwardly from the outer radial surface 30 of the second tubular member 14. Details of an exemplary anchor latch 46 are better appreciated with reference to
Cylindrical securing sleeve 52 radially surrounds the first tubular member 11. Many features of the securing sleeve 52 are best appreciated with additional reference to
The distal axial end 64 of the securing sleeve 52 includes a number of axial slots 66 which define a plurality of collets 68.
In operation to quickly interconnect the first and second tubular members 12, 14, the radially-reduced diameter outer radial surface portion 42 of the second tubular member 14 is disposed into the enlarged diameter chamber portion 18 of the first tubular member 12, as shown in
It is noted that the securing sleeve 52 may be threaded onto the second tubular member 14 until the axial end 26 contacts the stop shoulder 34 on the second tubular member 14 or the shoulder 60 of the securing sleeve 52 contacts the shoulder 20 of the first tubular member 12.
In particular embodiments, a mechanism is provided which allows for release of the securing sleeve 52 from locking engagement with the second tubular member 14. As can be seen in
The quick connect arrangement 80 features a ratchet-style anti-rotation locking mechanism. In the exemplary locking mechanism depicts in
The securing sleeve 52′ includes radially interiorly-directed anti-rotation tabs 84 that are formed upon the interior radial surface of each collet 68. In the depicted embodiment, there are two tabs 84, which are positioned at about 180 degrees from each other about the internal circumference of the securing sleeve 52′. It should be understood, however, that there may be more or fewer than two tabs 84. Each of the tabs 84 is preferably provided with a ramped surface 86 (see
It can be seen that the present invention provides quick connect arrangements 10, 80 that can interconnect first and second tubular members and which include a securing sleeve 52, 52′ that helps secure the connection together. In described embodiments, the quick connect arrangements include locking arrangements which ensure that the securing sleeve 52, 52′ cannot be inadvertently unthreaded. In one described embodiment, the locking arrangement is an axial locking arrangement which prevents the securing sleeve 52 from axial movement with respect to the tubular members 12, 14. In a second described embodiment, the locking arrangement is a radial locking arrangement which prevents the securing sleeve 52′ from radial movement upon the tubular members 12, 14′.
The foregoing, description is directed to particular embodiments of the present invention for the purpose of illustration and explanation. It will be apparent, however, to one skilled in the art that many modifications and changes to the embodiment set forth above are possible without departing from the scope and the spirit of the invention.
Number | Name | Date | Kind |
---|---|---|---|
2881842 | Wilson | Apr 1959 | A |
3409319 | Van Heeke | Nov 1968 | A |
3623753 | Henry | Nov 1971 | A |
3948321 | Owen et al. | Apr 1976 | A |
4379561 | Nelson | Apr 1983 | A |
4407526 | Cicenas | Oct 1983 | A |
4531766 | Crase | Jul 1985 | A |
4570707 | Setterberg, Jr. | Feb 1986 | A |
4573529 | Reinhardt | Mar 1986 | A |
4726425 | Smith, Jr. | Feb 1988 | A |
4993755 | Johnston | Feb 1991 | A |
5026200 | van Bilderbeek | Jun 1991 | A |
5083819 | Bynum | Jan 1992 | A |
5085472 | Guest | Feb 1992 | A |
5197546 | Murray | Mar 1993 | A |
5482331 | Shore | Jan 1996 | A |
5743333 | Willauer et al. | Apr 1998 | A |
5788290 | Meisinger | Apr 1998 | A |
5775742 | Guest | Jul 1998 | A |
5918913 | Lewis et al. | Jul 1999 | A |
5984029 | Griffin et al. | Nov 1999 | A |
6371531 | Robison | Apr 2002 | B1 |
6457749 | Heijnen | Oct 2002 | B1 |
6641177 | Pinciaro | Nov 2003 | B1 |
6824170 | Lee | Nov 2004 | B2 |
7552766 | Gazewood | Jun 2009 | B2 |
7793993 | Kees et al. | Sep 2010 | B2 |
8490692 | Stautzenberger et al. | Jul 2013 | B2 |
8505638 | Ezell et al. | Aug 2013 | B2 |
20040207202 | Parks | Oct 2004 | A1 |
20080100062 | Aston | May 2008 | A1 |
Entry |
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Peak Well Systems, “FloSafe Lock Mandrel” Product Catalog (2013), one page. |
Number | Date | Country | |
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20160047502 A1 | Feb 2016 | US |