IP Library Granted Patent US 9,625,067
Granted Patent B2
US 9,625,067 · App. 13/369,107 · Granted Apr 18, 2017

Clamp suitable for increasing the fatigue life of the butt welds of a pipe pressure vessel which is subsequently bent

Inventor: Patrick John Fitzpatrick (Calgary, CA)
Assignee: Sea NG Corporation
F16L13/0236Y10T29/49998Y10T137/0318Y10T137/8593
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Quick Facts
Patent No.
US 9,625,067
App. No.
13/369,107
Granted
Apr 18, 2017
Kind
B2
Abstract

A pipe clamp for affixing to a pipe subjected to bending. The pipe clamp includes an inside clamp segment and an outside clamp segment each having a semi-cylindrical shape, a first end and a second end. An inside surface of the inside clamp segment is substantially smooth for permitting slippage of an outside surface of the pipe with respect to the inside surface of the clamp segment. The outside clamp segment has an inside surface that defines a friction element. The friction element is for gripping an outside surface of the pipe to which the outside clamp segment is affixed. A clamp mechanism is provided for securing the inside clamp segment to the outside clamp segment.

Claims (66)

1. A pipe clamp for affixing to a pipe subjected to bending, said pipe clamp comprising:

an inside clamp segment having a semi-cylindrical shape, a first outermost longitudinal end and a second outermost longitudinal end;

said first outermost longitudinal end defining a first stress relief area wherein a circumferential width of said first stress relief area diminishes as a function of distance from said first outermost longitudinal end of said inside clamp segment forming a first approximately semi-circular arch having an apex that extends longitudinally away from the first outermost longitudinal end and wherein said first stress relief area has a radius approximately equal to an inside radius of said inside clamp segment; and

said second outermost longitudinal end defining a second stress relief area wherein a circumferential width of said second stress relief area diminishes as a function of distance from said second outermost longitudinal end of said inside clamp segment forming a second approximately semi-circular arch having an apex that extends longitudinally away from the second outermost longitudinal end and wherein said second stress relief area has a radius approximately equal to an inside radius of said inside clamp segment;

an outside clamp segment having a semi-cylindrical shape and an inside surface;

a clamp mechanism for securing said inside clamp segment to said outside clamp segment.

2. A pipe clamp according to claim 1 wherein:

at least one of said inside clamp segment and said outside clamp segment defines a radial groove for receiving a weld bead of a butt weld when said inside clamp segment and said outside clamp segment are located on the pipe.

3. The pipe clamp according to claim 1 wherein:

an inside surface of said inside clamp segment is substantially smooth and non-ribbed for permitting slippage of an outside surface of the pipe with respect to said inside surface of said inside clamp segment.

4. The pipe clamp according to claim l wherein:

said inside clamp segment has a thickness, an outside surface and an inside surface; and

said thickness proximate said first end of said inside clamp segment and proximate said second end of said inside clamp segment is less than the thickness of said inside clamp segment at a center of said inside clamp segment; and

wherein said thickness of said inside clamp segment tapers over a length of the inside clamp segment from said center to said first end and to said second end and wherein said taper is defined by said outside surface and not said inside surface for facilitating close contact of said inside surface with a pipe.

5. The pipe clamp according to claim 1 wherein:

said inside surface of said outside clamp segment defines one of a friction element and a friction element engaging surface, said friction element for gripping an outside surface of the pipe upon which said outside clamp segment is located; and

an inside surface of said inside clamp segment is substantially smooth and non-ribbed for permitting slippage of an outside surface of the pipe with respect to said inside surface of said inside clamp segment.

6. The pipe clamp according to claim 5 wherein:

said friction element is ridges on an inside surface of said outside clamp segment.

7. The pipe clamp according to claim 6 wherein:

wherein said ridges is comprised of threading.

8. The pipe clamp according to claim 1 wherein:

said inside clamp segment defines a first lengthwise surface and a second lengthwise surface;

said outside clamp segment defines a first lengthwise surface and a second lengthwise surface;

said first lengthwise surface and said second lengthwise surface of said inside clamp segment defines a plurality of orifices;

said first lengthwise surface and said second lengthwise surface of said outside clamp segment defines a plurality of orifices; and

said clamp mechanism is comprised of a plurality of bolts for locating in said plurality of orifices of said first lengthwise surface and said second lengthwise surface of said inside clamp segment and for locating in said plurality of orifices of said first lengthwise surface and said second lengthwise surface of said outside clamp segment for securing said inside clamp segment to said outside clamp segment;

a pipe; and wherein

a circumference defined by an inside surface of said inside clamp segment and an inside surface said outside clamp segment is less than a circumference defined by an outside surface of said pipe upon which said clamp segments are located, thereby ensuring a gap exists between said first lengthwise surfaces and said second lengthwise surfaces when said clamp segments are secured to said pipe.

9. The pipe claim according to claim 8 wherein:

said bolts have a large diameter portion and a threaded smaller diameter portion.

10. The pipe according to claim 8 wherein:

said first lengthwise surface and said second inside surface have a width equal to a thickness of said inside clamp segment and said outside clamp segment; and

said orifices communicate with said first inside surface and said second inside surface;

said orifices are formed in-line with walls of said outside clamp segment and said inside clamp segment.

11. A pipe clamp for engaging to a pipe subjected to bending, said pipe clamp comprising:

an inside clamp segment having a semi-cylindrical shape, a first outermost longitudinal end and a second outermost longitudinal end;

an inside surface of said inside clamp segment that is substantially smooth and non-ribbed for permitting slippage of an outside surface of the pipe with respect to said inside surface of said inside clamp segment;

an outside clamp segment having a semi-cylindrical shape, a first end and a second end;

said outside clamp segment defines one of a friction element and a friction element engaging surface for gripping said outside surface of the pipe to which said outside clamp segment is engaged;

a clamp mechanism for securing said inside clamp segment to said outside clamp segment;

said first outermost longitudinal end of said inside clamp segment defines a first stress relief area and said second outermost longitudinal end of said inside clamp segment defines a second stress relief area;

wherein a circumferential width of said first stress relief area diminishes as a function of distance from said first outermost longitudinal end of said inside clamp segment forming a first approximately semi-circular arch having an apex that extends longitudinally away from said first outermost longitudinal end and wherein said first stress relief area has a radius approximately equal to an inside radius of said inside clamp segment; and

wherein a circumferential width of said second stress relief area diminishes as a function of distance from said second outermost longitudinal end of said inside clamp segment forming a second approximately semi-circular arch having an apex that extends longitudinally away from said second outermost longitudinal end and wherein said second stress relief area has a radius approximately equal to an inside radius of said inside clamp segment.

12. The pipe claim according to claim 11 wherein:

said friction element is on said outside clamp segment.

13. The pipe clamp according to claim 11 wherein:

said friction engaging surface is on said outside clamp segment.

14. The pipe clamp according to claim 11 wherein:

at least one of said inside clamp segment and said outside clamp segment defines a radial groove for receiving a weld bead of a butt weld when said clamp segments are located on the pipe.

15. The pipe clamp according to claim 11 wherein:

said inside clamp segment has a thickness, an outside surface and an inside surface; and

said thickness proximate said first end of said inside clamp segment and proximate said second end of said inside clamp segment is less than the thickness of said inside clamp segment at a center of said inside clamp segment; and

wherein said thickness of said inside clamp segment tapers over a length of the inside clamp segment from said center to said first end and to said second end and wherein said taper is defined by said outside surface and not said inside surface for facilitating close contact of said inside surface with a pipe.

16. The pipe clamp according to claim 11 wherein:

said friction element is ridges on an inside surface of said outside clamp segment.

17. The pipe clamp according to claim 16 wherein:

wherein said ridges are comprised of threading.

18. The pipe clamp according to claim 11 wherein:

wherein said inside clamp segment defines a first lengthwise surface and a second lengthwise surface;

wherein said outside clamp segment defines a first lengthwise surface and a second lengthwise surface;

wherein said first lengthwise surface and said second lengthwise surface of said inside clamp segment defines a plurality of orifices;

wherein said first lengthwise surface and said second lengthwise surface of said outside clamp segment defines a plurality of orifices; and

said clamp mechanism is comprised of a plurality of bolts for locating in said plurality of orifices of said first lengthwise surface and said second lengthwise surface of said inside clamp segment and for locating in said plurality of orifices of said first lengthwise surface and said second lengthwise surface of said outside clamp segment for securing said inside clamp segment to said outside clamp segment;

a pipe;

a circumference defined by inside surfaces of said inside clamp segment and said outside clamp segment is less than a circumference defined by said outside surface of said pipe upon which said clamp segments are located, thereby ensuring a gap exists between said first lengthwise surfaces and said second lengthwise surfaces when said clamp segments are secured to said pipe.

Assignments (2)
CHANGE OF NAME Recorded Mar 27, 2018
From: SEA NG CORPORATION
To: GEV CANADA CORPORATION
Reel/Frame 045922/0165 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2012
From: FITZPATRICK, PATRICK JOHN
To: SEA NG CORPORATION
Reel/Frame 027682/0450 →
Continuity (3)
Continuation In Part 12855970 · Aug 13, 2010
Provisional Application 61238852 · Sep 1, 2009
Related Publication 20120138153A1 · Jun 7, 2012