Expandable Tapered Pin Plug For Heat Exchangers and Air Cooled Heat Exchangers
20220381389 ยท 2022-12-01
Assignee
Inventors
Cpc classification
F28F11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A tube plug for securely sealing a tube to be plugged. The tube plug has a housing member with a non-cylindrical body and a deformable wall. An insert member having a threaded shank and a ramped ferrule can be threaded into the body to deform the deformable wall outwardly and into engagement with the tube to be sealed. The non-cylindrical body allow the plug to be inserted into and used to plug a tube that is in a difficult to reach location and whose diameter may not be precisely known.
Claims
1. A tube plug, comprising: a housing member having a non-cylindrical body extending along a longitudinal axis and including a deformable wall surrounding an inner bore and cylindrical body extending along the longitudinal axis from the non-cylindrical body and including a threaded bore in communication with the inner bore; an insert member having a threaded shank corresponding to the threaded bore and a ramped ferrule coupled to the threaded shank and positioned in the inner bore of the housing member adjacent to the deformable wall so that rotation of the threaded shank in the threaded bore will advance the ramped ferrule into the inner bore to deform the deformable wall of the non-cylindrical body outwardly.
2. The tube plug of claim 1, wherein the non-cylindrical body tapers from a first outer diameter at a rear of the non-cylindrical body to a second outer diameter at a front of the non-cylindrical body that is smaller than the first outer diameter.
3. The tube plug of claim 2, wherein the inner bore of non-cylindrical body tapers from a first inner diameter at a rear of the non-cylindrical body to a second inner diameter at a front of the non-cylindrical body that is smaller than the first inner diameter.
4. The tube plug of claim 3, wherein the ramped ferrule tapers from a third outer diameter proximate to the rear of the non-cylindrical body to a fourth outer diameter proximate to the front of the non-cylindrical body.
5. The tube plug of claim 4, wherein the ramped ferrule is rotatably mounted about the threaded shank.
6. The tube plug of claim 5, wherein the threaded shank of the insert member incudes a head.
7. The tube plug of claim 6, wherein the threaded shank and the head comprises a hex head screw.
8. A method of sealing a leaking element of a heat exchanger, comprising the steps of: seating a tube plug at least partially into a tube of the heat exchanger, wherein the tube plug comprises a housing member having a non-cylindrical body with a deformable wall surrounding an inner bore and a threaded bore in communication with the inner bore and an insert member having a threaded shank engaged with the threaded bore and a ramped ferrule coupled to the threaded shank; tapping the tube plug into the tube of the heat exchanger to move the tube plug longitudinally into the tube; and rotating the threaded shank of the insert member so that the ramped ferrule is advanced into the inner bore, thereby deforming the deformable wall outwardly into the tube of the heat exchanger.
9. The method of claim 8, wherein the non-cylindrical body tapers from a first outer diameter at a rear of the non-cylindrical body to a second outer diameter at a front of the non-cylindrical body that is smaller than the first outer diameter.
10. The method of claim 9, wherein the inner bore of non-cylindrical body tapers from a first inner diameter at a rear of the non-cylindrical body to a second inner diameter at a front of the non-cylindrical body that is smaller than the first inner diameter.
11. The method of claim 10, wherein the ramped ferrule tapers from a third outer diameter proximate to the rear of the non-cylindrical body to a fourth outer diameter proximate to the front of the non-cylindrical body.
12. The method of claim 11, wherein the ramped ferrule is rotatably mounted about the threaded shank.
13. The method of claim 12, wherein the threaded shank of the insert member incudes a head.
14. The method of claim 13, wherein the threaded shank and the head comprises a hex head screw.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING(S)
[0006] The present invention will be more fully understood and appreciated by reading the following Detailed Description in conjunction with the accompanying drawings, in which:
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DETAILED DESCRIPTION OF THE INVENTION
[0015] Referring to the figures, wherein like numeral refer to like parts throughout, there is seen in
[0016] Referring to
[0017] Referring to
[0018] Referring to
[0019] In an exemplary embodiment, tube plug 10 may be dimensioned as set forth in Table 1 below:
TABLE-US-00001 TABLE 1 Dimension Value (inches or degrees) D1 0.975 D2 0.875 D3 0.975 D4 0.020 D5 0.856 D6 0.934 D7 0.934 L1 1.500 L2 0.500 L3 1.250
[0020] In the example above, D7 is based on the larger diameter of non-cylindrical body 16 minus two times the thickness of wall 20, with insert member 14 sized to match the interior surface of non-cylindrical body 16 along the length of ferrule 46.
[0021] It should be recognized that tube plug 10 may be made in virtually any size, including devices having outside diameters up to or exceeding three inches or down to outside diameters of one-half inch or perhaps less, and thus may be used with conventional heat exchangers and air cooled heat exchangers. In use, tube plug 10 should be selected so that the larger diameter of non-cylindrical body 16 is equal to or larger than the outside diameter of the tube to be plugged. The smaller diameter of non-cylindrical body 16 should be smaller than the inside diameter of the tube to be plugged. As a result, the small diameter allows plug 10 to be inserted into the tube, while the larger diameter prevent plug 10 from sliding all the way into the tube to be plugged. The expansion area of plug 10 is thus located against the inside diameter surface at the entry of the tube to be plugged.
[0022] Referring to