Pipe tool positioning system
09541230 ยท 2017-01-10
Inventors
Cpc classification
F16L55/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2215/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A pipe tool positioning system for efficiently inserting, positioning, and orienting a tool for use within a pipe. The pipe tool positioning system generally includes a sleeve with a receiver opening adapted to receive and removably retain a tool such as a grinder or the like. The sleeve includes radially-offset bladders extending outwardly from its outer surface. Each of the bladders may be individually inflated and/or deflated to aid in positioning of the tool within a pipe. A control unit may be provided with controllers for individually controlling each of the bladders. A camera may also be included adjacent to the sleeve to feed a display included with the control unit. By utilizing the present invention, various tools may efficiently be inserted and positioned for use within a pipe.
Claims
1. A pipe tool positioning system, comprising: a plurality of bladders defining a receiver opening, wherein said plurality of bladders extend outwardly from said receiver opening and wherein said receiver opening is adapted to receive a tool; at least one conduit fluidly connected to said plurality of bladders to provide a pressurized fluid to said plurality of bladders; and a sleeve, wherein said plurality of bladders extend from an outer surface of said sleeve and wherein said sleeve includes said receiver opening.
2. The pipe tool positioning system of claim 1, wherein said fluid is comprised of a gas.
3. The pipe tool positioning system of claim 1, wherein said plurality of bladders are comprised of a first bladder, a second bladder, and a third bladder, wherein said first bladder, said second bladder, and said third bladder are radially offset with respect to each other.
4. The pipe tool positioning system of claim 1, further comprising a control unit, wherein said plurality of bladders are each fluidly interconnected with said control unit.
5. The pipe tool positioning system of claim 4, wherein said one or more conduits are comprised of a first conduit, a second conduit, and a third conduit, wherein said first conduit fluidly connects said first bladder with said control unit, wherein said second conduit fluidly connects said second bladder with said control unit, and wherein said third conduit fluidly connects said third bladder with said control unit.
6. The pipe tool positioning system of claim 4, wherein said control unit is adapted to individually control each of said bladders by selectively directing flow of said fluid through one or more of said conduits.
7. The pipe tool positioning system of claim 4, wherein said control unit includes a first controller for said first bladder, a second controller for said second bladder, and a third controller for said third bladder.
8. The pipe tool positioning system of claim 1, further comprising a camera positioned adjacent to said sleeve.
9. The pipe tool positioning system of claim 8, further comprising a spray jet positioned adjacent to said camera for cleaning said camera.
10. The pipe tool positioning system of claim 8, wherein said control unit includes an air pump for directing air to said plurality of bladders and a display for said camera.
11. The pipe tool positioning system of claim 10, wherein said control unit includes a plurality of controllers, each of said controllers being adapted to control airflow to one of said plurality of bladders.
12. The pipe tool positioning system of claim 11, further comprising an outer tubing extending from said control unit, wherein said outer tubing surrounds said plurality of conduits extending between said control unit and said plurality of bladders.
13. The pipe tool positioning system of claim 12, wherein said control unit includes a tool flow port, a bladder flow port, and a spray jet flow port.
14. The pipe tool positioning system of claim 13, wherein said tool flow port is adapted to be fluidly connected to a tool fluid source.
15. The pipe tool positioning system of claim 14, wherein said bladder flow port is adapted to be fluidly connected to a bladder fluid source.
16. The pipe tool positioning system of claim 14, wherein said spray jet fluid source is fluidly connected to a spray jet positioned adjacent to said camera for cleaning said camera.
17. The pipe tool positioning system of claim 13, wherein said spray jet flow port is adapted to be fluidly connected to spray jet fluid source.
18. A pipe tool positioning system, comprising: a sleeve comprising a first end having a first opening, a second end having a second opening, and a receiver opening extending between said first opening and said second opening; a tool positioned with said receiver opening of said sleeve; a plurality of bladders radially extending from an outer surface of said sleeve, wherein said plurality of bladders are comprised of a first bladder, a second bladder, and a third bladder, wherein said first bladder, said second bladder, and said third bladder are radially offset with respect to each other; a camera positioned adjacent to said sleeve; a spray jet positioned adjacent to said camera for cleaning said camera; a plurality of conduits, wherein said plurality of conduits are comprised of a first conduit, a second conduit, and a third conduit; and a control unit, wherein said first conduit fluidly connects said first bladder with said control unit, wherein said second conduit fluidly connects said second bladder with said control unit, and wherein said third conduit fluidly connects said third bladder with said control unit; wherein said control unit is adapted to individually control each of said bladders by selectively directing airflow through one or more of said conduits, wherein said control unit includes a first controller for said first bladder, a second controller for said second bladder, and a third controller for said third bladder.
19. The pipe tool positioning system of claim 18, wherein said control unit is comprised of an air pump.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Various other objects, features and attendant advantages of the present invention will become fully appreciated as the same becomes better understood when considered in conjunction with the accompanying drawings, in which like reference characters designate the same or similar parts throughout the several views, and wherein:
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DETAILED DESCRIPTION OF THE INVENTION
(19) A. Overview.
(20) Turning now descriptively to the drawings, in which similar reference characters denote similar elements throughout the several views,
(21) B. Sleeve.
(22) As shown throughout the figures, the present invention includes a sleeve 20 which is adapted to receive and retain a tool 14 for positioning within a pipe 12, such as a pneumatic air-fed tool as shown in the figures. The sleeve 20 includes a first end 21, a second end 22, and a receiver opening 25 extending through its body between the first and second ends 21, 22. The first end 21 includes a first opening 23 and the second end 22 includes a second opening 24, with each opening 23, 24 providing access to the internal receiver opening 25.
(23) The sleeve 20 may be comprised of various shapes, but will generally comprise a substantially cylindrical shape as best shown in
(24) In the preferred embodiment shown in the figures, the tool 14 will be secured within the receiver opening 25 of the sleeve 20; with the tool 14 being in contact with and surrounded by the inner surface 27 of the sleeve 20. The outer surface 26 of the sleeve 20 includes the bladders 30, 40, 50 which are utilized for positioning of the tool 14 within the pipe 12.
(25) C. Bladders.
(26) The present invention utilizes a plurality of bladders 30, 40, 50 extending from the outer surface 26 of the sleeve 20 to aid in positioning of the tool 14 within the pipe 12. Each of the bladders 30, 40, 50 are adapted to inflate or deflate in response to the respective addition and/or removal of a fluid. The bladders 30, 40, 50 preferably extend radially from the sleeve 20, with each bladder 30, 40, 50 being radially offset with respect to the other bladders 30, 40, 50. It should also be appreciated that the sleeve 20 and bladders 30, 40, 50 may be integrally formed in some embodiments, or, in other embodiments, the bladders 30, 40, 50 may be connected to the sleeve 20.
(27) The shape, size, and configuration of the bladders 30, 40, 50 may vary in different embodiments of the present invention. In the figures, the bladders 30, 40, 50 are shown in a preferred configuration as elongated, inflatable members each extending between the first and second ends 21, 22 of the outer surface 26 of the sleeve 20. It should be appreciated that a range of fluids, including liquids and gases, may be utilized to inflate the bladders 30, 40, 50. In a preferred embodiment, compressed air will be utilized. However, fluids such as water or other gases may be utilized in some embodiments.
(28) It should be appreciated, however, that other configurations and sizes may be utilized so long as the bladders 30, 40, 50 radially extend from the outer surface 26 of the sleeve 20 to aid in positioning the tool 14 within the pipe 12. It should be appreciated that the bladders 30, 40, 50 may not necessary extend fully along the length of the sleeve 20, but may instead be different sizes for different applications of the present invention. The number of bladders 30, 40, 50 utilized within the present invention may vary in different embodiments. The number of bladders may be comprised of 2, 3, 4, 5, 6 or more individual bladders. The bladders may also be comprised of a unitary structure having partitions defining each of the individual bladders wherein a valve or similar structure within a divider wall may control the fluid pressure within each of the bladders. In the exemplary embodiment shown in the figures, a first bladder 30, a second bladder 40, and a third bladder 50 are used, with each of the bladders 30, 40, 50 being radially offset from the other bladders 30, 40, 50 in approximately 120 degree increments. Though this is a preferred embodiment in which three bladders 30, 40, 50 are used, it should be appreciated that alternate spacing may be utilized for different applications.
(29) Each of the bladders 30, 40, 50 are preferably individually controllable through use of its own conduit 32, 42, 52. Thus, the first bladder 30 includes a first conduit 32, the second bladder 40 includes a second conduit 42, and the third bladder 50 includes a third conduit 52. The first ends 33, 43, 53 of each respective conduit 32, 42, 52 are fluidly connected to the respective bladders 30, 40, 50 as best shown in
(30) Each of the conduits 32, 42, 52 are fluidly connected to the control unit 70 of the present invention. The lengths of the conduits 32, 42, 52 extending from the bladders 30, 40, 50 may vary. In some embodiments, the conduits 32, 42, 52 will be directly connected to the control unit 70, such as via a first connector 35 on the second end 34 of the first conduit 32, a second connector 45 on the second end 44 of the second conduit 42, and a third connector 55 on the second end 54 of the third conduit 52.
(31) The connectors 35, 45, 55 may be comprised of various quick-connect devices known in the art for fluidly connecting a conduit to another conduit or to a port. In some embodiments, the conduits 32, 42, 52 extending from the bladders 30, 40, 50 may be fluidly interconnected with the control unit 70 through additional conduits, valves, and the like, so long as fluid may be continuously fed between the control unit 70 and each of the bladders 30, 40, 50 individually.
(32) In some embodiments, a discrete sleeve 20 may be omitted, with the receiver opening 25 being formed between interconnected bladders 30, 40, 50. In such embodiments, the bladders 30, 40, 50 may be directly connected to each other or may be interconnected by other fabrics or linkages to form the receiver opening 25.
(33) D. Camera.
(34) As best shown in
(35) The camera 60 may be positioned along various locations of the present invention. In a preferred embodiment as shown in the figures, the camera 60 is positioned at the distal end of the outer tubing 79 which extends from the control unit 70. The camera 60 is preferably oriented to have its lens point along the outer surface 26 of the sleeve 20 between bladders 30, 40, 50 so that the view of the camera 60 is not impeded by the bladders 30, 40, 50.
(36) The camera 60 may be operated wirelessly or through a wired configuration. In a wired configuration, the wiring from the camera 60 may extend through the outer tubing 79 to be connected to the control unit 70. The feed from the camera 60 will preferably be viewable upon a display 71 included with the control unit 70, though in some embodiments the camera 60 feed may be transmitted wirelessly to other devices, such as tablets, computers, notebooks, or smart phones.
(37) E. Control Unit.
(38) The present invention generally includes a control unit 70 for controlling the various functionalities of the present invention. The configuration and complexity of the control unit 70 may vary in different embodiments. In a simplified embodiment of the present invention, the control unit 70 may simply be comprised of an air pump 80 directly connected to the bladders 30, 40, 50.
(39) In a preferred embodiment as best shown in
(40) The control unit 70 will preferably include one or more controls 72, 73, 74 for controlling individual operation of each bladder 30, 40, 50. In the embodiment best shown in
(41) The control unit 70 may act as a hub for the various other components of the present invention such as shown in
(42) In a preferred embodiment as shown in
(43) The control unit 70 may also include an outlet port 78 such as shown in
(44) F. Operation of Preferred Embodiment.
(45) In use, the control unit 70 is first oriented at or near an entry point for the pipe 12 to be serviced. Various types of pipes 12 may be serviced, such as CIPP cured-in-place pipe lining, utility piping and conduits, sewer, drain, water, fire suppression, pressure, industrial, petroleum, electrical, heating, or cooling pipes, as well as HVAC duct work and the like.
(46) As shown in
(47) Once the tool 14 is secured within the receiver opening 25, it may be inserted through the pipe 12 as shown in
(48) As shown in
(49) When properly oriented, the tool 14 may be used such as shown in
(50) Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. Although methods and materials similar to or equivalent to those described herein can be used in the practice or testing of the present invention, suitable methods and materials are described above. All publications, patent applications, patents, and other references mentioned herein are incorporated by reference in their entirety to the extent allowed by applicable law and regulations. The present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof, and it is therefore desired that the present embodiment be considered in all respects as illustrative and not restrictive. Any headings utilized within the description are for convenience only and have no legal or limiting effect.