AU648784B2 – Apparatus for inspecting the interior of a lateral pipeline
– Google Patents
AU648784B2 – Apparatus for inspecting the interior of a lateral pipeline
– Google Patents
Apparatus for inspecting the interior of a lateral pipeline
Download PDF
Info
Publication number
AU648784B2
AU648784B2
AU74680/91A
AU7468091A
AU648784B2
AU 648784 B2
AU648784 B2
AU 648784B2
AU 74680/91 A
AU74680/91 A
AU 74680/91A
AU 7468091 A
AU7468091 A
AU 7468091A
AU 648784 B2
AU648784 B2
AU 648784B2
Authority
AU
Australia
Prior art keywords
conduit
lateral pipe
lateral
camera
pipe
Prior art date
1990-03-08
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
AU74680/91A
Other versions
AU7468091A
(en
Inventor
Eric Wood
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Insituform Licensees BV
Original Assignee
Insituform Licensees BV
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
1990-03-08
Filing date
1991-03-07
Publication date
1994-05-05
1991-03-07
Application filed by Insituform Licensees BV
filed
Critical
Insituform Licensees BV
1991-10-10
Publication of AU7468091A
publication
Critical
patent/AU7468091A/en
1994-03-10
Assigned to INSITUFORM LICENSEES BV/S.A.
reassignment
INSITUFORM LICENSEES BV/S.A.
Alteration of Name(s) of Applicant(s) under S113
Assignors: INSITUFORM GROUP LIMITED
1994-05-05
Application granted
granted
Critical
1994-05-05
Publication of AU648784B2
publication
Critical
patent/AU648784B2/en
2011-03-07
Anticipated expiration
legal-status
Critical
Status
Ceased
legal-status
Critical
Current
Links
Espacenet
Global Dossier
Discuss
Classifications
F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17—STORING OR DISTRIBUTING GASES OR LIQUIDS
F17D—PIPE-LINE SYSTEMS; PIPE-LINES
F17D5/00—Protection or supervision of installations
F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
F16L—PIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
F16L55/00—Devices or appurtenances for use in, or in connection with, pipes or pipe systems
F16L55/16—Devices for covering leaks in pipes or hoses, e.g. hose-menders
F16L55/179—Devices for covering leaks in pipes or hoses, e.g. hose-menders specially adapted for bends, branch units, branching pipes or the like
F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
F16L—PIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
F16L55/00—Devices or appurtenances for use in, or in connection with, pipes or pipe systems
F16L55/26—Pigs or moles, i.e. devices movable in a pipe or conduit with or without self-contained propulsion means
F16L55/265—Pigs or moles, i.e. devices movable in a pipe or conduit with or without self-contained propulsion means specially adapted for work at or near a junction between a main and a lateral pipe
G—PHYSICS
G01—MEASURING; TESTING
G01M—TESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
G01M3/00—Investigating fluid-tightness of structures
G01M3/005—Investigating fluid-tightness of structures using pigs or moles
G—PHYSICS
G01—MEASURING; TESTING
G01M—TESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
G01M3/00—Investigating fluid-tightness of structures
G01M3/38—Investigating fluid-tightness of structures by using light
H—ELECTRICITY
H04—ELECTRIC COMMUNICATION TECHNIQUE
H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
H04N7/00—Television systems
H04N7/18—Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
H04N7/183—Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast for receiving images from a single remote source
H04N7/185—Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast for receiving images from a single remote source from a mobile camera, e.g. for remote control
Description
OPI DATE 10/10/91 APPLN. ID 74680 91 AOJP DATE 07/11/91 PCT NUMBER PCT/GB91/00364 PCir INTERNATIONAL APPLICATION PUBLISHED UNDER THE PATENT COOPERATION TREATY (PCT) (51) International Patent Classification 5 (11) International Publication Number: WO 91/14127 F16L 55/00, F17D 5/00 Al G01M 3/00 (43) International Publication Date: 19 September 1991 (19.09.91) (21) International Application Number: PCT/GB91/00364 (81) Designated States: AT (European patent), AU, BE (European patent), CA, CH (European patent), DE (Euro- (22) International Filing Date: 7 March 1991 (07.03.91) pean patent), DK (European patent), ES (European patent), FI, FR (European patent), GB (European patent), GR (European patent), IT (European patent), JP, KR, Priority data: LU (European patent), NL (European patent), NO, SE 490,714 8 March 1990 (08.03.90) US (European patent), SU.
(71) Applicant: INSITUFORM GROUP LIMITED GD/GD]; Published 3/ Hil Strt, Doutgla, Isle f Man-fB With international search report.
(72) Inventor: WOOD, Eric Witch’s Mill, Arbory Road, Cas- 6 4 8 7 8 4 tietown, Isle of Man (GB).
(74) Agent: DENMARK, James; 5 York Place, Leeds LSI 2SD (54) Tile, APARTU, FO2R G TH (54) Title: APPARATUS FOR INSPECTING THE INTERIOR OF A LATERAL PIPELINE (57) Abstract A pipeline extending laterally from a main pipeline is inspected from the main line by utilizing an everted hose originally located in the main pipeline to project a TV camera, cleaning head or other device into and along the lateral pipeline.
WO 91/14127 PCT/GB91/00364 1 APPARATUS FOR INSPECTING THE INTERIOR OF A LATERAL PIPELINE This invention relates to pipeline inspection apparatus and in particular concerns an apparatus for the manipulation of a camera or other examination device, cleaning head or other processing device along a lateral pipeline.
Reference hereinafter and in the appended claims is made only to a TV camera and inspection, but unless the context probibits the wider interpretation, the TV camera and inspection should be understood in the interests of simplicity to cover any other device such as a cleaning head and cleaning or other processing device and its function.
Specifically, the apparatus is sLitable for manipulating a camera to enable it to be inserted into and projected along a lateral pipeline which meets a main pipeline at an angle. A lateral pipeline may be provided, for example, to provide connection between a domestic dwelling and a main sewer or a main gas line.
Frequently, there is a need for inspection of the lateral pipeline in order to ascertain its need of repair, or for the purpose of detecting a leak.
SUBSTITUTE
SHEET
Vv~O 91/14127 PCI/GB91/00364 -2- There are known TV inspection apparatus which can be inserted in and moved along main pipelines and passageways which are located underground, a TV camera sending back signals to a remotely located monitor, for example, in an inspection truck located at ground level. Wa 4 patent 4,677,472 of June 1987, entitled «Apparatus For Inspecting the Interior of a Pipeline», discloses apparatus for enabling the inspection of lateral pipelines or passageways, and in particular for permitting such inspection to be accomplished from the main pipeline. This is important because inserting the inspection camera from the consumer end of the lateral pipeline, from a domestic dwelling, is in the majority of cases unacceptable to the occupier of the dwelling. That patent discloses a driven pulley-like arrangement for engaging and driving the cable to which the TV camera is connected, thereby pushing the TV camera into and along the lateral pipeline.
It has been found that the apparatus of the aforesaid patent, while effective, is not sufficiently reliable, particularly with regard to the accuracy with which the TV camera is oriented relative to the lateral pipeline and the positiveness of the projection of the TV camera.into and along that lateral pipeline.
Because lateral pipelines may extend from the main pipeline at varying angles, without accurate initial -Z alignment of the camera the camera will either not enter the lateral pipeline or will enter it in a manner WO 91/14127 PCT/GB91/00364 3 causing it to impact against the wall of that lateral pipeline rather than being pushed through the pipeline opening. In addition, since pipelines often contain impediments to the passage of a camera therethrough, such as accumulations of debris, it may be necessary to exert strong force on the camera to push it through or past such obstructions, and the pulley drive’on the camera cable in the apparatus of the aforesaid patent would sometimes slip when there was resistance to the movement of the camera along the lateral line.
In accordance with the present invention, an improved camera-projecting system is employed which will much more accurately align the camera with the particular lateral line to be inspected and will much more positively and reliably push the camera through that lateral line. It will do this by means of apparatus and equipment much of which is already available in c6nnection with pipe relining operations and with which the working personnel are familiar, so that the cost of carrying out the lateral pipeline inspection from the main pipeline is truly minimized.
Close and positive control of the inspection process is enabled, again through the use of equipment and techniques with which the personnel involved are already familiar.
Lateral pipeline inspection is usually carried out in conjunction with the repair of main WO 91/14127 PCT/GB91/00364 4 pipelines by relining them, the lateral pipeline inspection being directed to ascertaining whether there is any necessity to repair the lateral pipelines as well. The most commonly used process for the lining of pipelines and passageways comprises basically the inversion into the pipeline or passageway to be lined of a tubular flexible liner which includes a resin-absorbent material impregnated with curable resin. The flexible liner is held against the surface to be lined by means of fluid pressure, and the resin allowed or caused to cure, so that there is formed a har, resin lining against the passageway or pipeline surface. The process involved is generally described in such patents as ee- 4,009,063, f February 22, 1977 entitled «Method of Lining a Pipe» and Wood patent 4,064,211 of December 20, 1977 entitled «Lining of Passageways». This process has been very widely used over the years, and equipment for carrying it out exists and is relatively standardized. The resincontaining tube is inverted by means of fluid pressure, the liner installation equipment containing pumps or the like for developing that pressure and causing the resin-containing tube to be inverted.
In accordance with the present invention, a tube inverted by fluid pressure is utilized as the medium for projecting a TV camera into and through the lateral pipeline. The inverted tube constitutes a readily controllable and positive acting projecting mechanism utilizing for the most part apparatus already WO 91/14127 PCT/GB91/00364 available and in place at the relining location.
Insofar as inversion is concerned, it is analogous to the resin-impregnated lining used for repair.
Accurate orientation of the camera relative to the lateral pipeline is achieved through simple adaptation of already existing cutting apparatus of the type C-S Us generally disclosed \in such patents /as-Dav’is ,al 4,197,9080 of April 15, 1980 entitled «Apparatus For Porting a Side Wall of a Conduit From Interiorly Thereof». Each lateral pipeline to be inspected may have its own individual parameters of orientation and length, and the apparatus here disclosed can be readily adapted thereto. A particular feature thereof is that the length of the apparatus to be inserted in the main pipeline need be only a fraction, generally approximately one-half, of the distance along the lateral pipeline that is to be inspected.
It is the prime object of the present invention to devise a significantly improved apparatus for enabling lateral pipelines to be inspected from the main pipeline.
It is a further object of the present invention to devise such an apparatus which facilitates accurate registration of a camera with the particular lateral ‘pipeline to be inspected and which projects the TV camera through that lateral pipeline with a high degree of positiveness and under close control.
.’E
6 It is yet another object of the present invention to provide such apparatus the parts of which are to a large extent already available in connection with pipe relining operations, thereby minimizing capital cost and facilitating operation by personnel already experienced in pipe relining operations.
To the accomplishment of the above and to such other objects as may hereinafter appear, the present invention relates to the arrangement of apparatus for iiispecting the interior of a lateral pipeline, as defined in thte following claims and as described in this specification, taken together with the accompanying drawings, in which Fig. 1 is a diagrammatic view of a main pipeline and lateral pipelines and the manner in which the apparatus of the present invention is used in conjunction therewith; Fig. 2 is a side elevational view of the apparatus of the present invention; and Figs. 3A and 3B are collectively a cross-sectional view on an enlarged scale of the apparatus of Fig. 2 in position in a main pipeline ready to inspect a lateral pipeline.
6 WO 91/14127 PCT/GB91/00364 -7 counrse onf br~inmovod bhN e gh tithp–~ Th’–teralk~iiiut~ Referring to the drawings, an underground pipeline 10 is shown as extending between upstream and downstream access openings 12 and 14, which may be manhole openings. Communicating with the main pipe is a lateral connecting pipe 16 extending from the main pipeline 10 at an angle and continuing to some remote point, such as the dwelling 18. The objective is to inspect the interior of the lateral pipe 16 from the main pipeline 10. That inspection may be required to determine whether repair of the lateral pipeline 16 is required and what problems may be presented in the course of such repair by obstructions in or discontinuities of that lateral pipeline. That inspection is to be carried out, as is conventional, by a miniature TV camera 20 connected by a cable 22 to a TV monitor 24 located adjacent the upstream manhole 12 and usually contained within a vehicle 26 such as a truck or trailer. The cable 22 preferably has a substantial degree of rigidity, particularly in connection with being axially pushed, although it is capable of bending.
The apparatus for controllably projecting the camera 20 into and along the lateral pipeline 16 after that apparatus has been properly positioned in the main pipeline 10 comprises a pressure cannister assembly generally designated 28 with a flexible hose 30 extending therefrom, and an angled part 32 connected to the forward end of hose 30, the parts 28, 30 and 32 generally 3 0 C 11 WO 91/14127 PC/GB91/00364 adefining a conduit. The part 32 is in turn secured to a positioning arm 34 on a remotely controlled locating mechanism 36 which is preferably the locating mechanism of a conventional cutter of the type previously referred to but from which the cutter has been removed. An electrical cable 38 extends from the positioning mechanism 36 to the truck 26 so that the locating mechanism 36 can be remotely controlled. A pulling cable 40 is secured to the forward end of the locating mechanism 36. The pressure cannister 28 and’positioning mechanism 36 are mounted on sleds 28a and 36a respectively.
The pressure cannister 28 comprises a pipe body 42 of a diameter less than that of the main pipeline 10 from which a reduced diameter pipe portion 44 extends forwardly, the rear wall of the pressure cannister 28 being closed and carrying a packing gland 46 and a through connection 48 to which an air pressure hose 50 may be connected, the other end of that hose being connected to a pressure pump 52 preferably located in the truck or trailer 26. The hose which may be formed of polyvinyl chloride, has one end 30a received over the pipe portion 44 and sealed thereto by band 54. The angled part 32 is preferably rigid and comprises angled conduit sections 32a and 32b. The angle that the conduit sections 32a and 32b make with one another preferably corresponds reasonably exactly with the angle that the particular lateral pipeline 16 makes with the main pipeline 10, the parts WO 91/14127 PCT/GB91/00364 9 32a and 32b as specifically disclosed being rigidly related to one another. Under these circumstances different parts 32 will be selectively employed to correspond in angularity to the inclination of the particular pipeline 16 to be inspected. This will involve having available a plurality of parts 32 with different angular relations between 32a and 32b.
Alternatively, a single part 32 can be employed in which the section’s 32a and 32b are angularly adjustable relative to one another so as to conform to the particular angular orientation of the lateral pipeline 16 in question. The forward end of hose 30 is received over the section 32a and is sealingly secured thereto by band 56. As has been noted, the part 32 is secured to the positioning arm 34 of the locating mechanism 36, which can be controllably moved to adjust the position of the part 32 both axially of the main pipeline 10, rotationally about the axis of the pipeline 10, and radially with respect thereto, so that the section 32b of the part 32 can be accurately aligned and registered with the mouth of the lateral pipeline 16.
Contained within the hose 30 and part 32 is an evertible hose 58 formed, for example, of neoprene. The left-hand end of the hose 58 extends through the part’32, is bent back thereover at 58a, and is there sealingly secured to the section 32b by band 60. The other end of the hose 58 is located within the hose 30. The TV camera 20 is initially WO 91/14127 PCT/GB91/00364 10 positioned inside the forward end 58a of the hose 58 and its cable 22’extends through the hose and out thr ,igh the gland 46, through which it is sealingly slidable, up through the access opening 12 to the truck 26, where it is connected to the monitor 24.
The trailing or right-hand end of the hose 58 is gathered together and is secured to an intermediate portion of the cable 22 by means of band 62. This is the relationship of parts shown in Figs. 3A and 3B constituting the inspection mechanism in its initial condition.
That inspection mechanism is inserted into the main pipeline 10 through the access opening 12 and is pulled along the main pipeline 10 by pulling on the cable 40 which axtends up through the access opening 14 to a winch 64 until the open end of the part 32 is brought into approximate registration with the mouth of the lateral pipeline 16 to be inspected. A second miniature TV camera 66 is secured to the outside of the forward end of the hose 30 by band 68 and its cable extends to the monitor 24 so that personnel in the truck or trailer 26 can instruct those operating the winch 64 appropriately.
When the apparatus has been positioned with the open end 32b of the part 32 approximately aligned with the mouth of the lateral pipeline 16, the operator in the truck 26 will then energize and control the locating apparatus 36 so as to rotate the part 32, and WO 91/14127 PCT/GB91/00364 i1 also preferably move it radially of the main pipeline in order for the TV camera 20 to be more or less accurately aligned with the axis of the lateral pipeline 16.
Then the operator will cause the pump 52 to operate, applying fluid pressure through the tube and the opening 48 into the conduit defined by the interior of the pressure cannister 28, the hose 30 and the part 32. This fluid pressure will be exerted on the left-hand end of the evertible hose 58, causing that hose 58 to invert through the open end of the conduit part 32b. This will pull the right-hand end of the hose 58 to the left until that end reaches the open end of the part 32b and will then further force that hose end otitwardly until the hose 58 has been completely everted. As that hose end moves it will move the camera cable 22 along with it, the cable 22 sealingly sliding through the gland 46, and, because the cable 22 has a substantial degree of rigidity at least insofar as Aial force is concerned, that will in turn push the camera 20 outwardly from the part 32 into and along the lateral pipeline 16. The speed with which the camera 20 is thus moved, and the force that moves it, are readily controlled by controlling the pressure developed by the pump 52 and by restraining the speed of movement of the camera cable 22 in any appropriate manner. Because the eversion of the hose 58 is positive in nature and the camera cable 22 is rigidly connected thereto, the TV camera 20 is WO 91/14127 PCT/GB91/00364 12 positively moved through the lateral pipeline 16.
Since eversion causes the right-hand end of the hose 58 to move through a distance twice the length of the hose 58, it is only necessary that the hose 58 have a length one-half that of the length of the lateral pipe 16 to be inspected.
The locating mechanism 36 and the pressure cannister assembly 28 may be used for all inspections.
Hoses 30 and 58, each of a length appropriate to the particular pipe length or lengths to be inspected, may be connected thereto aboveground, and the appropriately angularly oriented part 32 may also be attached aboveground. The entire inspection assembly may readily be inserted into the main pipeline particularly in view of the fact that the hoses and 58 are readily flexible. It is a simple matter to pull that assembly through the pipeline 10 to its proper position by operating the winch 64 while observing the monitor 24, after which the final precision positioning of the camera 20 relative to the lateral pipeline 16 is further controllably accomplished. The camera may then be positively and forcefully pushed through the lateral pipeline 16 and its interior observed on the monitor 24, which reflects the viewing of the camera After the lateral pipeline 16 has been inspected the camera 20 may be withdrawn into the WO 91/14127 PCT/GB91/00364 -13 inspection apparatus simply by pulling back on the camera cable 22. It is desirable to maintain some air pressure (1-2 psi) during the camera removal from the lateral pipeline 16 to avoid bunching of the neoprene hose 58.
The same apparatus can be used sequentially to inspect a plurality of lateral pipelines 16, provided that the angular orientations of those lateral pipelines with respect to the main pipeline 10 do not depart radically from one another, simply by sequentially moving the inspection apparatus along the main pipeline from one lateral pipeline 16 to the next and realigning the part 32 around the axis of the main pipeline 10 to correspond to the orientation of that particular lateral pipeline 16.
When the length of a particular lateral pipeline 16 is not known with sufficient precision, that length can be measured by marking the camera cable 22 when the camera 20 is about to enter the lateral pipeline and when it has reached the end thereof, and then measuring the distance between those marks.
It will be apparent from the above that a relatively standardized apparatus utilizing conventional and for the most part already available parts is easily assembled, equally easily inserted into a main pipeline through a manhole access or the like, and provides for readily controlled and positively acting propulsion of WO 91/14127 PCT/GB91/00364 14 an inspection camera through a lateral pipeline from a main pipeline, thereby making it unnecessary to have access to the outlet of that lateral pipeline in order to carry out the inspection.
While there has been here disclosed but a single embodiment of the present invention, it will be apparent that many variations may be made therein, all within the scope of the instant invention as defined in the following claims.
Claims (19)
1. Apparatus for inspecting a lateral pipe from a main pipe, said apparatus comprising a support adapted to be moved along said main pipe to the location of said lateral pipe, a conduit on said support for movement with said support into substantial registration with said lateral pipe, a camera with a cable operatively connected thereto, and a carrier hose, said carrier hose extending through said conduit with its leading end sealingly secured to the leading end of said conduit and its trailing end within said conduit, said camera cable extending from an external station along said carrier hose with said camera located adjacent the leading end of said carrier hose and with the trailing end of said carrier hose secured to said cable, aiid means for exerting fluid pressure between said carrier hose and said conduit while said camera and camera cable are permitted to move forwardly relative to said conduit, whereby said exertion of fluid pressure everts said carrier hose forwardly from said conduit and causes said camera with its cable to be projected out from said conduit into and along said lateral pipe.
2. The apparatus of Claim 1, in which the leading portion of said conduit comprises a substantially rigid angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe. en
3. The apparatus of Claim 1, in which the leading 4.4-eR- of said conduit comprises a substantially rigid angled portion the angle of which at least approximately corresponds to the inclination of said lateral p\pe relative, to said main pipe, the trailing pei~4onof said eeon4uit being of a length at least substantially SUBSTITUTE SHEET 16 equal to half the length of said lateral pipe desired to be inspected.
4. The apparatus of claim 1, in which the leading end of said conduit comprises a substantially rigid angle portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said conduit being substantially sealed by a gland through which said camera cable slidably passes.
The apparatus of Claim 1, in which the leading end of said conduit comprises a substantially rigid angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said hose being of a length at least substantially equal to half the length of said lateral pipe to be inspected, the trailing end of said conduit being substantially sealed by a gland through which said camera cable slidably passes.
6. The apparatus of Claim i, in which the leading end of said conduit comprises an angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main •pipe.
7. The apparatus of Claim i, in which the leading end of 30 said conduit comprises an angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said hose being of a length at least substantially equal to half the length of said lateral pipe desired to be inspected. !j’s 17
8. The apparatus of Claim i, in which the leading end of said conduit comprises an angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said conduit being substantially sealed by a gland through which said camera cable slidably passes.
9. The apparatus of Claim i, in which the leading end of said conduit comprises an angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said hose being of a length at least substantially equal to half the length of said lateral pipe to be inspected, the trailing end of said conduit being substantially sealed by a gland through which said camera cable slidably passes.
Apparatus for inspecting a lateral pipe from a main pipe, said apparatus comprising a support adapted to be moved along said main pipe to the location of said lateral pipe, a conduit on said support for movement with said support into substantial registration with said lateral pipe, means operatively connected to said conduit for moving its leading end relative to said support for more accurate registration with said lateral pipe, a camera with a cable operatively connected thereto, and a carrier hose, said carrier hose extending through said conduit with its leading end sealingly 30 secured to the leading end of said conduit and its S.trailing end within said conduit, said camera cable extending from an external station along said carrier hose with said camera located adjacent the leading end of said carrier and with the trailing end of said carrier hose secured to said cable, and means for exerting fluid pressure between said carrier hose and v» cy 18 said conduit while said camera and camera cable are permitted to move forwardly relative to said conduit, whereby said exertion of said fluid pressure everts said carrier hose forwardly from said conduit and causes said camera with its cable to be projected out from said conduit into and along said lateral pipe.
11. The apparatus of Claim 10, in which the leading end of said conduit comprises a substantially rigid angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe.
12. The apparatus of Claim 10, in which the leading end of said conduit comprises a substantially rigid angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said hose being of a length at least substantially equal to half the length of said lateral pipe desired to be inspected.
13. The apparatus of Claim 10, in which the leading end of said conduit comprises a substantially rigid angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said conduit being substantially sealed by a gland through which said camera cable slidably passes. S
14. The apparatus of Claim 10, in which the leading end of said conduit comprises a substantially rigid angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said hose being of a length at least substantially equal to 19 half the length of said lateral pipe desired to be inspected, the trailing end of said conduit being substantially sealed by a gland through which said camera cable slidably passes.
The apparatus of Claim 10, in which the leading end of said conduit comprises an angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe.
16. The apparatus of Claim 10, in which the leading end of said conduit comprises an angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said hose being of a length at least substantially equal to half the length of said lateral pipe desired to be inspected.
17. The apparatus of Claim 10, in which the leading end of said conduit comprises an angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to said main pipe, the trailing end of said conduit being substantially sealed by a gland through which said camera cable slidably passes.
18 The apparatus of Claim 10, in which the leading end of said conduit comprises an angled portion the angle of which at least approximately corresponds to the inclination of said lateral pipe relative to the main pipe, the trailing end of said hose being of a length at least substantially equal to half the length of said lateral pipe desired to be inspected, the trailing end of said conduit being substantially sealed by a gland through which said camera cable slidably passes. .3 o ,o .3o i 4′ Ci «»’14 20
19. An apparatus for inspecting a lateral pipe from a main pipe, substantially as hereinbefore described with reference to the accompanying drawings. DATED this 24th day of February 1994 INSITUFORM GROUP LIMITED By its Patent Attorneys R K MADDERN ASSOCIATES K-94 CC I CI i? ~71~ 1 I~ c~ i \I lil
AU74680/91A
1990-03-08
1991-03-07
Apparatus for inspecting the interior of a lateral pipeline
Ceased
AU648784B2
(en)
Applications Claiming Priority (3)
Application Number
Priority Date
Filing Date
Title
US07/490,714
US4991006A
(en)
1990-03-08
1990-03-08
Apparatus using an everted hose for inspecting the interior of a lateral pipeline
US490714
1990-03-08
PCT/GB1991/000364
WO1991014127A1
(en)
1990-03-08
1991-03-07
Apparatus for inspecting the interior of a lateral pipeline
Publications (2)
Publication Number
Publication Date
AU7468091A
AU7468091A
(en)
1991-10-10
AU648784B2
true
AU648784B2
(en)
1994-05-05
Family
ID=23949167
Family Applications (1)
Application Number
Title
Priority Date
Filing Date
AU74680/91A
Ceased
AU648784B2
(en)
1990-03-08
1991-03-07
Apparatus for inspecting the interior of a lateral pipeline
Country Status (12)
Country
Link
US
(1)
US4991006A
(en)
EP
(1)
EP0518978A1
(en)
JP
(1)
JPH05505028A
(en)
AU
(1)
AU648784B2
(en)
CA
(1)
CA2075709A1
(en)
FI
(1)
FI923931A0
(en)
HU
(1)
HUT56965A
(en)
IE
(1)
IE910756A1
(en)
LT
(1)
LT3647B
(en)
LV
(1)
LV10335A
(en)
RU
(1)
RU2082909C1
(en)
WO
(1)
WO1991014127A1
(en)
Families Citing this family (50)
* Cited by examiner, † Cited by third party
Publication number
Priority date
Publication date
Assignee
Title
US5164826A
(en)
*
1991-08-19
1992-11-17
Westinghouse Electric Corp.
Method and apparatus for visual inspection of the internal structure of apparatus through internal passages
US5198894A
(en)
*
1991-09-24
1993-03-30
Hicks John W
Drape for endoscope
WO1993023729A1
(en)
*
1992-05-12
1993-11-25
Andrew Karl Dufresne
Pipe testing and locating apparatus
JPH08501371A
(en)
*
1992-09-08
1996-02-13
キップ,イェン−ヴェルネル
Inspection, maintenance and repair methods and equipment for auxiliary conduits branched from the main drain
FR2696815B1
(en)
*
1992-10-12
1994-12-30
Spie Trindel
Machine for visual inspection of pipe connections.
GB9225528D0
(en)
1992-12-07
1993-01-27
Insituform Group Ltd
Improvements relating to the lining of pipelines and passageways
DE4328575C2
(en)
*
1993-08-25
1996-09-05
Daimler Benz Aerospace Ag
Device for checking cavities
GB9319832D0
(en)
*
1993-09-25
1993-11-10
Insituform Technologies Inc
Improvements relating to the lining of pipelines and passageways
DE4417265C1
(en)
*
1994-05-17
1995-08-31
Trienekens Entsorgung Gmbh
Flushing and inspection arrangement for drainage pipes in waste tips
US5950682A
(en)
*
1994-08-19
1999-09-14
Lmk Enterprises, Inc.
Apparatus and method for repairing the junction of a sewer main line and lateral
US5653555A
(en)
1995-05-19
1997-08-05
Inliner, U.S.A.
Multiple resin system for rehabilitating pipe
US5699838A
(en)
1995-05-22
1997-12-23
Inliner, U.S.A.
Apparatus for vacuum impregnation of a flexible, hollow tube
US5754220A
(en)
*
1996-04-26
1998-05-19
Emerson Electric Company
Apparatus for inspecting the interior of pipes
US6469753B1
(en)
*
1996-05-03
2002-10-22
Starsight Telecast, Inc.
Information system
US5689734A
(en)
*
1996-08-26
1997-11-18
Westinghouse Electric Corporation
Pressurized camera system
US6687906B1
(en)
1996-12-19
2004-02-03
Index Systems, Inc.
EPG with advertising inserts
EP0859345B1
(en)
*
1997-02-13
2002-05-08
VIDEOR TECHNICAL E. HARTIG GmbH
Protective casing for optical apparatus with device for fixing to a surface
US5862561A
(en)
*
1997-07-16
1999-01-26
Irwin; Lawrence F.
Waste line inspection and clean out device with water jet head
US5925409A
(en)
*
1997-08-27
1999-07-20
Reichhold, Inc.
Resins for lining surfaces
US6692802B1
(en)
*
1997-08-27
2004-02-17
Reichhold, Inc.
Resins for lining surfaces
US5956135A
(en)
*
1997-11-03
1999-09-21
Quesnel; Ray J.
Pipeline inspection apparatus
US6029726A
(en)
*
1997-11-26
2000-02-29
Insituform (Netherlands) B.V.
Apparatus for installing a flexible cured in place lateral seal in an existing main pipeline
US6068725A
(en)
*
1997-11-26
2000-05-30
Insituform (Netherlands) B.V.
Method of installation of a flexible cured in place lateral seal in an existing main pipeline
US5915419A
(en)
*
1997-11-26
1999-06-29
Insituform (Netherlands) B.V.
Cured in place lateral seal for relining of pipelines and method of manufacture
US5992247A
(en)
*
1998-04-23
1999-11-30
Aries Industries Incorporated
Apparatus for inspecting lateral sewer pipes
CA2309018A1
(en)
2000-05-12
2001-11-12
R. Michael Mcgrew
Improved apparatus for inspecting lateral sewer pipes
US6423258B1
(en)
2000-07-31
2002-07-23
American Pipe & Plastics, Inc.
Machine and method for providing folded pipe liners
US20020113869A1
(en)
*
2000-12-18
2002-08-22
Kirkwood Scott M.
Pipeline mapping system and method
US20030038403A1
(en)
*
2001-08-21
2003-02-27
American Pipe & Plastics, Inc.
Machine and method for providing folded pipe liners
US6813570B2
(en)
*
2002-05-13
2004-11-02
Delphi Technologies, Inc.
Optimized convection based mass airflow sensor circuit
US7478650B2
(en)
*
2002-06-19
2009-01-20
Saint-Gobain Technical Fabrics Canada, Ltd.
Inversion liner and liner components for conduits
US7191673B2
(en)
*
2003-08-11
2007-03-20
Hathorn Corporation
Apparatus for inspecting a lateral conduit
US7073979B2
(en)
*
2003-11-26
2006-07-11
Aries Industries Incorporated
Method and apparatus for performing sewer maintenance with a thermal sensor
US8099326B2
(en)
2005-06-01
2012-01-17
Google Inc.
Traffic estimator
US7551197B2
(en)
2005-09-08
2009-06-23
Ulc Robotics, Inc.
Pipeline inspection system
US9113107B2
(en)
*
2005-11-08
2015-08-18
Rovi Guides, Inc.
Interactive advertising and program promotion in an interactive television system
JP5215993B2
(en)
*
2006-04-27
2013-06-19
アイエヌエイ アクイジション コーポレーション
Rehabilitation of existing joints in lined conduits
US8832742B2
(en)
2006-10-06
2014-09-09
United Video Properties, Inc.
Systems and methods for acquiring, categorizing and delivering media in interactive media guidance applications
US7845372B2
(en)
*
2007-03-30
2010-12-07
Lmk Enterprises, Inc.
Bladderless pipeliner and method for using same
US20090289451A1
(en)
*
2008-05-21
2009-11-26
Ina Acquisition Corp.
T-Nut Assembly For Sealing An Existing Connection In A Lined Conduit
US8820363B2
(en)
*
2010-03-24
2014-09-02
Ina Acquisition Corp.
Wedge type plug and method of plugging a lateral line
US8607857B2
(en)
2010-12-17
2013-12-17
Baker Hughes Incorporated
Vacuum debris removal with articulated pickup and visual capability
US8733187B2
(en)
*
2012-04-18
2014-05-27
Steady Flux, Inc
Pipe inspection system
US10373470B2
(en)
2013-04-29
2019-08-06
Intelliview Technologies, Inc.
Object detection
CA2847707C
(en)
2014-03-28
2021-03-30
Intelliview Technologies Inc.
Leak detection
NL2012552B1
(en)
*
2014-04-02
2016-02-15
Stichting Incas3
Method of inserting the video mote into remote environment, video mote and sensor system.
US10943357B2
(en)
2014-08-19
2021-03-09
Intelliview Technologies Inc.
Video based indoor leak detection
EP3346175A1
(en)
2017-01-06
2018-07-11
Per Aarsleff A/S
Assembly for relining a junction between a branch pipeline and a main pipeline, and for relining a part of or the whole branch pipeline
US11131418B2
(en)
2017-01-06
2021-09-28
The Charles Machine Works, Inc.
Assembly for relining a junction between a branch pipeline and a main pipeline, and for relining a part of or the whole branch pipeline
US11214450B1
(en)
*
2021-03-11
2022-01-04
Cciip Llc
Method of proofing an innerduct/microduct and proofing manifold
Citations (3)
* Cited by examiner, † Cited by third party
Publication number
Priority date
Publication date
Assignee
Title
US4651558A
(en)
*
1985-09-13
1987-03-24
Cues, Inc.
Method and apparatus for inspecting lateral lines
US4677472A
(en)
*
1984-11-21
1987-06-30
Insituform Group Limited
Apparatus for inspecting the interior of a pipeline
DE3803274A1
(en)
*
1988-02-04
1989-08-17
Mueller Umwelttechnik
Device for the television examination of pipelines
Family Cites Families (16)
* Cited by examiner, † Cited by third party
Publication number
Priority date
Publication date
Assignee
Title
GB1340068A
(en)
1970-09-22
1973-12-05
Insituform Pipes & Structures
Lining of surfaces defining passageways
US3764736A
(en)
*
1971-03-03
1973-10-09
Combustion Eng
Remote visual examination apparatus
US4064211A
(en)
1972-12-08
1977-12-20
Insituform (Pipes & Structures) Ltd.
Lining of passageways
US3852527A
(en)
*
1973-10-09
1974-12-03
Thiokol Corp
Articulate inspection instrument
US3862359A
(en)
*
1973-10-09
1975-01-21
Thiokol Corp
Inflatable inspection instrument
US4131914A
(en)
*
1975-09-23
1978-12-26
Bricmont & Associates, Inc.
Method and apparatus for inspecting refractory lining in coke oven chambers and the like
US4197908A
(en)
1978-04-06
1980-04-15
Underground Surveys Corporation
Apparatus for porting a side wall of a conduit from interiorly thereof
SE439377B
(en)
*
1978-07-26
1985-06-10
Hitachi Ltd
DEVICE FOR OPTICAL INSPECTION OF PIPE PIPES
US4281876A
(en)
*
1979-09-07
1981-08-04
Coalex, Inc.
Televised remote control system of a continuous mining machine
US4434115A
(en)
*
1981-02-18
1984-02-28
Insituform International, Inc.
Method for remote lining of side connections
US4432931A
(en)
*
1981-10-02
1984-02-21
Electric Power Research Institute, Inc.
Inspection system
GB2129653A
(en)
*
1982-11-02
1984-05-16
Ian Roland Yarnell
Remotely controllable mounting for camera or tool
JPS6038641A
(en)
*
1983-08-10
1985-02-28
Kensetsusho Kyushu Chiho Kensetsu Kyokucho
Pipe interior inspecting apparatus of sewage pipe
US4532545A
(en)
*
1983-08-29
1985-07-30
Hanson Lowell C
Subteranean surveying apparatus
US4586079A
(en)
*
1983-10-07
1986-04-29
Westinghouse Electric Corp.
Fiberscope delivery system
GB8609307D0
(en)
*
1986-04-16
1986-05-21
Insituform Group Ltd
Lining of piplines
1990
1990-03-08
US
US07/490,714
patent/US4991006A/en
not_active
Expired – Lifetime
1991
1991-03-07
WO
PCT/GB1991/000364
patent/WO1991014127A1/en
not_active
Application Discontinuation
1991-03-07
RU
SU915053236A
patent/RU2082909C1/en
active
1991-03-07
EP
EP91906078A
patent/EP0518978A1/en
not_active
Ceased
1991-03-07
JP
JP3505810A
patent/JPH05505028A/en
active
Pending
1991-03-07
IE
IE075691A
patent/IE910756A1/en
unknown
1991-03-07
AU
AU74680/91A
patent/AU648784B2/en
not_active
Ceased
1991-03-07
CA
CA002075709A
patent/CA2075709A1/en
not_active
Abandoned
1991-03-08
HU
HU91765A
patent/HUT56965A/en
unknown
1992
1992-09-02
FI
FI923931A
patent/FI923931A0/en
not_active
Application Discontinuation
1992-09-29
LV
LV920141A
patent/LV10335A/en
unknown
1993
1993-12-07
LT
LTIP1548A
patent/LT3647B/en
not_active
IP Right Cessation
Patent Citations (3)
* Cited by examiner, † Cited by third party
Publication number
Priority date
Publication date
Assignee
Title
US4677472A
(en)
*
1984-11-21
1987-06-30
Insituform Group Limited
Apparatus for inspecting the interior of a pipeline
US4651558A
(en)
*
1985-09-13
1987-03-24
Cues, Inc.
Method and apparatus for inspecting lateral lines
DE3803274A1
(en)
*
1988-02-04
1989-08-17
Mueller Umwelttechnik
Device for the television examination of pipelines
Also Published As
Publication number
Publication date
IE910756A1
(en)
1991-09-11
HU910765D0
(en)
1991-09-30
FI923931A
(en)
1992-09-02
HUT56965A
(en)
1991-10-28
CA2075709A1
(en)
1991-09-09
EP0518978A1
(en)
1992-12-23
WO1991014127A1
(en)
1991-09-19
JPH05505028A
(en)
1993-07-29
AU7468091A
(en)
1991-10-10
RU2082909C1
(en)
1997-06-27
LT3647B
(en)
1996-01-25
LTIP1548A
(en)
1995-06-26
FI923931A0
(en)
1992-09-02
US4991006A
(en)
1991-02-05
LV10335A
(en)
1994-10-20
Similar Documents
Publication
Publication Date
Title
AU648784B2
(en)
1994-05-05
Apparatus for inspecting the interior of a lateral pipeline
EP0887584B1
(en)
2004-01-21
Apparatus for repairing a pipeline and method for using same
US5674030A
(en)
1997-10-07
Device and method for repairing building branch lines in inacessible sewer mains
US5372162A
(en)
1994-12-13
Repair device for the in situ repair of pipes, and a method of repairing pipes
US5501115A
(en)
1996-03-26
Method of inspecting a pipe liner bag
US7448413B2
(en)
2008-11-11
Method of locating liner within sewer pipe
US5467640A
(en)
1995-11-21
Pipeline testing and leak locating apparatus and method
US6482280B1
(en)
2002-11-19
Method of impregnating pipe repair liner
CA1279584C
(en)
1991-01-29
Sewer pipe relining method
US6276398B1
(en)
2001-08-21
Inflatable packer for repairing conduits
AU2014253801B2
(en)
2018-05-17
Method and apparatus for repairing main and lateral pipes
JP2002507714A
(en)
2002-03-12
Apparatus for lining pipe joints or other cuts where gas is present
US5956135A
(en)
1999-09-21
Pipeline inspection apparatus
JPS59177438A
(en)
1984-10-08
Seal apparatus for side path pipe
GB2098300A
(en)
1982-11-17
Improvements in and relating to the lining of sewers pipes or the like
GB2184810A
(en)
1987-07-01
Remote controlled sealing/welding equipment in pipes
US5586580A
(en)
1996-12-24
Apparatus and method for internally sealing pipes
US20200182391A1
(en)
2020-06-11
Method and Assembly for Repairing Underground Structures
EP1426671B1
(en)
2008-05-07
Method for using a lateral liner and main liner to repair pipeline
JPH0814474A
(en)
1996-01-16
Air-tightness inspecting seal device for pipe line
GB2244109A
(en)
1991-11-20
Pipe fitting for launching a camera
CA2094816A1
(en)
1993-02-28
Device and method for repairing building branch lines in inaccessible sewer mains
WO1998026207A1
(en)
1998-06-18
Lining pipes
WO2022096666A1
(en)
2022-05-12
A method of relining a sewer pipe
GB2095598A
(en)
1982-10-06
Device for cutting side connections in the lining of a pipe
None