IP Library › Granted Patent US 11,655,928
Granted Patent B2
US 11,655,928 · App. 16/604,577 · Granted May 23, 2023

Device for rehabilitating a pipeline by means of a plastic lining

Inventor: Bernd-Jan Krasowski (Laussnitz, DE)
F16L55/1653B29C71/04F16L55/165F16L55/38F16L55/40F16L2101/18
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Quick Facts
Patent No.
US 11,655,928
App. No.
16/604,577
Granted
May 23, 2023
Kind
B2
Abstract

In an apparatus for pipeline renovation using a lining fiber tube impregnated with a reactive resin that cures under the effect of light-emitting devices, the apparatus has a head part 1 made of a transparent, temperature-resistant material, and end caps 2, 3 seal the apparatus hermetically against the outside, wherein the whole apparatus or at least its head part 1 is filled with a transparent, flame-retardant insulating fluid 5 and the apparatus contains an insert whose insulating substrates 8 are populated with high-performance light-emitting diodes 9.

Claims (50)

1. An apparatus for pipeline renovation using a lining fiber tube impregnated with a reactive resin that cures under the influence of light-emitting devices,

characterized in that

the apparatus has a head part ( 1 ) made of a transparent, temperature-resistant material, end caps ( 2 , 3 ) at both end faces seal the apparatus hermetically against the outside, the whole apparatus or at least its head part ( 1 ) is filled with an opaque or transparent flame-retardant insulating fluid ( 5 ) and the apparatus accommodates an insert whose insulating substrate ( 8 ) has high performance light-emitting diodes ( 9 ) disposed thereon and wherein

the insert is rotationally symmetrical along the longitudinal axis of the apparatus and is driven by means of a shaft or hydraulic line ( 6 ).

2. The apparatus according to claim 1 ,

characterized in that

the insert has insulating substrates ( 8 ) that project radially, in a star-shape or convexly and are populated with high-performance light-emitting diodes ( 9 ) in the head part ( 1 ) area.

3. The apparatus according to claim 1 ,

characterized in that

the insert carries one or several wings or arcs of insulating substrates ( 8 ) populated on one or both sides.

4. The apparatus according to claim 1 ,

characterized in that

the insert is formed in a star shape of three to six insulating substrates ( 8 ) populated on both sides.

5. The apparatus according to claim 1 ,

characterized in that

an insulating substrate ( 8 ) populated on one side in a flat state has folding zones and, in the mounted state, forms a radially projecting, star-shaped structure with high-performance light-emitting diodes ( 9 ) disposed on its outside.

6. The apparatus according to claim 1 ,

characterized in that

one of the end caps ( 2 , 3 ) accommodates a closed-loop controllable electric motor ( 7 ) for driving the shaft ( 6 ).

7. The apparatus according to claim 1 ,

characterized in that

a pivotable video camera ( 10 ) is disposed in and/or on at least the front end cap ( 2 ).

8. The apparatus according to claim 1 ,

characterized in that

sensors ( 11 , 12 , 14 ) are disposed in both end caps ( 2 , 3 ) to capture at least the reaction temperature at or inside the fiber tube, the air temperature inside the pipe, the temperature of the insulating fluid ( 5 ) and the compressed air inside the pipe during the curing process and to report these to a central control station.

9. The apparatus according to claim 1 ,

characterized in that

a rear end cap ( 3 ) has a combined mechanical-electrical connector ( 15 , 16 ) for a flexible cable or pushrod cable, via which connector an electric motor ( 7 ), a video camera ( 10 ), the high-performance light-emitting diodes ( 9 ) and sensors ( 11 , 12 , 14 ) are supplied,

or has an electro-hydraulic connector ( 15 , 16 ) for a flexible or pushrod hydraulic line, with supply lines routed to a front end cap ( 2 ) through a hollow shaft or hydraulic line ( 6 ).

10. The apparatus according to claim 1 ,

characterized in that

the head part ( 1 ) and only one of the end caps ( 2 or 3 ) of the apparatus are filled with insulating fluid ( 5 ).

11. The apparatus according to claim 1 ,

characterized in that

a mineral oil or an organic ester is used as insulating fluid ( 5 ).

12. The apparatus according to claim 1 ,

characterized in that

the high-performance light-emitting diodes ( 9 ) are matched in wavelength to the reactive resin used in the fiber tube.

13. The apparatus according to claim 1 ,

characterized in that

the high-performance light-emitting diodes ( 9 ) radiate at different wavelengths and/or different light intensities along their extension.

14. The apparatus according to claim 1 ,

characterized in that

the head part ( 1 ) is rotationally symmetrical in cross-section, cylindrical, polygonal or convex and straight, convex or waisted along its longitudinal side.

15. The apparatus according to claim 1 ,

characterized in that

one or several downstream fluid accumulators ( 19 ) are connected with the head part ( 1 ) to recirculate the insulating fluid ( 5 ) by means of a pump.

16. The apparatus according to claim 1 ,

characterized in that

the insert is helically shaped and driven by the flow of the insulating fluid ( 5 ).

Priority Claims (1)
DE 102017107977.7 · Apr 12, 2017 · national
Continuity (1)
Related Publication 20200224812A1 · Jul 16, 2020