IP Library Granted Patent US 11,953,139
Granted Patent B2
US 11,953,139 · App. 18/158,857 · Granted Apr 9, 2024

Method, apparatus and system for lining conduits

Inventor: Kevan Taylor (Largo, FL)
Assignee: Perma-Liner Industries, LLC
F16L55/1651B29C63/36B29C2035/0827B29C65/1406B29C65/4845B29C66/301B29C66/5221B29C66/612
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Quick Facts
Patent No.
US 11,953,139
App. No.
18/158,857
Granted
Apr 9, 2024
Kind
B2
Abstract

Methods, apparatus or equipment and systems for lining conduits, e.g., preferably subterranean pipelines and passageways, such as sewers, with a liner impregnated with a curable resin in order to secure the conduit against ingress or egress of liquids.

Claims (61)

1. A method of repairing a hollow conduit having an inside wall surface, said method comprising:

taking a tubular liner having a first portion and a second portion and impregnating the tubular liner with a light-activated resin;

taking an inversion apparatus having an opening and creating a seal between the first portion of the tubular liner and the inversion apparatus to allow inversion pressure to be communicated from the inversion apparatus to the tubular liner;

inverting the first portion of the tubular liner through the opening under pressure to create an inverted portion of the tubular liner inside the hollow conduit;

attaching the second portion of the tubular liner to a light curing activator;

inverting a remainder of the tubular liner into the hollow conduit so the light curing activator is pulled through the inverted portion of the tubular liner by the second portion of the tubular liner; and

powering up the light curing activator to help initiate curing of the light-activated resin.

2. The method of claim 1 further comprising regulating the speed at which the tubular liner is inverted into the hollow conduit using a braking control member.

3. The method of claim 1 wherein the light curing activator has a first end and a second end, and the method further comprises providing electrical power to both the first end and the second end of the light curing activator.

4. The method of claim 1 wherein a liner installation length begins at about the first portion of the tubular liner and ends at about the second portion of the tubular liner and the method further comprises curing the light-activated resin throughout the entire liner installation length by about the time the second portion of the tubular liner is inverted.

5. The method of claim 1 wherein the light curing activator comprises a flexible hollow tube having an outside surface and a plurality of lights inside a water tight translucent sleeve combined with the outside surface of the flexible hollow tube, and the method further comprises expanding the flexible hollow tube under pressure from a first position wherein the plurality of lights are farther from the inside wall surface of the hollow conduit to a second position wherein the lights are closer to the inside wall surface of the hollow conduit.

6. The method of claim 1 wherein the light curing activator comprises a plurality of lights on a lighting circuit strip wound around a flexible hollow tube and positioned inside a water tight sleeve, wherein the flexible hollow tube is positioned within a translucent and flexible bladder having an inflated position and a deflated position, and wherein the lighting circuit strip wound around the flexible hollow tube has a first length and the translucent and flexible bladder has a second length, the first length being longer than the second length;

inflating the translucent and flexible bladder to the inflated position so the plurality of lights expand within the translucent and flexible bladder in a spiral configuration toward the inside wall surface of the hollow conduit.

7. The method of claim 1 further comprising removing the light curing activator from the hollow conduit after the light-activated resin has cured and hardened.

8. The method of claim 1 wherein the light curing activator is attached to the second portion of the tubular liner after about half of the tubular liner comprises the inverted portion within the hollow conduit.

9. The method of claim 1 wherein the first portion has a leading end and the second portion has a trailing end.

10. The method of claim 1 wherein the light curing activator is powered up while the light curing activator is pulled through the inverted portion of the tubular liner by the second portion of the tubular liner.

11. The method of claim 1 wherein the seal includes direct contact between the first portion of the tubular liner and the inversion apparatus.

12. A method of repairing a hollow conduit having an inside wall surface, said method comprising:

(a) taking a tubular liner having a first portion and a second portion and impregnating the tubular liner with a light-activated resin;

(b) taking an inversion apparatus having an opening;

(c) attaching the first portion of the tubular liner around the opening of the inversion apparatus;

(d) inverting an inversion portion of the tubular liner through the opening under pressure to create an inverted portion of the tubular liner inside the hollow conduit;

(e) securing a region of the tubular liner to ensure the pressure inside the inverted portion of the tubular liner is maintained;

(f) attaching the second portion of the tubular liner to a light curing activator;

(g) releasing the region defined in (e); and

(h) inverting a remainder of the tubular liner into the hollow conduit so that the light curing activator is pulled through the inverted portion of the tubular liner by the second portion of the tubular liner.

13. The method of claim 12 wherein the attachment between the first portion of the tubular liner and the inversion apparatus includes direct contact between the first portion of the tubular liner and the inversion apparatus.

14. The method of claim 12 wherein the light curing activator is powered up while the light curing activator is pulled through the inverted portion of the tubular liner by the second portion of the tubular liner.

15. A method of repairing a hollow conduit having an inside wall surface, said method comprising:

taking a tubular liner and impregnating the tubular liner with a light-activated resin;

taking an inversion bladder having a first portion and a second portion;

inverting the tubular liner under pressure to an inverted position inside the hollow conduit;

inverting the first portion of the inversion bladder under pressure to an inverted position inside the inverted tubular liner;

attaching a light curing activator to the second portion of the inversion bladder;

inverting a remainder of the inversion bladder into the inverted tubular liner; and

powering up the light curing activator to help initiate curing of the light-activated resin.

16. The method of claim 15 further comprising regulating the speed at which the inversion bladder is inverted into the hollow conduit using a braking control member.

17. The method of claim 15 wherein the light curing activator has a first end and a second end, and the method further comprises providing electrical power to both the first end and the second end of the light curing activator.

18. The method of claim 15 wherein the light curing activator comprises a flexible hollow tube having an outside surface and a plurality of lights inside a water tight translucent sleeve combined with the outside surface of the flexible hollow tube, and the method further comprises expanding the flexible hollow tube under pressure from a first position wherein the plurality of lights are farther from the inside wall surface of the hollow conduit to a second position wherein the lights are closer to the inside wall surface of the hollow conduit.

19. The method of claim 15 wherein the light curing activator comprises a plurality of lights on a lighting circuit strip wound around a flexible hollow tube and positioned inside a water tight sleeve, wherein the flexible hollow tube is positioned within a translucent and flexible bladder having an inflated position and a deflated position, and wherein the lighting circuit strip wound around the flexible hollow tube has a first length and the translucent and flexible bladder has a second length, the first length being longer than the second length;

inflating the translucent and flexible bladder to the inflated position so the plurality of lights expand within the translucent and flexible bladder in a spiral configuration toward the inside wall surface of the hollow conduit.

20. The method of claim 15 further comprising removing the light curing activator from the hollow conduit after the light-activated resin has cured and hardened.

21. The method of claim 15 wherein the inversion bladder is translucent.

22. The method of claim 15 wherein the light curing activator is powered up while the light curing activator is pulled through the inverted tubular liner by the second portion of the inversion bladder.

23. The method of claim 15 wherein the first portion has a leading end and the second portion has a trailing end.

24. A method of repairing a hollow conduit having an inside wall surface, said method comprising:

taking a tubular liner having a first portion and a second portion and impregnating the tubular liner with a light-activated resin;

taking an inversion bladder having a first portion and a second portion;

taking an inversion apparatus having an opening and creating a seal between the inversion apparatus and the first portion of the tubular liner to allow inversion pressure to be communicated from the inversion apparatus to the tubular liner;

inverting the tubular liner through the opening under pressure to an inverted position inside the hollow conduit;

creating a seal between the inversion apparatus and the first portion of the inversion bladder to allow inversion pressure to be communicated from the inversion apparatus to the inversion bladder;

inverting an inversion portion of the inversion bladder under pressure to an inverted position inside the inverted tubular liner and then halting the inversion of the inversion bladder;

attaching a light curing activator to the second portion of the inversion bladder;

inverting a remainder of the inversion bladder into the inverted liner so the second portion of the inversion bladder pulls the light curing activator through the inverted tubular liner;

powering up the light curing activator to help initiate curing of the light-activated resin.

25. The method of claim 24 wherein the flexible light curing activator has a first portion and a second portion, and the method further comprises providing electrical power to both the first portion and the second portion of the light curing activator.

26. The method of claim 24 wherein the light curing activator comprises a flexible hollow tube having an outside surface and a plurality of lights inside a water tight translucent sleeve combined with the outside surface of the flexible hollow tube, and the method further comprises expanding the flexible hollow tube under pressure from a first position wherein the plurality alights are farther from the inside wall surface of the hollow conduit to a second position wherein the lights are closer to the inside wall surface of the hollow conduit.

27. The method of claim 24 wherein the light curing activator is attached to the second portion of the inversion bladder after about half of the inversion bladder is inverted within the hollow conduit.

28. The method of claim 24 wherein the first portion of the inversion bladder is a leading end and the second portion of the inversion bladder is a trailing end.

29. The method of claim 24 wherein the first portion of the inversion bladder is inverted under pressure inside the tubular liner after the tubular liner has been inverted under pressure to an inverted position inside the hollow conduit.

Assignments (2)
SECURITY INTEREST Recorded Apr 23, 2026
From: INFRAMARK, LLC; INA ACQUISITION CORP.; UNDERGROUND SOLUTIONS, INC.; LMK TECHNOLOGIES, LLC; BLD SERVICES, LLC; PERMA-LINER INDUSTRIES, LLC
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 075463/0713 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2023
From: MORAY GROUP, LLC
To: PERMA-LINER INDUSTRIES, LLC
Reel/Frame 064109/0844 →