IP Library Granted Patent US 7,267,739
Granted Patent B2
US 7,267,739 · App. 10/798,202 · Granted Sep 11, 2007

Tensioned pipe support

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,267,739
App. No.
10/798,202
Granted
Sep 11, 2007
Kind
B2
Abstract

The apparatus and method for eliminating ground water infiltration while stabilizing the ground and repairing underground pipe/conduit and connections is taught in this art. The steps are to first inject, under pressure, expandable structural foam in the space adjacent and outside the pipe while blocking any infiltration of the foam into the interior of the pipe, conduit or connection. Concurrently or separately the inside diameter of the pipe is receiving a structural repair. The result is stabilized ground, elimination of ground water infiltration and repair of the host pipe conduit or connection. The invention also teaches a novel method of utilizing a tensioned and compressive support on the outer pipe surface.

Claims (37)

1. A method for in situ minimization of infiltration and ex-filtration of underground pipes comprising the following steps:

(a) forming an elastically coilable and radially expandable support having a diameter when in a relaxed state;

(b) coiling the expandable support to a reduced diameter under tension;

(c) inserting the expandable support into an interior annulus of a pipe where a first inner surface of the pipe wall has a diameter smaller than the outer diameter of the expandable support in a relaxed state;

(d) releasing the tension of the expandable support when at a selected location;

(e) expanding the outer diameter of the expandable support to contact the inner surface of the pipe wall forming the interior pipe diameter; and

(f) injecting from the ground at least one chemical reactant into the ground to form a reaction product.

2. The method of claim 1 further comprising the step of creating a closed cell foam reaction product.

3. The method of claim 1 wherein the reaction product reduces spaces within the ground and between the ground and a second outer pipe wall surface.

4. The invention of claim 1 wherein the chemical reactant is selected from a group consisting of a hybrid polyurethane or polyester/polyurethane blend resin, and epoxy resins combined with diluents, catalysts, blowing agents and surfactants, a acrylimide, and cementitous slurry.

5. The method of claim 1 wherein the radial expansion of the expandable support minimizes the infiltration of the chemical reactant injected from the ground surface or reaction product into the pipe.

6. An in situ method of repairing defects in the wall of a fluid conveying pipe positioned in the ground comprising the steps of:

(a) impregnating a tensionable and expandable support with a thermally responsive material;

(b) tension winding the expandable support to a reduced diameter while the thermally responsive material is in a partially cured state;

(c) inserting the tension wound expandable support into a interior annulus of a pipe having an interior diameter smaller than the expandable outer diameter of the tension wound expandable support;

(d) releasing the tension of the expandable support when at a selected location proximate to the pipe defect;

(e) expanding the outer diameter of the expandable support to contact the inner surface of the pipe wall forming the interior pipe diameter;

(f) injecting a chemical reactant into the ground from the ground surface to form a reaction product; and

(g) completing the cure of the impregnated thermally responsive material.

7. The method of claim 6 comprising the further steps of:

(a) incorporating electrically conductive materials into the expandable support;

(b) attaching electrically conductive connectors to the expandable support in communication with a electrical power source;

(d) conducting electric current through the conductive material within the expandable support to create heat;

(e) using the heat to complete the cure of the thermally responsive material; and

(f) detaching the electric power connectors from the expandable support.

8. The method of claim 6 wherein the thermally responsive material is at a B stage at the time of insertion into the pipe.

9. The method of claim 6 wherein the thermally responsive material is an ester.

10. The invention of claim 6 wherein the chemical reactant comprises a hybrid polyurethane or polyester/polyurethane blend resin.

11. The invention of claim 6 wherein the chemical reactant comprises an epoxy resin.

12. An in situ method of repairing defects in the wall of a fluid conveying pipe positioned in ground comprising the steps of:

(a) tension winding a coilable and expandable support to a reduced diameter wherein the expandable support comprises one or more electrically conductive fibers or wires;

(b) inserting the tension wound expandable support into a interior annulus of a pipe having an interior diameter smaller than the expandable outer diameter of the expandable support;

(c) releasing the tension of the expandable support when at a selected location proximate to a pipe defect;

(d) injecting a chemical reactant into the ground to form a reaction product; and

(e) energizing the electrically conductive fiber or wire with electrical current.

13. The method of claim 12 wherein the chemical reactant comprises a hybrid polyurethane or polyester/polyurethane blend resin.

14. The method of claim 12 wherein the chemical reactant comprises an epoxy resin.

Assignments (2)
MERGER Recorded Jul 25, 2013
From: ENERGY MAINTENANCE SERVICES GROUP I, INC.
To: ENERGY MAINTENANCE SERVICES GROUP I, LLC
Reel/Frame 030875/0606 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2013
From: ENERGY MAINTENANCE SERVICES GROUP I, LLC
To: EMS USA HOLDINGS I INC.
Reel/Frame 030879/0986 →