Nova Patents
CA2843765C

Electrostatic bonding of coaxial tubing

Abstract

A method and apparatus for electrostatically bonding coaxial tubing. An outer tube (602) comprises an electrically conductive material and has an inner surface. An inner tube (604) comprises material and has an outer surface. The inner tube (604) and the outer tube (602) are positioned to define a channel (606). A bridging structure (608) comprising an electrically conductive material is positioned such that the bridging structure forms mechanical contact and an electrostatic connection between electrically conductive material on the tubes. The bridging structure is in mechanical contact with the inner surface of the outer tube at a first plurality of points and in mechanical contact with the outer surface of the inner tube at a second plurality of points.

CA2843765C, drawing sheet 1
Sheet 1 of 10

Term

5.9 yearsleft in the term

Expires 24 August 2032.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

9 claims: 4 independent, 5 dependent

  1. 1
    CA 2843765 2017-05-10 THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. An apparatus comprising: an outer tube comprising a first electrically conductive material and having an inner surface;an inner tube comprising a second electrically conductive material and having an outer surface, the inner tube positioned inside the outer tube in a coaxial arrangement such that the outer surface of the inner tube and the inner surface of the outer tube define a channel, the channel including a thermal insulation material to insulate the inner tube, and the channel configured to contain a leak from the inner tube into the channel;a bridging structure comprising a third electrically conductive material positioned in the channel such that the bridging structure forms mechanical contact and an electrostatic connection between the first electrically conductive material on the inner surface of the outer tube and the second electrically conductive material on the outer surface of the inner tube, wherein the bridging structure is in mechanical contact with the inner surface of the outer tube at a plurality of first points and in mechanical contact with the outer surface of the inner tube at a plurality of second points, and the bridging structure comprises a spring formed by wrapping the third electrically conductive material around a mandrel comprising a plurality of sides;a first retainer positioned in the channel on one side of the bridging structure;and CA 2843765 2017-05-10 a second retainer positioned in the channel on another side of the bridging structure, the bridging structure positioned between the first retainer and the second retainer and the first retainer and the second retainer prevent movement of the bridging structure in the channel, at least one of the first retainer or the second retainer being in contact with the outer surface of the inner tube and the inner surface of the outer tube. An apparatus comprising: an outer tube comprising a first electrically conductive material and having an inner surface;an inner tube comprising a second electrically conductive material and having an outer surface the inner tube positioned inside the outer tube in a coaxial arrangement such that the outer surface of the inner tube and the inner surface of the outer tube define a channel, the channel including a thermal insulation material to insulate the inner tube;a bridging structure comprising a third electrically conductive material positioned in the channel such that the bridging structure forms mechanical contact and an electrostatic connection between the first electrically conductive material on the inner surface of the outer tube and the second electrically conductive material on the outer surface of the inner tube, wherein the bridging structure is in mechanical contact with the inner surface of the outer tube at a plurality of first points and in mechanical contact with the outer surface of the inner tube at a plurality of second points;a first retainer positioned in the channel on one side of the bridging structure;CA 2843765 2017-05-10 10 3. 4. 5. 20 6. 7. 8. a second retainer positioned in the channel on another side of the bridging structure, wherein the bridging structure is positioned between the first retainer and the second retainer and the first retainer and the second retainer prevent movement of the bridging structure in the channel;and wherein the channel further comprises a seal provided at an end of the outer tube adjacent to the second retainer to prevent material in the channel from leaking out of the end of the outer tube. The apparatus of claim 1 or 2, wherein the bridging structure is selected from a group of structures comprising a mesh, a foam, and a bundle of strands of filaments. The apparatus of claim 2, wherein the bridging structure comprises a spring formed by wrapping the third electrically conductive material around a mandrel comprising a plurality of sides. The apparatus of any one of claims 1-4, wherein the second retainer is made of an electrically insulating material. The apparatus of any one of claims 1-5, wherein the second retainer is positioned at an end of the outer tube. The apparatus of any one of claims 1-6, wherein the apparatus is located on an aircraft. The apparatus of any one of claims 1-7, wherein the bridging structure is made of a material selected from a group of materials consisting of titanium and stainless steel. CA 2843765 2017-05-10 The apparatus of any one of claims 1-7 wherein the bridging structure is not attached to the inner surface of the outer tube and the outer surface of the inner tube at any point. A method for electrically bonding tubing, comprising: placing a bridging structure comprising a third electrically conductive material in a channel between an outer tube and an inner tube to form an electrostatic connection between a first electrically conductive material on an inner surface of the outer tube and a second electrically conductive material on an outer surface of the inner tube, the inner tube and the outer tube having a coaxial arrangement so as to define the channel, the inner tube carrying a fluid, the channel including a thermal insulation material to insulate the inner tube, and the channel configured to contain a leak of fluid from the inner tube into the channel, wherein the bridging structure is placed in mechanical contact with the inner surface of the outer tube at a plurality of first points and in mechanical contact with the outer surface of the inner tube at a plurality of second points, and wherein the bridging structure comprises a spring formed by wrapping the third electrically conductive material around a mandrel comprising a plurality of sides;placing a first retainer in the channel on one side of the bridging structure, the first retainer in contact with the outer surface of the inner tube and the inner surface of the outer tube;placing a second retainer in the channel on another side of the bridging structure, the second retainer in contact with the outer surface of the inner tube and the inner surface of the outer tube, wherein the bridging structure is positioned between the first retainer and the second retainer and the first retainer CA 2843765 2017-05-10 and the second retainer prevent movement of the bridging structure in the channel, wherein the first retainer and the second retainer are made of an electrically insulating material;and placing a seal at an end of the channel and the outer tube proximate the second retainer and configured to prevent fluid from leaking from the channel. A method for electrically bonding tubing, comprising: placing a bridging structure comprising a third electrically conductive material in a channel between an outer tube and an inner tube to form an electrostatic connection between a first electrically conductive material on an inner surface of the outer tube and a second electrically conductive material on an outer surface of the inner tube, the inner tube and the outer tube having a coaxial arrangement so as to define a channel, the inner tube carrying a fluid, the channel including a thermal insulation material, wherein the bridging structure is placed in mechanical contact with the inner surface of the outer tube at a plurality of first points and in mechanical contact with the outer surface of the inner tube at a plurality of second points;placing a first retainer in the channel on one side of the bridging structure;placing a second retainer in the channel on another side of the bridging structure, wherein the bridging structure is positioned between the first retainer and the second retainer and the first retainer and the second retainer prevent movement of the bridging structure in the channel;and placing a seal at an end of the outer tube adjacent to the second retainer to prevent fluid leaking from the channel. CA 2843765 2017-05-10 12. The method of claim 10 or 11, wherein the bridging structure is selected from a group of structures comprising, a mesh, a foam, and a bundle of strands of filaments.
  2. 3
    10 retainer are made of an electrically insulating material.
  3. 4
    15. The method of any one of claims 10-14 further comprising placing the second retainer at an end of the outer tube. 15
  4. 5
    16. The method of any one of claims 10-15, wherein the bridging structure is made of a material selected from a group of materials consisting of titanium and stainless steel.
  5. 6
    17. The method of any one of claims 10-16, wherein the bridging structure is not attached to the inner surface of the outer tube and the outer surface of the inner tube at any point.
  6. 9
    20 25. surface of the outer tube, wherein the spring is positioned between the first retainer and the second retainer and the first retainer and the second retainer prevent movement of the spring in the channel, the first retainer and second retainer comprising electrically insulating materials;and a seal positioned at an end of the channel and the outer tube proximate the second retainer and configured to prevent fuel from leaking from the channel. The apparatus of claim 20, wherein the spring is formed by wrapping the third electrically conductive material around a mandrel comprising a plurality of sides. The apparatus of claim 20, wherein at least a portion of the outer tube and the inner tube pass through a fuel tank. The apparatus of claim 22 further comprising a sealant associated with the fuel tank and one of the first retainer or the second retainer. The apparatus of claim 20, wherein the inner tube and the outer tube comprise titanium. The apparatus of claim 20, wherein the outer tube swrounds the inner tube along a length of the inner tube.