IP Library Granted Patent US 10,267,439
Granted Patent B2
US 10,267,439 · App. 15/278,071 · Granted Apr 23, 2019

Hose for conveying fluid

Inventors: Timothy Denzil Pryce (Sheffield, GB); Calvin Tan (Glasgow, GB)
Assignee: Icon Polymer Group Limited
F16L11/22B60L3/0046B60L3/0069B60L3/04B60L11/1818B64C39/024B64D39/00B64D39/06F16L11/127H01R12/77H01R13/005H01R13/6683B60L2200/10B60L2230/12B60L2240/36B60L2240/662B64C2201/063B64C2201/066H01R2201/26Y02T10/7005Y02T10/7088Y02T10/7291Y02T90/121Y02T90/14Y02T90/16
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Quick Facts
Patent No.
US 10,267,439
App. No.
15/278,071
Granted
Apr 23, 2019
Kind
B2
Abstract

A hose is disclosed for conveying fluids. The hose has a wall defining a fluid carrying tube and a power and/or data transmission cable is integrated into said wall. Also disclosed is a user definable module that is removably attachable to the distal end of a fluid conveying hose. The hose being releasably connectable to a fluid receiving entity to provide fluid to said entity. The fluid conveying hose has a wall defining a fluid carrying tube and a power and/or data transmission cable integrated into that wall. The user definable module is connectable to the cable and has components to measure at least one measurable parameter at the end of the hose and/or provide electrical connection between the cable and said fluid receiving entity for the transmission of data and/or power along the hose via said user definable interface. Also disclosed is a method of configuring a hose for fluid transfer. The method includes the step of selecting a user definable module and attaching the selected module to a distal end of the hose prior to connecting said hose to a fluid receiving entity.

Claims (32)

1. A refuelling hose for air-to-air refuelling, the refuelling hose comprising:

a wall defining a fuel carrying tube and a power and/or data transmission cable integrated into said wall,

wherein the wall comprises an inner fuel carrying tube and an outer protective sheath, wherein the power and/or data transmission cable is positioned between the inner fuel carrying tube and the outer protective sheath,

wherein the power and/or data transmission cable is wound around the inner fuel carrying tube to define a helical path along the refuelling hose,

wherein the power and/or data transmission cable comprises a plurality of spaced insulated wires encased in a sleeve of low friction material to allow movement of the plurality of spaced insulated wires relative to the sleeve when the power and/or data transmission cable is subject to bending, and

wherein the refuelling hose further comprises an intermediate connecting collar attachable to a distal end of the refuelling hose, the intermediate connecting collar comprising first electrical terminals to connect the power and/or data transmission cable to conductors in the intermediate connecting collar, and second electrical terminals to connect the conductors to a user definable module that can be removably attached to the refuelling hose via the intermediate connecting collar.

2. The refuelling hose of claim 1 , wherein the refuelling hose has a distal end, the user definable module being removably attachable to said distal end via the intermediate connecting collar and including a connector for electrical connection to said power and/or data transmission cable.

3. The refuelling hose of claim 2 , wherein the user definable module is tubular and surrounds the distal end of the refuelling hose.

4. The refuelling hose of claim 2 , wherein the user definable module comprises at least one or more components for determining a measurable parameter at the distal end of the refuelling hose.

5. The refuelling hose of claim 4 , wherein the user definable module comprises at least one of a position sensor, an accelerometer, a temperature sensor, a pressure sensor, a proximity sensor and a flow rate sensor.

6. The refuelling hose of claim 2 , wherein the conductors in the intermediate connecting collar extend from the first electrical terminals in a helical path and terminate at the second electrical terminals in a plane extending substantially at right angles to a longitudinal axis of the hose.

7. The refuelling hose of claim 6 , wherein the intermediate connecting collar has an angled cut out that defines a face which is substantially perpendicular to the helical path of the cable, said first electrical terminals being mounted on said face.

8. The refuelling hose of claim 6 , wherein the intermediate connecting collar comprises an end face which lies in a plane substantially at right angles to the longitudinal axis of the refuelling hose, said second electrical terminals being mounted to said end face.

9. The refuelling hose of claim 2 , wherein the user definable module comprises two half tubular portions or shells that are attachable to each other to surround the distal end of the refuelling hose.

10. The refuelling hose of claim 9 , wherein the user definable module is attachable to the intermediate connecting collar.

11. The refuelling hose of claim 2 , wherein a terminal connector extends from the distal end of the refuelling hose to receive a probe, the terminal connector extending distally beyond the user defined module.

12. The refuelling hose of claim 11 , wherein the user definable module includes the terminal connector, the terminal connector configured to electrically connect to a mating terminal connector on a receiving probe, when the refuelling hose receives the probe.

13. The refuelling hose of claim 1 , wherein the power and/or data transmission cable is flat and flexible.

14. The refuelling hose of claim 13 , wherein the plurality of spaced insulated wires are arranged side-by-side within the power and/or data transmission cable.

15. The refuelling hose of claim 14 , wherein the plurality of spaced insulated wires are individually insulated in a low friction material.

16. The refuelling hose of claim 15 , wherein the low friction material individually insulating the plurality of spaced insulated wires comprises fluoropolymer or thermoplastic material.

17. The refuelling hose of claim 1 , wherein the low friction material of the sleeve comprises fluoropolymer or thermoplastic material.

18. The refuelling hose of claim 17 , wherein an outer surface of the sleeve is bonded to the outer protective sheath.

19. The refuelling hose of claim 18 , wherein the outer surface of the sleeve is treated to increase the strength of the bonding between the outer surface of the sleeve and the outer protective sheath.

20. A refuelling hose for air-to-air refuelling, the refuelling hose comprising:

a wall defining a fuel carrying tube and a power and/or data transmission cable integrated into said wall;

a distal end and a user definable module, the user definable module including a connector for electrical connection to said power and/or data transmission cable; and

an intermediate connecting collar, attachable to the distal end of the hose proximal to the user definable module, the intermediate connecting collar comprising first electrical terminals to connect the cable to conductors in the intermediate connecting collar and second electrical terminals spaced from the first electrical terminals to connect the conductors in the intermediate connecting collar to the user definable module,

wherein the user definable module is removably attachable to the distal end via the intermediate connecting collar,

wherein the wall comprises an inner fuel carrying tube and an outer protective sheath, wherein the power and/or data transmission cable is positioned between the inner fuel carrying tube and the outer protective sheath,

wherein the power and/or data transmission cable is wound around the inner fuel carrying tube to define a helical path along the hose, and

wherein the power and/or data transmission cable comprises a plurality of spaced insulated wires encased in a sleeve of low friction material to allow movement of the wires relative to the sleeve when the cable is subject to bending.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2020
From: ICON POLYMER GROUP LIMITED
To: PROJECT PILOT BIDCO LIMITED
Reel/Frame 053261/0060 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2020
From: PRYCE, TIMOTHY DENZIL; TAN, CALVIN
To: ICON POLYMER GROUP LIMITED
Reel/Frame 053261/0188 →
CHANGE OF NAME Recorded Jul 21, 2020
From: PROJECT PILOT BIDCO LIMITED
To: CROSSLINK TECHNOLOGY HOLDINGS LIMITED
Reel/Frame 053261/0256 →
Continuity (2)
Continuation 13848753 · Mar 22, 2013
Related Publication 20170241576A1 · Aug 24, 2017
Cited By (21)
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