IP Library Granted Patent US 9,406,209
Granted Patent B2
US 9,406,209 · App. 14/485,115 · Granted Aug 2, 2016

Container having composite weldable panel with embedded devices

Inventors: Habib J. Dagher (Veazie, ME); Eric D. Cassidy (Easton, ME); Anthony M. Viselli (Bangor, ME); Bruce Segee (Old Town, ME)
Assignee: University of Maine System Board of Trustees
G08B13/26B65D88/12B65D90/02B65D90/022B65D90/023B65D90/08B65D90/48G01M11/332G01R31/021G01R31/025B65D2101/00Y10T428/16Y10T428/161Y10T428/18Y10T428/183Y10T428/187Y10T428/24995
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Quick Facts
Patent No.
US 9,406,209
App. No.
14/485,115
Granted
Aug 2, 2016
Kind
B2
Abstract

A container includes a plurality of weldable hybrid composite panels. Each panel includes a four sided composite panel element, wherein each of the four sides defines a side edge and the composite panel element is formed of fibrous reinforcement layers encased in a resin matrix. Weldable metallic elongated edge elements extend along and are either fixed to the side edges of an outside surface of the panel element or extend from a periphery of the panel element, such that each of the weldable elongated edge elements has a profile that is the same as a profile of its respective side edge. The weldable elongated edge elements are structured to enable the composite panel to be welded at its peripheral edges. The container also includes a plurality of metal rails attached together and defining a rectangular parallelepiped frame having six sides. At least one of the plurality of weldable hybrid composite panels is welded at its edge elements to the rails of each of the six sides of the frame or to an adjacent one of the plurality of weldable hybrid composite panels.

Claims (36)

1. A container comprising:

a plurality of weldable hybrid composite panels, each panel comprising:

a four sided composite panel element, each of the four sides defining a side edge, the composite panel element formed of fibrous reinforcement layers encased in a resin matrix; and

weldable metallic elongated edge elements extending along and one of fixed to the side edges of an outside surface of the panel element and extending from a periphery of the panel element, each of the weldable elongated edge elements having a profile that is the same as a profile of its respective side edge;

wherein the weldable elongated edge elements are structured to enable the composite panel to be welded at its peripheral edges; and

a plurality of metal rails attached together and defining a rectangular parallelepiped frame having six sides;

wherein at least one of the plurality of weldable hybrid composite panels is welded at its edge elements to the rails of each of the six sides of the frame or to an adjacent one of the plurality of weldable hybrid composite panels.

2. The container according to claim 1 , wherein the panel element includes a sensor system embedded therein.

3. The container according to claim 2 , wherein the sensor system includes an array of optical fibers.

4. The container according to claim 3 , wherein the array of optical fibers includes at least one fiber extending between two ends thereof, and arranged in a serpentine configuration.

5. The container according to claim 4 , wherein one of the ends is adapted to receive an optical signal whereby the optical signal propagates on the optical fiber toward to the other of the ends.

6. The container according to claim 4 , wherein the sensor system further includes an optical signal generator coupled to the one end for generating the optical signal and an optical signal detector coupled to the other end for detecting the optical signal.

7. The container according to claim 6 , wherein the optical signal generator is adapted for remote activation.

8. The container according to claim 6 , wherein the detector is adapted for remote interrogation.

9. The container according to claim 2 , wherein the sensor system includes an array of electrical conductors.

10. The container according to claim 9 , wherein the array of electrical conductors includes at least one electrical conductor extending between two ends thereof and arranged in a serpentine configuration.

11. The container according to claim 10 , wherein the serpentine configuration includes at least one resistive bypass path interconnecting two points along the serpentine configuration.

12. The container according to claim 11 , wherein one of the ends is adapted to receive an electrical signal.

13. The container according to claim 12 , wherein the sensor system includes an electrical signal generator coupled to the one end for generating the electrical signal and an electrical signal detector coupled to the other end for detecting the electrical signal.

14. The container according to claim 13 , wherein the electrical signal generator is adapted for remote activation.

15. The weldable hybrid composite panel according to claim 13 , wherein the detector is adapted for remote interrogation.

16. A container comprising:

a plurality of weldable hybrid composite panels suitable for forming a container, each panel comprising:

a four sided composite panel element, each side defining a side edge, the composite panel element being made of fibrous reinforcement layers encased in a resin matrix; and

weldable metallic elongated edge elements extending along and one of fixed to the side edges of an outside surface of the panel element and extending from a periphery of the panel element, each of the weldable elongated edge elements having a profile that is the same as a profile of its respective side edge;

wherein the weldable elongated edge elements are structured to enable the composite panel to be welded at its peripheral edges; and

a rectangular parallelepiped frame composed of weldable metal comprising:

four equal length parallel rails RX1, RX2, RX3 and RX4 extending along an X axis;

four equal length parallel rails RY1, RY2, RY3 and RY4 extending along a Y axis; and

four equal length parallel rails RZ1, RZ2, RZ3 and RZ4 extending along a Z axis;

wherein the X, Y, and Z axis are mutually orthogonal; wherein RX1, RX2, RY1 and RY2 define a first side panel locus; wherein RX3, RX4, RY3 and RY4 define a second side panel locus; wherein RY1, RY3, RZ1 and RZ2 define a first end panel locus; wherein RY2, RY4, RZ3 and RZ4 define a second end panel locus; wherein RX2, RX4, RZ2 and RZ4 define a top panel locus; wherein RX1, RX3, RZ1 and RZ3 define a bottom panel locus; and

wherein one of the plurality of weldable hybrid composite panels is disposed in the first side panel locus and welded at its peripheral edge elements ME to the rails RX1, RX2, RY1, RY2; wherein one of the plurality of weldable hybrid composite panels is disposed in the second side panel locus and welded at its peripheral edge elements ME to the rails RX3, RX4 RY3, RY4; wherein one of the plurality of weldable hybrid composite panels is disposed in the first end panel locus and welded at its peripheral edge elements ME to the rails RY1, RY3, RZ1, RZ2; and wherein one of the plurality of weldable hybrid composite panels is disposed in the top panel locus and welded at its peripheral edge elements ME to the rails RX2, RX4, RZ2, RZ4.

17. The container according to claim 16 , further comprising one of the plurality of weldable hybrid composite panels disposed in the bottom panel locus, and welded at its peripheral edge elements ME to the rails RX1, RX3, RZ1, RZ3.

18. The container according to claim 16 , further comprising at least two cross members extending between the rails RX1, RX3, and one of the plurality of weldable hybrid composite panels connected to the cross members.

19. The container according to claim 16 , further comprising one of the plurality of weldable hybrid composite panels disposed in the second end panel locus, and welded at its peripheral edge elements ME to the rails RY2, RY4, RZ3, RZ4.

20. The container according to claim 16 , wherein at least one of the first and second side panel loci, the first and second end panel loci, and the top and bottom panel loci comprises more than one of the plurality of weldable hybrid composite panels, the more than one weldable hybrid composite panels being parallel within the respective locus, and welded together along an adjacent peripheral edge, the remaining peripheral edge elements of the more than one weldable panels being welded to adjacent rails, each of the more than one weldable hybrid composite panels being individually replaceable as subpanel elements.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2015
From: DAGHER, HABIB J.; CASSIDY, ERIC D.; VISELLI, ANTHONY M.; SEGEE, BRUCE
To: UNIVERSITY OF MAINE SYSTEM BOARD OF TRUSTEES
Reel/Frame 035239/0570 →
Continuity (5)
Division 11866655 · Oct 3, 2007
Provisional Application 60850300 · Oct 6, 2006
Provisional Application 60872956 · Dec 4, 2006
Provisional Application 60927233 · May 2, 2007
Related Publication 20150034635A1 · Feb 5, 2015