IP Library › Granted Patent US 10,246,195
Granted Patent B2
US 10,246,195 · App. 15/266,816 · Granted Apr 2, 2019

Arched inflatable structure for evacuation slide systems

Inventors: Craig Prevost (Phoenix, AZ); Ryan Schmidt (Gilbert, AZ)
Assignee: GOODRICH CORPORATION
B64D25/14A62B1/20
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Quick Facts
Patent No.
US 10,246,195
App. No.
15/266,816
Granted
Apr 2, 2019
Kind
B2
Abstract

An evacuation slide may comprise an arched tube configured to extend between a first side tube and a second side tube of the evacuation slide and a strap configured to be coupled between the arched tube and a center tube of the evacuation slide. The arched tube may be configured to provide vertical support to the first side tube and to the second side tube in response to a tension in the strap. The evacuation slide may comprise a dual lane slide, the first side tube and the center tube defining a first lane and the second side tube and the center tube defining a second lane.

Claims (32)

1. An evacuation slide, comprising:

a first side tube extending longitudinally between a head end and a toe end of the evacuation slide;

a second side tube extending longitudinally between the head end and the toe end of the evacuation slide;

a center tube extending longitudinally between the head end and the toe end of the evacuation slide;

an arched tube extending between the first side tube and the second side tube of the evacuation slide, the arched tube extends substantially orthogonal to the center tube, wherein the arched tube is separate from the center tube and is configured to contact the center tube in response to the evacuation slide being deployed; and

a strap coupled between the arched tube and the center tube of the evacuation slide,

wherein the arched tube is configured to provide vertical support to the first side tube and to the second side tube in response to a tension in the strap.

2. The evacuation slide of claim 1 , wherein the evacuation slide comprises a sliding surface disposed between the first side tube and the second side tube.

3. The evacuation slide of claim 2 , wherein the center tube extends substantially within a first plane and the strap extends in the first plane.

4. The evacuation slide of claim 3 , wherein the evacuation slide comprises a dual lane slide, the first side tube and the center tube defining a first lane and the second side tube and the center tube defining a second lane.

5. The evacuation slide of claim 4 , wherein the strap is attached to the arched tube and is attached to the center tube at a location between the arched tube and a toe end of the evacuation slide.

6. The evacuation slide of claim 4 , wherein the strap is attached to the arched tube and is attached to the center tube at a location between the arched tube and a head end of the evacuation slide.

7. The evacuation slide of claim 1 , wherein a first load path is formed between the arched tube and the center tube at a point of contact between the arched tube and the center tube and a second load path is formed between the arched tube and the center tube via the strap.

8. An evacuation system for an aircraft structure comprising:

an evacuation slide coupled to the aircraft structure, the evacuation slide comprising: a first side tube;

a center tube, the first side tube and the center tube defining a first lane;

a second side tube, the second side tube and the center tube defining a second lane;

an arched tube extending between the first side tube and the second side tube, the arched tube extending substantially orthogonal to the center tube wherein the arched tube is separate from the center tube and is configured to contact the center tube in response to the evacuation slide being deployed; and

a strap coupled between the arched tube and the center tube,

wherein the arched tube is configured to provide vertical support to the first side tube and to the second side tube in response to a tension in the strap.

9. The evacuation system of claim 8 , wherein the evacuation slide comprises a sliding surface disposed between the first side tube and the second side tube.

10. The evacuation system of claim 9 , wherein the first side tube, the second side tube, and the center tube are disposed substantially in parallel.

11. The evacuation system of claim 10 , wherein the center tube extends substantially within a first plane and the strap extends in the first plane.

12. The evacuation system of claim 11 , wherein the strap is attached to the arched tube and is attached to the center tube at a location between the arched tube and a toe end of the evacuation slide.

13. The evacuation system of claim 11 , wherein the strap is attached to the arched tube and is attached to the center tube at a location between the arched tube and a head end of the evacuation slide.

14. The evacuation system of claim 8 , wherein a first load path is formed between the arched tube and the center tube at a point of contact between the arched tube and the center tube and a second load path is formed between the arched tube and the center tube via the strap.

15. The evacuation system of claim 11 , wherein the strap is oriented at an angle relative to the center tube.

16. A method for supporting a slide from bending under load, comprising:

supporting a central portion of a first side tube and a central portion of a second side tube with an arched tube connected therebetween and with a strap connected longitudinally between a first location along a center tube and the arched tube and between a second location along the center tube and the arched tube, the center tube extending longitudinally between the first side tube and the second side tube,

wherein the arched tube extends substantially orthogonal to the center tube, wherein the arched tube is separate from the center tube and is configured to contact the center tube in response to the evacuation slide being deployed.

17. The method according to claim 16 , further comprising compressing the arched tube in response to a bending load applied to at least one of the first side tube and the second side tube.

18. The method according to claim 17 , further comprising tensioning the strap in response to the compression in the arched tube such that a first load path is formed between the arched tube and the center tube at a point of contact between the arched tube and the center tube and a second load path is formed between the arched tube and the center tube via the strap.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2016
From: PREVOST, CRAIG; SCHMIDT, RYAN
To: GOODRICH CORPORATION
Reel/Frame 039759/0960 →
Continuity (1)
Related Publication 20180072427A1 · Mar 15, 2018
Cited By (1)
US 1,125,011