RELEASE SYSTEM FOR INFLATABLE LIFE SAVING DEVICES
20180210483 ยท 2018-07-26
Assignee
Inventors
Cpc classification
B63C9/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
G05G7/00
PHYSICS
Abstract
Described is a release system for inflatable life saving devices, such as evacuation slides, evacuation slide/rafts, emergency floats, emergency flotation systems, and life rafts. The release system incorporates an energy storing device and a securement system that can be released upon activation. Once the release system is activated, the securement system is opened to allow deployment of the inflatable.
Claims
1. A release system for inflatable life saving devices, comprising: a first panel comprising a plurality of protrusions; a second panel comprising a plurality of receiving openings, each receiving opening sized and configured for receiving a corresponding protrusion; the protrusions comprising apertures sized and configured for receiving a retaining device; a cable comprising (a) a plurality of retaining devices positioned along the release cable and (b) an energy storing device; the plurality of retaining devices positioned along the release cable being sized and configured to be received by the protrusions; the energy storing device configured to store energy in order to cause movement of the cable upon release of the cable.
2. The release system of claim 1, wherein the plurality of protrusions are shaped as parachute cones.
3. The release system of claim 1, wherein the plurality of receiving openings are reinforced by grommets.
4. The release system of claim 1, wherein the energy storing device comprises a spring.
5. The release system of claim 1, wherein the plurality of retaining devices comprise pins, rods, clips, fasteners, keys, or slide bolts.
6. The release system of claim 1, further comprising an activation system for maintaining the cable in a secured position and for releasing the cable to a released position.
7. The release system of claim 6, wherein the activation system is activated by a strain energy storing device, an extension spring, compression spring, torsion spring, leaf spring, drawbar spring, disc or belleville spring, wave spring, clock spring, elastic material, rubber band, flexcord or bungee system, compressed gas, charged cylinder, compressed gas cylinder, pneumatic system, shock absorber, linear actuator, squib, solenoid valve, or any combination thereof.
8. The release system of claim 1, wherein, in a stored position of the inflatable life-saving device, the plurality of retaining devices are received by the apertures of the protrusions, and the energy storing device is secured in an energy potential position.
9. The release system of claim 1, wherein, in a deployed position of the inflatable life-saving device, the plurality of retaining devices are removed from the protrusions due to release of the energy storing device, allowing separation of the first panel from the second panel.
10. A release system for inflatable life saving devices, comprising: first and second panels; an interlocking securement system comprising at least one first element on the first panel and at least one second element on the second panel, wherein engagement of the at least one first element with the at least one second element causes engagement of the first and second panels, a release cable comprising (a) at least one feature configured to engage with and release from one of the first or second elements and (b) an energy storing device; an activation system that maintains the release cable in a first position such that the at least one feature engages with one of the first or second elements, and that releases the release cable to a second position that releases the feature from one of the first or second elements.
11. The release system of claim 10, wherein the energy storing device comprises a spring.
12. The release system of claim 10, wherein the feature configured to engage and release the first and second element comprises a retaining device pin, and wherein one of the first or second elements comprises an aperture configured to receive the retaining device pin.
13. The release system of claim 10, wherein the first elements are protrusions and wherein the second elements are receiving openings.
14. The release system of claim 10, wherein the activation system that maintains the release cable is activated by a strain energy storing device, an extension spring, compression spring, torsion spring, leaf spring, drawbar spring, disc or belleville spring, wave spring, clock spring, elastic material, rubber band, flexcord or bungee system, compressed gas, charged cylinder, compressed gas cylinder, pneumatic system, shock absorber, linear actuator, squib, solenoid valve, or any combination thereof.
15. The release system of claim 10, wherein the first position of the release cable comprises the energy storing device in an energy potential position and wherein the second position of the release cable comprises the energy storing device in an energy released position.
16. The release system of claim 10, wherein the at least one first element comprises a hinge protrusion and the at least one second element comprises a hinge receiving opening that engage with one another to secure the first and second panels to one another.
17. The release system of claim 10, comprising a plurality of first and second elements.
18. A method for securing an inflatable life saving device, comprising: providing a release system comprising: a first panel comprising a plurality of protrusions; a second panel comprising a plurality of receiving openings, each receiving opening sized and configured for receiving a corresponding protrusion; the protrusions comprising apertures sized and configured for receiving a retaining device; a cable comprising (a) a plurality of retaining devices positioned along the release cable and (b) an energy storing device; the plurality of retaining devices positioned along the release cable being sized and configured to be received by the protrusions; the energy storing device configured to store energy in order to cause movement of the cable upon release of the cable; securing the first panel and second panel with respect to one another by positioning each of the receiving openings over a corresponding protrusion, and positioning each of retaining devices into the protrusions.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0020] Embodiments of the present disclosure provide an inflatable device cover that is used for containment of the inflatable device and appropriate release of the inflatable device upon activation and deployment. The systems described can prevent aerodynamic loads from forcing premature release (or loss) of the inflatable device, even if the door panel/cover is removed or lost during flight. By providing a secondary release mechanism, a more robust securement can be achieved.
[0021] As illustrated by
[0022] As shown, the protrusions 20 may be shaped as parachute cones 24. This shape may help the protrusions 20 easily slide into receiving openings 22. The cones 24 may have an upper portion that tapers into a wider, lower base portion. This can create a pyramidal shape along which the receiving opening 22 may slide. The base portion may be similarly sized as the receiving opening (albeit slightly smaller in diameter) in order to create a secure connection therebetween. It should be understood, however, that any appropriate shape for protrusions 20 may be used and is considered within the scope of this disclosure. Each protrusion 20 is shown as having an aperture 26 configured to receive a retaining device 28. The retaining device 28 may be formed as a pin, a rod, a clip, a fastener, a key, a slide bolt, or any other element that can be received by the aperture 26. At least one retaining device 28 is secured to a release cable 30. It is generally expected that a plurality of retaining devices 28 will be positioned along the cable 30. The retaining device 28 may be secured to the cable 30 via a hinged connection, allowing the retaining device 28 to move with respect to the cable 30. In another example, the retaining device 28 may be rigidly secured to the cable 30 at an angle, so that the device 28 can be positioned in an aperture 26 and then pulled out once the cable is moved.
[0023] The release cable 30 extends along the substantial length of the panels 12, 14. Positions along the release cable 30 that correspond to positions of the protrusions 20 and parachute cones 24 are provided with a retaining device 28. Each retaining device 28 is sized and configured to be received by the aperture 26.
[0024] As shown in
[0025] In use, the panel 12 with the receiving openings 22 is placed such that the receiving openings 22 extend over and receive the protrusions 20. This is illustrated by the sectional view of
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[0028] Although two different locking systems are shown and described, it should be understood that other systems are possible and considered within the scope of this disclosure. For example, any system that provides two correspondingly shaped members that may be positioned on the different panels such that they cooperate or interface with one another in order to maintain the panels in cooperation and may be secured by a retaining device, pin, or other cable-based or cable-secured mechanism may be used.
[0029] When deployment of the inflatable device is necessary, removal of the retaining devices 28 from the apertures 26 occurs. In one example, this removal is provided by an activation system 46 that allows activation of an energy storing device 60 (as described further below). In one specific example, the activation system 46 is a pneumatic system. It is possible for the pneumatic system to be similar to the pneumatic system that is currently used to release the door panel/cover ball locks. In other examples, the system may be activated by any type of strain energy storing device. Non-limiting examples include, but are not limited to an extension spring, compression spring, torsion spring, leaf spring, drawbar spring, disc or belleville spring, wave spring, clock spring, elastic material, rubber band, flexcord or bungee system, compressed gas, charged cylinder, compressed gas cylinder, pneumatic system, shock absorber, linear actuator, squib, solenoid valve, or any combination thereof, or any other energy storing device or any other activation system.
[0030] One example of an activation system 46 is illustrated by
[0031] As also shown by
[0032] For example, when the release cable 30 is secured in the cable securement area 58 of the activation system 46, the energy storing device 60 holds stored energy. This is the energy potential position. In the example shown, the stored energy is in the form of an extended spring. When the cable 30 is secured as shown by
[0033] Movement of the release cable 30 causes consequent movement of the retaining devices 28 that are secured to the cable 30. This movement of the retaining devices 28 causes their disengagement from the apertures 26. Once the retaining devices 28 are disengaged from the apertures 26, the two panels 12, 14 are allowed to separate from one another due to pressure from the inflatable.
[0034] Although not required,
[0035] Changes and modifications, additions and deletions may be made to the structures and methods recited above and shown in the drawings without departing from the scope or spirit of the disclosure or the following claims.