Claims
- 1. A pressure vessel comprising:
an outer case structure comprising a plurality of annular case segments, the annular segments including a first case segment and a second case segment that mate with one another; a first annular rubber layer associated with and disposed radially inboard of the first case segment, the first annular rubber layer having an interfacing surface portion; and a second annular rubber layer associated with and disposed radially inboard of the second case segment, the second annular rubber layer having a thickness defined between a radial inner surface and a radial outer surface of the second annular rubber layer, the second annular rubber layer also having a slot extending from the radial inner surface across a portion of the thickness of the second annular rubber layer to define a main body portion and a flexible portion of the second annular rubber layer, the flexible portion having an interfacing surface portion abutting against the interfacing surface portion of the first annular rubber layer and being sufficiently flexible to follow movement of the first annular rubber layer during operation of the pressure vessel, wherein the slot is positioned for receiving pressurized gas from the pressure vessel and for establishing a pressure-actuated joint between the interfacing surface portions, and wherein at least one of the interfacing surface portions has a plurality of recesses formed therein, the recesses being enclosed and sealed by the first annular rubber layer and the flexible portion of the second annular rubber layer.
- 2. A pressure vessel according to claim 1, further comprising a combustible structure positioned on a radial inner surface of the insulation layers.
- 3. A pressure vessel according to claim 1, further comprising a combustible structure positioned on a radial inner surface of the insulation layers, the combustible structure having a center perforation and an annular channel extending from the center perforation to the slot for delivering pressurized gas to the slot during combustion and for establishing a pressure-actuated joint between the interfacing surfaces.
- 4. A pressure vessel according to claim 1, wherein the recesses comprise a plurality of discrete pockets.
- 5. A pressure vessel according to claim 1, wherein the recesses comprise a plurality of discrete pockets, each of the discrete pockets having a circular face.
- 6. A pressure vessel according to claim 1, wherein the recesses comprise a plurality of annular grooves, the annular grooves being spaced radially apart from each other.
- 7. A pressure vessel according to claim 1, wherein only one of the interfacing surface portions has the recesses formed therein.
- 8. A pressure vessel according to claim 1, wherein both of the interfacing surface portions have the recesses formed therein.
- 9. A rocket motor having a forward end and an aft end, the rocket motor comprising:
a rocket motor outer case structure comprising a plurality of annular case segments, the annular case segments including a first case segment and a second case segment, the first case segment mating with and positioned aft relative to the second case segment; a first annular insulation layer associated with and disposed radially inward of the first case segment, the first annular insulation layer having a forward-facing surface; a second annular insulation layer associated with and disposed radially inward of the second case segment, the second annular insulation layer having a thickness defined between a radial inner surface and a radial outer surface of the second annular insulation layer, the second annular insulation layer also having a slot extending from the radial inner surface of the second annular insulation layer in an outward direction across a portion of the thickness of the second annular insulation layer to define a main body portion and a flexible portion positioned aft of the main body portion, the flexible portion having an aft-facing surface abutting against an interfacing portion of the forward-facing surface and being sufficiently flexible to follow movement of the first annular insulation layer during operation of the rocket motor; and a combustible propellant grain structure positioned on a radial inner surface of the first and second annular insulation layers, the propellant grain structure having a center perforation and at least one annular channel extending from the center perforation to the slot for delivering pressurized gas to the slot during propellant combustion and for establishing a pressure-actuated joint between the aft-facing surface of the flexible portion and the interfacing portion of the forward-facing surface, wherein at least one member selected from the group consisting of the forward-facing surface of the first annular insulation layer and the aft-facing surface of the second annular insulation layer has a plurality of recesses formed therein, the recesses being enclosed by the first annular insulation layer and the second annular insulation layer.
- 10. A rocket motor according to claim 9, wherein the outer case structure is comprised of steel.
- 11. A rocket motor according to claim 9, wherein the first case segment and the second case segment having a clevis end portion and a tang end portion, respectively.
- 12. A rocket motor according to claim 11, wherein the clevis end portion has an annular groove in which an O-ring is seated.
- 13. A rocket motor according to claim 11, wherein the tang end portion has an annular groove in which an O-ring is seated.
- 14. A rocket motor according to claim 9, wherein the first and second annular insulation layers are each comprised of a nitrile-butadiene rubber.
- 15. A rocket motor according to claim 9, wherein:
the first annular insulation layer comprises an inhibitor portion extending radially inward from the interfacing portion, the second annular insulation layer comprises an inhibitor portion extending radially inward from the main body portion, the annular channel has a radial length, and the inhibitor portions of the first and second annular insulation layers are respectively positioned on opposite sides of the annular channel and extend radially along at least a portion of the radial length of the annular channel.
- 16. A rocket motor according to claim 9, further comprising a liner interposed between the combustible propellant grain structure and the radial inner surface of the first and second annular insulation layers.
- 17. A rocket motor according to claim 9, wherein the propellant grain structure comprises a plurality of distinct propellant segments.
- 18. A rocket motor according to claim 17, wherein each of the annular case segments is associated with a corresponding one of the propellant segments.
- 19. A rocket motor according to claim 9, further comprising a sealant disposed between the aft-facing surface of the flexible portion and the interfacing portion of the forward-facing surface.
- 20. A rocket motor according to claim 19, wherein the sealant comprises a pressure sensitive adhesive.
- 21. A rocket motor according to claim 9, wherein the recesses comprise a plurality of discrete pockets.
- 22. A rocket motor according to claim 9, wherein the recesses comprise a plurality of discrete pockets, each of the discrete pockets having a circular face.
- 23. A rocket motor according to claim 9, wherein the recesses comprise a plurality of annular grooves, the annular grooves being spaced radially apart from each other.
- 24. A rocket motor having a forward end and an aft end, the rocket motor comprising:
a rocket motor outer case structure comprising a plurality of annular case segments, the annular case segments including a first case segment and a second case segment, the first case segment mating with and positioned aft relative to the second case segment; a first annular insulation layer associated with and disposed radially inward of the first case segment, the first annular insulation layer having a forward-facing surface; a second annular insulation layer associated with and disposed radially inward of the second case segment, the second annular insulation layer having a thickness defined between a radial inner surface and a radial outer surface of the second annular insulation layer, the second annular insulation layer also having a slot extending from the radial inner surface of the second annular insulation layer in an outward direction across a portion of the thickness of the second annular insulation layer to define a main body portion and a flexible portion positioned aft of the main body portion, the flexible portion having an aft-facing surface being sufficiently flexible to follow movement of the first annular insulation layer during operation of the rocket motor; an annular sealing insert received by at least one of the first and second annular insulating layer and having a first surface abutting against the forward-facing surface and a second surface which is opposite to the first surface and abuts against the aft-facing surface of the flexible portion, the annular sealing insert having a plurality of substantially axial passages formed therethrough, the passages being sealed at ends thereof by the forward-facing surface of the first annular insulation layer and the aft-facing surface of the second annular insulation layer; and a combustible propellant grain structure positioned on a radial inner surface of the first and second annular insulation layers, the propellant grain structure having a center perforation and at least one annular channel extending from the center perforation to the slot for delivering pressurized gas to the slot during propellant combustion and for establishing a pressure-actuated joint.
RELATED APPLICATION
[0001] This application claims the benefit of priority of U.S. provisional application 60/289,590 filed in the U.S. Patent & Trademark Office on May 8, 2001, the complete disclosure of which is incorporated herein by reference.
GOVERNMENT LICENSING CLAUSE
[0002] The U.S. Government has a paid-up license in this invention and the right in limited circumstances to require the patent owner to license others on reasonable terms as provided by the terms of NAS8-97238 awarded by the National Aeronautics and Space Administration (NASA).
Provisional Applications (1)
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Number |
Date |
Country |
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60289590 |
May 2001 |
US |