Inflation gas generation devices and methods utilizing joule-thomson heating
원문보기
IPC분류정보
국가/구분 |
United States(US) Patent
등록
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국제특허분류(IPC7판) |
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출원번호 |
US-0379054
(2003-03-04)
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발명자
/ 주소 |
- Rink, Karl K.
- Johnson, Matthew Scott
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출원인 / 주소 |
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인용정보 |
피인용 횟수 :
4 인용 특허 :
8 |
초록
The invention provides apparatus for inflating an inflatable safety restraint cushion and associated methods for producing an inflation gas for inflating an inflatable safety restraint cushion which rely, at least in part, on Joule-Thomson heating.
대표청구항
▼
1. An apparatus for inflating an inflatable safety restraint cushion, the apparatus comprising:an expansion chamber having fluid contents;an expansion chamber opening device effective, upon actuation, to open the expansion chamber to permit passage of at least a portion of the expansion chamber cont
1. An apparatus for inflating an inflatable safety restraint cushion, the apparatus comprising:an expansion chamber having fluid contents;an expansion chamber opening device effective, upon actuation, to open the expansion chamber to permit passage of at least a portion of the expansion chamber contents therefrom for inflating the inflatable safety restraint cushion;a Joule-Thomson throttling device situated adjacent to the expansion chamber; anda storage chamber situated adjacent to the Joule-Thomson throttling device, opposite the expansion chamber, the storage chamber having contents including a supply of Joule-Thomson heating material;wherein, upon opening of the expansion chamber, the Joule-Thomson throttling device permits at least a portion of the supply of the Joule-Thomson heating material to be passed from the storage chamber to the expansion chamber through the Joule-Thomson throttling device with the portion of the supply of the Joule-Thomson heating material passing therethrough undergoing Joule-Thomson heating to form an inflation gas for use in inflating the inflatable safety restraint cushion.2. The apparatus of claim 1 wherein the Joule-Thomson throttling device comprises a porous plug.3. The apparatus of claim 1 wherein upon passage of at least a portion of the supply of the Joule-Thomson heating material through the Joule-Thomson throttling device, the Joule-Thomson throttling device is at least partially consumed.4. The apparatus of claim 1 wherein the Joule-Thomson material comprises helium.5. The apparatus of claim 1 wherein the Joule-Thomson material comprises H2.6. The apparatus of claim 1 wherein the Joule-Thomson material comprises helium and H2.7. The apparatus of claim 1 wherein the Joule-Thomson material comprises at least one fluid selected from the group consisting of: oxygen, argon, nitrogen, neon, xenon, SF6, carbon monoxide, ammonia, hydrocarbon fuels and mixtures thereof.8. The apparatus of claim 1 wherein the contents of the storage chamber are at a static pressure of at least 2500 psi (17.2 MPa) and no more than 15,000 psi (103.4 MPa).9. The apparatus of claim 1 wherein the contents of the storage chamber are at an equivalence ratio of at least 0.05 and no more than 1.2.10. The apparatus of claim 1 additionally comprising a barrier element preventing passage between the storage chamber and the expansion chamber when the apparatus is in an original static state.11. The apparatus of claim 10 wherein the expansion chamber initially contains a supply of stored inflation material.12. The apparatus of claim 10 wherein the expansion chamber additionally contains a heat source.13. The apparatus of claim 10 wherein the storage chamber additionally contains a heat source.14. The apparatus of claim 10 additionally comprising a storage chamber opening device, the storage chamber opening device, upon actuation, effective to open the storage chamber and permit passage therefrom of at least a portion of the supply of Joule-Thomson heating material without passage of such portion through the Joule-Thomson throttling device.15. The apparatus of claim 14 additionally comprising a first heat source contained within the expansion chamber and a second heat source contained at least in part within the storage chamber.16. The apparatus of claim 1 wherein the expansion chamber additionally contains a heat source.17. The apparatus of claim 1 wherein;the storage chamber additionally contains a heat source;the apparatus additionally comprises a storage chamber opening device, the storage chamber opening device, upon actuation, effective to result in heat being transferred from the storage chamber heat source to the contents of the storage chamber and to open the storage chamber and permit passage therefrom of at least a portion of the supply of Joule-Thomson heating material without passage of such portion through the Joule-Thomson throttling device;the expansion chamber containing a supply of gas generant reactant material; andwherein at least a portion of the supply of gas generant reactant material is heated via contact with Joule-Thomson heating material having passed through the Joule-Thomson throttling device.18. A method for producing an inflation gas for inflating an inflatable safety restraint cushion, the method comprising:passing at least a portion of a supply of Joule-Thomson heating material through a Joule-Thomson throttling device contained in an inflator assembly whereby the portion of the supply of the Joule-Thomson heating material passing therethrough undergoes Joule-Thomson heating to form an inflation gas for use in inflating the inflatable safety restraint cushion.19. The method of claim 18 wherein the Joule-Thomson throttling device comprises a porous plug.20. The method of claim 18 wherein upon passage of at least a portion of the supply of the Joule-Thomson heating material through the Joule-Thomson throttling device, the Joule-Thomson throttling device is at least partially consumed.21. The method of claim 18 wherein the Joule-Thomson material comprises helium.22. The method of claim 18 wherein the Joule-Thomson material comprises H2.23. The method of claim 18 wherein the Joule-Thomson material comprises helium and H2.24. The method of claim 18 wherein the Joule-Thomson material comprises at least one fluid selected from the group consisting of: oxygen, argon, nitrogen, neon, xenon, SF6, carbon monoxide, ammonia, hydrocarbon fuels and mixtures thereof.25. The method of claim 18 wherein prior to said passing, the at least a portion of a supply of Joule-Thomson heating material is contained within the inflator device in a storage chamber.26. The method of claim 25 wherein the storage chamber has contents at a static pressure of at least 2500 psi (17.2 MPa) and no more than 15,000 psi (103.4 MPa).27. The method of claim 25 wherein the storage chamber has contents at an equivalence ratio of at least 0.05 and no more than 1.2.28. The method of claim 25 additionally comprising, prior to said passing step, the step of opening a barrier element to permit the passing of at least a portion of a supply of Joule-Thomson heating material through the Joule-Thomson throttling device from the storage chamber.29. The method of claim 25 additionally comprising heating the Joule-Thomson heating material prior to passage through the Joule-Thomson throttling device.30. The method of claim 18 additionally comprising heating the Joule-Thomson heating material after passage through the Joule-Thomson throttling device.
이 특허에 인용된 특허 (8)
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Rink Karl K. ; Green David J. ; Moore Walter A. ; Lewis Robert E., Adaptive output inflator having a selectable oxidant composition.
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Svensson Orvar (Tby SEX), Airbag filling arrangement.
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Rink Karl K. (Liberty UT), Airbag inflation gas generation via a decomposing material.
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Johnson Darrin L. ; Lindsey David W. ; Jackson Scott A. ; Walker Kerry C. ; Dearden Eugene R., Cold deployment pyrotechnic inflator for air bag systems.
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Rink Karl K. (Liberty UT) Green David J. (Brigham UT) Letendre Guy R. (Ogden UT), Inflators which store premixed fluid fuel and oxidizer in a porous matrix.
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Richardson William B. (Kaysville UT) Rink Karl K. (Liberty UT) Rink Linda M. (Liberty UT), Liquid-fueled inflator with a porous containment device.
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Rink Karl K. (Liberty UT) Johnson Kelly B. (Layton UT), Liquid-fueled, porous-piston-actuated, inflator for an airbag inflatable restraint system.
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Rink Karl K. ; Green David J. ; Smith Bradley W. ; Clark Marcus T., Pressurized fluid containing airbag inflator.
이 특허를 인용한 특허 (4)
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Young, Anthony M.; Lund, Gary K.; Clark, Kenneth J.; Hussey, Brett, Inflator device with fuel-rich monolithic grain and oxidant-enhanced combustion.
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Parks, Brent; Cox, Matthew A.; Smith, Bradley W., Inflator having a mechanically coupled two-piece housing.
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Parks, Brent; Cox, Matthew A.; Smith, Bradley W., Inflator having a mechanically coupled two-piece housing.
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Finnigan, Brian T.; Ananthanarayanan, Venkatasubramanian; Payne, James M.; Warren, Donald E., Inflators and method for manufacturing inflators.
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