Airbag inflator diffusion system and method of manufacture
First Claim
1. An airbag inflator diffusion system comprising:
- an airbag inflator having an exhaust gas exit port;
a sleeve that receives the inflator and secures the inflator within the sleeve, the sleeve defining an opening, wherein the sleeve comprises a lobe aligned with the gas exit port such that exhaust gas leaving the exit port is impeded by the lobe.
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Accused Products
Abstract
An airbag inflator diffusion system is disclosed which is simple to fabricate, directs exhaust gas from a standardized inflator, sufficiently cools the exhaust gas, catches hot gas generant residue pieces, and sufficiently diffuses the exhaust gas. The system includes an airbag inflator, and a sleeve. The inflator has simple exit ports which are positioned along the length of the inflator. The sleeve is sized to receive the inflator. The sleeve includes lobes which project from its length. The lobes are positioned such that exhaust gas leaving an exit port is diverted by the lobe in at least two directions. The diverted exhaust gas is thereby cooled and allowed to disperse within the textile airbag. The system also includes a catch which may be a wire mesh. The catch further cools and causes the exhaust gas to disperse. In this way, a simple, effective diffuser for a curtain airbag inflator is provided.
37 Citations
28 Claims
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1. An airbag inflator diffusion system comprising:
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an airbag inflator having an exhaust gas exit port;
a sleeve that receives the inflator and secures the inflator within the sleeve, the sleeve defining an opening, wherein the sleeve comprises a lobe aligned with the gas exit port such that exhaust gas leaving the exit port is impeded by the lobe. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11)
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12. An airbag inflator diffuser comprising:
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a rigid tubular sleeve;
a lobe which extends a wall of the sleeve radially for a section along a length of the sleeve to form an exhaust passage, the sleeve defining an opening, wherein the lobe is aligned with an exhaust gas exit port of an airbag inflator installed within the sleeve, such that exhaust gas leaving the exit port is impeded by the lobe; and
a catch positioned within the opening. - View Dependent Claims (13, 14, 15, 16, 17)
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18. A method for fabricating an airbag inflator diffuser, comprising:
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providing a rigid cylindrical tube that defines a hollow space that is capable of receiving an airbag inflator;
pressing the tube in a direction perpendicular to a longitudinal axis of the tube such that the tube obtains an elliptical cross-section and remains capable of receiving and biasing the airbag inflator within the hollow space;
removing a section of the tube such that a lobe and an exhaust passage are formed on a side of the tube; and
inserting the airbag inflator longitudinally within the tube such that the lobe partially obstructs an exit port disposed in the airbag inflator. - View Dependent Claims (19, 20, 21)
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22. A method for fabricating an airbag inflator diffuser, comprising:
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forming a plurality of parallel slits perpendicular to a longest edge of a pliable, planar, rectangular plate, the slits being shorter than the shortest edge of the piece;
bending the plate on each side of each slit such that a plurality of lobes having triangular cross-sections which extend in alternating directions perpendicular to a largest surface of the plate to form a sleeve; and
inserting an airbag inflator in between the plurality of lobes such that a central lateral axis of the sleeve aligns with a central lateral axis of the airbag inflator. - View Dependent Claims (23, 24, 25)
inserting a first catch between the airbag inflator and a plurality lobes along a first side of the central lateral axis of the sleeve; and
inserting a second catch between the airbag inflator and a plurality lobes along a second side of the central lateral axis of the sleeve.
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25. A method as in claim 22, wherein the plurality of lobes define a cavity that receives the airbag inflator and biases the airbag inflator to secure the airbag inflator within the cavity.
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26. An airbag inflator diffusion system comprising:
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an airbag inflator having a plurality of exhaust gas exit ports;
a sleeve that receives the inflator and secures the inflator within the sleeve, the sleeve defining a plurality of openings, wherein the sleeve comprises a plurality of lobes, each of the exhaust gas exit ports being aligned with one of the lobes such that exhaust gas leaving each exit port is impeded by at least one of the lobes, each lobe having an end that defines a portion of one of the openings in the sleeve. - View Dependent Claims (27, 28)
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Specification