Chamber adjustable stiffness airbag
The present invention discloses a multiple-chamber airbag structure where the airbag design has at least a stiff lower section to reduce the chest velocity and a soft upper section to meet the HIC requirements. Although stowed and deployed as a unitary airbag, the present invention includes separate chambers, which allows for independent gas inflation and stiffness control with venting.
1. An airbag apparatus comprising:
a plurality of fabric panels cut and sewn together to form an airbag having an outside and an inside, the outside having a predetermined shape and the inside having a plurality of chambers adapted to receive an inflation gas whereby the airbag apparatus is transitioned from an uninflated state to an inflated state;
a first chamber disposed inside the airbag, upon receiving a first predetermined volume of the inflation gas, having a first capacity to resist a first load applied to a first area on the outside of the airbag coincident with the first chamber;
one or more vents communicative with the first chamber configured to selectively release the first predetermined volume of the inflation gas in response to the first load; and
a second chamber disposed inside the airbag and below the first chamber, and not in fluid communication with the first chamber, upon receiving a second predetermined volume of the inflation gas, having a second capacity to resist a second load applied to a second area on the outside of the airbag coincident with the second chamber;
where, upon transitioning into the inflated state, the first chamber is disposed above the second chamber and the first capacity is less than the second capacity, whereby the first chamber is adapted for head injury criterion reduction and the second chamber is adapted to neck injury criterion reduction.
2. The airbag apparatus of claim 1 further comprising one or more protrusions of the second chamber adapted to control a position of the airbag apparatus with respect to an adjacent structure during inflation.
3. The airbag apparatus of claim 1 where the plurality of fabric panels are formed from a flame resistant fabric for construction of aviation airbags which meets stringent vertical flammability requirements of Federal Aviation Regulations (FAR) 25.853, as well as, meeting high pressure permeability resistance requirements of the Federal Aviation Administration.
4. The airbag apparatus of claim 1 where each chamber is filled utilizing a single inflator for each chamber.
5. The airbag apparatus of claim 1 where multiple chambers are filled utilizing a single inflator.
6. The airbag apparatus of claim 5 further comprising a manifold disposed in fluid communication between the single inflator and each of the multiple chambers.
7. The airbag apparatus of claim 6 where the manifold is configurable such that a percentage of gas distribution to each of the multiple chambers is variable and configurable to result in a desired stiffness of each chamber upon inflation.
8. The airbag apparatus as in any one of the preceding claims, in which, in the uninflated state, the airbag apparatus is folded and contained within a structure used to contain the airbag apparatus until inflated.