EP0907529A1

Inflatable tubular torso restraint system

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 2 July 2017, 9.2 years ago.

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  5. Today

2 claims: 1 independent, 1 dependent

  1. 1
    Claims of equivalent WO 9800314 A1 WHAT WE CLAIM IS:1. A seat restraint system for protecting the occupants of motor vehicles comprising: (a) an inflatable braided tube of continuous high-strength fibers having an outer end and an inner end;(b) a first anchored strap connecting the outer end of the braided tube to a first inertial reel;(c) a second anchored strap having one end connected to the inner end of the braided tube and another end of said strap connected to a second inertial reel, said second strap or braided tube looping through a male part of a buckle assembly (d) a female part of a buckle assembly, said female part of the buckle assembly being releasably connectable to the male part of the buckle assembly;(e) a third short strap or cable connecting the female part of the buckle assembly to a third anchor;and (i) a gas generator fluidly connected to the braided tube, wherein the continuous high-strength fibers form spirals that are elongated longitudinally such that the uninflated braided tube has a relatively small diameter, and upon inflation, the spirals move closer together longitudinally such that the braided tube significantly increases in diameter and significantly decreases in length upon inflation. 2. The seat system of claim 1, wherein, prior to inflation, the continuous fibers form longitudinal angles in the range of about 30° to about 70°, and, after inflation, the continuous fibers form longitudinal angles of about 100°, when in an unconstrained state. 3. The seat system of claim 1, wherein the inflatable braided tube decreases its length by at least 20% when inflated in an unconstrained state. 4. The seat system of claim 2, wherein the first inertial reel pivotally mounts said first strap to an attachment point in the vehicle. 5. The seat system of claim 1, further comprising: (g) a crash sensor, electrically connected to the gas generator. 6. A seat restraint system compπsing: (a) an inflatable braided tube having an outboard end and an inboard end;(b) a first strap attached to the outboard end of the inflatable braided tube;(c) a second strap attached to the inboard end of the inflatable braided tube, said first and second straps comprising means for anchoring the straps to an attachment point in the vehicle;(d) a male part of a buckle assembly through which a portion of said seat belt is looped;(e) a female part of a buckle assembly, said female part of the buckle assembly being releasably connectable to the male part of the buckle assembly;(f) a third short strap attached to the female part of the buckle assembly, said third strap comprising means for anchoring said third strap to an attachment point in the vehicle;and (g) tubing for fluidly connecting the inflatable braided tube to a gas generator, wherein the gas generator is mounted to a structure in the vehicle;wherein the inflatable braided tube comprises continuous fibers forming spirals, the continuous fibers crossing each other at fiber crossing points, such that when the braided tube is uninflated, the continuous fibers form acute longitudinal angles at angles of about 30° to 70° at the fiber crossing points. 7. The seat restraint system of claim 6, wherein as the braided tube is inflated, the longitudinal angles increase to about 100°, causing the unconstrained length of the inflatable braided tube to decrease by at least .oout 20%. 8. The seat restraint system of claim 6, wherein the inflatable braided tube in an unconstrained state decreases its length by about 21% to 33.5%. 9. The seat restraint system of claim 6, wherein the uninflated width of the inflatable braided tube is approximately two inches. 10. The seat restraint system of claim 6, wherein the inflatable braided tube can be inflated by filling the braided tube with gas to a relative internal pressure of approximately 1.5 bars, within 15 milliseconds. 11. The seat restraint system of claim 6, wherein the continuous fibers are selected from aramid, nylon, dacron, polyamide and polyester fibers. 12. The seat restraint system of either of claims 1 or 0, wherein said inflatable braided tube crosses an occupant's lap. 13. The seat restraint system of either of claims 1 or G, wherein said inflatable braided tube crosses an occupant's torso. 14. A method for protecting the occupants of a vehicle comprising the steps of: (a) attaching a first strap to an outboard end of an inflatable braided tube, said inflatable braided tube comprising continuous fibers forming spirals which cross each other at fiber crossing points, and which form acute longitudinal angles at the fiber crossing points: (b) anchoring said first strap to said vehicle or vehicle seat;(c) attaching a second strap to an inner end of the braided tube, said second strap connected to a second anchor or anchored lap belt retractor;(d) looping the first strap, braided tube or second strap through a male part of a buckle assembly;(e) attaching a third short strap to a female part of a buckle assembly, said female part of the buckle assembly being releasably connectable to the male part of the buckle assembly;(1) anchoring said third short strap to the vehicle or vehicle seat;(g) detecting an impact;(h) igniting a gas generator, mounted to structure in the vehicle and fluidlv connected to the inflatable braided tube, in response to said impact;(1) releasing a gas which inflates the braided tube, such that the longitudinal angles increase. 15. The method of claim 14, wherein prior to inflating the braided tube the longitudinal angles range from 30° to 70°, and after inflating the braided tube the longitudinal angles range are about 100° to 110°. 16. The method of claim 14, wherein after inflating, the braided tube decreases by at least 10% to 30%. 17. A seat restraint comprising: (a) first and second inflatable braided tubes having outboard and inboard ends;(b) first and second straps attached to the outboard ends of each of said inflatable braided tubes;(c) a buckle assembly comprising releasably connectable male and female portions;(d) a second strap attaching the inboard ends of said inflatable braided tubes and passing through the male portion of said buckle assembly;(e) a short strap attached to the female part of said buckle assembly;and (f) a gas generator fluidly connected to said inflatable braided tubes, wherein said inflatable braided tubes comprise continuous fibers, the continuous fibers forming spirals and crossing each other at fiber crossing points, such that when said braided tubes are in an uninflated state, the continuous fibers form longitudinal angles ranging from about 30" to 70° at the fiber crossing points. 18 The seat restraint of claim 17, wherein as the braided tube is inflated, the longitudinal angles increase to about 100°, causing the length of the inflatable braided tube when in an unconstrained state to decrease by about 21.5% to 33 5% 19 The seat restraint of claim 17, wherein the inflatable braided tubes when in an unconstrained state decreases in length by about 21.5% to 33.5% upon inflation 20. The seat restraint of claim 17, wherein the uninflated width of the inflatable braided tubes is approximately two inches. 21. The seat restraint of claim 17, wherein the inflatable braided tubes can be fully inflated by filling the braided tubes with gas to a relative internal pressure of approximately 1 to 4 bars.