Claims
- 1. A cover for an air bag module, comprising:
a polymeric sheet having a first surface and a second surface, said polymeric sheet including a plurality of cells formed therein, and a skin being formed on at least said first surface; and one or more thinned portions being formed in said second surface, said one or more thinned portions defining a weakened region of said cover.
- 2. The cover of claim 1, further comprising a second skin formed on said second surface, a region of said second skin being formed at said one or more thinned portions, said region having a skin thickness that is smaller than a thickness of said second skin that is not at said region.
- 3. The cover of claim 1, wherein said plurality of cells comprises a first plurality of cells and a second plurality of cells, said first plurality of cells being defined at said one or more thinned portions and said second plurality of cells being defined in remaining portions of said polymeric sheet, said first plurality of cells reducing a density of said polymeric sheet more than said second plurality of cells.
- 4. The cover of claim 5, further comprising a second skin formed on said second surface, a region of said second skin being formed at said one or more thinned portions, said region having a skin thickness that is smaller than a thickness of said second skin that is not at said region.
- 5. A cover for an air bag module, comprising:
a foamed polymeric sheet having a show surface and a non-show surface, and a first skin being formed on at least said show surface; and a weakened region being formed by one or more thinned portions defined in said non-show surface.
- 6. The cover of claim 5, wherein said foamed polymeric sheet has a density of at least 2% less than a solid cover having similar dimensions and formed from the same polymer.
- 7. The cover of claim 5, further comprising a second skin being formed on said non-show surface, a first portion of said second skin being formed at said weakened region, a second portion of said second skin being formed on said second surface in non-weakened regions of said foamed polymeric sheet, said first portion being thinner than said second portion.
- 8. The cover of claim 5, wherein said foamed polymeric sheet comprises a first zone of cells defined at said weakened region, and a second zone of cells defined in non-weakened regions of said cover.
- 9. The cover of claim 8, wherein said first zone of cells reduces the density of said weakened region more than said second zone of cells reduces the density of said non-weakened regions.
- 10. The cover of claim 10, wherein said first zone of cells reduces the density of said weakened region by at least 15%, while said second zone of cells reduces the density of said non-weakened regions by at least 2%.
- 11. The cover of claim 10, further comprising a second skin formed on said non-show surface, a first portion of said second skin being disposed at said weakened region and a second portion of said second skin being disposed at said non-weakened regions, said first portion being thinner than said second portion.
- 12. An air bag module, comprising:
a housing being positionable in a cavity defined in the interior of a vehicle; an inflatable cushion; an inflator in fluid communication with said inflatable cushion, said inflatable cushion and said inflator being stored in said housing; and a cover comprising a foamed polymeric member having a show surface, a non-show surface, and a weakened region, said weakened region being defined by one or more thinned portions, said cover being configured such that said non-show surface covers said housing proximate said inflatable cushion whereby inflation of said inflatable cushion by said inflator causes said inflatable cushion to expand into said cover, and thus to apply a force on said cover to tear or open said cover along said weakened region thereby providing an outlet for said inflatable cushion through said cover into said vehicle.
- 13. The air bag module of claim 12, wherein said foamed polymeric member comprises a plurality of cells configured to reduce the density of said cover by at least 2% as compared to a solid cover having similar dimensions and formed from the same polymer.
- 14. The air bag module as in claim 12, wherein said one or more thinned portions are defined in said non-show surface, said show surface, or a combination of said show and non-show surfaces.
- 15. The air bag module of claim 13, further comprising a skin formed on said show surface.
- 16. The air bag module of claim 15, further comprising a second skin formed on said non-show surface.
- 17. The air bag module of claim 16, wherein a first portion of said second skin is disposed at said weakened region and a second portion of said second skin is disposed at non-weakened regions of said foamed polymeric member, said first portion being thinner than said second portion.
- 18. The air bag module of claim 12, wherein said plurality of cells further comprises a first zone of cells defined at said weakened region, and a second zone of cells defined in remaining regions of said foamed polymeric member.
- 19. The air bag module of claim 18, wherein said first zone of cells reduces the density of said weakened region more than said second zone of cells reduces the density of said remaining regions.
- 20. The air bag module of claim 19, wherein said first zone of cells reduces the density of said weakened region by at least 15%, while said second zone of cells reduces the density of said remaining regions by at least 2%.
- 21. A method of making a cover for an air bag module, comprising:
mixing a blowing agent and a molten polymer under a first condition, said first condition being sufficient to prevent said blowing agent from forming bubbles in said polymer; changing said first condition to a second condition, said second condition being sufficient to cause said blowing agent to form bubbles in said molten polymer; and molding said molten polymer containing said bubbles into a desired shape in a mold, said desired shape comprising a first polymer sheet having a plurality of first cells being defined therein by said bubbles and a thinned portion being defined in a first surface of said first polymer sheet.
- 22. The method of claim 21, wherein said mold includes a blade positioned and configured to define said thinned portion.
- 23. The method of claim 22, further comprising:
cooling said mold to form a first skin on said first surface of said first polymer sheet, said first skin including a first portion defined at said thinned portion and a second portion defined in non-thinned portions of said first polymer sheet, said first portion being thinner than said second portion.
- 24. The method of claim 23, wherein said blade is configured to mitigate said cooling of said mold at said thinned portion to cause said first portion to be thinner than said second portion.
- 25. The method of claim 23, wherein said first portion being thinner than said second portion causes said first cells expand to second cells at said thinned portion, said second cells reducing the density of said first polymer sheet more than said first cells reduce the density of said first polymer sheet.
- 26. The method of claim 25, further comprising:
cooling said mold to form a second skin on a second surface of said first polymer sheet.
- 27. The method of claim 22, further comprising:
expanding said first cells to second cells at said thinned portion by moving said blade from a first position to a second position, said blade being farther from said second surface in said second position than in said first position.
- 28. The method of claim 27, wherein said second cells reduce the density of said thinned portion by at least 15%, while said first cells reduce the density by at least 2%.
- 29. The method of claim 27, further comprising:
sensing a state of said first cells at said thinned portion; and moving said blade to said second position based upon said state reaching a set point.
- 30. The method of claim 29, wherein said state includes at least one of pressure, time, and temperature.
- 31. The method of claim 21, wherein changing said first condition to said second condition comprises a rapid change in temperature, a rapid change in pressure, and/or combinations thereof.
- 32. The method of claim 26, wherein said desired shape further comprises a second polymer sheet formed on said first surface or said second surface of said first polymer sheet, said first and second polymer sheets having the same or different polymer compositions.
- 33. The method of claim 22, wherein said blowing agent decreases a viscosity level of said molten polymer such that restriction in the flow of said molten polymer in said mold at said blade is reduced to avoid stress.
- 34. A method of controlling the density of a region of a foamed polymer, comprising:
mixing a blowing agent and a molten polymer under a first condition, said first condition being sufficient to prevent said blowing agent from forming bubbles in said polymer; changing said first condition to a second condition, said second condition being sufficient to cause said blowing agent to form bubbles in said molten polymer; molding said molten polymer containing said bubbles into a desired shape in a mold, said desired shape including a plurality of first cells being defined within said desired shape by said bubbles; and moving a portion of said mold disposed at said region from a first position to a second position, movement of said portion of said mold causing said first cells in said region to change to second cells without changing said first cells in remaining regions of said foamed polymer, said foamed polymer having a first density at said remaining regions caused by said first cells and a second density at said region caused by said second cells.
- 35. The method of claim 34, comprising:
sensing a state of said first cells at said region; and moving said portion of said mold to said second position based upon said state reaching a set point.
- 36. The method of claim 35, wherein said state includes at least one of pressure, time, and temperature.
- 37. The method of claim 34, wherein said first density is more dense than said second density.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of provisional application serial No. 60/302,408 filed on Jul. 2, 2001, the contents of which are incorporated by reference herein in their entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60302408 |
Jul 2001 |
US |