Claims
- 1. An integrated structural system for a vehicle, comprising:
a molded duct system configured to guide airflow, said molded duct system having a first section and a second section, said molded duct system configured to operably attach a vehicle component thereto; and a metal structure, said metal structure integrated with said molded duct system by a means for integrating said metal structure with said molded duct system forming an integrated structural load path assembly, said integrated structural load path assembly being configured as a load bearing area to distribute a load of said vehicle component operably attached thereto over said integrated structural load path assembly, wherein said means for integrating said metal structure with said molded duct system includes one of;
sonic welding, heat staking, insert molding, and gluing.
- 2. The integrated structural system of claim 1, wherein said integrated structural load path assembly is a cross car structural beam having a vehicle HVAC air duct assembly.
- 3. The integrated structural system of claim 1, wherein said vehicle component is one of:
a steering column; and an HVAC assembly.
- 4. The system integrated structural of claim 1, wherein said metal structure is at least one of:
a metal tube; and a metal frame member.
- 5. The integrated structural system of claim 1, wherein said metal structure is fabricated by one of stamping, bending, hydroforming, extruding and casting.
- 6. The integrated structural system of claim 1, wherein said metal structure includes one of steel, aluminum, and magnesium.
- 7. The integrated structural system of claim 2, wherein said metal structure extends a length of said cross car beam structure.
- 8. The integrated structural system of claim 7, wherein said metal structure includes brackets at opposing ends thereof for mounting said integrated structural load path assembly to the vehicle.
- 9. The integrated structural system of claim 1, wherein when said means for integrating said metal structure with said molded duct system includes insert molding, said insert molding includes at least one of:
compression molding; and injection molding.
- 10. The integrated structural system of claim 9, wherein said compression molding includes extrusion deposition compression molding (EDCM).
- 11. The integrated structural system of claim 9, wherein means for integrating said metal structure with said molded duct system further comprises said first section and said second section using said means for integration along a first flange portion extending from said first section corresponding to a second flange portion extending from said second section.
- 12. The integrated structural system of claim 11, wherein said means for integration further includes a protrusion extending from at least one of said first section and said second section toward said metal structure encased therebetween.
- 13. The integrated structural system of claim 12, wherein said protrusion extends into one of a cavity and an aperture configured in said metal structure.
- 14. The integrated structural system of claim 13, wherein said protrusion extends to an opposing section of said molded duct system.
- 15. The integrated structural system of claim 9, wherein said metal structure includes a portion extending therefrom configured to receive a mechanical fastener extending through one of said first and second flange portions.
- 16. The integrated structural system of claim 1, wherein said molded duct assembly is configured to provide air to an internal compartment of the vehicle.
- 17. The integrated structural system of claim 1, wherein said first and second sections of said molded duct assembly is composed of a plastic.
- 18. The integrated structural system of claim 1, wherein said first and second sections form a one-piece structure, wherein said first and second sections define portions of said one-piece structure integrated with said metal structure.
- 19. An integrated structural system for a vehicle, comprising:
a molded structural system adapted for use as a molded duct system configured to guide airflow, said molded structural system having a first section and a second section, said molded structural system configured to operably attach a vehicle component; and a metal structure, said metal structure integrated with said molded structural system by insert molding said metal structure with said molded structural system forming an integrated structural load path assembly, said integrated structural load path assembly being configured as a load bearing area to distribute a load of said vehicle component operably attached thereto over said integrated structural load path assembly.
- 20. The integrated structural system of claim 19, wherein said vehicle component is one of:
a steering column; and an HVAC assembly.
- 21. The integrated structural system of claim 19, wherein said metal structure is at least one of:
a metal tube; and a metal frame member.
- 22. The integrated structural system of claim 19, wherein said metal structure is fabricated by one of stamping, bending, hydroforming, extruding and casting.
- 23. The integrated structural system of claim 19, wherein said metal structure includes one of steel, aluminum, and magnesium.
- 24. The integrated structural system of claim 19, wherein said first and second sections form a one-piece structure, wherein said first and second sections define portions of said one-piece structure integrated with said metal structure.
- 25. The integrated structural system of claim 19, wherein at least said first and second sections of said molded duct assembly is composed of a plastic.
- 26. The integrated structural system of claim 19, wherein said insert molding includes at least one of:
compression molding; and injection molding.
- 27. The integrated structural system of claim 26, wherein said compression molding includes extrusion deposit compression molding (EDCM).
- 28. An integrated structural system for a vehicle, comprising:
a molded structural system adapted for use as a molded duct system configured to guide airflow, said molded structural system configured to operably attach a vehicle component thereto; and a metal structure, said metal structure integrated with said molded structural system by insert molding said metal structure with said molded structural system forming an integrated structural load path assembly, said integrated structural load path assembly being configured as a load bearing area to distribute a load of said vehicle component operably attached thereto over said integrated structural load path assembly.
- 29. A method for an integrated structural system for a vehicle, the method comprising:
configuring a molded duct system to guide airflow, said molded duct system having a first section and a second section; configuring said molded duct system to operably attach a vehicle component thereto; and integrating a metal structure with said molded duct system by a means for integrating said metal structure with said molded duct system forming an integrated structural load path assembly, said integrated structural load path assembly being configured as a load bearing area to distribute a load of said vehicle component operably attached thereto over said integrated structural load path assembly, wherein said means for integrating said metal structure with said molded duct system includes one of;
sonic welding, heat staking, insert molding, and gluing.
- 30. The method of claim 29, wherein said integrated structural load path assembly is a cross car structural beam having a vehicle HVAC air duct assembly.
- 31. The method of claim 29, wherein said vehicle component is one of:
a steering column; and an HVAC assembly.
- 32. The method of claim 29, wherein said metal structure is at least one of:
a metal tube; a metal bar; and a metal frame member.
- 33. The method of claim 29, wherein said metal structure is fabricated by one of stamping, bending, hydroforming, extruding and casting.
- 34. The method of claim 29, wherein said metal structure includes one of steel, aluminum, and magnesium.
- 35. The method of claim 29, wherein said metal structure extends a length of said cross car beam structure.
- 36. The method of claim 35, wherein said metal structure includes brackets at opposing ends thereof for mounting said integrated structural load path assembly to the vehicle.
- 37. The method of claim 29, wherein when said means for integrating said metal structure with said molded duct system is insert molding, said insert molding includes at least one of:
compression molding; and injection molding.
- 38. The method of claim 37, wherein said compression molding includes extrusion deposition compression molding (EDCM).
- 39. The method of claim 37, wherein means for integrating said metal structure with said molded duct system further comprises said first section and said second section using said means for integration along a first flange portion extending from said first section corresponding to a second flange portion extending from said second section.
- 40. The method of claim 39, wherein said means for integration further includes a protrusion extending from at least one of said first section and said second section toward said metal structure encased therebetween.
- 41. The method of claim 40, wherein said protrusion extends into one of a cavity and an aperture configured in said metal structure.
- 42. The method of claim 41, wherein said protrusion extends to an opposing section of said molded duct system.
- 43. The method of claim 37, wherein said metal structure includes a portion extending therefrom configured to receive a mechanical fastener extending through one of said first and second flange portions.
- 44. The method of claim 29, further comprising:
configuring said molded duct assembly to provide air to an internal compartment of the vehicle.
- 45. The method of claim 29, wherein said first and second sections of said molded duct assembly is composed of a plastic.
- 46. The method of claim 29, wherein said first and second sections form a one-piece structure, wherein said first and second sections define portions of said one-piece structure integrated with said metal structure.
- 47. An integrated structural system for a vehicle, comprising:
a molded duct system configured to guide airflow, said molded duct system having a first section and a second section, said molded duct system configured to provide a supporting surface; and a metal structure, said metal structure integrated with said molded duct system by a means for integrating said metal structure with said molded duct system forming an integrated structural load path assembly, said integrated structural load path assembly being configured as a load bearing area to distribute a load on said supporting surface over said integrated structural load path assembly, wherein said means for integrating said metal structure with said molded duct system includes one of;
sonic welding, heat staking, insert molding, and gluing.
- 48. The integrated structural system of claim 47, wherein said supporting surface includes features configured to provide a means for securement.
- 49. The integrated structural system of claim 47, wherein said supporting surface includes securement features.
CROSS REFERENCE TO RELATED APPLICATION
[0001] The present application is a continuation-in-part of assigned U.S. patent application Ser. No. 10/316,683 filed Dec. 10, 2002, the contents of which are incorporated herein by reference thereto.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10316683 |
Dec 2002 |
US |
Child |
10846003 |
May 2004 |
US |