Claims
- 1. A co-injection molded, multiphase vehicle component with a microsphere enhanced region, comprising:
an outer portion formed by injection of a preselected quantity of a desired thermoplastic material into a preselected mold in a manner to achieve a first layer of the thermoplastic material in a cavity of the mold; and a microsphere enhanced inner portion formed by injection of a microsphere enhanced core material to fill a remaining portion of the cavity.
- 2. The co-injection molded, multiphase vehicle component of claim 1 wherein the microspheres in the microsphere enhanced core material are substantially hollow.
- 3. The co-injection molded, multiphase vehicle component of claim 2 wherein the microspheres comprise at least one of: glass, ceramic, carbon, and rigid organic polymers.
- 4. The co-injection molded, multiphase vehicle component of claim 1 wherein the microspheres in the microsphere enhanced core material are substantially solid.
- 5. The co-injection molded, multiphase vehicle component of claim 4 wherein the microspheres comprise at least one of: glass, ceramic, carbon, and rigid organic polymers.
- 6. The co-injection molded, multiphase vehicle component of claim 1 wherein the microspheres in the microsphere enhanced core material include microspheres that are substantially hollow and microspheres that are substantially solid.
- 7. The co-injection molded, multiphase vehicle component of claim 6 wherein the microspheres comprise at least one of: glass, ceramic, carbon, and rigid organic polymers.
- 8. The co-injection molded, multiphase vehicle component of claim 1 wherein the component is one of: a vehicle body panel, a side air dam, a vehicle fender, a fascia and a bumper.
- 9. The co-injection molded, multiphase vehicle component of claim 1 wherein the vehicle body panel is one of: a door panel and a side panel.
- 10. A method for molding a multiphase vehicle component with a microsphere enhanced region using co-injection, comprising the steps of:
forming an outer portion by injection of a preselected quantity of a desired thermoplastic material into a preselected mold in a manner to achieve a first layer of the thermoplastic material in a cavity of the mold; and forming a microsphere enhanced inner portion by injection of a microsphere enhanced core material to fill a remaining portion of the cavity.
- 11. The method of claim 10 wherein the microspheres in the microsphere enhanced core material are substantially hollow.
- 12. The method of claim 11 wherein the microspheres comprise reinforcing material.
- 13. The method of claim 10 wherein the microspheres in the microsphere enhanced core material are substantially solid.
- 14. The method of claim 13 wherein the microspheres comprise reinforcing material.
- 15. The method of claim 10 wherein the microspheres in the microsphere enhanced core material include microspheres that are substantially hollow and microspheres that are substantially solid.
- 16. The method of claim 15 wherein the microspheres comprise reinforcing material.
- 17. The method of claim 10 wherein the component is one of: a vehicle body panel, a side air dam, a vehicle fender, a fascia and a bumper.
- 18. The method of claim 17 wherein the vehicle body panel is one of: a door panel and a side panel.
- 19. The method of claim 12, 14 or 16 wherein the reinforcing material is selected from the group consisting of glass fibers, ceramic fibers, carbon fibers, organic polymers, and nanoparticles.
RELATED APPLICATIONS
[0001] Priority is claimed to provisional application Serial No. 60/184,743, entitled “Injection Molding Techniques Utilizing Fluid Channels,” No. 60/184,639, entitled “Integrated Co-Injection Molded Bumpers and Methods of Making the Same,” and No. 60/184,564, entitled “Low-Density Injection-Molded Body Parts,” which were all filed on Feb. 24, 2000, and Serial No. 60/264,916, entitled “Multi-Part Sequential Valve Gating,” which was filed Jan. 29, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US01/05851 |
2/23/2001 |
WO |
|