Claims
- 1. A thermal control method for automotive interiors comprising: incorporating a first phase change material in the headliner, incorporating a second phase change material in the seats, and incorporating a third phase change material in the instrument panel.
- 2. The thermal control method according to claim 1, wherein the first phase change material melts in a temperature range between 30° C. and 34° C., the second phase change material melts in a temperature range between 34° C. and 38° C., and the third phase change material melts in the temperature range between 38° C. and 43° C.
- 3. The thermal control method according to claim 1, wherein the phase change material is selected from the group comprising alkyl hydrocarbons, salt-hydrates, metals, alloys, poly-alcohols, and eutectics.
- 4. The thermal control method according to claim 1, wherein the phase change material is incorporated within a polymeric compound structure and homogeneously dispersed therein.
- 5. The thermal control method according to claim 1, wherein the phase change material is incorporated within an elastomeric compound structure and homogeneously dispersed therein.
- 6. The thermal control method according to claim 1, wherein the phase change material is incorporated within a foam structure and homogeneously dispersed therein.
- 7. The thermal control method according to claim 1, wherein the phase change material is incorporated within a polymeric compound which is coated onto the surface of a fabric or a foam.
- 8. The thermal control method according to claim 1, wherein the phase change material is incorporated within a polymeric compound which is laminated to a fabric or a foam.
- 9. The thermal control method according to claim 1, wherein the phase change material is incorporated within an elastomeric compound which is coated onto the surface of a fabric or a foam.
- 10. The thermal control method according to claim 1, wherein the phase change material is incorporated within an elastomeric compound which is laminated to a fabric or a foam.
- 11. The thermal control method according to claim 1, wherein a polymeric compound structure, or an elastomeric compound structure, or a foam structure, or composites of those materials with fabrics each with incorporated phase change material is urged in the headliner between the layer of the headliner facing the passenger compartment and the intermediate insulation layer of the headliner.
- 12. The thermal control method according to claim 1, wherein a polymeric compound structure, or an elastomeric compound structure, or a foam structure, or a composite of such a material with a fabric each with incorporated phase change material is arranged underneath the cover layer of the instrument panel.
- 13. The thermal control method according to claim 1, wherein a polymeric compound structure, or an elastomeric compound structure, or a foam structure, or a composite of such a material with a fabric each with incorporated phase change material replaces the insulation layer of the instrument panel.
- 14. The thermal control method according to claim 1, wherein a polymeric compound structure, an elastomeric compound structure, or a foam structure each with incorporated phase change material is bonded to a spacer fabric.
- 15. The thermal control method according to claim 1, wherein a polymeric compound structure, or an elastomeric compound structure or a foam structure each with incorporated phase change material is bonded to a spacer fabric is arranged between the foam pad and the cover material in a car seat configuration.
- 16. The thermal control method according to claim 1, wherein a polymeric compound structure, or an elastomeric compound structure, or a foam structure each with incorporated phase change material is positioned adjacent to the foam pad and the spacer fabric is positioned adjacent to the cover material in a car seat configuration.
- 17. The thermal control method according to claim 1, wherein a polymeric compound structure, or an elastomeric compound structure, or a foam structure each with incorporated phase change material includes a heating system which is directly integrated therein.
- 18. The thermal control method according to claim 1, wherein a polymeric compound structure, or an elastomeric compound structure, or a foam structure each with incorporated phase change material and the included heating system is bonded to a spacer fabric.
- 19. The deal control method according to claim 1, wherein a polymeric compound structure, or an elastomeric compound structure, or a foam structure each with incorporated phase change material and included heating system possesses a mesh-like form.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] U.S. Pat. No. 4,756,958, Jul. 12, 1988 Briant et al.
[0002] U.S. Pat. No. 4,908,166, Mar. 13, 1990, Salyer
[0003] U.S. Pat. No. 5,366,801, Nov. 22, 1994, Bryant et al.
[0004] U.S. Pat. No. 5,637,389, Jun. 10, 1997, Colvin et al.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US02/11580 |
4/13/2002 |
WO |
|