Claims
- 1. A composite profile, comprising:
at least one metal profile with an outer side and at least one receiving groove disposed opposite the outer side and having a groove bottom and projections oriented at an angle to the groove bottom, and at least one insulating profile having a base section received in the at least one receiving groove and a second opposing section, with a gap being formed between the groove bottom and the base section of the at least one insulating profile, wherein the outer side of the at least one metal profile and the second section the at least one insulating profile or the other side of a second of the at least one metal profiles are spaced apart from each other by a predetermined distance, and wherein the at least one metal profile is fixed in position relative to the insulating profile by a press fit between the projections and the at least one insulating profile.
- 2. The composite profile of claim 1, wherein the at least one insulating profile is made of plastic as a single piece and includes one of an inside profile section and an outside profile section.
- 3. The composite profile of claim 1, and further comprising a resilient element disposed between the at least one metal profile and the at least one insulating profile.
- 4. The composite profile of claim 3, wherein the resilient element is formed as a single piece with the at least one metal profile or the at least one insulating profile.
- 5. The composite profile of claim 3, wherein the resilient element is formed separate from the at least one metal profile and the at least one insulating profile.
- 6. The composite profile of claim 5, wherein the resilient element is a spring element.
- 7. The composite profile of claim 3, wherein the at least one resilient element is dimensioned so as to urge the at least one insulating profile and the at least one metal profile apart in such away that the outer sides of the at least one metal profile and the at least one insulating profile contact a mounting device.
- 8. The composite profile of claim 3, wherein the at least one resilient element is arranged in the gap.
- 9. The composite profile of claim 1, wherein the insulating profile is disposed between two of the metal profiles, with a corresponding gap being formed between each of the metal profiles and the at least one insulating profile, and with a corresponding resilient element being disposed between each of the two metal profiles and the at least one insulating profile.
- 10. The composite profile of claim 9, wherein the gaps formed between the corresponding two metal profiles and the at least one insulating profile have a substantially identical gap spacing.
- 11. The composite profile according to claim 8, wherein a recess is formed in the groove bottom of the metal profile or in the first side of the at least one insulating profile, with the resilient element being inserted into the recess so as to bridge the gap.
- 12. The composite profile of claim 11, wherein the recess is dimensioned so that the resilient element is completely received in the recess when the second section of the at least one insulating profile makes contract with the groove bottom.
- 13. The composite profile of claim 4, wherein the resilient element is formed as a flexible tongue.
- 14. The composite profile of claim 13, wherein the flexible tongue is supported against a projection or the groove bottom of the at least one metal profile.
- 15. The composite profile of claim 4, wherein at least one of the projections includes an undercut on a projection side facing the receiving groove, with the base section of the at least one insulating profile engaging with the undercut.
- 16. The composite profile of claim 15, wherein an intermediate gap is formed in the region where the base section of the at least one insulating base engages with the undercut.
- 17. The composite profile of claim 9, wherein each of the corresponding gaps is dimensioned to be equal to at least ½ of a maximum negative total tolerance with reference to a direction normal to the groove bottom.
- 18. The composite profile of claim 1, wherein the first side of the at least one insulating profile includes a projection oriented substantially parallel to the groove bottom and engaging with a recess disposed in a groove projection of the at least one metal profiles, with the projection being moveable in the recess before the at least one metal profile is fixed in position.
- 19. The composite profile of claim 3, wherein the first side of the at least one insulating profile includes a shoulder oriented parallel to the receiving groove, with the resilient element disposed between the shoulder and a projection.
- 20. The composite profile of claim 9, wherein a combined gap width of the corresponding gaps is equal to a sum of individual dimensional tolerances of the sequentially arranged two metal profiles and the at least one insulating profile.
- 21. The composite profile of claim 20, wherein the combined gap width of the corresponding gaps is selected to be greater than the sum of individual dimensional tolerances of the sequentially arranged two metal profiles and the at least one insulating profile.
- 22. The composite profile of claim 1, and further comprising a wire arranged between the at least one insulating profile and the at least one metal profile.
- 23. The composite profile of claim 22, wherein the wire is disposed in a recess formed in the first side of the at least one insulating profile extending substantially parallel to the at least one receiving groove and formfittingly engaging with a projection.
- 24. The composite profile of claim 1, and further including a sealing element disposed between the at least one metal profile and the at least one insulating profile.
- 25. The composite profile of claim 24, wherein the sealing element is connected with the at least one insulating profile or the at least one metal profile.
- 26. The composite profile of claim 24, wherein the sealing element is formed separately from the at least one insulating profile or the at least one metal profile.
- 27. The composite profile of claim 3, wherein the resilient element includes sealing lips contacting the at least one insulating profile and the at least one metal profile, with the sealing lips made of a material that is softer than a material of the resilient element.
- 28. The composite profile of claim 3, wherein the resilient element is made of a material selected from the group consisting of rubber, APTK, and silicone.
- 29. The composite profile of claim 3, wherein the resilient element has a Shore hardness of approximately 60.
- 30. The composite profile of claim 3, wherein the resilient element includes a tear-resistant thread.
- 31. The composite profile of claim 1, wherein the metal profiles are made of a light-weight metal.
- 32. A method for producing a composite profile, comprising:
providing at least one metal profile having at least one receiving groove with a groove bottom and projections oriented at an angle to the groove bottom, and at least one insulating profile; inserting the at least one insulating profile into the receiving groove of the at least one metal profile; placing a resilient element between the at least one metal profile and the at least one insulating profile; aligning the at least one metal profile and the at least one insulating profile relative to each other in a mounting device so that opposing outer sides of the at least one metal profile and the at least one insulating profile are spaced apart from each other by a nominal distance, and urging the at least one metal profile against guide elements of the mounting device so as to press the projections against the at least one insulating profile and to thereby fix the position of the at least one metal profile relative to the at least one insulating profile.
- 33. The method of claim 32, and further comprising the step of forming a gap between the at least one groove bottom and the at least one insulating profile, which gap provides a spacing between the at least one insulating profile and the at least one groove bottom.
- 34. The method of claim 32, wherein the resilient elements exert a force on the at least one metal profile causing the at least one metal profile to contact the mounting device.
- 35. An insulating profile for use in a composite profile, comprising a body portion; and a resilient element connected to the body portion.
- 36. The insulating profile of claim 35, wherein the resilient element is formed in one piece with the body portion.
- 37. The insulating profile of claim 35, wherein the resilient element is a separate component attachable to the body portion.
- 38. The insulating profile of claim 35, wherein the body portion is made of plastic.
Priority Claims (1)
Number |
Date |
Country |
Kind |
100 15 986.9 |
Mar 2000 |
DE |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is a continuation of prior filed copending PCT International application no. PCT/EP01/03396, filed Mar. 26, 2001, which was not published in English and which designated the United States and on which priority is claimed under 35 U.S.C. §120, the disclosure of which is hereby incorporated by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/EP01/03396 |
Mar 2001 |
US |
Child |
10256385 |
Sep 2002 |
US |