Claims
- 1. A honeycomb body, comprising:
a central longitudinal axis; a carrier matrix at least one of layered, wound and folded from at least partially structured metal foils, said carrier matrix having a multiplicity of fluid-conducting passages substantially parallel to said central longitudinal axis; a carrier-matrix shell for said carrier matrix, said carrier-matrix shell having at least two individual, smooth, mutually concentric layers, said layers of said carrier-matrix shell including at least two layers bearing directly against one another, said layers of said carrier-matrix shell only being regionally interconnected, permitting expansion of said layers by mutually different amounts, and said layers of said carrier-matrix shell being individually connected to one another by a joining technique, at least in a partial region located substantially at a location otherwise having highest vibrational amplitudes.
- 2. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell expand in longitudinal axial direction.
- 3. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an innermost layer, and said metal foils have ends interconnected only at said innermost layer in at least one connecting section.
- 4. The honeycomb body according to claim 3, which further comprises a fluid inlet-side end of the honeycomb body, said at least one connecting section disposed adjacent said fluid inlet-side end.
- 5. The honeycomb body according to claim 3, wherein said ends of said metal foils are additionally connected to said innermost layer in a further connecting section, for avoiding telescoping of said carrier matrix.
- 6. The honeycomb body according to claim 5, which further comprises a fluid outlet-side end of the honeycomb body, said further connecting section disposed adjacent said fluid outlet-side end.
- 7. The honeycomb body according to claim 3, which further comprises an axial length of the honeycomb body, said ends of said metal foils being connected to said innermost layer of said carrier-matrix shell entirely over said axial length.
- 8. The honeycomb body according to claim 7, wherein said axial length is less than 60 mm.
- 9. The honeycomb body according to claim 1, which further comprises connections between said layers of said carrier-matrix shell at least in partial regions, said connections selected from the group consisting of welded, brazed and adhesively bonded connections.
- 10. The honeycomb body according to claim 9, wherein said layers of said carrier-matrix shell include an innermost layer and a next outer layer, and said innermost layer is connected to said next outer layer in a connecting section disposed symmetrically relative to said longitudinal axis.
- 11. The honeycomb body according to claim 9, wherein said layers of said carrier-matrix shell include an innermost layer, a next outer layer and a further outer layer, and said next outer layer is connected to said further outer layer in a connecting section disposed symmetrically relative to said longitudinal axis.
- 12. The honeycomb body according to claim 9, wherein said layers of said carrier-matrix shell include an innermost layer, a next outer layer and a further outer layer, said innermost layer is connected to said next outer layer and said next outer layer is connected to said further outer layer in a connecting section disposed symmetrically relative to said longitudinal axis.
- 13. The honeycomb body according to claim 10, wherein said connecting section is disposed approximately centrally in the honeycomb body.
- 14. The honeycomb body according to claim 11, wherein said connecting section is disposed approximately centrally in the honeycomb body.
- 15. The honeycomb body according to claim 12, wherein said connecting section is disposed approximately centrally in the honeycomb body.
- 16. The honeycomb body according to claim 9, wherein said layers of said carrier-matrix shell include an innermost layer, a next outer layer and a further outer layer, and said next outer layer is connected to at least one of said innermost layer and said further outer layer in at least one connecting section disposed asymmetrically relative to said longitudinal axis.
- 17. The honeycomb body according to claim 10, wherein said metal foils have ends interconnected at said innermost layer in at least one connecting section and additionally in a further connecting section, and said connecting sections disposed between said layers of said carrier-matrix shell are separated as far as possible from said connecting sections between said ends of said metal foils and said innermost layer.
- 18. The honeycomb body according to claim 11, wherein said metal foils have ends interconnected at said innermost layer in at least one connecting section and additionally in a further connecting section, and said connecting sections disposed between said layers of said carrier-matrix shell are separated as far as possible from said connecting sections between said ends of said metal foils and said innermost layer.
- 19. The honeycomb body according to claim 12, wherein said metal foils have ends interconnected at said innermost layer in at least one connecting section and additionally in a further connecting section, and said connecting sections disposed between said layers of said carrier-matrix shell are separated as far as possible from said connecting sections between said ends of said metal foils and said innermost layer.
- 20. The honeycomb body according to claim 16, wherein said metal foils have ends interconnected at said innermost layer in at least one connecting section and additionally in a further connecting section, and said connecting sections disposed between said layers of said carrier-matrix shell are separated as far as possible from said connecting sections between said ends of said metal foils and said innermost layer.
- 21. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an innermost layer, a next outer layer and a further outer layer, said layers of said carrier-matrix shell are form-lockingly connected to one another with the exception of said innermost layer, and said form-lockingly connected layers are connected to said innermost layer by a joining technique.
- 22. The honeycomb body according to claim 21, wherein said layers of said carrier-matrix shell, with the exception of said innermost layer, are each form-lockingly connected to one another by at least one bead.
- 23. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an innermost layer, a next outer layer and a further outer layer, and all of said layers of said carrier-matrix shell are form-lockingly connected to one another.
- 24. The honeycomb body according to claim 23, wherein all of said layers of said carrier-matrix shell are each form-lockingly connected to one another by at least one bead.
- 25. The honeycomb body according to claim 21, which further comprises an interlayer approximately 0.5 to 0.8 mm thick disposed between two layers of said carrier-matrix shell.
- 26. The honeycomb body according to claim 23, which further comprises an interlayer approximately 0.5 to 0.8 mm thick disposed between two layers of said carrier-matrix shell.
- 27. The honeycomb body according to claim 25, wherein said interlayer is formed of a ceramic material.
- 28. The honeycomb body according to claim 26, wherein said interlayer is formed of a ceramic material.
- 29. The honeycomb body according to claim 25, wherein said interlayer is a swellable mat.
- 30. The honeycomb body according to claim 26, wherein said interlayer is a swellable mat.
- 31. The honeycomb body according to claim 21, which further comprises a compensator having a loop-shaped structure in an axial longitudinal section, said compensator disposed between two of said layers of said carrier-matrix shell.
- 32. The honeycomb body according to claim 23, which further comprises a compensator having a loop-shaped structure in an axial longitudinal section, said compensator disposed between two of said layers of said carrier-matrix shell.
- 33. The honeycomb body according to claim 1, wherein said metal foils have a given thickness, said layers of said carrier-matrix shell include an innermost layer, and at least said innermost layer has a thickness of less than 1.5 times said given thickness.
- 34. The honeycomb body according to claim 1, wherein said metal foils have a given thickness, said layers of said carrier-matrix shell include an innermost layer, and at least said innermost layer has a thickness of less than 1.25 times said given thickness.
- 35. The honeycomb body according to claim 1, wherein said metal foils have a given thickness, said layers of said carrier-matrix shell include an innermost layer, and at least said innermost layer has a thickness approximately equal to said given thickness.
- 36. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell are at most 0.05 mm thick.
- 37. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell are at most 0.04 mm thick.
- 38. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell are at most 0.03 mm thick.
- 39. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an outermost layer and at least one inner layer, and said outermost layer is longer in axial direction than said at least one inner layer.
- 40. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an innermost layer and at least one outer layer including an outermost layer, all of said layers have an equal length, and at least said outermost layer has an end side with a securing bead.
- 41. The honeycomb body according to claim 39, wherein said outermost layer has end-side ends, and cones are each disposed at a respective one of said end-side ends.
- 42. The honeycomb body according to claim 40, wherein said outermost layer has end-side ends, and cones are each disposed at a respective one of said end-side ends.
- 43. The honeycomb body according to claim 41, wherein said cones are connected to said end-side ends by a joining technique.
- 44. The honeycomb body according to claim 42, wherein said cones are connected to said end-side ends by a joining technique.
- 45. The honeycomb body according to claim 41, wherein said carrier-matrix shell has end sides, and said cones have wall thicknesses covering said end sides of said carrier-matrix shell.
- 46. The honeycomb body according to claim 42, wherein said carrier-matrix shell has end sides, and said cones have wall thicknesses covering said end sides of said carrier-matrix shell.
- 47. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an innermost layer formed of a stainless steel resistant to corrosion from hot gases.
- 48. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an innermost layer having an inner surface, and at least said inner surface has a material selected from the group consisting of a stainless steel coating and a stainless steel plating resistant to corrosion from hot gases.
- 49. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an outermost layer formed of a stainless steel resistant to wet corrosion.
- 50. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an outermost layer having an outer surface, and at least said outer surface has a material selected from the group consisting of a stainless steel coating and a stainless steel plating resistant to wet corrosion.
- 51. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an innermost layer formed of a stainless steel resistant to corrosion from hot gases and an outermost layer formed of a stainless steel resistant to wet corrosion.
- 52. The honeycomb body according to claim 1, wherein said layers of said carrier-matrix shell include an innermost layer having an inner surface and an outermost layer having an outer surface, at least said inner surface of said innermost layer has a material selected from the group consisting of a stainless steel coating and a stainless steel plating resistant to corrosion from hot gases, and at least said outer surface of said outermost layer has a material selected from the group consisting of a stainless steel coating and a stainless steel plating resistant to wet corrosion.
- 53. A catalyst carrier body, comprising:
a central longitudinal axis; a carrier matrix at least one of layered, wound and folded from at least partially structured metal foils, said carrier matrix having a multiplicity of fluid-conducting passages substantially parallel to said central longitudinal axis; a carrier-matrix shell for said carrier matrix, said carrier-matrix shell having at least two individual, smooth, mutually concentric layers, said layers of said carrier-matrix shell including at least two layers bearing directly against one another, said layers of said carrier-matrix shell only being regionally interconnected, permitting expansion of said layers by mutually different amounts, and said layers of said carrier-matrix shell being individually connected to one another by a joining technique, at least in a partial region located substantially at a location otherwise having highest vibrational amplitudes.
Priority Claims (1)
Number |
Date |
Country |
Kind |
199 51 941.2 |
Oct 1999 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application No. PCT/EP00/10431, filed Oct. 23, 2000, which designated the United States and was not published in English.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP00/10431 |
Oct 2000 |
US |
Child |
10134944 |
Apr 2002 |
US |