Claims
- 1. A metal foil connection, comprising:
a first and a second metal foil having a thickness of less than 0.04 mm; said first and said second metal foils brazed to one another at a connecting point forming a wedge; brazing medium substantially filling said wedge, said brazing medium having a mass ML; said first and said second metal foils having sections contacted by said brazing medium in said wedge, said sections having a mass MF; and said mass ML of said brazing medium and said mass MF of said sections of said metal foils contacted by said brazing medium in said wedge being in a given ratio MF/ML of between substantially 4 and substantially 8.
- 2. A metal foil connection, comprising:
a first and a second metal foil having a thickness DF of less than 0.04 mm; said first and said second metal foils brazed to one another at a connecting point forming a wedge; brazing medium filling said wedge and having a mass ML in said wedge; and said mass ML of said brazing medium in said wedge and said thickness DF of said metal foils being in a ratio ML/DF of substantially between 8 g/m and 16 g/m.
- 3. The metal foil connection according to claim 2, wherein said metal foil thickness DF is between less than 0.04 mm and substantially 0.03 mm, and said mass ML of said brazing medium has an upper limit decreasing substantially linearly in dependence upon said metal foil thickness DF.
- 4. The metal foil connection according to claim 2, wherein said mass ML of said brazing medium has an upper limit, and said upper limit and said thickness DF of said metal foils are in a ratio of substantially ML/DF=14.6 g/m, with a variation of between +5% and −5%.
- 5. The metal foil connection according to claim 2, wherein said mass ML of said brazing medium has a lower limit decreasing substantially linearly in dependence upon said metal foil thickness DF.
- 6. The metal foil connection according to claim 5, wherein said lower limit of said mass of said brazing medium ML and said metal foil thickness DF are in a ratio of substantially ML/DF=8.7 g/m, with a variation of between +5% and −5%.
- 7. The metal foil connection according to claim 2, wherein said metal foil thickness DF is substantially at most 0.03 mm, and said mass ML of said brazing medium has an upper limit dependent on said metal foil thickness DF and lying along a curve passing through coordinates for (ML/DF; DF) of (14.6 g/m; 0.03 mm), (14.8 g/m; 0.025 mm), (16 g/m; 0.02 mm) and (27 g/m; 0.01 mm).
- 8. The metal foil connection according to claim 2, wherein said metal foil thickness DF is substantially at most 0.03 mm, and said mass ML of said brazing medium has a lower limit dependent on said metal foil thickness DF and lying along a curve passing through coordinates for (ML/DF; DF) of (8.6 g/m; 0.03 mm), (9 g/m; 0.025 mm), (9.2 g/m; 0.02 mm) and (16 g/m; 0.01 mm).
- 9. The metal foil connection according to claim 2, wherein said metal foil thickness DF is substantially at most 0.03 mm, and said mass ML of said brazing medium is dependent on said metal foil thickness DF and lies along a curve passing through coordinates for (ML/DF; DF) of (11 g/m; 0.03 mm), (11.2 g/m; 0.025 mm), (12 g/m; 0.02 mm) and (20 g/m; 0.01 mm).
- 10. The metal foil connection according to claim 2, wherein said ratio ML/DF of said mass of said brazing medium ML in said wedge to said metal foil thickness DF is substantially =11 g/m, with a variation of between +15% and −10%.
- 11. A honeycomb body, comprising:
sheet metal layers formed of at least partly structured metal foils having a thickness of less than 0.04 mm; said sheet metal layers at least partly brazed to one another at brazed connecting points, said connecting points each having a metal foil connection with two of said metal foils forming a wedge; brazing medium substantially filling said wedges and having a mass ML; said metal foils having sections contacted by said brazing medium in said wedges, said sections having a mass MF; and said mass ML of said brazing medium and said mass MF of said sections of said metal foils contacted by said brazing medium in said wedges being in a given ratio MF/ML of between substantially 4 and substantially 8.
- 12. A honeycomb body, comprising:
sheet metal layers formed of at least partly structured metal foils having a thickness DF of less than 0.04 mm; said sheet metal layers at least partly brazed to one another at brazed connecting points, said connecting points each having a metal foil connection with two of said metal foils forming a wedge; brazing medium filling said wedges and having a mass ML in said wedges; and said mass ML of said brazing medium in said wedges and said thickness DF of said metal foils being in a ratio ML/DF of substantially between 8 g/m and 16 g/m.
- 13. In a brazed connection between first and second metal foils forming a wedge, a metal foil-brazing medium particle fraction, comprising:
a particle size between 0.001 mm and 0.2 mm; a maximum diameter of 0.135 mm and a minimum diameter of 0.015 mm for a metal foil thickness of substantially 0.05 mm; a maximum diameter of 0.08 mm and a minimum diameter of 0.02 mm for a metal foil thickness of substantially 0.02 mm; a substantially linear maximum diameter and a substantially linear minimum diameter for a metal foil thickness between substantially 0.05 mm and substantially 0.02 mm; and a maximum value of a Gaussian distribution in percent for a respective portion of said diameter disposed substantially centrally between said maximum and said minimum diameters.
- 14. The metal foil-brazing medium particle fraction according to claim 13, wherein the brazed connection is in a honeycomb body formed of metal foil.
- 15. The metal foil-brazing medium particle fraction according to claim 13, wherein the Gaussian distribution remains substantially constant when the metal foil thickness is reduced from 0.05 mm to 0.02 mm.
- 16. The metal foil-brazing medium particle fraction according to claim 13, wherein:
said maximum diameter is 0.125 mm for a metal foil thickness of substantially 0.05 mm; said maximum diameter is 0.07 mm for a metal foil thickness of substantially 0.02 mm; and said maximum diameter is substantially linear for a metal foil thickness between 0.05 mm and 0.02 mm.
- 17. The metal foil-brazing medium particle fraction according to claim 13, wherein:
said maximum diameter is 0.105 mm for a metal foil thickness of substantially 0.05 mm; said maximum diameter is 0.063 mm for a metal foil thickness of substantially 0.02 mm; and said maximum diameter is substantially linear for a metal foil thickness between 0.05 mm and 0.02 mm.
- 18. The metal foil-brazing medium particle fraction according to claim 13, wherein:
said minimum diameter is 0.018 mm for a metal foil thickness of substantially 0.05 mm; said minimum diameter is 0.03 mm for a metal foil thickness of substantially 0.02 mm; and said maximum diameter is substantially linear for a metal foil thickness between 0.05 mm and 0.02 mm.
- 19. The metal foil-brazing medium particle fraction according to claim 13, wherein:
said minimum diameter is 0.023 mm for a metal foil thickness of substantially 0.05 mm; said minimum diameter is 0.035 mm for a metal foil thickness of substantially 0.02 mm; and said maximum diameter is substantially linear for a metal foil thickness between 0.05 mm and 0.02 mm.
- 20. The metal foil-brazing medium particle fraction according to claim 13, wherein said minimum diameter is substantially 0.03 mm for a metal foil thickness of at most 0.03 mm.
- 21. The metal foil-brazing medium particle fraction according to claim 13, wherein said minimum diameter is substantially 0.035 mm for a metal foil thickness of at most 0.03 mm.
- 22. A method for manufacturing a metal foil connection of first and second metal foils using a metal foil-brazing medium particle fraction, the method which comprises:
providing the first and second metal foils with a thickness of less than 0.05 mm; applying glue to the first and second metal foils; subsequently placing the metal foil-brazing medium particle fraction in contact with the first and second metal foils; brazing the first and second metal foils together at a connecting point forming a wedge; and providing the metal foil-brazing medium particle fraction with: a particle size between 0.001 mm and 0.2 mm; a maximum diameter of 0.135 mm and a minimum diameter of 0.015 mm for a metal foil thickness of substantially 0.05 mm; a maximum diameter of 0.08 mm and a minimum diameter of 0.02 mm for a metal foil thickness of substantially 0.02 mm; a substantially linear maximum diameter and a substantially linear minimum diameter for a metal foil thickness between substantially 0.05 mm and substantially 0.02 mm; and a maximum value of a Gaussian distribution in percent for a respective portion of the diameter disposed substantially centrally between the maximum and the minimum diameters.
- 23. The method according to claim 22, wherein the brazed connection is in a honeycomb body formed of metal foil.
- 24. A method for manufacturing a metal foil connection of first and second metal foils using metal foil-brazing medium particle fractions, the method which comprises:
providing the first and second metal foils with a thickness of at most 0.03 mm; applying glue to the first and second metal foils; subsequently contacting the first and second metal foils with a first metal foil-brazing medium particle fraction in a first step, subsequently again contacting the first and second metal foils with a second metal foil-brazing medium particle fraction in a second step; and brazing the first and second metal foils together at a connecting point forming a wedge.
- 25. The method according to claim 24, which further comprises providing the first metal foil-brazing medium particle fraction with a greater maximum and a smaller minimum diameter of brazing medium particles than the second metal foil-brazing medium particle fraction used in the second step.
- 26. The method according to claim 24, which further comprises providing the first metal foil-brazing medium particle fraction used in the first step with:
a particle size between 0.001 mm and 0.2 mm; a maximum diameter of 0.135 mm and a minimum diameter of 0.015 mm for a metal foil thickness of substantially 0.05 mm; a maximum diameter of 0.08 mm and a minimum diameter of 0.02 mm for a metal foil thickness of substantially 0.02 mm; a substantially linear maximum diameter and a substantially linear minimum diameter for a metal foil thickness between substantially 0.05 mm and substantially 0.02 mm; and a maximum value of a Gaussian distribution in percent for a respective portion of the diameter disposed substantially centrally between the maximum and the minimum diameters.
- 27. The method according to claim 24, which further comprises providing the second metal foil-brazing medium particle fraction used in the second step with a maximum diameter of brazing medium particles of less than 0.07 mm and a minimum diameter of the brazing medium particles of larger than 0.045 mm.
- 28. The method according to claim 24, which further comprises manufacturing a honeycomb body with the metal foil connection.
Priority Claims (1)
Number |
Date |
Country |
Kind |
199 03 184.3 |
Jan 1999 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATION 0
[0001] This application is a continuation of copending International Application No. PCT/EP00/00140, filed Jan. 11, 2000, which designated the United States.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP00/00140 |
Jan 2000 |
US |
Child |
09917555 |
Jul 2001 |
US |