Exhaust gas filter with at least one filter layer and method for producing a filter layer
View Patent ↗An exhaust gas filter for cleaning an exhaust gas of an internal combustion engine includes at least one strip-shaped filter layer made of a material through which a fluid can at least partly flow. The filter layer has a length in a longitudinal direction and a width in a transverse direction. The filter layer has a metallic reinforcing region at least in a partial region. The metallic reinforcing region has a width and a length. The width of the reinforcing region is less than the width of the filter layer and/or the length of the reinforcing region is less than the length of the filter layer. A method for producing a filter layer for an exhaust gas filter is also provided.
1. An exhaust gas filter for cleaning an exhaust gas of an internal combustion engine, the exhaust gas filter comprising:
at least one strip-shaped filter layer made of a material through which a fluid can at least partly flow, said material through which a fluid can at least partly flow having a thickness;
said at least one filter layer having a length in a longitudinal direction and a width in a transverse direction;
said at least one filter layer having a metallic reinforcing region at least in a partial region;
said metallic reinforcing region having a width and a length; and
at least one of:
said width of said reinforcing region being less than said width of said filter layer, or
said length of said reinforcing region being less than said length of said filter layer; and
said at least one filter layer having a remaining region outside said reinforcing region, and said reinforcing region being connected to said remaining region by a process using a joining technique.
2. The exhaust gas filter according to claim 1 , wherein said at least one filter layer is fanned from fibrous material.
3. The exhaust gas filter according to claim 1 , wherein said at least one filter layer is formed from metal fibers.
4. The exhaust gas filter according to claim 1 , wherein said at least one filter layer is formed from sintered metal fibers.
5. The exhaust gas filter according to claim 1 , wherein said reinforcing region is at least one reinforcing region formed at an edge of said at least one filter layer.
6. The exhaust gas filter according to claim 1 , wherein said reinforcing region is formed in an inner strip of said at least one filter layer.
7. The exhaust gas filter according to claim 1 , wherein said reinforcing region is formed by a sheet-metal layer.
8. The exhaust gas filter according to claim 1 , wherein said reinforcing region is formed by a brazing material inclusion.
9. The exhaust gas filter according to claim 1 , wherein said at least one filter layer has a remaining region outside said reinforcing region, and said reinforcing region has an increased material density as compared to said remaining region.
10. The exhaust gas filter according to claim 9 , wherein said reinforcing region is compressed.
11. The exhaust gas filter according to claim 1 , wherein said reinforcing region has a thickness being less than said thickness of said material through which a fluid can at least partly flow.
12. The exhaust gas filter according to claim 1 , wherein said reinforcing region has structures.
13. The exhaust gas filter according to claim 12 , wherein said structures have an outer total amplitude corresponding at least to said thickness of said material through which a fluid can at least partly flow.
14. The exhaust gas filter according to claim 12 , wherein said structures have an outer total amplitude being less than said thickness of said material through which a fluid can at least partly flow.
15. An exhaust gas filter for cleaning an exhaust gas of an internal combustion engine, the exhaust gas filter comprising:
at least one strip-shaped filter layer made of a material through which a fluid can at least partly flow, said material through which a fluid can at least partly flow having a thickness;
said at least one filter layer having a length in a longitudinal direction and a width in a transverse direction;
said at least one filter layer having a metallic reinforcing region at least in a partial region;
said metallic reinforcing region having a width and a length; and
at least one of:
said width of said reinforcing region being less than said width of said filter layer, or
said length of said reinforcing region being less than said length of said filter layer; and
said at least one filter layer having first and second longitudinal sides, said reinforcing region being threaded through said at least one filter layer, and said reinforcing region being alternately disposed on said first longitudinal side and on said second longitudinal side.
16. The exhaust gas filter according to claim 1 , wherein said reinforcing region is welded to said remaining region.
17. The exhaust gas filter according to claim 1 , wherein said reinforcing region is connected to adjacent sheet-metal layers.
18. The exhaust gas filter according to claim 17 , wherein said reinforcing region is brazed to adjacent sheet-metal layers.
19. A method for producing a filter layer for an exhaust gas filter, which comprises the following steps:
producing the filter layer, having a length in a longitudinal direction and a width in a transverse direction, from a material through which a fluid can at least partly flow, the material through which a fluid can at least partly flow having a thickness;
forming a metallic reinforcing region, having a width and a length, in at least a partial region of the filter layer;
providing a remaining region outside of said reinforcing region;
dimensioning at least one of:
the width of the reinforcing region to be less than the width of the filter layer, or
the length of the reinforcing region to be less than the length of the filter layer, and
connecting the reinforcing region to the remaining region, by a process using a joining technique.
20. The method according to claim 19 , which further comprises forming the material through which a fluid can at least partly flow from fibers.
21. The method according to claim 19 , which further comprises forming the material through which a fluid can at least partly flow from metal fibers.
22. The method according to claim 19 which further comprises forming the material through which a fluid can at least partly flow from sintered metal fibers.
23. The method according to claim 19 , which further comprises selecting the reinforcing region from the group consisting of a sheet-metal layer, a brazing material inclusion and a region with increased material density.
24. The method according to claim 19 , which further comprises carrying out the step of connecting the reinforcing region to the material through which a fluid can at least partly flow by brazing.
25. The method according to claim 19 , which further comprises forming a welded connection in the reinforcing region.
26. The method according to claim 25 , which further comprises forming the welded connection by a process selected from the group consisting of resistance welding, laser welding and roller seam welding.