Exhaust gas/reactant mixing device
US-11702974-B2 · Jul 18, 2023 · US
US12180874B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12180874-B2 |
| Application number | US-202218046004-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 12, 2022 |
| Priority date | Oct 12, 2021 |
| Publication date | Dec 31, 2024 |
| Grant date | Dec 31, 2024 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A mixer for an exhaust system of an internal combustion engine for mixing exhaust gas and reactant includes a mixing chamber, a reactant dispensing arrangement for dispensing reactant into the mixing chamber axially between an upstream mixer wall and a downstream mixer wall, an inlet opening arrangement in the upstream mixer wall, an outlet opening arrangement in the downstream mixer wall, a flow guiding arrangement arranged between the upstream mixer wall and the downstream mixer wall, wherein the flow guiding arrangement provides a first flow path leading from the inlet opening arrangement to the outlet opening arrangement and a second flow path leading from the inlet opening arrangement to the outlet opening arrangement, wherein each flow path has at least two flow channels leading from the inlet opening arrangement to the outlet opening arrangement.
Opening claim text (preview).
What is claimed is: 1. A mixer for an exhaust system of an internal combustion engine for mixing exhaust gas and reactant, the mixer comprising: a mixing chamber delimited by an upstream mixer wall, a downstream mixer wall following the upstream mixer wall in a direction of a mixer longitudinal axis (L) and arranged at an axial distance from said upstream mixer wall, and a circumferential wall extending between said upstream mixer wall and said downstream mixer wall; a reactant dispenser for dispensing reactant into said mixing chamber axially between said upstream mixer wall and said downstream mixer wall; an inlet opening arrangement in said upstream mixer wall; an outlet opening arrangement in said downstream mixer wall or said circumferential wall; a flow guide, arranged between said upstream mixer wall and said downstream mixer wall, said flow guide being configured to guide a mixture of the exhaust gas and the reactant from said inlet opening arrangement to said outlet opening arrangement, wherein said flow guide provides a first flow path leading from said inlet opening arrangement to said outlet opening arrangement and a second flow path leading from said inlet opening arrangement to said outlet opening arrangement; and, wherein said first flow path and said second flow path each have at least two flow channels leading from said inlet opening arrangement to said outlet opening arrangement, wherein said flow guide includes, in association with at least one of said first flow path and said second flow path, at least two flow guiding walls extending between said upstream mixer wall and said downstream mixer wall and connected to said upstream mixer wall and said downstream mixer wall by at least one of material joining and positive engagement; and, wherein at least one of: at least one of said at least two flow guiding walls, together with said circumferential wall, delimits a corresponding one of said at least two flow channels; and, at least one of said at least two flow guiding walls, together with a further flow guiding wall, delimits a corresponding one of said at least two flow channels. 2. The mixer of claim 1 , wherein said first flow path with said at least two flow channels and the second flow path with said at least two flow channels are of mirror-symmetrical configuration with respect to one another in relation to a mixer center plane (E) containing the mixer longitudinal axis (L). 3. The mixer of claim 1 , wherein at least one of: said inlet opening arrangement includes at least one inlet opening on each side of a mixer center plane (E); and, wherein said inlet opening arrangement is of mirror-symmetrical configuration in relation to the mixer center plane (E). 4. The mixer of claim 1 , wherein at least one of: said outlet opening arrangement includes at least one outlet opening arranged in a centered manner in relation to a mixer center plane (E); said outlet opening arrangement has a mirror-symmetrical design in relation to the mixer center plane (E); and, said outlet opening arrangement includes at least two outlet openings in said downstream mixer wall, wherein said at least two outlet openings are radially staggered in relation to the mixer longitudinal axis (L). 5. The mixer of claim 1 , wherein said flow guide includes, in association with each one of said first flow path and said second flow path, said at least two flow guiding walls extending between said upstream mixer wall and said downstream mixer wall. 6. The mixer of claim 1 , wherein at least one of: said at least two flow guiding walls extend between said upstream mixer wall and said downstream mixer wall in a manner parallel to the mixer longitudinal axis (L). 7. The mixer of claim 1 , wherein said flow guide includes at least one flow guiding element; and, said at least one flow guiding element provides a corresponding one of said at least two guide walls for each of said first flow path and said second flow path. 8. The mixer of claim 7 , wherein said at least two flow channels of said second flow path include a second outer flow channel and said at least at least two flow channels of said first flow path include a first outer flow channel; wherein said flow guide includes an outer flow guiding element delimiting said first outer flow channel and said second outer flow channel; said outer flow guiding element provides an outer transitional region; said outer flow guiding element, in said outer transitional region, provides one of said at least two guiding walls of said first flow path configured as an outer flow guiding wall which merges into a corresponding one of said at least two guiding walls of said second flow path configured as an outer flow guiding wall of said second flow path; or/and, said outer flow guiding element provides an outer opening region for at least one of entry of the exhaust gas and the reactant in a region of the mixing chamber surrounded by said outer flow guiding element. 9. The mixer of claim 8 , wherein said outer opening region is positioned opposite said outer transitional region in relation to the mixer longitudinal axis (L). 10. The mixer of claim 8 , wherein said at least two flow channels of said second flow path include a second inner flow channel and said at least two flow channels of said first flow path include a first inner flow channel; said flow guide includes an inner flow guiding element; said inner flow guiding element delimits said first inner flow channel and delimits said second inner flow channel; said inner flow guiding element provides an inner transitional region; wherein said inner flow guiding element provides one of said at least two guiding walls of said first flow path configured as an inner flow guiding wall in said transitional region and said inner flow guiding wall merges into a corresponding one of said at least two guiding walls of said second flow path configured as an inner flow guiding wall; or/and, wherein said inner flow guiding element provides an inner opening region for entry of at least one of the exhaust gas and the reactant into a region of said mixing chamber which is surrounded by said inner flow guiding element; wherein at least one of: said inner transitional region is arranged in a region of said outer opening region in a circumferential direction around the mixer longitudinal axis (L); said inner flow guiding element covers said outer opening region in the circumferential direction; said outer transitional region is arranged in a region of the inner opening region in the circumferential direction around the mixer longitudinal axis (L); said outer flow guiding element covers said inner opening region in the circumferential direction. 11. The mixer of claim 8 , wherein said at least two flow channels of said second flow path include a second inner flow channel and said at least two flow channels of said first flow path include a first inner flow channel; said flow guide includes an inner flow guiding element; said inner flow guiding element delimits said first inner flow channel and delimits said second inner flow channel; said inner flow guiding element provides an inner transitional region; wherein said inner flow guiding element provides one of said at least two guiding walls of said first flow path configured as an inner flow guiding wall in said transitional region and said inner flow guiding wall merges into a corresponding one of said at least two guiding walls of said second flow path configured as an inner flow guiding wall; or/and, wherein said inner flow guiding element provides an inner opening region for entry of at least one of the exhaust gas and the reactant into a region of said mixing chamber which is surrounded
Sprayers or atomisers; Arrangement thereof in the exhaust apparatus · CPC title
Chambers with particular shapes, e.g. spherical · CPC title
Dimensional characteristics of tubes, e.g. length, diameter · CPC title
Improving ICE efficiencies · CPC title
using baffles · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.