Valved radial flow catalytic converter

5575980
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Inventors

Turek, Alan G.

Application #

515075

Filed

Aug-14-1995

Published

Nov-19-1996

Current US Class

055/DIG30
060/299
422/171
422/176
422/177
422/180
422/181
422/211
422/218
422/222

International Classes

B01D 053/34; F01N 003/10

Field of Search

422/177 422/176 422/179 422/171 422/180 422/211 422/218 422/222 422/181 502/439 502/527 55/DIG. 60/299 60/297

Assignee

General Motors Corporation (Detroit, MI)

Examiners

Warden; Robert J.

Attorney, Agent or Firm

Brooks; Cary W.

US Patent References

4383974   Catalytic waste gas...
4559205   Catalytic converter...
4619912   Catalytic converter...
5187142   Catalytic converter...
5315824   Cold HC adsorptio...

Referenced by:

View Backward References

Other References

"Radial Inflow Catalytic Converter More Efficient", Ward's Engine & Vehicle Technology Update--Jun. 15, 1994.

Citation

Cite This Patent

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Abstract
A catalytic converter selectively controllable between a radial flow mode, wherein exhaust gas is caused to radially flow across the catalyst thereof, and a by-pass mode, wherein exhaust gas passes axially therethrough. The catalytic converter includes a selectively perforated tube, a catalytic monolith composed of a series of alternating herringbone corrugation patterned foil sheets having a noble (precious) metal catalytic material applied to the surface thereof wherein each of the foil sheets has a central hole whereat is situated the tube, a valve for selectively occluding the tube, and a clam-shell enclosure. The herringbone corrugation pattern provides a plurality of radial passageways. When the valve is in its closed position the tube is in a closed state, wherein the exhaust gas entering the tube upstream of the catalytic monolith is caused to pass through the passageways until emerging at the outer periphery of the catalytic monolith. The enclosure captures the emerging exhaust gas, which travels between the enclosure and the outer periphery of the catalytic monolith and thereupon enters a snorkel space downstream of both the catalytic monolith and the valve, whereupon the exhaust gas re-enters the tube.
 
Claims
What is claimed is:

1. A valved radial flow catalytic converter for being connected with an exhaust system of an internal combustion engine, comprising:

an enclosure having an upstream end and a downstream end;

a tube extending between said upstream and downstream ends of said enclosure in sealing connection therewith, a first set of first slots being provided in said tube, a second set of second slots being provided in said tube spaced from said first set of first slots, said tube having a cylindrical axis;

a catalytic monolith connected with said tube, said catalytic monolith comprising a plurality of serially adjoining foil sheets, each foil sheet of said plurality of foil sheets having a first surface and an opposite second surface wherein each of said first and second surfaces has a selected catalytic material applied thereto, each said foil sheet having a central hole provided therein which collectively form a central hole of said catalytic monolith, each said foil sheet further an outer periphery which collectively form an outer periphery of said catalytic monolith, each said foil sheet being provided with a predetermined corrugation pattern wherein said predetermined corrugation pattern provides a plurality of passageways between mutually adjoining foil sheets, each passageway of said plurality of passageways being oriented in a direction substantially parallel to a centerline axis radial with respect to said cylindrical axis, a selected number of said plurality of passageways extending from said central hole of said catalytic monolith to said outer periphery of said catalytic monolith and fluidically communicating with said first set of first slots;



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention is related to catalytic converters for catalytically reacting with exhaust gas of internal combustion engines, and more particularly to a warm-up catalytic converter for use during initial engine operation. Still more particularly, the present invention is related to a catalytic converter having an axial flow mode and a radial flow mode and a valve for selectively switching exhaust gas flow from the radial flow mode to the axial flow mode, wherein catalytic reaction of exhaust gas occurs during the radial flow mode.

2. Description of the Related Art

Because harmful pollutants are contained in the exhaust gas of internal combustion engines, such as carbon monoxide, nitrous oxides and unburned hydrocarbons, catalytic converters are widely used to catalytically react with the exhaust gas to thereby greatly reduce pollutant emissions. Problematically, however, the noble metal catalyst of the catalytic converter must be raised to a minimum operational temperature, the "light-off" temperature, in order for the exhaust gas pollutants to be catalytically reacted at maximum efficiency.
 
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