Apparatus, system, and method for catalyst presence detection
US-2017219508-A1 · Aug 3, 2017 · US
US9890703B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9890703-B2 |
| Application number | US-201415023319-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 20, 2014 |
| Priority date | Sep 19, 2013 |
| Publication date | Feb 13, 2018 |
| Grant date | Feb 13, 2018 |
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 cylinder head of an internal combustion engine includes a first exhaust port section having an upstream inlet opened and closed by a first exhaust valve, a second exhaust port section having an upstream inlet opened and closed by a second exhaust valve, and a collective exhaust port section into which the first and second exhaust port sections merge at downstream ends thereof. In a fixing structure for an exhaust gas sensor, the sensor is fixed to the collective exhaust port section with its sensing tip in the port section. An exhaust gas guide part is formed, at a position upstream of the sensor, on an internal wall of the port section, opposite the internal wall to which the sensor is fixed, so as to bulge out to guide exhaust gas toward the sensor, whereby exhaust gas is effectively intermixed and directed to the sensor with resultant increased sensing accuracy.
Opening claim text (preview).
The invention claimed is: 1. A fixing structure for an exhaust gas sensor of an internal combustion engine, mounted on a saddle-type vehicle and having a single cylinder with a cylinder axis inclining forward to a substantially horizontal attitude, wherein the engine has a single cylinder head formed therein with a first exhaust port section having an upstream inlet opened and closed by a first exhaust valve, a second exhaust port section having an upstream inlet opened and closed by a second exhaust valve, and a single collective exhaust port section into which the first and second exhaust port sections merge at downstream ends thereof, and wherein the cylinder head has an exhaust gas sensor fixed to a first inner wall portion of the collective exhaust port section, with a sensing tip of the sensor positioned in the collective exhaust port section; wherein: the collective exhaust port section has a second inner wall portion disposed opposite to the first inner wall portion in an upstream region relative to the exhaust gas sensor, with an exhaust gas guide part bulging out on the second inner wall portion to guide exhaust gas toward the exhaust gas sensor; the first exhaust port section and the second exhaust port section are disposed in side-by-side arrangement in a transverse direction of the saddle-type vehicle; the cylinder head has an exhaust gas guide wall defining therein the collective exhaust port section and extending downward from the cylinder head, the exhaust gas guide wall having an exhaust pipe connecting portion at a lowermost part thereof; the exhaust gas guide wall together with the exhaust gas guide part extend in a direction to be offset to one side of the vehicle in the vehicle transverse direction with respect to said cylinder axis; and the exhaust gas sensor is fixed to the exhaust gas guide wall on the other side of the vehicle in the vehicle transverse direction with respect to said cylinder axis. 2. The fixing structure for an exhaust gas sensor according to claim 1 , wherein the exhaust gas sensor is at a position offset toward one of the first exhaust port section and the second exhaust port section with respect to a passage centerline of the collective exhaust port section, and the exhaust gas guide part is at a position opposite the exhaust gas sensor with respect to said passage centerline. 3. The fixing structure for an exhaust gas sensor according to claim 2 , wherein the exhaust gas guide part is formed on the second inner wall portion of the collective exhaust port section to bulge in a shape which approaches the exhaust gas sensor from an upstream side to a downstream side, the exhaust gas guide part has a maximum bulging portion bulging out toward the exhaust gas sensor, and the collective exhaust port section has an upstream end positioned upstream of the maximum bulging portion. 4. The fixing structure for an exhaust gas sensor according to claim 3 , wherein the first exhaust port section, the second exhaust port section and the collective exhaust port section are formed in an arcuate shape, as viewed in a transverse direction of the engine, and extend from the first and second upstream inlets, facing rearward of the engine, to the downstream end of the collective exhaust port section facing downward of the engine, and the exhaust gas sensor is fixed in an exhaust gas sensor fitting hole, which is located at a position offset in a front direction of the engine relative to the passage centerline of the collective exhaust port section. 5. The fixing structure for an exhaust gas sensor according to claim 4 , wherein the first inner wall portion of the collective exhaust port section, on the side of the exhaust gas sensor, is formed with an exhaust gas arresting groove extending along the passage centerline of the collective exhaust port section, in an area opposite the maximum bulging portion of the guide part, and the exhaust gas sensor fitting hole for the sensor is located at a position immediately downstream of the exhaust gas arresting groove. 6. The fixing structure for an exhaust gas sensor according to claim 3 , wherein the first inner wall portion of the collective exhaust port section, on the side of the exhaust gas sensor, is formed with an exhaust gas arresting groove extending along the passage centerline of the collective exhaust port section, in an area opposite the maximum bulging portion of the guide part, and an exhaust gas sensor fitting hole for the sensor is located at a position immediately downstream of the exhaust gas arresting groove. 7. The fixing structure for an exhaust gas sensor according to claim 3 , wherein the position of the exhaust gas sensor is such that the sensing tip thereof is on a first imaginary line passing through the cylinder axis and through a passage center corresponding to the upstream end of the collective exhaust port section. 8. The fixing structure for an exhaust gas sensor according to claim 7 , wherein the first exhaust port section, the second exhaust port section and the collective exhaust port section are formed in an arcuate shape, as viewed in a transverse direction of the engine, and extend from the first and second upstream inlets, facing rearward of the engine, to the downstream end of the collective exhaust port section facing downward of the engine, and the exhaust gas sensor is fixed in an exhaust gas sensor fitting hole, which is located at a position offset in a front direction of the engine relative to the passage centerline of the collective exhaust port section. 9. The fixing structure for an exhaust gas sensor according to claim 7 , wherein the first inner wall portion of the collective exhaust port section, on the side of the exhaust gas sensor, is formed with an exhaust gas arresting groove extending along the passage centerline of the collective exhaust port section, in an area opposite the maximum bulging portion of the guide part, and an exhaust gas sensor fitting hole for the sensor is located at a position immediately downstream of the exhaust gas arresting groove. 10. The fixing structure for an exhaust gas sensor according to claim 7 , wherein the first inner wall portion of the collective exhaust port section, on the side of the exhaust gas sensor, extends from an upstream side to a downstream side to so slope as to approach the first imaginary line passing through the cylinder axis and the passage center corresponding to the upstream end of the collective exhaust port section. 11. The fixing structure for an exhaust gas sensor according to claim 10 , wherein the first exhaust port section, the second exhaust port section and the collective exhaust port section are formed in an arcuate shape, as viewed in a transverse direction of the engine, and extend from the first and second upstream inlets, facing rearward of the engine, to the downstream end of the collective exhaust port section facing downward of the engine, and the exhaust gas sensor is fixed in an exhaust gas sensor fitting hole, which is located at a position offset in a front direction of the engine relative to the passage centerline of the collective exhaust port section. 12. The fixing structure for an exhaust gas sensor according to claim 10 , wherein the first inner wall portion of the collective exhaust port section, on the side of the exhaust gas sensor, is formed with an exhaust gas arresting groove extending along the passage centerline of the collective exhaust port section, in an area opposite the maximum bulging portion of the guide part, and an exhaust gas sensor fitting hole for the sensor is located at a position immediately downstream of the exhaust gas arresting groove. 13. The fixing
Cylinder heads · CPC title
for driving cycles · CPC title
Sensor arrangements in the exhaust, e.g. for temperature, misfire, air/fuel ratio, oxygen sensors · CPC title
Mounting or arrangement of exhaust sensors in or on exhaust apparatus (sensor arrangements for engine control F02D41/1439) · CPC title
a flow director or deflector · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.