Fuel-urea injection apparatus including common inlet for vehicle
US-10207913-B2 · Feb 19, 2019 · US
US10696537B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10696537-B2 |
| Application number | US-201815979994-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 15, 2018 |
| Priority date | May 15, 2018 |
| Publication date | Jun 30, 2020 |
| Grant date | Jun 30, 2020 |
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A capless fuel system comprises a fuel inlet body, a flapper pivotably mounted within the fuel inlet body, a biasing member associated with the flapper, an axially movable shaft associated with the biasing member, and a tension calibrator associated with the biasing member, whereby tension on the controller spring may be adjusted by the calibrator. The biasing member may be of a variety of biasing elements but is preferably a controller spring. The shaft is reversibly movable from a tensioning position in which the electromechanical driver assembly is deactivated to a tension-lowering position in which the electromechanical driver assembly is activated. The capless fuel system includes a fuel pump nozzle position sensing system. The capless fuel system relies upon a single, multi-function flapper that functions as both the capless fuel system debris cover and a sealing member to prevent evaporative emission leaks.
Opening claim text (preview).
What is claimed is: 1. A capless fuel system for a vehicle comprising: a fuel inlet body; a flapper pivotably mounted within said fuel inlet body; a biasing member associated with said flapper, said biasing member having an end; an axially movable shaft having an end that presses directly against said end of said biasing member; and a tension calibrator associated with said biasing member, whereby tension by said end of said shaft against said end of said biasing member may be adjusted by said calibrator. 2. The capless fuel system of claim 1 , wherein said biasing member is a controller spring. 3. The capless fuel system of claim 1 , wherein said flapper is a single, multi-function flapper that functions as both a capless fuel system cover and a sealing member to prevent evaporative emissions leaks. 4. The capless fuel system of claim 1 , further including a fuel pump nozzle position sensing system. 5. The capless fuel system of claim 4 , wherein said fuel pump nozzle position sensing system includes a camera. 6. The capless fuel system of claim 1 , further including an electromechanical driver assembly, said axially movable shaft being movably associated with said electromechanical driver assembly. 7. The capless fuel system of claim 6 , further including an interface portion support channel associated with said axially movable shaft to interface with said biasing member. 8. The capless fuel system of claim 6 , wherein said axially movable shaft is reversibly movable from a tensioning position in which said electromechanical driver assembly is deactivated to a tension-lowering position in which said electromechanical driver assembly is activated. 9. A vehicle capless fuel system for use with a fuel pump having a fuel pump nozzle, the system comprising: a fuel inlet body; a flapper pivotably mounted within said fuel inlet body; a biasing member associated with said flapper, said biasing member having an end; an axially movable shaft having an end that presses against said end of said biasing member and applies tension directly thereto; and a nozzle position sensing system, whereby said sensing system senses the presence of the fuel pump nozzle and adjusts said tension applied by said axially movable shaft against said end of said biasing member in response thereto a tension calibrator associated with said biasing member, whereby tension by said end of said shaft against said end of said biasing member may be adjusted by said calibrator. 10. The vehicle capless fuel system of claim 9 , wherein said fuel pump nozzle position sensing system includes a camera. 11. The vehicle capless fuel system of claim 9 further including a tension calibrator associated with said biasing member, whereby tension on said biasing member may be adjusted by said calibrator. 12. The vehicle capless fuel system of claim 9 , wherein said biasing member is a controller spring. 13. The vehicle capless fuel system of claim 9 , wherein said flapper is a single, multi-function flapper that functions as both a capless fuel system cover and a sealing member to prevent evaporative emissions leaks. 14. The vehicle capless fuel system of claim 9 , further including an electromechanical driver assembly, said axially movable shaft being movably associated with said electromechanical driver assembly. 15. The vehicle capless fuel system of claim 14 , further including an interface portion support channel associated with said axially movable shaft to interface with said biasing member. 16. The vehicle capless fuel system of claim 14 , wherein said axially movable shaft is reversibly movable from a tensioning position in which said electromechanical driver assembly is deactivated to a tension-lowering position in which said electromechanical driver assembly is activated. 17. A method for regulating the tension applied by a biasing member on a vehicle capless fuel system flapper for use with a fuel pump having a fuel pump nozzle, the method comprising: forming a vehicle capless fuel system having a fuel inlet body, a flapper pivotably mounted within said fuel inlet body, a biasing member associated with said flapper, said biasing member having an end, an axially movable shaft having an end that presses directly against said end of said biasing member, a tension calibrator associated with said biasing member, whereby tension by said end of said shaft directly against said end of said biasing member may be adjusted by said calibrator, and a nozzle position sensing system; moving the fuel pump nozzle toward said vehicle capless fuel system; causing the axially movable shaft to move axially in response to the presence of the fuel pump nozzle, said axial movement of said axially movable shaft being to relieve tension on said biasing member. 18. The method for regulating tension applied by a biasing member of claim 17 , wherein said fuel pump nozzle position sensing system includes a camera. 19. The method for regulating tension applied by a biasing member of claim 17 , further including a tension calibrator associated with said biasing member for adjusting tension on said biasing member. 20. The method for regulating tension applied by a biasing member of claim 17 , wherein said flapper is a single, multi-function flapper that functions as both a capless fuel system cover and a sealing member to prevent evaporative emissions leaks.
Inlet covers · CPC title
comprising a filler pipe shutter, e.g. trap, door or flap for fuel inlet · CPC title
Arrangements for adjusting the inlet cover · CPC title
Details · CPC title
Means for determining the position of the filler nozzle in the filler pipe · CPC title
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