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Fuel injection valve 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F02M-037/04
  • F02M-051/00
출원번호 UP-0621324 (2007-01-09)
등록번호 US-7527041 (2009-07-01)
발명자 / 주소
  • Wing, Richard
  • Lockley, Ian
  • Oversby, Kevin
출원인 / 주소
  • Westport Power Inc.
대리인 / 주소
    McAndrews, Held & Malloy, Ltd.
인용정보 피인용 횟수 : 40  인용 특허 : 15

초록

A fuel injection valve introduces a fuel into an engine and controlling fuel flow to reduce variability between injection events. The fuel injection valve employs an arrangement for a valve nozzle that cooperates with a valve needle to provide a range of needle movement within which the fuel mass fl

대표청구항

What is claimed is: 1. A method of regulating fuel mass flow rate into an engine through a nozzle of a fuel injection valve, said method comprising: actuating a valve needle to control valve needle lift, which is variable during an injection event and from one injection event to another injection e

이 특허에 인용된 특허 (15)

  1. Mumford,David; Ancimer,Richard; Baker,Mike; Clapa,Damien; Wing,Richard, Common rail directly actuated fuel injection valve with a pressurized hydraulic transmission device and a method of operating same.
  2. Welch Alan B.,CAX ; Rahardja Irawan,CAX ; Hebbes Mike,CAX, Directly actuated injection valve.
  3. Welch, Alan B.; Rahardja, Irawan; Hebbes, Mike, Directly actuated injection valve.
  4. Rahardja, Irawan; Hebbes, Mike, Directly actuated injection valve with a composite needle.
  5. Rahardja, Irawan; Hebbes, Mike, Directly actuated injection valve with a ferromagnetic needle.
  6. Nakajima, Nobuyuki; Yamada, Keiichi, Fuel injection valve with variable discharge area of nozzle holes.
  7. Taira Shigeo (Higashimatsuyama JPX), Fuel injection valve with variable lifting amount of the nozzle needle.
  8. Benson,Donald J.; Rix,David M.; Peters,Lester L.; Venkataraman,Shankar C.; Morris, Jr.,C. Edward, Fuel injector with injection rate control.
  9. Rauznitz,Peter; Buchanan,David L.; Peters,Lester L., Fuel injector with piezoelectric actuator preload.
  10. Auwaerter Gerhard (Stuttgart DEX) Itoh Katsuoki (Leonberg DEX) Heinz Rudolf (Renningen DEX) Moser Winfried (Ludwigsburg DEX) Franke Christoph (Wolfenbuttel DEX), Metering valve for metering a fluid.
  11. Crofts, John D., Piezoelectric control valve adjustment method.
  12. Carroll, III, John T; Benson, Donald J, Rate shaping fuel injector with limited throttling.
  13. David M. Milam ; Thomas S. Carroll ; Chien-Chang Lee ; Charles R. Miller, Solid state lift for micrometering in a fuel injector.
  14. Bram, Eric M.; Satapathy, Manas R., Variable check stop for micrometering in a fuel injector.
  15. Carroll, III, John T.; Benson, Donald J.; Tarr, Yul J., Variable pressure fuel injection system with dual flow rate injector.

이 특허를 인용한 특허 (40)

  1. McAlister, Roy Edward, Acoustically actuated flow valve assembly including a plurality of reed valves.
  2. McAlister, Roy E., Adaptive control system for fuel injectors and igniters.
  3. Zhang, Xiaogang, Annulus nozzle injector with tangential fins.
  4. Zhang, Xiaogang, Annulus nozzle injector with tangential fins.
  5. McAlister, Roy E., Ceramic insulator and methods of use and manufacture thereof.
  6. Gibb, Gary; Pintz, Michael; Polatas, Stephen; Pryor, Gary, Compressed natural gas manifold.
  7. Coldren, Dana Ray, Engine system having piezo actuated gas injector.
  8. Wager, David R.; McTaggart-Cowan, Gordon P.; Mumford, David K.; Munshi, Sandeep, Fuel injection valve and method of actuating.
  9. McAlister, Roy E., Fuel injector actuator assemblies and associated methods of use and manufacture.
  10. McAlister, Roy Edward, Fuel injector actuator assemblies and associated methods of use and manufacture.
  11. McAlister, Roy Edward, Fuel injector assemblies having acoustical force modifiers and associated methods of use and manufacture.
  12. McAlister, Roy Edward, Fuel injector assemblies having acoustical force modifiers and associated methods of use and manufacture.
  13. Matsukawa, Matthew, Fuel interface modules and related systems and methods.
  14. Matsukawa, Matthew M., Fuel interface modules and related systems and methods.
  15. Gibb, Gary; Pintz, Michael; Polatas, Stephen, Fuel tank frame assembly.
  16. Jaegle, Felix; Ohlhafer, Olaf; Schoefer, Joerg; Giezendanner-Thoben, Robert, Gas injector for the direct injection of gaseous fuel into a combustion chamber.
  17. McAlister, Roy Edward; Larsen, Melvin James, Integrated fuel injector igniters configured to inject multiple fuels and/or coolants and associated methods of use and manufacture.
  18. McAlister, Roy E., Integrated fuel injector igniters having force generating assemblies for injecting and igniting fuel and associated methods of use and manufacture.
  19. McAlister, Roy E., Integrated fuel injector igniters having force generating assemblies for injecting and igniting fuel and associated methods of use and manufacture.
  20. McAlister, Roy Edward, Integrated fuel injector igniters having force generating assemblies for injecting and igniting fuel and associated methods of use and manufacture.
  21. McAlister, Roy E., Integrated fuel injector igniters suitable for large engine applications and associated methods of use and manufacture.
  22. McAlister, Roy E., Integrated fuel injector igniters suitable for large engine applications and associated methods of use and manufacture.
  23. McAlister, Roy E., Integrated fuel injector igniters with conductive cable assemblies.
  24. McAlister, Roy E., Integrated fuel injectors and igniters and associated methods of use and manufacture.
  25. McAlister, Roy E., Integrated fuel injectors and igniters and associated methods of use and manufacture.
  26. McAlister, Roy E., Method and system of thermochemical regeneration to provide oxygenated fuel, for example, with fuel-cooled fuel injectors.
  27. McAlister, Roy Edward; Larsen, Melvin James, Methods and systems for adaptively cooling combustion chambers in engines.
  28. McAlister, Roy Edward; Larsen, Melvin James; McAlister, legal representative, Roy Edward, Methods and systems for adaptively cooling combustion chambers in engines.
  29. Gibb, Gary; Pintz, Michael; Polatas, Stephen, Methods and systems for compressed natural gas (CNG).
  30. Gibb, Gary; Pintz, Michael; Polatas, Stephen, Methods and systems for compressed natural gas (CNG).
  31. Gibb, Gary; Pintz, Michael; Polatas, Stephen, Methods and systems for compressed natural gas (CNG).
  32. Gibb, Gary; Pintz, Michael; Polatas, Stephen, Methods and systems for compressed natural gas (CNG).
  33. Gibb, Gary; Pintz, Michael; Polatas, Stephen, Methods and systems for compressed natural gas (CNG) system.
  34. McAlister, Roy E., Methods and systems for reducing the formation of oxides of nitrogen during combustion in engines.
  35. McAlister, Roy, Multifuel storage, metering and ignition system.
  36. McAlister, Roy E., Shaping a fuel charge in a combustion chamber with multiple drivers and/or ionization control.
  37. McAlister, Roy E., Shaping a fuel charge in a combustion chamber with multiple drivers and/or ionization control.
  38. McAlister, Roy Edward, Shaping a fuel charge in a combustion chamber with multiple drivers and/or ionization control.
  39. McAlister, Roy Edward; Larsen, Melvin James, Systems and methods for improved engine cooling and energy generation.
  40. McAlister, Roy Edward; Larsen, Melvin James, Torque multiplier engines.
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