Claims
- 1. A variable delivery liquid pump system including:
- a housing defining an inlet, an outlet and a plunger bore;
- a rotating shaft that includes a cam that defines a fixed displacement distance with each rotation of said shaft;
- a plunger slidably positioned in said plunger bore;
- a supply of liquid at a supply pressure attached to said inlet by a supply passage; and
- an output control mechanism that includes an electronically controlled flow restriction valve positioned in said supply passage, and said plunger retracting less than said fixed displacement distance during each rotation of said shaft when said flow restriction valve is at least partially closed.
- 2. The pump system of claim 1 wherein said supply pressure is sufficiently high to hydraulically retract said plunger said fixed displacement distance during each rotation of said shaft when said flow restriction valve is open; and
- said supply pressure being sufficiently low to hydraulically retract said plunger less than said fixed displacement distance during each rotation of said shaft when said flow restriction valve is at least partially closed.
- 3. The pump system of claim 1 further including a tappet positioned between said plunger and said cam; and
- a spring operably positioned to bias said tappet into contact with said cam.
- 4. The pump system of claim 1 further including an electronic control module in communication with and capable of controlling said flow restriction valve.
- 5. The pump system of claim 1 including a plurality of plungers distributed around said shaft and lying in a plane.
- 6. The pump system of claim 1 further comprising a minimum return mechanism operably positioned to retract said plunger a minimum displacement distance that is less than said fixed displacement distance during each rotation of said shaft.
- 7. The pump system of claim 1 including a plurality of plungers distributed around said shaft and lying in a plane, and further including:
- a separate tappet positioned between each of said plungers and said cam; and
- a separate spring operably positioned to bias each said tappet into contact with said cam; and
- an electronic control module in communication with and capable of controlling said flow restriction valve.
- 8. The pump system of claim 6 further including a plurality of minimum return mechanisms operably positioned to retract each of said plungers a minimum displacement distance that is less than said fixed displacement distance during each rotation of said shaft.
- 9. A hydraulic system including:
- a low pressure pump having an inlet connected to a source of liquid;
- a high pressure pump with an outlet connected to a high pressure reservoir of said liquid, and having a rotating shaft with a cam that defines a fixed displacement distance with each rotation of said shaft, and further having at least one reciprocable plunger;
- a supply passage extending between an outlet of said low pressure pump and an inlet of said high pressure pump;
- at least one hydraulically actuated device with an inlet connected to said high pressure reservoir;
- an output control mechanism capable of controlling a volume rate of said liquid delivered from said high pressure pump to said high pressure reservoir, and including an electronically controlled flow restriction valve positioned in said supply passage; and
- said at least one reciprocable plunger retracting less than said fixed displacement distance during each rotation of said shaft when said flow restriction valve is at least partially closed.
- 10. The hydraulic system of claim 9 further including:
- a pressure sensor attached to said high pressure reservoir;
- an electronic control module in communication with said pressure sensor, and further in communication with and capable of controlling said flow restriction valve.
- 11. The hydraulic system of claim 10 further including a pressure relief passage connected to said high pressure reservoir;
- an electronically controlled pressure relief valve positioned in said pressure relief passage; and
- said electronic control module being in communication with and capable of controlling said pressure relief valve.
- 12. The hydraulic system of claim 10 wherein said liquid in said supply passage between said low pressure pump and said flow restriction valve is at a supply pressure;
- said supply pressure being sufficiently high to hydraulically retract said plunger said fixed displacement distance during each rotation of said shaft when said flow restriction valve is open; and
- said supply pressure being sufficiently low to hydraulically retract said plunger less than said fixed displacement distance during each rotation of said shaft when said flow restriction valve is at least partially closed.
- 13. The hydraulic system of claim 10 wherein said high pressure pump includes a plurality of plungers distributed around said shaft and lying in a plane;
- a separate tappet positioned between each of said plurality plungers and said cam; and
- a spring operably positioned to bias each said separate tappet into contact with said cam.
- 14. The hydraulic system of claim 10 further including a minimum return mechanism operably positioned to retract said reciprocable plunger a minimum displacement distance that is less than said fixed displacement distance during each rotation of said shaft.
- 15. A hydraulic subsystem including:
- an engine including a lubricating oil sump;
- a low pressure pump attached to said engine and having an inlet connected to said lubricating oil sump;
- a high pressure pump attached to said engine with an outlet connected to a high pressure common rail, and having a rotating shaft with a cam that defines a fixed displacement distance with each rotation of said shaft, and further having a plurality of reciprocable plungers distributed around said shaft and lying in a plane;
- an oil supply passage extending between an outlet of said low pressure pump and an inlet of said high pressure pump;
- a plurality of hydraulically actuated devices with inlets connected to said high pressure common rail and outlets connected to said lubricating oil sump;
- an output control mechanism capable of controlling a volume rate of said oil delivered from said high pressure pump to said high pressure common rail, and including an electronically controlled flow restriction valve positioned in said oil supply passage; and
- said plurality of reciprocable plungers retracting less than said fixed displacement distance during each rotation of said shaft when said flow restriction valve is at least partially closed.
- 16. The hydraulic subsystem of claim 15 further including:
- a pressure sensor attached to said high pressure common rail;
- an electronic control module in communication with said pressure sensor, and further in communication with an capable of controlling said flow restriction valve, and further in communication with an capable of controlling said plurality of hydraulically actuated devices.
- 17. The hydraulic subsystem of claim 16 further including a pressure relief passage extending between said high pressure common rail and said oil lubricating sump;
- an electronically controlled pressure relief valve positioned in said pressure relief passage; and
- said electronic control module being in communication with and capable of controlling said pressure relief valve.
- 18. The hydraulic subsystem of claim 17 wherein said oil in said supply passage between said low pressure pump and said flow restriction valve is at a supply pressure;
- said supply pressure being sufficiently high to hydraulically retract said plurality of reciprocable plungers said fixed displacement distance during each rotation of said shaft when said flow restriction valve is open; and
- said supply pressure being sufficiently low to hydraulically retract said plunger less than said fixed displacement distance during each rotation of said shaft when said flow restriction valve is at least partially closed.
- 19. The hydraulic subsystem of claim 18 further including a separate tappet positioned between each of said plurality plungers and said cam;
- a spring operably positioned to bias each said separate tappet into contact with said cam;
- an amount of damping oil positioned between said tappets and said plungers.
- 20. The hydraulic subsystem of claim 19 further including a minimum return mechanism operably positioned to retract said plurality of reciprocable plungers a minimum displacement distance that is less than said fixed displacement distance during each rotation of said shaft.
- 21. A variable delivery liquid pump system including:
- a housing defining an inlet, an outlet and a plunger bore;
- a rotating shaft;
- a plunger slidably positioned in said plunger bore and being capable of sliding a fixed displacement distance with each rotation of said shaft;
- a supply of liquid at a supply pressure attached to said inlet by a supply passage; and
- an output control mechanism that includes an electronically controlled flow restriction valve positioned in said supply passage, and said plunger retracting less than said fixed displacement distance during each rotation of said shaft when said flow restriction valve is at least partially closed.
RELATION TO OTHER PATENT APPLICATION
This is a continuing patent application that claims the benefit under 35 USC .sctn.120 of prior patent application Ser. No. 09/084,635, filed May 26, 1998, with the same title as above, now abandoned.
US Referenced Citations (46)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0 270 720 |
Jun 1988 |
EPX |
0 299 337 |
Jan 1989 |
EPX |
0 809 203 |
Nov 1997 |
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2 028 916 |
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GBX |
Continuations (1)
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Number |
Date |
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Parent |
084635 |
May 1998 |
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