US3774467A - Control device for use with a fuel injection pump - Google Patents

Control device for use with a fuel injection pump Download PDF

Info

Publication number
US3774467A
US3774467A US00204609A US3774467DA US3774467A US 3774467 A US3774467 A US 3774467A US 00204609 A US00204609 A US 00204609A US 3774467D A US3774467D A US 3774467DA US 3774467 A US3774467 A US 3774467A
Authority
US
United States
Prior art keywords
lever
pin
control device
catch
guide groove
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US00204609A
Inventor
G Leonard
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
CAV Ltd
Original Assignee
CAV Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by CAV Ltd filed Critical CAV Ltd
Application granted granted Critical
Publication of US3774467A publication Critical patent/US3774467A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D1/00Controlling fuel-injection pumps, e.g. of high pressure injection type
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D2700/00Mechanical control of speed or power of a single cylinder piston engine
    • F02D2700/02Controlling by changing the air or fuel supply
    • F02D2700/0269Controlling by changing the air or fuel supply for air compressing engines with compression ignition
    • F02D2700/0282Control of fuel supply
    • F02D2700/0284Control of fuel supply by acting on the fuel pump control element
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T74/00Machine element or mechanism
    • Y10T74/20Control lever and linkage systems

Definitions

  • ABSTRACT [30] F i A li ti P i it D t
  • Great Britain 58,919/70 having thmtfle control and 3 mp includes a lever connected to the stop control, resilient means 52 US. Cl. 74/469, 123/179 L biasing the a which ShPPlY 0f [51] Int. Cl G05g 1/00 fuel to the engme is prevented pmvlded a 58 Field of Search 74/469, 479; lever whhected the hmtfle comm 0f the 123/179 L pump and which can engage a pin carried by the lever.
  • the object of the invention is to provide a control device for use with such a mechanism, whereby the second control member is automatically moved to a first predetermined position irrespective of the setting of the first control member, in the event of a catch contained in the device being released.
  • a control device for use with a mechanism of the kind specified comprises in combination, a first lever which in use, is operatively connected to said second control member, resilient means biasing said first lever to a first position in which the second control member will be moved to said predetermined position, and a releasable catch operable to retain said first lever in a second position in which the second control member assumes a second predetermined position.
  • FIG. 1 is an inverted plan view of the device and
  • FIG. 2 is a side view in a direction of the arrow A of FIG. I.
  • a first control member in the form of a lever 4 which is mounted upon a shaft 12.
  • the shaft 12 is mounted in a bearing and is operatively connected to a stop control of a liquid fuel injection pump.
  • the lever 4 is loaded by a coiled tension spring 10 to a position as shown in the drawings, in which the stop control prevents the supply of fuel by the pump.
  • the lever 4 is also provided with an elongated slot 3 through which extends a pin2.
  • the pin 2 is slidable within the slot 3 and includes a head 2a which is located within a shaped groove 16 which is formed within a generally rectangular block 1 forming part of the device.
  • a second control member in the form of a lever which is mounted upon a shaft 13 and the shaft 13 is operatively connected to the throttle control member of the fuel pump.
  • the position in which the lever 5 is shown is the minimum or idling position of the throttle control member, and movement of the throttle control to effect an increase of fuel will effect movement of the lever 5 inthe clockwise direction.
  • the free end of the lever 5 is formed as a pivotal latch 11 bears against the pin 2.
  • the groove 16 is specially shaped and includes a first portion 17 which is of arcuate form and has a radius which is struck from the centre of the shaft 13.
  • the ra dius of the portion 17 is however less than the length of the lever 5.
  • the groove portion 17 is extended at opposite ends by curvedportions l8 and 19, portion 18 being shorter than portion 19.
  • a catch member 7 extending across the groove atthe junctions of the portions 18 and 19 thereof is a catch member 7.
  • the catch member 7 is loaded by a coiled compression spring 9 to an inoperative position in which it is withdrawn from across the groove and it is retained in its operative position as shown, by energisation of a solenoid 8.
  • the associated pump cannot supply fuel because of the position of the lever 4.
  • the lever 5 In order to start the engine to which fuel is supplied the lever 5 must first be moved in the clockwise direction and this has the effect of moving the pin 2 along the portion 17 of the groove 16.
  • the lever 4 is moved against the action of the spring 10.
  • a leaf spring 6 is tensioned and when the lever reaches the junction of the portions 17 and 18 of the groove the spring 6 moves the pin 2 along the portion 18 thereby releasing the pin from contact with the lever 5.
  • the pin 2 comes to rest against the catch member 7 and in this position the lever 4 is retained in a position in which the pump can supply fuel.
  • the lever 5 is free to move when the throttle control member of the pump is set to provide the maximum fuel in which position the lever 5 will assume a position about removed in the clockwise direction, from the position in which it is shown.
  • FIG. 1 shows the provision of a further catch member 14 mounted on a pivot 15 and operated by the catch 7.
  • the catch member 14 is moved to a position to prevent the pin 2 reaching the junction of the groove portions 17 and 19, when the catch member 7 is released. In this case therefore the engine cannot be started until the catch member 7 is re-set.
  • a control device for use with a mechanism of the kind including a first control member which is movable to effect a second control operation, the control device comprising in combination, a first lever which is operatively connected to said second control member, resilient means biasing said first lever to a first position in which the second control member will be in a first and a releasable catch operable to retain said first lever in a second position in which the second control member will be in a second predetermined position.
  • a control device including a pin movable with said first lever, said pin when said first lever is in said second position being engaged with said catch.
  • a control device including a slot formedin said first lever, said pin being located within said slot, a block having a face, a guide groove formed in the face of said block, and a head portion on said pin, said head portion being engaged within said guide groove.
  • a control device including a second lever, said second lever in use, being operatively connected to said first control member, said second lever when said first lever is in said first position being operable to move the pin along a first portion of said guide groove and resilient means operable when the pin reaches the end of said first portion of the groove, to effect movement of the pin along a second portion of the guide groove into engagement with said catch, said pin during this movement being disengaged from said second lever.
  • a control device including a third portion of said guide groove interconnecting the free ends of said first and second portions thereof, said pin moving along said third portion of the guide groove when said catch is released.
  • a control device in which said second lever is provided with a latch at its end for engagement with said pin, said latch pivoting to allow the second lever to return to its initial position when the pin is released by the catch.
  • a control device as claimed in claim 6 in which said catch is spring loaded to a position out of the path of said pin, electromagnetic means being provided to urge the catch into a position to engage said pin.
  • a control device as claimed in claim 7 including a further catch operable to prevent said pin moving to the start of said first portion of the guide groove when said first mentioned catch is out of the path of said pin.

Abstract

A control device for use with a fuel injection pump having a throttle control and a stop control includes a lever connected to the stop control, resilient means biasing the lever to a position in which the supply of fuel to the engine is prevented. Also provided is a second lever connected to the throttle control of the pump and which can engage a pin carried by the lever. The pin is movable by means of the lever into contact with a stop and in this position fuel can be supplied to the engine. When the stop is released the pin is released and the lever returns to a position in which no fuel will be supplied to the engine.

Description

O Umted States Patent 11 1 1111 3,774,467 Leonard Nov. 27, 1973 [54] CONTROL DEVICE FOR USE WITH A FUEL 3,392,526 7/1968 Kataoka 74/469 INJECTION PUMP 3,402,792 9/1968 Masser 74/469 3,456,523 7/1969 Stepaner et a]. 74/479 Inventorr Gordon Harris Leonard, Chalfom 3,496,795 2/1970 Dinnendahl..... 74/469 St. Peter, England 3,679,809 7/1972 Wertman 74/469 [73] Assignee: G. A. V. Limited, Birmingham,
England Primary Exam1ner-Charles J. Myhre Assistant Examiner-Wesley S. Ratliff, Jr. [22] Filed: 1971 Att0meyHolman & Stern [21] Appl. No.: 204,609
[57] ABSTRACT [30] F i A li ti P i it D t A control device for use with a fuel injection pump Dec. 11, 1970 Great Britain 58,919/70 having thmtfle control and 3 mp includes a lever connected to the stop control, resilient means 52 US. Cl. 74/469, 123/179 L biasing the a which ShPPlY 0f [51] Int. Cl G05g 1/00 fuel to the engme is prevented pmvlded a 58 Field of Search 74/469, 479; lever whhected the hmtfle comm 0f the 123/179 L pump and which can engage a pin carried by the lever. The pin is movable by means of the lever into contact [56] References Cited ul'lith a stop awih in thl'ils position fupl car; bi supplied to t e en ine, en t e sto is re ease t e in is re- UNITED STATES PATENTS leased ind the lever returss to a position in :vhich no 3,101,821 8/1963 Henry 74/479 fuel will be Supplied to the engine 3,263,516 8/1966 Chisholm.... 74/469 3,273,679 9/1966 Uher 74/479 8 Claims, 2 Drawing Figures CONTROL DEVICE FOR USE WITH A FUEL INJECTION PUMP This invention relates to a control device for use with a mechanism of the kind including a first control member for effecting a first control operation and a second control member which is movable to effect a second control operation.
The object of the invention is to provide a control device for use with such a mechanism, whereby the second control member is automatically moved to a first predetermined position irrespective of the setting of the first control member, in the event of a catch contained in the device being released.
According to the invention a control device for use with a mechanism of the kind specified comprises in combination, a first lever which in use, is operatively connected to said second control member, resilient means biasing said first lever to a first position in which the second control member will be moved to said predetermined position, and a releasable catch operable to retain said first lever in a second position in which the second control member assumes a second predetermined position.
One example of a control device in accordance with the invention will now be described with reference to the accompanying drawings which show a device for use with a mechanism comprising a fuel injection pump.
FIG. 1 is an inverted plan view of the device and,
FIG. 2 is a side view in a direction of the arrow A of FIG. I.
With reference to the drawings there is provided a first control member in the form of a lever 4 which is mounted upon a shaft 12. The shaft 12 is mounted in a bearing and is operatively connected to a stop control of a liquid fuel injection pump. The lever 4 is loaded by a coiled tension spring 10 to a position as shown in the drawings, in which the stop control prevents the supply of fuel by the pump. The lever 4 is also provided with an elongated slot 3 through which extends a pin2. The pin 2 is slidable within the slot 3 and includes a head 2a which is located within a shaped groove 16 which is formed within a generally rectangular block 1 forming part of the device.
Also provided is a second control member in the form of a lever which is mounted upon a shaft 13 and the shaft 13 is operatively connected to the throttle control member of the fuel pump. The position in which the lever 5 is shown is the minimum or idling position of the throttle control member, and movement of the throttle control to effect an increase of fuel will effect movement of the lever 5 inthe clockwise direction. The free end of the lever 5 is formed as a pivotal latch 11 bears against the pin 2.
The groove 16 is specially shaped and includes a first portion 17 which is of arcuate form and has a radius which is struck from the centre of the shaft 13. The ra dius of the portion 17 is however less than the length of the lever 5. The groove portion 17 is extended at opposite ends by curvedportions l8 and 19, portion 18 being shorter than portion 19. Moreover, extending across the groove atthe junctions of the portions 18 and 19 thereof is a catch member 7. The catch member 7 is loaded by a coiled compression spring 9 to an inoperative position in which it is withdrawn from across the groove and it is retained in its operative position as shown, by energisation of a solenoid 8.
The operation of the device will now be described. In the position shown the associated pump cannot supply fuel because of the position of the lever 4. In order to start the engine to which fuel is supplied the lever 5 must first be moved in the clockwise direction and this has the effect of moving the pin 2 along the portion 17 of the groove 16. In addition the lever 4 is moved against the action of the spring 10. During movement of the pin a leaf spring 6 is tensioned and when the lever reaches the junction of the portions 17 and 18 of the groove the spring 6 moves the pin 2 along the portion 18 thereby releasing the pin from contact with the lever 5. The pin 2 comes to rest against the catch member 7 and in this position the lever 4 is retained in a position in which the pump can supply fuel. Moreover, the lever 5 is free to move when the throttle control member of the pump is set to provide the maximum fuel in which position the lever 5 will assume a position about removed in the clockwise direction, from the position in which it is shown.
In the event that the solenoid 8 is de-energised in th event of a fault causing interruption of the electric supply or deliberately by the operator the catch member 7 will release the pin 2 and the lever 4 will move back under the action of the spring 10 to the position shown thereby preventing further supply of fuel. The sequence described must then be repeated to enable the engine to be operated normally. However, for emergency operation it is possible to set the throttle member to the half throttle position to allow the engine to be started. In this position the pin 2 is still in the portion 17 of the groove but the lever 4 has been moved an amount sufficient to allow flow of fuel. The latch 11 on the lever 5 allows the lever 5 to be re-engaged with the pin 2 in the event that the catch member 7 has been operated.
FIG. 1 shows the provision of a further catch member 14 mounted on a pivot 15 and operated by the catch 7. The catch member 14 is moved to a position to prevent the pin 2 reaching the junction of the groove portions 17 and 19, when the catch member 7 is released. In this case therefore the engine cannot be started until the catch member 7 is re-set.
I claim:
1. A control device for use with a mechanism of the kind including a first control member which is movable to effect a second control operation, the control device comprising in combination, a first lever which is operatively connected to said second control member, resilient means biasing said first lever to a first position in which the second control member will be in a first and a releasable catch operable to retain said first lever in a second position in which the second control member will be in a second predetermined position.
2. A control device according to claim 1 including a pin movable with said first lever, said pin when said first lever is in said second position being engaged with said catch.
3. A control device according to claim 1 including a slot formedin said first lever, said pin being located within said slot, a block having a face, a guide groove formed in the face of said block, and a head portion on said pin, said head portion being engaged within said guide groove.
4. A control device according to claim 3 including a second lever, said second lever in use, being operatively connected to said first control member, said second lever when said first lever is in said first position being operable to move the pin along a first portion of said guide groove and resilient means operable when the pin reaches the end of said first portion of the groove, to effect movement of the pin along a second portion of the guide groove into engagement with said catch, said pin during this movement being disengaged from said second lever.
5. A control device according to claim 4 including a third portion of said guide groove interconnecting the free ends of said first and second portions thereof, said pin moving along said third portion of the guide groove when said catch is released.
6. A control device according to claim 5 in which said second lever is provided with a latch at its end for engagement with said pin, said latch pivoting to allow the second lever to return to its initial position when the pin is released by the catch.
7. A control device as claimed in claim 6 in which said catch is spring loaded to a position out of the path of said pin, electromagnetic means being provided to urge the catch into a position to engage said pin.
8. A control device as claimed in claim 7 including a further catch operable to prevent said pin moving to the start of said first portion of the guide groove when said first mentioned catch is out of the path of said pin.

Claims (8)

1. A control device for use with a mechanism of the kind including a first control member which is movable to effect a second control operation, the control device comprising in combination, a first lever which is operatively connected to said second control member, resilient means biasing said first lever to a first position in which the second control member will be in a first and a releasable catch operable to retain said first lever in a second position in which the second control member will be in a second predetermined position.
2. A control device according to claim 1 including a pin movable with said first lever, said pin when said first lever is in said second position being engaged with said catch.
3. A control device according to claim 1 including a slot formed in said first lever, said pin being located within said slot, a block having a face, a guide groove formed in the face of said block, and a head portion on said pin, said head portion being engaged within said guide groove.
4. A control device according to claim 3 including a second lever, said second lever in use, being operatively connected to said first control member, said second lever when said first lever is in said first position being operable to move the pin along a first portion of said guide groove and resilient means operable when the pin reaches the end of said first portion of the groove, to effect movement of the pin along a second portion of the guide groove into engagement with said catch, said pin during this movement being disengaged from said second lever.
5. A control device according to claim 4 including a third portion of said guide groove interconnecting the free ends of said first and second portions thereof, said pin moving along said third portion of the guide groove when said catch is released.
6. A control device according to claim 5 in which said second lever is provided with a latch at its end for engagement with said pin, said latch pivoting to allow the second lever to return to its initial position when the pin is released by the catch.
7. A control device as claimed in claim 6 in which said catch is spring loaded to a position out of the path of said pin, electromagnetic means being provided to urge the catch into a position to engage said pin.
8. A control device as claimed in claim 7 including a further catch operable to prevent said pin moving to the start of said first portion of the guide groove when said first mentioned catch is out of the path of said pin.
US00204609A 1970-12-11 1971-12-03 Control device for use with a fuel injection pump Expired - Lifetime US3774467A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB5891970A GB1372178A (en) 1970-12-11 1970-12-11 Control device for use with a fuel injection pump

Publications (1)

Publication Number Publication Date
US3774467A true US3774467A (en) 1973-11-27

Family

ID=10482693

Family Applications (1)

Application Number Title Priority Date Filing Date
US00204609A Expired - Lifetime US3774467A (en) 1970-12-11 1971-12-03 Control device for use with a fuel injection pump

Country Status (5)

Country Link
US (1) US3774467A (en)
JP (1) JPS513848B1 (en)
FR (1) FR2118008B1 (en)
GB (1) GB1372178A (en)
IT (1) IT945347B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1541420A (en) * 1975-04-19 1979-02-28 Simms Group Res Dev Ltd Stop control device for disel vehicles

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3101821A (en) * 1958-04-09 1963-08-27 Mcculloch Corp Motor control
US3263516A (en) * 1965-09-10 1966-08-02 Dow Chemical Co Mechanical linkage for generating a curved surface
US3273679A (en) * 1966-09-20 Automatic controls for fluid pressure clutch operator
US3392526A (en) * 1966-10-11 1968-07-16 Int Harvester Co Control mechanism
US3402792A (en) * 1967-01-03 1968-09-24 Neway Equipment Co Brake actuating apparatus
US3456523A (en) * 1967-09-13 1969-07-22 Adamovske Strojirny Np Mechanical control structure
US3496795A (en) * 1968-08-08 1970-02-24 Frank Dinnendahl Pantograph
US3679809A (en) * 1970-12-02 1972-07-25 Pic Design Corp Pivot linkage assembly kit

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3273679A (en) * 1966-09-20 Automatic controls for fluid pressure clutch operator
US3101821A (en) * 1958-04-09 1963-08-27 Mcculloch Corp Motor control
US3263516A (en) * 1965-09-10 1966-08-02 Dow Chemical Co Mechanical linkage for generating a curved surface
US3392526A (en) * 1966-10-11 1968-07-16 Int Harvester Co Control mechanism
US3402792A (en) * 1967-01-03 1968-09-24 Neway Equipment Co Brake actuating apparatus
US3456523A (en) * 1967-09-13 1969-07-22 Adamovske Strojirny Np Mechanical control structure
US3496795A (en) * 1968-08-08 1970-02-24 Frank Dinnendahl Pantograph
US3679809A (en) * 1970-12-02 1972-07-25 Pic Design Corp Pivot linkage assembly kit

Also Published As

Publication number Publication date
JPS513848B1 (en) 1976-02-06
FR2118008A1 (en) 1972-07-28
DE2160984A1 (en) 1972-06-22
DE2160984B2 (en) 1975-08-14
IT945347B (en) 1973-05-10
FR2118008B1 (en) 1974-08-23
GB1372178A (en) 1974-10-30

Similar Documents

Publication Publication Date Title
YU47760B (en) BELT BELT STOP WITH SAFETY BELTS WITH BELT ASSEMBLY
JPS6054484B2 (en) Injection pump with electronically controlled full load stopper
ES360231A1 (en) Centrifugal governor for controlling the r.p.m. of diesel engines
US3774467A (en) Control device for use with a fuel injection pump
US2734496A (en) Internal combustion engines
US2985196A (en) Anti-stall device
US3791362A (en) Governor for controlling the fuel delivery of a fuel injection pump for an internal combustion engine
US4372267A (en) Fuel pumping apparatus
JPH02181038A (en) Throttle member controller
US3025843A (en) Control arrangement for internal combustion engines
US2572096A (en) Engine control mechanism
US4807580A (en) Trigger mechanism for engines
US2619080A (en) Fuel injection system for compression ignition engines
US3179388A (en) Carburettors comprising an auxiliary device for cold starting
US4665873A (en) Governor for fuel injection pump
US2831474A (en) Overspeed shutdown controls for diesel engines
JPS6033984B2 (en) fuel pump device
EP0427501A1 (en) Governor device of diesel engine
CH589797A5 (en) Automatic advance and retard mechanism - for spark ignition engines operates pneumatically according to position of throttle valve
US3898973A (en) Device for controlling the feeding of fuel to an internal combustion engine
US1989230A (en) Engine cut-off
US4095574A (en) Mechanical governor for internal combustion engine
US4512306A (en) Device for shutting down a fuel injection combustion engine
GB1420749A (en) Fuel injection pumping apparatus
GB1373086A (en) Apparatus for controlling the fuel supply to an internal combustion engine