US1238939A - Oil-pump. - Google Patents

Oil-pump. Download PDF

Info

Publication number
US1238939A
US1238939A US10082816A US10082816A US1238939A US 1238939 A US1238939 A US 1238939A US 10082816 A US10082816 A US 10082816A US 10082816 A US10082816 A US 10082816A US 1238939 A US1238939 A US 1238939A
Authority
US
United States
Prior art keywords
piston
cam
pump
oil
abutment
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
US10082816A
Inventor
Raymond J Pfleeger
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to US10082816A priority Critical patent/US1238939A/en
Application granted granted Critical
Publication of US1238939A publication Critical patent/US1238939A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B7/00Piston machines or pumps characterised by having positively-driven valving
    • F04B7/04Piston machines or pumps characterised by having positively-driven valving in which the valving is performed by pistons and cylinders coacting to open and close intake or outlet ports
    • F04B7/06Piston machines or pumps characterised by having positively-driven valving in which the valving is performed by pistons and cylinders coacting to open and close intake or outlet ports the pistons and cylinders being relatively reciprocated and rotated

Definitions

  • This invention relates to oil pumps and particularly to pumps designed for forcing lubricant to the various parts of an engine and more particularly to various parts of an automobile, motorcycle or other like construction.
  • Engine lubricators should be positive in action and should be so constructed that the lubricant will not be supplied in excess of the requirements.
  • the means for feeding lubricant should be automatic and require but little attention by the operator.
  • the oil feed should start as soon as the engine starts and stop when the engine stops and, with internal combustion engines, the oil feed should be automatically controlled, not necessarily by the speed of the engine, but in correspondence with the fuel feed of the engine.
  • the oil feed should be automatically controlled, not necessarily by the speed of the engine, but in correspondence with the fuel feed of the engine.
  • one object of my invention is the provision of an oil pump of an extremely simple construction having few parts and these not liable to get out of order and in which no movable valves in the ordinary course are used which are liable to get out of order, which require to be ground or otherwise kept in shape and which are liable to be clogged.
  • a further object of the invention' is to provide a pump ofthe character described in which the range of reciprocation of the pump piston may be regulated and, in this connection to provide means whereby this range of reciprocation may be regulated in accordance with the position of the throttle valve of the engine and thus the pump be regulated in correspondence, not with the speed of the engine, lbut with the fuel feed for the reasons before ⁇ stated.
  • a further object of the invention is to provide positive means for reciprocating the plston on both strokes thereof and provide a means which will provide for a very steady but relatively slow stroke of the piston, this stroke being steady and even throughout its entire extent.
  • Figure 1 is a sectional view of a pump constructed in accordance with my invention and showing the piston orl plunger in its outermost position at the time when the oil 1s being drawn into the pump barrel;
  • Fig. 2 is a sectional view through one end of the barrel beyond the inlet and outlet ports, this view showing the piston in end elevation;
  • Fig. 3 is a sectional view Aon the same plane vas Fig. 1, but showing the piston at its innermost position; l
  • Fig. 4 is a like view to Fig. 2 showing the rotative position of the piston in Fig. 3, the piston being in elevation;
  • Fig. 5 is a perspective view of the piston and the cam 44, this figurev being on a reduced scale.
  • the pump barrel 5 is cylindrical and has ⁇ the cap 6 are the inlet and outlet ports 7 and 8 respectively and'entering the inlet port 7 'is a pipe 9 which is shouldered at 10, while extending from the outlet port 8 is a pipe 12, shouldered lat v13, both of these pipes having preferably., screw-threaded engagement with the pipe barrel.
  • the pipe 9 is connected to any suitable source of oil, while the pipe 12 is connected to the part or parts to be lubricated.
  • the barrel, intermediate its ends is longitudinally slotted,
  • a relatively long and solidpiston 28 Operating within the barrel 5 is a relatively long and solidpiston 28.
  • This piston has rotative movement therein.
  • the piston is formed at its outer end with a many-sided socket 36 within which operates the manysided head 29 carried bythe shaft 30.
  • This shaft may be driven in any suitable manner but, as illustrated, carries a worm wheel 31 held in place by a nut 32, this worm wheel being driven by a worm 33 mounted on a shaft 34, this shaft in turn being driven by a gear wheel 35 from any suitable mechanism.
  • This flange 44 is disposed atan inclination to the longitudinal axis of the piston anddivides the annular recess into two portions 42 and 43.
  • the cam flange, as illustrated in Fig. 5 is formed at its highest portion with a flat portion a and at its lower portion with a flat portion These flat portions a and b are joined by the oppositely disposed inclined portions of the flange.
  • Attached to the wall of the cylinder or barrel 5 is an angular member 15.
  • I have illustrated the wall of the cylinder below the slot 16 as formed with a recess 5al to receive a shank of the angular member 15 and have illustrated the shank of this angular member as being held to the wall by screws 5b.
  • This angular member extends inward into the annular recess in the piston and specically into the space 43 of this recess below the cam 44 and forms a stop against which the shoulder at the outer end of the recess will bear when the piston is being forced inward.
  • this member 15 forms a stop limiting the outward movement of the piston and for the purpose of limiting the inward movement of the piston and forming the adjustable stop, I provide the abutment 17 which extends into the slot 15 and into the portion 42 of the annular recess, this abutment 17 having a head 17a interiorly screw-threaded for the passage of a rod 18 which, as illustrated, is screw-threaded for a portion of its length.
  • This rod at one end has a smooth portion 23 whichl has sliding engagement in the end wall 26 of the housing 24 and at its other end the rod is smooth as at 19 and has sliding engagement in the opposite end wall of the housing, preferably passing through a bushing 25 or gland so that the housing may be filled with oil to keep the parts lubricated and to assist in lubricating the piston.
  • the housing has preferably a removable wall 27 whereby access may be had to the interior of the housing, the wall 27 being held to the end walls by means of screws.
  • the smooth portion 19 of the rod 18 extends out through the end wall of the housing and is then angularly bent and is operatively connected as will be later described, to the throttle arm or lever of the engine.
  • the piston outward of its inner end, is formed with a piston ring groove 41 and a piston ring 40 resting therein.
  • the inner end of the piston is recessed, as at 39 so as to leave a solid inwardly projecting portion 38 constituting a valve and controlling entrance through the port 7 and exit through the port 8.
  • the recessed portion comprises a little less than half of the cross sectional area of the piston.
  • the solid portion forming a valve 38 is very nearly or approximately twice thel area of the recessed portion 29, that is, the arc embraced by the solid area is approximately 235, while the arc embraced by the recess is approximately 125. It will be understood that these relative proportions are merely approximations but it will be seen from Figs. 2 and 4 that the solid portion 38 must have a greater angular length than the recessed portion in order that both ports 7 and 8 may be closed at one time.
  • One of the important features of my invention is to provide means whereby the piston shall not reciprocate when, for instance, the throttle of the carbureter is ntirely closed, but whereby it shall reciprocate for its full stroke if the throttle be fully opened and shall reciprocate a proportionately less amount when the throttle valve is partly open.
  • This is accomplished by operating the rod 18 by means of the connection 22 leading to the throttle arm so as to shift the lug or abutment '17 longi- ⁇ tudinally within the slot 16..
  • the lug 17 is shifted away from the lug 15 a distance equal to the total depth of the cam 44, then it is obvious that the piston will rotate but will not reciprocate, the cam simply traveling around between the two lugs or abutments 15 and 17.
  • the abutment 17 be disposed half way between the first and second-named faces, then as the piston rotates, there will be no movement of the piston outward until the piston is rotated such a distance that the inclined face of the cam contacts with the abutment 17 and then the piston will commence to move downward for the remainder of the depth of the cam and upon a further ratation will move upward the same amount and then will rotate without moving in either direction until it again strikes the abutment 17
  • the stroke ofthe piston may be entirely controlled and so that the piston may have no longitudinal movement whatever, a very small longitudinal movement, a half stroke, a three-quarter stroke or a full stroke.
  • the abutment 17 may be adjusted so as to give the piston any range between a full stroke and no stroke.
  • the operation of the pump is as follows l rlhe plunger or piston is continuously rotated through the action of the yshaft 30 which is driven from any suitable part of the engine. Assuming that the throttle is Wide open and that, therefore, a full stroke of the piston is desired, then of course, the lug or abutment 17 has been so adjusted as to contact with the inner face of the cam 44. Assuming that the piston has rotated to a position to open the inlet port, then at this time the piston commences to move downward sucking in oil through the chamber 45.
  • the piston does not reciprocate but simply rotates and alternately opens and closes the ports 7 and 8 without either sucking in oil or forcing oil out.
  • a corresponding reciprocation of the piston is secured and the pump operates in the manner heretofore described to suck in oil and force it out.
  • this pump will feed oil in cooperation with the amount of gas fed to the motor of an internal combustion engine by connecting the movable abutment 17 with the throttle control.
  • a motor running easily on a closed throttle requires little oil.
  • the throttle control so affects the movable abutment as to feed only a small quantity of oil therefor, when the throttle is closed or nearly closed.
  • a motor working under full load with the throttle wide open needs much more oil and thus the movable abutment, connected to the throttle control would be shifted to its minimum distance from the fixed abutment 15 and thus the maximum quantity of oil will be fed.
  • the amount of oil fed does not depend upon the speed of the motor, but upon the work to be done by the motor, as evidenced by the amount of gas required. It is the amount of gas required which is the controlling factor and not the speed of the motor.
  • the pump which I have devised has very few parts and that there are practically no movable parts except the piston itself and the adjustable abutment. There is thus nothing which would be liable to get out of order and nothing which is not positively actuated.
  • the piston may be readily withdrawn from the barrel or cylinder by removing the abutments 15 and 17 and the parts can be readily assembled.
  • the lug 15 is rigidly mounted upon the wall of the cylinder 5 and it is against this lug that the cam operates when the piston moves inward against high pressure in the crank case, because the plston when it does move inward to its full extent, bears againstthe lug 15, and any pressure against the outer end of the piston will not affect the amount of oil fed by the pump.
  • the lixed lug 15 therefore limits the inward movement of the piston so that even if the movable lug 17 is shifted away from the fixed lug, pressure on the exterior of the piston will not force it inward beyond a predetermined amount.
  • a piston with this construction cannot slide out of its working position even if there is pressure against the driven end of the piston and the same is true if there is ressure at the valve end of the piston. hus the amount of oil fed by the pump is vpredetermined by the pressure of the movable lug 17 and cannot be affected by what may be termed foreign pressures at either end of the piston.
  • a pump of the character described a barrel havin inlet and outlet ports, a rotatable piston gormed to provide a valve controlling the inlet and outlet ports upon a rotation of the piston2 means for constantly rotating the piston 1n one direction, and means for positively shifting the piston longitudinally alternately in opposite directions and adjustably controlling the length of the piston stroke.
  • a barrel a rotatable piston mounted therein, means for constantly rotating the piston, means for positively shifting the piston longitudinally in opposite directions alternately, and means for adj ustably controlling the length of the stroke of the piston.
  • a'cylinder having intake and outlet ports, a piston adapted to simultaneously reciprocate and rotate in the c ylinder and formed to provide a valve acting to alternately cover and uncover said ports as the piston is rotated, means for positively reciprocating the piston comprising an annular cam and abutments engaging with opposite faces of the cam, said abutments being carried on the cylinder wall, one of said abutments being shiftable toward or from the other abutment, and means exterior to the cylinder wall whereby the movable abutment may be shifted and operatively engaging the movable abutment.
  • a cylinder having intake and outlet ports, a piston adapted to simultaneously reciprocate and rotate in the cylinder, and formed to provide a valve acting to alternately cover and uncover said ports, as the piston is rotated, and means for positively reciprocating the piston comprising an annular cam, and means coacting with the cam. and engaging with the opposite side faces thereof to thereby cause a reciprocation of the piston, said means including two elements relatively shiftable toward or fromxeach other for a distance equal to the depth of the cam.
  • a cylinder having intake and outlet ports, a piston adapted to simultaneously reciprocate and rotate in the cylinder and formed to provide a valve adapted to alternately cover and uncover the ports, and means for causing a reciprocation of the piston including a cam carried on the piston and rotatable therewith, and abutments engaging with opposite faces of the cam and carried on the cylinder wall, said abutments being relatively shiftable toward or from each other for a distance equal to the depth of the cam.
  • a pump a cylinder, a piston rotating in the cylinder and longitudinally reciprocatable therethrough, and means for reciprocating the piston comprising acam mounted on the piston and disposed in a'plane inclined to the axis of the piston, and abutments projecting inwardly from the cylinder wall and with which said cam engages, one of said abutments being adjustable toward or from the other abutment to thereby control the range of movement of the piston.
  • a c linder a piston rotatable and reciprocata le therein, and means for reciproatingA the piston including a camv formed upon t e piston and-disposed in a plane inclined to the longitudinal axis there of, a fixed abutment projecting inwardly from the wall of the vcylinder and engaging on one face of the cam, a movable abutment projecting inwardly from the wall of the cylinder and confronting the other face of the cam, and a member engaging said movable abutment, said member being shiftable to shift the movable abutment toward or from the other abutment.
  • a piston rotatably mounted in the cylinder and reciprocating therein and having its inner end formed to provide a valve controlling said ports,V
  • a driving shaft having rotative engagement withv the piston and sliding engagement therewith and means for positively reciprocating the piston comprising a cam formed upon the piston and disposed in a plane inclined to the longitudinal axis thereof, a fixed abutment projecting inwardly from the cylinder wall and confronting one face of the cam, and an abutment projecting inwardly from the cylinder wall and confronting the other face ofthe cam.
  • a pump a cylinder closed at one end and open at the other end and having an outlet and an inlet port, a piston rotatably mounted in the cylinder and reciprocating, therein and having its inner end formed to provide a valve controlling said ports, a driving shaft having rotative engagement with the piston and sliding engagement therewith, means for positively reciprocating the lpiston comprising a cam formed upon the piston and disposed in a plane inclined to the longitudinal .axis thereof, a fixed abutment projecting inward from the cylinder wall and confronting one face ofthe cam, and an abutment projecting inward from the cylinder wall and confronting the other face .0f the cam, said last named 4abutment being shiftable toward or from the iixed abutment, and means operativel engaging the movable abutment where y it may be shifted.
  • a pump comprising a cylinder, detachably closed at one end and having at this end oppositely disposed inlet andoutlet ports, the other end of the cylinder being open andk the cylinder being longitudinally slotted intermediate its ends, a solid piston rotatively and reciprocatably mounted within the cylinder and having its inner end re-V Ded transversely to provide a valve adapted, as the piston is rotated, to alternately close and open the inlet and outlet ports, the piston intermediate its ends being formed with an annular recess and with a cam flange extending outward from the bottom -of' the recess, the cam flangebeing disposed in a plane at an angle to the longitudinal axis of the piston, the opposite ends of said cam being disposed at a right angle to the axis 130 K

Description

R. J. PFLEEGER.
OIL PUMP.
APPLICATION FILED MAYS 1916.
Patented Sept. 4, 1917.
RAYMOND J. IPFLEEGER., OF DEERFIELD, NEW YORK.
OIL-PUMP.
Specication of Letters Patent.
Patented Sept. d, 191'?.
Application filed May 31, 1916. Serial No. 100,828.
To all whom t may concern:
Be it known that I, RAYMOND J. PFLEEGER, a citizen of the United States residing at Deerfield, in the county of Oneida and State of New York, have invented certain new and useful Improvements in Oil-Pumps, of which the following is a specification, reference being had to the accompanying drawings.
This invention relates to oil pumps and particularly to pumps designed for forcing lubricant to the various parts of an engine and more particularly to various parts of an automobile, motorcycle or other like construction. Engine lubricators should be positive in action and should be so constructed that the lubricant will not be supplied in excess of the requirements. Y*
Furthermore the means for feeding lubricant should be automatic and require but little attention by the operator. The oil feed should start as soon as the engine starts and stop when the engine stops and, with internal combustion engines, the oil feed should be automatically controlled, not necessarily by the speed of the engine, but in correspondence with the fuel feed of the engine. Thus, for instance, when an auto- -mobile is going up a hill on a long steady pull, a much greateramount of lubricant is necessary than where the engine is running rapidly on a level road and yet, at thistime,
' when the engine is moving up hill, the rate of rotation of the crank shaft, as an example,
ismuch less than when the engine is mov-- ing along a smooth and level road.
With these considerations in view, one object of my invention is the provision of an oil pump of an extremely simple construction having few parts and these not liable to get out of order and in which no movable valves in the ordinary course are used which are liable to get out of order, which require to be ground or otherwise kept in shape and which are liable to be clogged.
A further object of the invention'is to provide a pump ofthe character described in which the range of reciprocation of the pump piston may be regulated and, in this connection to provide means whereby this range of reciprocation may be regulated in accordance with the position of the throttle valve of the engine and thus the pump be regulated in correspondence, not with the speed of the engine, lbut with the fuel feed for the reasons before` stated.
A further object of the invention is to provide positive means for reciprocating the plston on both strokes thereof and provide a means which will provide for a very steady but relatively slow stroke of the piston, this stroke being steady and even throughout its entire extent.
Other objects will appear in the course of the following description.
My invention is illustrated in the accompanying drawings wherein,
Figure 1 is a sectional view of a pump constructed in accordance with my invention and showing the piston orl plunger in its outermost position at the time when the oil 1s being drawn into the pump barrel;
Fig. 2 is a sectional view through one end of the barrel beyond the inlet and outlet ports, this view showing the piston in end elevation; i
Fig. 3 is a sectional view Aon the same plane vas Fig. 1, but showing the piston at its innermost position; l
Fig. 4: is a like view to Fig. 2 showing the rotative position of the piston in Fig. 3, the piston being in elevation; and
Fig. 5 is a perspective view of the piston and the cam 44, this figurev being on a reduced scale.
The pump barrel 5 is cylindrical and has `the cap 6 are the inlet and outlet ports 7 and 8 respectively and'entering the inlet port 7 'is a pipe 9 which is shouldered at 10, while extending from the outlet port 8 is a pipe 12, shouldered lat v13, both of these pipes having preferably., screw-threaded engagement with the pipe barrel. The pipe 9 is connected to any suitable source of oil, while the pipe 12 is connected to the part or parts to be lubricated. The barrel, intermediate its ends is longitudinally slotted,
as at 16 for a purpose which will be later stated. f
Operating within the barrel 5 is a relatively long and solidpiston 28. This piston has rotative movement therein. For the purpose of'causing rotative movement of the 4piston within the barrel, the piston is formed at its outer end with a many-sided socket 36 within which operates the manysided head 29 carried bythe shaft 30. This shaft may be driven in any suitable manner but, as illustrated, carries a worm wheel 31 held in place by a nut 32, this worm wheel being driven by a worm 33 mounted on a shaft 34, this shaft in turn being driven by a gear wheel 35 from any suitable mechanism.
For the purpose of causing a reciprocating movement of the piston, I form the piston with an annular recess and with an annular cam flange, which I shall hereafter describe as a cam 44. This flange 44 is disposed atan inclination to the longitudinal axis of the piston anddivides the annular recess into two portions 42 and 43. The cam flange, as illustrated in Fig. 5 is formed at its highest portion with a flat portion a and at its lower portion with a flat portion These flat portions a and b are joined by the oppositely disposed inclined portions of the flange. Attached to the wall of the cylinder or barrel 5 is an angular member 15. I have illustrated the wall of the cylinder below the slot 16 as formed with a recess 5al to receive a shank of the angular member 15 and have illustrated the shank of this angular member as being held to the wall by screws 5b. This angular member extends inward into the annular recess in the piston and specically into the space 43 of this recess below the cam 44 and forms a stop against which the shoulder at the outer end of the recess will bear when the piston is being forced inward. As before remarked?, this member 15 forms a stop limiting the outward movement of the piston and for the purpose of limiting the inward movement of the piston and forming the adjustable stop, I provide the abutment 17 which extends into the slot 15 and into the portion 42 of the annular recess, this abutment 17 having a head 17a interiorly screw-threaded for the passage of a rod 18 which, as illustrated, is screw-threaded for a portion of its length. This rod, at one end has a smooth portion 23 whichl has sliding engagement in the end wall 26 of the housing 24 and at its other end the rod is smooth as at 19 and has sliding engagement in the opposite end wall of the housing, preferably passing through a bushing 25 or gland so that the housing may be filled with oil to keep the parts lubricated and to assist in lubricating the piston. The housing has preferably a removable wall 27 whereby access may be had to the interior of the housing, the wall 27 being held to the end walls by means of screws. The smooth portion 19 of the rod 18 extends out through the end wall of the housing and is then angularly bent and is operatively connected as will be later described, to the throttle arm or lever of the engine. Preferably the piston, outward of its inner end, is formed with a piston ring groove 41 and a piston ring 40 resting therein.
The inner end of the piston is recessed, as at 39 so as to leave a solid inwardly projecting portion 38 constituting a valve and controlling entrance through the port 7 and exit through the port 8. From Figs. 2 and 4, it will be seen that the recessed portion comprises a little less than half of the cross sectional area of the piston. The solid portion forming a valve 38 is very nearly or approximately twice thel area of the recessed portion 29, that is, the arc embraced by the solid area is approximately 235, while the arc embraced by the recess is approximately 125. It will be understood that these relative proportions are merely approximations but it will be seen from Figs. 2 and 4 that the solid portion 38 must have a greater angular length than the recessed portion in order that both ports 7 and 8 may be closed at one time.
One of the important features of my invention is to provide means whereby the piston shall not reciprocate when, for instance, the throttle of the carbureter is ntirely closed, but whereby it shall reciprocate for its full stroke if the throttle be fully opened and shall reciprocate a proportionately less amount when the throttle valve is partly open. This is accomplished by operating the rod 18 by means of the connection 22 leading to the throttle arm so as to shift the lug or abutment '17 longi-` tudinally within the slot 16.. Thus, for instance, when the lug 17 is shifted away from the lug 15 a distance equal to the total depth of the cam 44, then it is obvious that the piston will rotate but will not reciprocate, the cam simply traveling around between the two lugs or abutments 15 and 17. On the other hand, it will be obvious that when the abutment 17 is shifted so close to the abutment 15 that the abutments l5 and 17 engage closely on opposite faces of the cam 44, then this cam will act in the manner of a continuous screw thread and the piston will reciprocate for its full stroke, z'. e., the full depth of the cam 44. If, however, the abutment 17 be disposed half way between the first and second-named faces, then as the piston rotates, there will be no movement of the piston outward until the piston is rotated such a distance that the inclined face of the cam contacts with the abutment 17 and then the piston will commence to move downward for the remainder of the depth of the cam and upon a further ratation will move upward the same amount and then will rotate without moving in either direction until it again strikes the abutment 17 By thus shifting the abutment 17, it is obvious that the stroke ofthe piston may be entirely controlled and so that the piston may have no longitudinal movement whatever, a very small longitudinal movement, a half stroke, a three-quarter stroke or a full stroke. In fact, the abutment 17 may be adjusted so as to give the piston any range between a full stroke and no stroke.
The operation of the pump is as follows l rlhe plunger or piston is continuously rotated through the action of the yshaft 30 which is driven from any suitable part of the engine. Assuming that the throttle is Wide open and that, therefore, a full stroke of the piston is desired, then of course, the lug or abutment 17 has been so adjusted as to contact with the inner face of the cam 44. Assuming that the piston has rotated to a position to open the inlet port, then at this time the piston commences to move downward sucking in oil through the chamber 45. When the piston reaches its outermost point, then the flat portion a of the cam is operatively engaging the lugs or abutments 15 and 17 and there is a dwell while the piston rotates to a position which will open the outlet port. As soon as the outlet port is opened, the inclined face of the cam operatively engages the abutments 15 and 17 and the piston commences to move steadily inward, forcing the oil drawn into the chamber 45, out through the pipe 12. When the piston has reached its innermost position, the portion b of the cam is active and the piston rotates without reciprocation until the port 8 has been closed and the port 7 opened. As soon as this occurs the piston not only rotates but moves outward, sucking in oil into the chamber 45. If the abutment 17 is adjusted at its maximum distance from the abutment 15, then the piston does not reciprocate but simply rotates and alternately opens and closes the ports 7 and 8 without either sucking in oil or forcing oil out. As soon, however, as the abutment 17 is shifted so that it will engage any portion of the cam 44, then a corresponding reciprocation of the piston is secured and the pump operates in the manner heretofore described to suck in oil and force it out.
It will be seen that the principle of this pump is such that the pump will feed oil in cooperation with the amount of gas fed to the motor of an internal combustion engine by connecting the movable abutment 17 with the throttle control. A motor running easily on a closed throttle requires little oil. The throttle control so affects the movable abutment as to feed only a small quantity of oil therefor, when the throttle is closed or nearly closed. A motor working under full load with the throttle wide open needs much more oil and thus the movable abutment, connected to the throttle control would be shifted to its minimum distance from the fixed abutment 15 and thus the maximum quantity of oil will be fed. Any motor with an oil pump feeding a certain amount of oil for each revolution of the crank shaft or other moving part of the motorjcan not supply the right amount of oil for all conditions. Thus a motorcycle or automobile moving at a moderate speed up a long steep hill, with its throttle wide open heats rapidly and uses much oil and it is obvious that the feed would not be proper from a pump depending upon the number of revolutions of the motor alone, for determining the amount of oil fed by the pump. With my construction, however, the amount of oil fed does not depend upon the speed of the motor, but upon the work to be done by the motor, as evidenced by the amount of gas required. It is the amount of gas required which is the controlling factor and not the speed of the motor.
It will be seen that the pump which I have devised has very few parts and that there are practically no movable parts except the piston itself and the adjustable abutment. There is thus nothing which would be liable to get out of order and nothing which is not positively actuated. The piston may be readily withdrawn from the barrel or cylinder by removing the abutments 15 and 17 and the parts can be readily assembled.
The lug 15 is rigidly mounted upon the wall of the cylinder 5 and it is against this lug that the cam operates when the piston moves inward against high pressure in the crank case, because the plston when it does move inward to its full extent, bears againstthe lug 15, and any pressure against the outer end of the piston will not affect the amount of oil fed by the pump. The lixed lug 15 therefore limits the inward movement of the piston so that even if the movable lug 17 is shifted away from the fixed lug, pressure on the exterior of the piston will not force it inward beyond a predetermined amount. A piston with this construction cannot slide out of its working position even if there is pressure against the driven end of the piston and the same is true if there is ressure at the valve end of the piston. hus the amount of oil fed by the pump is vpredetermined by the pressure of the movable lug 17 and cannot be affected by what may be termed foreign pressures at either end of the piston.
Having thus described this invention, what is claimed is:
1. ln a pump of the character described, a barrel havin inlet and outlet ports, a rotatable piston gormed to provide a valve controlling the inlet and outlet ports upon a rotation of the piston2 means for constantly rotating the piston 1n one direction, and means for positively shifting the piston longitudinally alternately in opposite directions and adjustably controlling the length of the piston stroke.
2. In a pump of the character described, a barrel, a rotatable piston mounted therein, means for constantly rotating the piston, means for positively shifting the piston longitudinally in opposite directions alternately, and means for adj ustably controlling the length of the stroke of the piston. n'
3. In a pump, a'cylinder having intake and outlet ports, a piston adapted to simultaneously reciprocate and rotate in the c ylinder and formed to provide a valve acting to alternately cover and uncover said ports as the piston is rotated, means for positively reciprocating the piston comprising an annular cam and abutments engaging with opposite faces of the cam, said abutments being carried on the cylinder wall, one of said abutments being shiftable toward or from the other abutment, and means exterior to the cylinder wall whereby the movable abutment may be shifted and operatively engaging the movable abutment.
4. In a pump, a cylinder having intake and outlet ports, a piston adapted to simultaneously reciprocate and rotate in the cylinder, and formed to provide a valve acting to alternately cover and uncover said ports, as the piston is rotated, and means for positively reciprocating the piston comprising an annular cam, and means coacting with the cam. and engaging with the opposite side faces thereof to thereby cause a reciprocation of the piston, said means including two elements relatively shiftable toward or fromxeach other for a distance equal to the depth of the cam.
5. In a pump, a cylinder having intake and outlet ports, a piston adapted to simultaneously reciprocate and rotate in the cylinder and formed to provide a valve adapted to alternately cover and uncover the ports, and means for causing a reciprocation of the piston including a cam carried on the piston and rotatable therewith, and abutments engaging with opposite faces of the cam and carried on the cylinder wall, said abutments being relatively shiftable toward or from each other for a distance equal to the depth of the cam.
6. In a pump, a cylinder, a piston rotating in the cylinder and longitudinally reciprocatable therethrough, and means for reciprocating the piston comprising acam mounted on the piston and disposed in a'plane inclined to the axis of the piston, and abutments projecting inwardly from the cylinder wall and with which said cam engages, one of said abutments being adjustable toward or from the other abutment to thereby control the range of movement of the piston.
7. In a' pump, a c linder, a piston rotatable and reciprocata le therein, and means for reciproatingA the piston including a camv formed upon t e piston and-disposed in a plane inclined to the longitudinal axis there of, a fixed abutment projecting inwardly from the wall of the vcylinder and engaging on one face of the cam, a movable abutment projecting inwardly from the wall of the cylinder and confronting the other face of the cam, and a member engaging said movable abutment, said member being shiftable to shift the movable abutment toward or from the other abutment. l
8. In a pump, a cylinder closed at one end and open at the other end and having an outlet and inlet port, a piston rotatably mounted in the cylinder and reciprocating therein and having its inner end formed to provide a valve controlling said ports,V a driving shaft having rotative engagement withv the piston and sliding engagement therewith and means for positively reciprocating the piston comprising a cam formed upon the piston and disposed in a plane inclined to the longitudinal axis thereof, a fixed abutment projecting inwardly from the cylinder wall and confronting one face of the cam, and an abutment projecting inwardly from the cylinder wall and confronting the other face ofthe cam. .A
9. In a pump, a cylinder closed at one end and open at the other end and having an outlet and an inlet port, a piston rotatably mounted in the cylinder and reciprocating, therein and having its inner end formed to provide a valve controlling said ports, a driving shaft having rotative engagement with the piston and sliding engagement therewith, means for positively reciprocating the lpiston comprising a cam formed upon the piston and disposed in a plane inclined to the longitudinal .axis thereof, a fixed abutment projecting inward from the cylinder wall and confronting one face ofthe cam, and an abutment projecting inward from the cylinder wall and confronting the other face .0f the cam, said last named 4abutment being shiftable toward or from the iixed abutment, and means operativel engaging the movable abutment where y it may be shifted.
10. A pump comprising a cylinder, detachably closed at one end and having at this end oppositely disposed inlet andoutlet ports, the other end of the cylinder being open andk the cylinder being longitudinally slotted intermediate its ends, a solid piston rotatively and reciprocatably mounted within the cylinder and having its inner end re-V cessed transversely to provide a valve adapted, as the piston is rotated, to alternately close and open the inlet and outlet ports, the piston intermediate its ends being formed with an annular recess and with a cam flange extending outward from the bottom -of' the recess, the cam flangebeing disposed in a plane at an angle to the longitudinal axis of the piston, the opposite ends of said cam being disposed at a right angle to the axis 130 K In testimony whereof heunzo affix my slgnatum 1n the presence of two' Wl'nesss.
RAYMN J.,
Witnesses:
JOSEPH F. BOPPEL FRED. J, BIHQITHMJMa
US10082816A 1916-05-31 1916-05-31 Oil-pump. Expired - Lifetime US1238939A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US10082816A US1238939A (en) 1916-05-31 1916-05-31 Oil-pump.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US10082816A US1238939A (en) 1916-05-31 1916-05-31 Oil-pump.

Publications (1)

Publication Number Publication Date
US1238939A true US1238939A (en) 1917-09-04

Family

ID=3306754

Family Applications (1)

Application Number Title Priority Date Filing Date
US10082816A Expired - Lifetime US1238939A (en) 1916-05-31 1916-05-31 Oil-pump.

Country Status (1)

Country Link
US (1) US1238939A (en)

Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2451390A (en) * 1946-08-22 1948-10-12 Euclid Production Dev Corp Hydraulic jack
US2517645A (en) * 1947-07-11 1950-08-08 Nathan Mfg Co Pumping mechanism
US3120811A (en) * 1962-01-29 1964-02-11 Thunderbird Engineering Co Fluid injector pump
US3994632A (en) * 1975-01-08 1976-11-30 Schreiber Ralph E Rotary engine and pump
US4392787A (en) * 1981-01-21 1983-07-12 Wetrok Inc. Diaphragm pump
US4764093A (en) * 1986-04-30 1988-08-16 Kioritz Corporation Oil pump for chain saw
US5741126A (en) * 1996-03-01 1998-04-21 Stearns; Stanley D. Valveless metering pump with crisscrossed passage ways in the piston
WO2006056828A1 (en) * 2004-11-29 2006-06-01 Thierry Navarro Volumetric pump with reciprocated and rotated piston
US20080187449A1 (en) * 2007-02-02 2008-08-07 Tetra Laval Holdings & Finance Sa Pump system with integrated piston-valve actuation
US20080294040A1 (en) * 2007-01-10 2008-11-27 Khader Mohiuddin Volumetric pump
US20080298989A1 (en) * 2007-05-30 2008-12-04 Keays Steven J Rotary and translating displacement device
US20120186518A1 (en) * 2009-08-21 2012-07-26 Frank Herre Rotary piston pump for metering a coating agent
US20130017099A1 (en) * 2010-03-17 2013-01-17 Sensile Pat Ag Micropump
US9511186B1 (en) 2012-10-23 2016-12-06 Acist Medical Systems, Inc. Medical injection systems and pumps

Cited By (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2451390A (en) * 1946-08-22 1948-10-12 Euclid Production Dev Corp Hydraulic jack
US2517645A (en) * 1947-07-11 1950-08-08 Nathan Mfg Co Pumping mechanism
US3120811A (en) * 1962-01-29 1964-02-11 Thunderbird Engineering Co Fluid injector pump
US3994632A (en) * 1975-01-08 1976-11-30 Schreiber Ralph E Rotary engine and pump
US4392787A (en) * 1981-01-21 1983-07-12 Wetrok Inc. Diaphragm pump
US4764093A (en) * 1986-04-30 1988-08-16 Kioritz Corporation Oil pump for chain saw
US5741126A (en) * 1996-03-01 1998-04-21 Stearns; Stanley D. Valveless metering pump with crisscrossed passage ways in the piston
WO2006056828A1 (en) * 2004-11-29 2006-06-01 Thierry Navarro Volumetric pump with reciprocated and rotated piston
US20090053086A1 (en) * 2004-11-29 2009-02-26 Thierry Navarro Volumetric pump with reciprocated and rotated piston
US20100260634A1 (en) * 2004-11-29 2010-10-14 Thierry Navarro Volumetric Pump With Reciprocated and Rotated Piston
US7887308B2 (en) 2004-11-29 2011-02-15 Swissinnov Product Sarl Volumetric pump with reciprocated and rotated piston
US20080294040A1 (en) * 2007-01-10 2008-11-27 Khader Mohiuddin Volumetric pump
US8172799B2 (en) 2007-01-10 2012-05-08 Acist Medical Systems, Inc. Volumetric pump
US20080187449A1 (en) * 2007-02-02 2008-08-07 Tetra Laval Holdings & Finance Sa Pump system with integrated piston-valve actuation
US20080298989A1 (en) * 2007-05-30 2008-12-04 Keays Steven J Rotary and translating displacement device
US20120186518A1 (en) * 2009-08-21 2012-07-26 Frank Herre Rotary piston pump for metering a coating agent
US9140247B2 (en) * 2009-08-21 2015-09-22 Durr Systems Gmbh Rotary piston pump for metering a coating agent
US20130017099A1 (en) * 2010-03-17 2013-01-17 Sensile Pat Ag Micropump
US9222470B2 (en) * 2010-03-17 2015-12-29 Sensile Pat Ag Micropump
US9511186B1 (en) 2012-10-23 2016-12-06 Acist Medical Systems, Inc. Medical injection systems and pumps
US9713672B2 (en) 2012-10-23 2017-07-25 Acist Medical Systems, Inc. Medical injection systems and pumps

Similar Documents

Publication Publication Date Title
US1238939A (en) Oil-pump.
US2439879A (en) Multicylinder fuel injection pump
US3417703A (en) Fuel injection pump
US2431686A (en) Variable capacity pump
US3741685A (en) Fluid or fuel injection pump assembly
US2070203A (en) Oil pump
US3435914A (en) Oil pump for an engine
US1327272A (en) Liquid-pump
US4121559A (en) Lubricant oil pump for two-cycle engines
US3856438A (en) Fuel injection pump
US851293A (en) Engine or motor.
US1955383A (en) Injection pump for internal combustion engines
US1948047A (en) Fuel pump
US3837433A (en) Lubricating system for chain saw
US5618165A (en) Variable displacement and constant pressure pump
US2754814A (en) Lubrication means for internal combustion engines
US4041800A (en) Stroke length adjusting devices
US2227736A (en) Internal combustion engine
US3022736A (en) Variable volume pump for viscous fluids
US3740172A (en) Reciprocating fuel pumps
US2232976A (en) Variable displacement pump
US2086772A (en) Governor apparatus
US4165207A (en) Actuation device for a tachometer for an engine
US3972655A (en) Pump plunger rotating device for plunger-type fuel injection
US3794010A (en) Rotary engine oil metering pump