US2544144A - Oil burner pump - Google Patents

Oil burner pump Download PDF

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Publication number
US2544144A
US2544144A US746447A US74644747A US2544144A US 2544144 A US2544144 A US 2544144A US 746447 A US746447 A US 746447A US 74644747 A US74644747 A US 74644747A US 2544144 A US2544144 A US 2544144A
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United States
Prior art keywords
pump
crescent
pinion
oil
internal gear
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Expired - Lifetime
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US746447A
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William P Ellis
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Motors Liquidation Co
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General Motors Corp
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Priority to US746447A priority Critical patent/US2544144A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C2/00Rotary-piston machines or pumps
    • F04C2/08Rotary-piston machines or pumps of intermeshing-engagement type, i.e. with engagement of co-operating members similar to that of toothed gearing
    • F04C2/10Rotary-piston machines or pumps of intermeshing-engagement type, i.e. with engagement of co-operating members similar to that of toothed gearing of internal-axis type with the outer member having more teeth or tooth-equivalents, e.g. rollers, than the inner member
    • F04C2/101Rotary-piston machines or pumps of intermeshing-engagement type, i.e. with engagement of co-operating members similar to that of toothed gearing of internal-axis type with the outer member having more teeth or tooth-equivalents, e.g. rollers, than the inner member with a crescent-shaped filler element, located between the inner and outer intermeshing members

Definitions

  • This invention relates to certain improvements in the construction of a rotary pump such as may be used in various applications but is particularly adapted for the supply of fuel oil under quietly and efiiciently in installations requiring operation against pressure with a relatively high lift or vacuum.
  • the crescent between the pinion and internal gear is provided with passages to place the pump outlet in communication with the pumping recesses in the pinion and internal gear between the ends of the crescent.
  • Pig. 1 is a fragmentary, longitudinal section of an oil burner ump unit taken substantially on line l-l of Fig. 2 with parts broken away to better illustrate the present invention.
  • Fig. 2 is a cross section of the pump unit taken substantially on line 2-2 of Fig. 1.
  • Fig. 3 is a detached. enlarged perspective view of the pump crescent.
  • a self-contained oil burner pump unit such as disclosed in Patent No. 2,346,398 to Henry C. Rohr et al.
  • This pump unit which includes the pumping elements. pump shaft and pump shaft sealing means, is adapted to be detachably secured. as by screws 4. within a housing indicated diagrammatically in dot and dash lines at 6.
  • the housing provides a space around the pumping elements which is in communication with the source of fuel oil with an annular filter 8 to filter the oil supplied to the pumpintake.
  • the pump unit includes a pump body in the form of a circular plate II which is clamped between end plates l2 and M with dowels It to 2 Claims.
  • oil pump per se is generally conventional and comprises the pinion l8, crescent 20 and internal gear 22.
  • the internal gear is eccentrically located with reference to the pinion and is journaled within the pump body plate l0 and adapted to be rotated by the pinion II which has diametrically opposite slots to receive the ends of a drive pin 24 passing o'ugh the pump shaft 26.
  • The'crescent 20 is, terposed between the pinion and internal gear and fixed'in this relative location by spaced pins 28 which interengage with the crescent and the end plate If, as shown in Fig. l in which the pinion and a portion of the pump shaft have been removed to better illustrate certain details of the crescent to be hereinafter described.
  • the face of the end plate 12 which contacts the pump body plate Ill may be formed with a groove or channel 3., as shown by dotted lines in Fig. 2,
  • the outlet for the pump may consist of a recess 34 in the face of the end plate M which contacts the pump body plate In with this recess adjacent the discharge area of the pump gears and communicating with an outlet passage 36 extending through the end plate It.
  • the discharge of oil from the pump may be controlled by a pressure regulator valve which prevents the delivery of oil from the pump to the oil burner nozzle until it exceeds some predetermined pressure so that the pressure of oil at the pump outlet will be relatively high.
  • the pump shaft 26 is adapted to be coupled to the shaft of an electric motor and a pump shaft sealing means may be provided to prevent leakage along the shaft.
  • This sealing means may be conveniently located within an annular recess in the end plate It and includes a hardaxially align the plates during assembly.
  • the ened collar 38 secured to the shaft by suitable sealing material 40 to rotate therewith with a sealing ring 42 to engage the collar 58.
  • the ring 42 is secured to a flexible diaphragm 44 by a member 48 with the periphery of the diaphragm secured to the end plate l4 by a. screwthreaded clamp ring 48.
  • a spring 50 between the member 46 and the end plate l4 maintains the ring 42 in sealing contact with the collar 38 and a vent passage 58 may be providedjn the end plate [4 to prevent any accumulation of undesired pressure in the space between the end plate and sealing contact surfaces.
  • the pump crescent is to be provided with passages to place the pump outlet in communication with the pumping recesses in the pinion and internal gear between the ends of the crescent.
  • These passages are shown herein as consisting of grooves or slots 52 and 54 formed in the face of .the crescent which contacts the end plate l4 with the slot 52 extending diagonally across an intermediate portion of the crescent and the slot 54 extending arcuately from the slot 52 to the end of the crescent which is at the outlet side of the pump.
  • the diagonal slot 52 is deeper and wider th n the arcuat slot 54 and the ends'of the slot, 2 will communicate with the pumping recesses formed between the crescent and the spaces between the teeth of the pinion and internal gear as they move by the ends of this slot during rotation of the pinion and internal gear as will be apparent from the showing in Fig. 2. Therefore, during operation of-the pump, the arcuate slot 54 and diagonal slot 52 will be kept full of oil under pressure from the outlet side of the pump and oil will be supplied therefrom to the pumping recesses to fill any voids therein and also compress any air bubbles so that the pumping recesses will be practically completely filled with oil under pres- V cations.
  • passages in the crescent Qdilld be interiorly or otherwise formed therein or I fluid could be supplied under pressure to fill the pumping recesses by providing suitable passages Number in the side plates or other parts instead of utilizing the crescent for such passages.
  • a rotary pump including an internal gear, a pinion disposed eccentrically within said gear and meshing at one side therewith, a fixed crescent interposed between said internal gear and pinion to provide pumping recesses between said crescent and the spaces between the teeth of said internal gear and pinion, a fluid intake adjacent one end of said crescent, a fluid outlet adand meshing at one side therewith, a fixed crescent interposed between said internal gear and pinion to provide pumping recesses between said crescent and the spaces between the teeth of said internal gear and pinion, end plates engaging opposite sides of said gear, pinion and crescent, a fluid intake in one of said end plates adjacent one end of said crescent, a fluid outlet in one of said end plates adjacent the other end of said crescent, and passages to place said outlet in direct communication with said pumping recesses between the ends of said crescent to supply fluid under pressure to said recesses, said passages being formed by slots in a side of said crescent which is in engagement with one of said end plates and comprising a

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Rotary Pumps (AREA)

Description

Patented Mar. 6, 1951 om BURNER PUMP William R. Ellis. Palo Alto, Calif., allignor to General Motors Corporation, Detroit, Mich, a corporation of Delaware Application May 'I, 1947, No, 748,447
This invention relates to certain improvements in the construction of a rotary pump such as may be used in various applications but is particularly adapted for the supply of fuel oil under quietly and efiiciently in installations requiring operation against pressure with a relatively high lift or vacuum.
According to the present invention. as embodied in an oil burner pump wherein the pump discharge is, controlled by pressure actuated means, some of the pumped oil is by-passed or bled back from the high pressure side or outlet of the pump to a point between the intake and outlet to make sure that the recesses in the pumping elements will be completely filled with oil.
In the type of rotary pump disclosed herein, the crescent between the pinion and internal gear is provided with passages to place the pump outlet in communication with the pumping recesses in the pinion and internal gear between the ends of the crescent.
Other objects and features of the invention will be apparent from the following description of the embodiment shown in the accompanying drawings. in which: a
Pig. 1 is a fragmentary, longitudinal section of an oil burner ump unit taken substantially on line l-l of Fig. 2 with parts broken away to better illustrate the present invention.
Fig. 2 is a cross section of the pump unit taken substantially on line 2-2 of Fig. 1.
Fig. 3 is a detached. enlarged perspective view of the pump crescent.
Referring first to Fig. l, the present invention has been shown as incorporated in a self-contained oil burner pump unit such as disclosed in Patent No. 2,346,398 to Henry C. Rohr et al. This pump unit, which includes the pumping elements. pump shaft and pump shaft sealing means, is adapted to be detachably secured. as by screws 4. within a housing indicated diagrammatically in dot and dash lines at 6. As is more fully shown in the above. patent, the housing provides a space around the pumping elements which is in communication with the source of fuel oil with an annular filter 8 to filter the oil supplied to the pumpintake.
The pump unit includes a pump body in the form of a circular plate II which is clamped between end plates l2 and M with dowels It to 2 Claims. (01. 103-126) oil pump per se is generally conventional and comprises the pinion l8, crescent 20 and internal gear 22. The internal gear is eccentrically located with reference to the pinion and is journaled within the pump body plate l0 and adapted to be rotated by the pinion II which has diametrically opposite slots to receive the ends of a drive pin 24 passing o'ugh the pump shaft 26. The'crescent 20 is, terposed between the pinion and internal gear and fixed'in this relative location by spaced pins 28 which interengage with the crescent and the end plate If, as shown in Fig. l in which the pinion and a portion of the pump shaft have been removed to better illustrate certain details of the crescent to be hereinafter described.
To provide an intake for the pump, the face of the end plate 12 which contacts the pump body plate Ill may be formed with a groove or channel 3., as shown by dotted lines in Fig. 2,
extending from the periphery thereof to a recess 32 in the end plate I! adjacent the intake area of the pump gears. The outlet for the pump may consist of a recess 34 in the face of the end plate M which contacts the pump body plate In with this recess adjacent the discharge area of the pump gears and communicating with an outlet passage 36 extending through the end plate It. Upon rotation in a counter-clockwise direc-.
tion as viewedin Fig. 2, the pump elements op-,
erate in known manner to draw oil through the': intake channel 3! and recess 32 into the expanding space between the pinion and internal gear, carry the oil along the crescent in the pumping recesses formed between the crescent and the spaces between the teeth of thepinion and 'internal gear, and then discharge the oil under pressure from the contracting space between the pinion and internal gear into the outlet recess I4 and passage 36. In accordance with conventional oil burner practice, as disclosed for example in the above mentioned Patent No. 2,346,398, the discharge of oil from the pump may be controlled by a pressure regulator valve which prevents the delivery of oil from the pump to the oil burner nozzle until it exceeds some predetermined pressure so that the pressure of oil at the pump outlet will be relatively high.
The pump shaft 26 is adapted to be coupled to the shaft of an electric motor and a pump shaft sealing means may be provided to prevent leakage along the shaft. This sealing means may be conveniently located within an annular recess in the end plate It and includes a hardaxially align the plates during assembly. The ened collar 38 secured to the shaft by suitable sealing material 40 to rotate therewith with a sealing ring 42 to engage the collar 58. The ring 42 is secured to a flexible diaphragm 44 by a member 48 with the periphery of the diaphragm secured to the end plate l4 by a. screwthreaded clamp ring 48. A spring 50 between the member 46 and the end plate l4 maintains the ring 42 in sealing contact with the collar 38 and a vent passage 58 may be providedjn the end plate [4 to prevent any accumulation of undesired pressure in the space between the end plate and sealing contact surfaces.
Proceeding now to a description of the present invention as embodied in the foregoing oil burner pump construction, the pump crescent is to be provided with passages to place the pump outlet in communication with the pumping recesses in the pinion and internal gear between the ends of the crescent. These passages are shown herein as consisting of grooves or slots 52 and 54 formed in the face of .the crescent which contacts the end plate l4 with the slot 52 extending diagonally across an intermediate portion of the crescent and the slot 54 extending arcuately from the slot 52 to the end of the crescent which is at the outlet side of the pump.
It will be noted that the diagonal slot 52 is deeper and wider th n the arcuat slot 54 and the ends'of the slot, 2 will communicate with the pumping recesses formed between the crescent and the spaces between the teeth of the pinion and internal gear as they move by the ends of this slot during rotation of the pinion and internal gear as will be apparent from the showing in Fig. 2. Therefore, during operation of-the pump, the arcuate slot 54 and diagonal slot 52 will be kept full of oil under pressure from the outlet side of the pump and oil will be supplied therefrom to the pumping recesses to fill any voids therein and also compress any air bubbles so that the pumping recesses will be practically completely filled with oil under pres- V cations.
Manychanges and modifications in the de- "jtailed construction and arrangement of parts disclosed herein are also contemplated as within the scope of the present invention. As examples thereof, the passages in the crescent Qdilld be interiorly or otherwise formed therein or I fluid could be supplied under pressure to fill the pumping recesses by providing suitable passages Number in the side plates or other parts instead of utilizing the crescent for such passages.
I claim:
l. A rotary pump including an internal gear, a pinion disposed eccentrically within said gear and meshing at one side therewith, a fixed crescent interposed between said internal gear and pinion to provide pumping recesses between said crescent and the spaces between the teeth of said internal gear and pinion, a fluid intake adjacent one end of said crescent, a fluid outlet adand meshing at one side therewith, a fixed crescent interposed between said internal gear and pinion to provide pumping recesses between said crescent and the spaces between the teeth of said internal gear and pinion, end plates engaging opposite sides of said gear, pinion and crescent, a fluid intake in one of said end plates adjacent one end of said crescent, a fluid outlet in one of said end plates adjacent the other end of said crescent, and passages to place said outlet in direct communication with said pumping recesses between the ends of said crescent to supply fluid under pressure to said recesses, said passages being formed by slots in a side of said crescent which is in engagement with one of said end plates and comprising a first slot extending transversely across 'said crescent between the ends thereof and a second slot extending longitudinally from said first slot to the end of said crescent which is adjacent said fiuid outlet.
WILLIAM P. ELLIS.
REFERENCES CITED The following references are of. record in the file of this patent:
UNITED STATES PATENTS Name Date 1,689,587 Holmes Oct. 30, 1928 2,159,720 Wahlmark May 23, 1939 2,232,983 Wahlmark Feb. 25, 1941 2,309,683 Wahlmark Feb. 2, 1943 2,346,398 Rohe et al Apr. 11, 1944 FOREIGN PATENTS Number Country Date 325,849 Germany Mar. 3, 1917 331,054
Great Britain July 3, 1930
US746447A 1947-05-07 1947-05-07 Oil burner pump Expired - Lifetime US2544144A (en)

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Cited By (26)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2624287A (en) * 1949-10-08 1953-01-06 Borg Warner Gear pump
US2684637A (en) * 1950-09-14 1954-07-27 Sundstrand Machine Tool Co Gear pump
US2774309A (en) * 1953-08-14 1956-12-18 Sundstrand Machine Tool Co Pump
US2820416A (en) * 1952-12-24 1958-01-21 Borg Warner Pressure loaded pump
US2822124A (en) * 1956-02-07 1958-02-04 Allied Prod Corp Gear type fluid pump with adjustable gear sets
US2856119A (en) * 1952-12-19 1958-10-14 Gen Motors Corp Refrigerating apparatus
US3007418A (en) * 1957-04-30 1961-11-07 Robert W Brundage Variable delivery hydraulic pump or motor
US3237566A (en) * 1963-10-11 1966-03-01 Dura Corp Fluid transfer pump
US3315608A (en) * 1965-08-23 1967-04-25 Eckerle Otto High efficiency wear-compensating gear pump
US3496877A (en) * 1967-08-11 1970-02-24 Otto Eckerle Internal gear hydraulic pump or motor
DE1653871A1 (en) * 1968-01-18 1970-04-09 Molly Dipl Ing Hans Gear machine
US3512906A (en) * 1967-04-18 1970-05-19 Hans Molly Gear machine
US3679335A (en) * 1969-03-21 1972-07-25 Zahnradfabrik Friedrichshafen Gear pump
US3824041A (en) * 1972-08-01 1974-07-16 C Rystrom Positive displacement liquid pump
US4161372A (en) * 1976-11-06 1979-07-17 Robert Bosch Gmbh Internal-gear fluid-displacement machine with movable separating body
US4184820A (en) * 1978-02-16 1980-01-22 Karl Eickmann Internal gear device with balancing recesses in the insert member
DE3916155A1 (en) * 1989-05-18 1990-11-22 Hurth Masch Zahnrad Carl Internally-toothed gear pump
US4978282A (en) * 1989-09-18 1990-12-18 Industrial Technology Research Institute Electrical fuel pump for small motorcycle engine
EP0398020A3 (en) * 1989-05-18 1992-03-04 HURTH Getriebe und Zahnräder G.m.b.H. Internal gear pump
US5413470A (en) * 1993-03-05 1995-05-09 Eisenmann; Siegfried A. Internal gear pump for wide speed range
US6106240A (en) * 1998-04-27 2000-08-22 General Motors Corporation Gerotor pump
EP1503081A1 (en) * 2003-07-31 2005-02-02 Voith Turbo GmbH & Co. KG Hydraulic pump
USD809995S1 (en) * 2016-08-18 2018-02-13 Ford Motor Company Sensor cover
USD838230S1 (en) 2016-08-18 2019-01-15 Ford Motor Company Sensor cover
USD838231S1 (en) 2016-08-18 2019-01-15 Ford Motor Company Sensor cover
US10488231B2 (en) 2016-08-18 2019-11-26 Ford Global Technologies, Llc Sensor cover

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE325849C (en) * 1917-03-03 1920-09-21 Emil Ludwig Gear pump in which a spur gear works together with an internally toothed ring gear
US1689587A (en) * 1918-06-27 1928-10-30 Sullivan Machinery Co Pressure-fluid motor
GB331054A (en) * 1929-01-03 1930-07-03 Thomas Winter Nichols Improvements in rotary pumps, compressors and the like
US2159720A (en) * 1936-02-27 1939-05-23 Gunnar A Wahlmark Pump
US2232983A (en) * 1938-06-08 1941-02-25 Gunnar A Wahlmark Fluid pump
US2309683A (en) * 1940-10-25 1943-02-02 Gunnar A Wahlmark Pumping unit
US2346398A (en) * 1940-07-17 1944-04-11 Gen Motors Corp Oil burner

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE325849C (en) * 1917-03-03 1920-09-21 Emil Ludwig Gear pump in which a spur gear works together with an internally toothed ring gear
US1689587A (en) * 1918-06-27 1928-10-30 Sullivan Machinery Co Pressure-fluid motor
GB331054A (en) * 1929-01-03 1930-07-03 Thomas Winter Nichols Improvements in rotary pumps, compressors and the like
US2159720A (en) * 1936-02-27 1939-05-23 Gunnar A Wahlmark Pump
US2232983A (en) * 1938-06-08 1941-02-25 Gunnar A Wahlmark Fluid pump
US2346398A (en) * 1940-07-17 1944-04-11 Gen Motors Corp Oil burner
US2309683A (en) * 1940-10-25 1943-02-02 Gunnar A Wahlmark Pumping unit

Cited By (30)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2624287A (en) * 1949-10-08 1953-01-06 Borg Warner Gear pump
US2684637A (en) * 1950-09-14 1954-07-27 Sundstrand Machine Tool Co Gear pump
US2856119A (en) * 1952-12-19 1958-10-14 Gen Motors Corp Refrigerating apparatus
US2820416A (en) * 1952-12-24 1958-01-21 Borg Warner Pressure loaded pump
US2774309A (en) * 1953-08-14 1956-12-18 Sundstrand Machine Tool Co Pump
US2822124A (en) * 1956-02-07 1958-02-04 Allied Prod Corp Gear type fluid pump with adjustable gear sets
US3007418A (en) * 1957-04-30 1961-11-07 Robert W Brundage Variable delivery hydraulic pump or motor
US3237566A (en) * 1963-10-11 1966-03-01 Dura Corp Fluid transfer pump
US3315608A (en) * 1965-08-23 1967-04-25 Eckerle Otto High efficiency wear-compensating gear pump
DE1553027A1 (en) * 1965-08-23 1970-03-19 Otto Eckerle Wear-compensating high-performance internal gear pump
US3512906A (en) * 1967-04-18 1970-05-19 Hans Molly Gear machine
US3496877A (en) * 1967-08-11 1970-02-24 Otto Eckerle Internal gear hydraulic pump or motor
DE1653871A1 (en) * 1968-01-18 1970-04-09 Molly Dipl Ing Hans Gear machine
US3679335A (en) * 1969-03-21 1972-07-25 Zahnradfabrik Friedrichshafen Gear pump
US3824041A (en) * 1972-08-01 1974-07-16 C Rystrom Positive displacement liquid pump
US4161372A (en) * 1976-11-06 1979-07-17 Robert Bosch Gmbh Internal-gear fluid-displacement machine with movable separating body
US4184820A (en) * 1978-02-16 1980-01-22 Karl Eickmann Internal gear device with balancing recesses in the insert member
DE3916155A1 (en) * 1989-05-18 1990-11-22 Hurth Masch Zahnrad Carl Internally-toothed gear pump
EP0398020A3 (en) * 1989-05-18 1992-03-04 HURTH Getriebe und Zahnräder G.m.b.H. Internal gear pump
US4978282A (en) * 1989-09-18 1990-12-18 Industrial Technology Research Institute Electrical fuel pump for small motorcycle engine
US5413470A (en) * 1993-03-05 1995-05-09 Eisenmann; Siegfried A. Internal gear pump for wide speed range
US6106240A (en) * 1998-04-27 2000-08-22 General Motors Corporation Gerotor pump
EP1503081A1 (en) * 2003-07-31 2005-02-02 Voith Turbo GmbH & Co. KG Hydraulic pump
US20050123419A1 (en) * 2003-07-31 2005-06-09 Voith Turbo Gmbh & Co. Kg Pumping device
US7331775B2 (en) 2003-07-31 2008-02-19 Voith Turbo Gmbh & Co. Kg Pumping device
USD809995S1 (en) * 2016-08-18 2018-02-13 Ford Motor Company Sensor cover
USD838230S1 (en) 2016-08-18 2019-01-15 Ford Motor Company Sensor cover
USD838231S1 (en) 2016-08-18 2019-01-15 Ford Motor Company Sensor cover
US10488231B2 (en) 2016-08-18 2019-11-26 Ford Global Technologies, Llc Sensor cover
US10527464B2 (en) 2016-08-18 2020-01-07 Ford Global Technologies, Llc Rotatable sensor cover

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