EP2459879B1 - Pompe à roue dentée - Google Patents
Pompe à roue dentée Download PDFInfo
- Publication number
- EP2459879B1 EP2459879B1 EP10724490.7A EP10724490A EP2459879B1 EP 2459879 B1 EP2459879 B1 EP 2459879B1 EP 10724490 A EP10724490 A EP 10724490A EP 2459879 B1 EP2459879 B1 EP 2459879B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- stator
- gear
- gear pump
- layer
- annular gear
- 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.)
- Not-in-force
Links
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C2/00—Rotary-piston machines or pumps
- F04C2/08—Rotary-piston machines or pumps of intermeshing-engagement type, i.e. with engagement of co-operating members similar to that of toothed gearing
- F04C2/082—Details specially related to intermeshing engagement type machines or pumps
- F04C2/086—Carter
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C11/00—Combinations of two or more machines or pumps, each being of rotary-piston or oscillating-piston type; Pumping installations
- F04C11/008—Enclosed motor pump units
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C15/00—Component parts, details or accessories of machines, pumps or pumping installations, not provided for in groups F04C2/00 - F04C14/00
- F04C15/0057—Driving elements, brakes, couplings, transmission specially adapted for machines or pumps
- F04C15/008—Prime movers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C2/00—Rotary-piston machines or pumps
- F04C2/08—Rotary-piston machines or pumps of intermeshing-engagement type, i.e. with engagement of co-operating members similar to that of toothed gearing
- F04C2/10—Rotary-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
- F04C2/102—Rotary-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 the two members rotating simultaneously around their respective axes
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C2230/00—Manufacture
- F04C2230/20—Manufacture essentially without removing material
- F04C2230/22—Manufacture essentially without removing material by sintering
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C2240/00—Components
- F04C2240/50—Bearings
- F04C2240/56—Bearing bushings or details thereof
Definitions
- the present invention relates to a gear pump according to the preamble of claim 1.
- Screw pumps include, inter alia, internal gear and gerotor pumps in which a driving gear is eccentric in the internal toothing of a toothed ring.
- Internal gear pumps which are particularly suitable for providing high pressures, are used to deliver fluids, such as for example, to deliver fuel to an internal combustion engine.
- a delivery pump which is integrated in an electric motor.
- the feed pump comprises a first gear and a second gear. Between the two gears, a delivery chamber is formed.
- the second gear is stored in its center on a thorn.
- the first gear is an external gear and forms the rotor, the second gear is an internal gear, which is entrained in the eccentric center of the first gear.
- the first gear comprises glued permanent magnets, which are distributed over the circumference. External magnetic field generators generate a rotating, rotating field which causes direct motor following of the rotor.
- EP 1 600 635 A2 An internal gear pump is described which has a pump section with an inner rotor formed on its outer periphery with teeth.
- An outer rotor has teeth formed on its inner periphery. Both rotors are housed in a housing. The storage of the outer rotor formed as a toothed ring takes place here by means of specially shaped additional components.
- document JP 2005 098268 A discloses a gear pump with an electrically commutatable stator on which a sliding bearing is provided.
- document DE 102 48 933 C1 discloses an internal gear pump having an electric drive formed by a ring gear forming the interior of a rotor and a stator disposed adjacent thereto.
- a gear pump for conveying a fluid having a rotatably mounted externally toothed gear and an internally toothed ring, which are for generating a conveying effect in meshing engagement, and which are arranged together with an electrically commutatable stator in a housing, wherein the stator concentrically around extends around the toothed ring and cooperates with the toothed ring to produce an electromotive force, and wherein the toothed ring has a closed, homogeneous cylindrical surface and provided on the stator a sliding bearing is.
- the toothed ring made of sintered steel or plastic.
- the motor is designed as a permanent magnet synchronous motor and the magnets are integrated in the toothed ring.
- the motor is designed as a reluctance motor and in the toothed ring holes or special recesses are introduced to form magnetic poles by field weakening.
- the sliding bearing is formed on the stator as a layer applied to a surface of the stator opposite the toothed ring, so that the sliding bearing is integrated into the stator.
- the stator which may be a stator of a permanent magnet or reluctance motor, therefore advantageously acts on the inner diameter at the same time as a radial bearing for the rotor, which is designed as a toothed ring or outer ring of mecanic leopardrad- or ring gear pump.
- the sliding bearing serves primarily as a wear protection layer between stator and rotor.
- the sliding bearing provides a centering function for the rotor and can reduce or prevent axial gap losses with appropriate design. This improves the efficiency of the electric motor.
- the layer is designed with an extension, so that the stator rests against an inner wall of the housing with a bias voltage.
- the layer is designed so that the bias acts to push the slide bearing in the axial direction corresponding to the top or against the inner wall when mounting the lid. This results in no or a very small axial air gap and consequently occur only very small gap loss.
- the layer consists of plastic or of a non-ferromagnetic material, in particular of bronze.
- the layer has a layer thickness which is less than or equal to 0.3 mm. Since a sliding bearing with a thin layer thickness is integrated into the stator, a correspondingly small air gap between the stator and the rotor can be ensured, in particular in the case of the embodiment with reluctance motor. Consequently, a good efficiency of the electric motor can be displayed.
- the layer is sprayed, glued or vulcanized onto the stator.
- Fig. 1 shows a section through an internal gear pump 1 according to the prior art.
- the internal gear pump 1 comprises a pair of gears, which consists of an internally toothed ring gear 2 and an externally toothed gear 3.
- the gear 3 is arranged eccentrically to the toothed ring 2 rotatably on a bearing journal 4. If the toothed ring 2 is set in a rotational movement, then the external toothing of the toothed wheel 3 meshes in the internal toothing of the toothed ring 2 and generates a delivery volume flow of the fluid in which the teeth run.
- the gear pair of the toothed ring 2 and the gear 3 is arranged in a housing 5, wherein the bearing pin 4 is integrally formed or integrally with the housing 5.
- the toothed ring 2 is also rotatable with a magnetic ring 6, wherein the magnetic ring 6 extends radially around the toothed ring 2.
- the magnetic ring 6 runs in an inner side of a stator 7, which has an electric winding 8. If the electric winding 8 is commutated electrically by a controller, a circulating magnetic field is generated in the stator 7. Due to the rotating magnetic field of the magnet ring 6 is set in rotation, wherein due to the rotationally fixed connection of the magnet ring 6 with the toothed ring 2, the teeth consisting of the toothed ring 2 and the gear 3 is put into operation.
- the magnetic ring 6 is slidably mounted on the stator 7.
- the magnetic ring 6 is provided with a corresponding coating of a suitable sliding material. This design is problematic for the application of high discharge pressures and poorly lubricating liquids such as gasoline or diesel.
- connection cover 9 The open side of the housing 5 of the internal gear pump 1 is closed by means of a connection cover 9, wherein a sealing element 10 is provided for the fluid-tight sealing of the gaps between the connection cover 9 and the housing 5.
- the sealing element 10 is designed as an O-ring and is arranged in a corresponding circumferential groove (not shown) within the connection cover 9.
- Fig. 2 shows a cross section through an internal gear pump 1 according to one embodiment.
- a plurality of magnets 11 is provided (permanent magnet motor). If the electric motor is alternatively designed as a reluctance motor, then instead of the magnets 11 holes (not shown here) are provided for field weakening.
- a sliding bearing 13 is provided on a cylindrical surface 12 opposite the toothed ring 2, or the sliding bearing 13 is integrated in the stator 7.
- the slide bearing 13 serves primarily as a wear protection layer between the stator 7 and the rotor or the toothed ring 2.
- the slide bearing 13 has a centering function for the rotor or the toothed ring 2 and can reduce or prevent axial gap losses with appropriate design, as in Related to Fig. 3 will be explained in more detail.
- the sliding bearing 13 is formed by a thin layer of plastic sprayed onto the stator 7.
- Fig. 3 shows a longitudinal section through the internal gear pump 1 of Fig. 2 ,
- the sliding bearing 13 which is applied to the stator 7 and injected into the stator 7, is formed as a layer having a thickness of less than 0.3 mm, which axially with respect to an inner wall 14 of the housing 5 with an extension 15 is designed such that a bias by conditioning the layer on the inner wall 14 of the housing 5 is formed.
- the sliding bearing 13 is pressed in the axial direction against the inner wall 14.
- this special embodiment of the sliding bearing 13 can be used as an axial circumferential seal.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Rotary Pumps (AREA)
- Details And Applications Of Rotary Liquid Pumps (AREA)
Claims (7)
- Pompe à engrenage (1) pour refouler un fluide avec un engrenage (3) à denture extérieure monté à rotation et une bague dentée à denture intérieure (2), lesquels sont en prise d'engrènement pour produire un effet de refoulement, et lesquels sont disposés conjointement avec un stator commutable électriquement (7) dans un boîtier (5), le stator (7) s'étendant concentriquement autour de la bague dentée (2) et coopérant avec la bague dentée pour produire une force électromotrice,
la bague dentée (2) possédant une surface cylindrique homogène fermée et un palier lisse (13) étant prévu sur le stator (7), le palier lisse (13) étant réalisé sur le stator (7) sous forme de couche appliquée sur une surface (12) du stator (7) opposée à la bague dentée (2), caractérisée en ce que
la couche est réalisée avec une saillie (15), de telle sorte que le stator (7) s'applique avec une précontrainte contre une paroi interne (14) du boîtier (5). - Pompe à engrenage (1) selon la revendication 1,
caractérisée en ce que
la couche se compose de matière plastique ou d'un matériau non ferromagnétique, en particulier de bronze. - Pompe à engrenage (1) selon la revendication 1 ou 2,
caractérisée en ce que
la couche présente une épaisseur de couche inférieure ou égale à 0,3 mm. - Pompe à engrenage (1) selon les revendications 1 à 3,
caractérisée en ce que
la couche est pulvérisée, collée ou vulcanisée sur le stator (7). - Pompe à engrenage (1) selon les revendications 1 à 4,
caractérisée en ce que
la bague dentée (2) se compose d'acier fritté ou de plastique. - Pompe à engrenage (1) selon les revendications 1 à 5,
caractérisée en ce que
le moteur est réalisé sous forme de moteur synchrone à aimant permanent et les aimants (11) sont intégrés dans la bague dentée (2). - Pompe à engrenage (1) selon les revendications 1 à 5,
caractérisée en ce que
le moteur est réalisé sous forme de moteur à réluctance et des trous ou des évidements sont réalisés dans la bague dentée (2), afin de réaliser des pôles magnétiques par affaiblissement du champ.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102009028148A DE102009028148A1 (de) | 2009-07-31 | 2009-07-31 | Zahnradpumpe |
PCT/EP2010/057820 WO2011012362A2 (fr) | 2009-07-31 | 2010-06-04 | Pompe à roue dentée |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2459879A2 EP2459879A2 (fr) | 2012-06-06 |
EP2459879B1 true EP2459879B1 (fr) | 2013-08-14 |
Family
ID=43402326
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP10724490.7A Not-in-force EP2459879B1 (fr) | 2009-07-31 | 2010-06-04 | Pompe à roue dentée |
Country Status (8)
Country | Link |
---|---|
US (1) | US9163626B2 (fr) |
EP (1) | EP2459879B1 (fr) |
JP (1) | JP5563078B2 (fr) |
CN (1) | CN102483057B (fr) |
DE (1) | DE102009028148A1 (fr) |
ES (1) | ES2426474T3 (fr) |
RU (1) | RU2543106C2 (fr) |
WO (1) | WO2011012362A2 (fr) |
Families Citing this family (16)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE112013001156A5 (de) | 2012-02-27 | 2014-12-11 | Magna Powertrain Bad Homburg GmbH | Pumpenanordnung |
CA2898451A1 (fr) * | 2013-03-14 | 2014-09-18 | Allison Transmission, Inc. | Pompe electrique pour un vehicule hybride |
ITUB20155909A1 (it) * | 2015-11-25 | 2017-05-25 | Bosch Gmbh Robert | Pompa ad ingranaggi |
DE102016200013B4 (de) * | 2016-01-04 | 2022-11-03 | Röchling Automotive SE & Co. KG | Pumpe |
ITUB20161058A1 (it) * | 2016-02-25 | 2017-08-25 | Bosch Gmbh Robert | Gruppo di pompaggio per alimentare combustibile, preferibilmente gasolio, ad un motore a combustione interna |
ITUA20163309A1 (it) * | 2016-05-10 | 2017-11-10 | Bosch Gmbh Robert | Gruppo di pompaggio per alimentare combustibile, preferibilmente gasolio, ad un motore a combustione interna |
DE102016224898A1 (de) * | 2016-12-14 | 2018-06-14 | Zf Friedrichshafen Ag | Pumpeneinrichtung für ein Automatikgetriebe |
IT201600130240A1 (it) * | 2016-12-22 | 2018-06-22 | Bosch Gmbh Robert | Pompa elettrica a ingranaggi |
IT201600130258A1 (it) * | 2016-12-22 | 2018-06-22 | Bosch Gmbh Robert | Pompa elettrica a ingranaggi |
IT201600130278A1 (it) * | 2016-12-22 | 2018-06-22 | Bosch Gmbh Robert | Pompa elettrica a ingranaggi |
EP3382888B1 (fr) * | 2017-03-31 | 2020-06-17 | Grundfos Holding A/S | Ensemble de pompe et procédé de commande |
CN107905997B (zh) * | 2017-10-19 | 2019-03-08 | 浙江大学 | 一种耐磨损的水液压内啮合齿轮泵的齿圈结构 |
US10927833B2 (en) * | 2018-05-15 | 2021-02-23 | Schaeffler Technologies AG & Co. KG | Integrated eccentric motor and pump assembly |
IT201800006043A1 (it) * | 2018-06-05 | 2019-12-05 | Metodo di assemblaggio di una pompa ad ingranaggi | |
CN111677662A (zh) * | 2019-08-13 | 2020-09-18 | 涌镇液压机械(上海)有限公司 | 由外转子驱动吸油的液压泵 |
DE102022129887A1 (de) | 2022-11-11 | 2024-05-16 | Schaeffler Technologies AG & Co. KG | Gerotor-Elektropumpe mit im Außenzahnrad integriertem Rotor |
Family Cites Families (21)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2345975A (en) * | 1938-12-24 | 1944-04-04 | Vickers Inc | Power transmission pump or motor |
US2761078A (en) * | 1952-03-29 | 1956-08-28 | Wetmore Hodges | Electrical motor pump or compressor |
CH647048A5 (de) * | 1980-07-11 | 1984-12-28 | Maag Zahnraeder & Maschinen Ag | Zahnradpumpe. |
US4750847A (en) * | 1987-09-03 | 1988-06-14 | Quadion Corporation | L-shaped bearing assembly |
JPH01174584U (fr) * | 1988-05-27 | 1989-12-12 | ||
US5145329A (en) * | 1990-06-29 | 1992-09-08 | Eaton Corporation | Homoplanar brushless electric gerotor |
US5169242A (en) * | 1990-11-27 | 1992-12-08 | General Motors Corporation | Turbocharger assembly and stabilizing journal bearing therefor |
US6053705A (en) * | 1996-09-10 | 2000-04-25 | Sulzer Electronics Ag | Rotary pump and process to operate it |
DE19651683A1 (de) * | 1996-12-12 | 1998-06-18 | Otto Eckerle | Füllstücklose Innenzahnradpumpe |
JPH11210642A (ja) * | 1998-01-20 | 1999-08-03 | Zexel:Kk | 内接ギアポンプ |
DE10248933C1 (de) * | 2002-10-19 | 2003-12-11 | Pumpenfabrik Ernst Scherzinger | Innen-Zahnradpumpe mit einem verzahnten Hohlrad und einem damit kämmenden Laufrad |
JP2004232578A (ja) * | 2003-01-31 | 2004-08-19 | Koyo Seiko Co Ltd | 電動トロコイドポンプ |
JP4245997B2 (ja) * | 2003-07-07 | 2009-04-02 | 直樹 宮城 | 小形ギアポンプ |
JP2005098268A (ja) | 2003-09-26 | 2005-04-14 | Koyo Seiko Co Ltd | 電動内接ギアポンプ |
DE10359820A1 (de) | 2003-12-19 | 2005-07-21 | Siemens Ag | Einrichtung zum Fixieren einer Magnetschiene eines elektrischen Linearmotors an einem Träger |
US7137793B2 (en) | 2004-04-05 | 2006-11-21 | Peopleflo Manufacturing, Inc. | Magnetically driven gear pump |
JP4272112B2 (ja) | 2004-05-26 | 2009-06-03 | 株式会社日立製作所 | モータ一体型内接歯車式ポンプ及び電子機器 |
US20060039815A1 (en) * | 2004-08-18 | 2006-02-23 | Allan Chertok | Fluid displacement pump |
JP2007009787A (ja) | 2005-06-30 | 2007-01-18 | Hitachi Ltd | モータ一体型内接歯車式ポンプ及び電子機器 |
DE102006007554A1 (de) | 2006-02-16 | 2007-08-23 | Hydraulik-Ring Gmbh | Förderpumpe, insbesondere für Harnstoffwasserlösung als Abgasnachbehandlungsmedium |
DE102007060906B3 (de) * | 2007-12-14 | 2009-10-15 | Ab Skf | Lageranordnung für eine Tragrolle |
-
2009
- 2009-07-31 DE DE102009028148A patent/DE102009028148A1/de not_active Withdrawn
-
2010
- 2010-06-04 EP EP10724490.7A patent/EP2459879B1/fr not_active Not-in-force
- 2010-06-04 RU RU2012107226/06A patent/RU2543106C2/ru active
- 2010-06-04 ES ES10724490T patent/ES2426474T3/es active Active
- 2010-06-04 US US13/387,412 patent/US9163626B2/en not_active Expired - Fee Related
- 2010-06-04 JP JP2012522052A patent/JP5563078B2/ja not_active Expired - Fee Related
- 2010-06-04 WO PCT/EP2010/057820 patent/WO2011012362A2/fr active Application Filing
- 2010-06-04 CN CN201080038547.0A patent/CN102483057B/zh not_active Expired - Fee Related
Also Published As
Publication number | Publication date |
---|---|
CN102483057B (zh) | 2015-05-20 |
DE102009028148A1 (de) | 2011-02-03 |
ES2426474T3 (es) | 2013-10-23 |
WO2011012362A3 (fr) | 2011-12-22 |
CN102483057A (zh) | 2012-05-30 |
US9163626B2 (en) | 2015-10-20 |
WO2011012362A2 (fr) | 2011-02-03 |
EP2459879A2 (fr) | 2012-06-06 |
US20120171061A1 (en) | 2012-07-05 |
JP5563078B2 (ja) | 2014-07-30 |
RU2012107226A (ru) | 2013-09-10 |
JP2013500428A (ja) | 2013-01-07 |
RU2543106C2 (ru) | 2015-02-27 |
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