EP1183468A1 - Pompe a haute pression a moyeu perfectionne - Google Patents
Pompe a haute pression a moyeu perfectionneInfo
- Publication number
- EP1183468A1 EP1183468A1 EP00936968A EP00936968A EP1183468A1 EP 1183468 A1 EP1183468 A1 EP 1183468A1 EP 00936968 A EP00936968 A EP 00936968A EP 00936968 A EP00936968 A EP 00936968A EP 1183468 A1 EP1183468 A1 EP 1183468A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- hub
- housing
- axial positioning
- liquid
- shoulder
- 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.)
- Granted
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04B—POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
- F04B43/00—Machines, pumps, or pumping installations having flexible working members
- F04B43/02—Machines, pumps, or pumping installations having flexible working members having plate-like flexible members, e.g. diaphragms
- F04B43/06—Pumps having fluid drive
- F04B43/067—Pumps having fluid drive the fluid being actuated directly by a piston
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04B—POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
- F04B1/00—Multi-cylinder machines or pumps characterised by number or arrangement of cylinders
- F04B1/12—Multi-cylinder machines or pumps characterised by number or arrangement of cylinders having cylinder axes coaxial with, or parallel or inclined to, main shaft axis
- F04B1/14—Multi-cylinder machines or pumps characterised by number or arrangement of cylinders having cylinder axes coaxial with, or parallel or inclined to, main shaft axis having stationary cylinders
- F04B1/141—Details or component parts
- F04B1/146—Swash plates; Actuating elements
- F04B1/148—Bearings therefor
Definitions
- the present invention relates to a high pressure pump with an improved hub.
- the liquid transferred is the fuel.
- a high pressure pump for pumping a first liquid, called transferred liquid of the type comprising a main unit for pumping the transferred liquid actuated by a secondary unit for pumping a second liquid, called working liquid, the secondary unit comprising a hub rotatably mounted in a housing forming a bearing, and at least one working liquid compression piston, movable substantially parallel to the axis of rotation of the hub, resiliently biased against a bias actuation plate of this piston, carried by the hub.
- a pump of this type is described for example in WO 97/47883.
- the pump hub described in this document is rotatably mounted in the housing by means of ball bearings ensuring the rotational guidance and the axial positioning of the hub in the housing.
- ball bearings have the disadvantages of being bulky, relatively heavy and expensive, and sometimes sources of noise.
- the object of the invention is to propose a high pressure pump, of the aforementioned type, having means for guiding in rotation and axial positioning of the hub in the housing that are effective, simple and compact.
- the invention relates to a high pressure pump, of the aforementioned type, characterized in that the hub comprises a peripheral cylindrical surface for guiding in rotation in the housing, extended by a shoulder for axial positioning of the hub in the housing, the peripheral guide surface and the axial positioning shoulder respectively cooperating with complementary means for guiding in rotation and additional axial positioning means carried by the housing, the axial positioning shoulder being urged to bear against the complementary means axial positioning carried by the housing by the elastic return force of the piston and the pressure of the working liquid in contact with the bias plate.
- the peripheral guide surface is formed by the external surface of a sleeve, the axial positioning shoulder being formed by one face of a ring attached to this sleeve;
- the peripheral guide surface and the axial positioning shoulder are formed by the external surface of a tubular stage member in one piece;
- the peripheral guide surface is formed by the external surface of a sleeve, the axial positioning shoulder being delimited by a flange extending one end of this sleeve;
- the complementary means for guiding in rotation comprise a cylindrical surface for bearing in sliding contact with the peripheral surface for guiding the hub, and the complementary means for axial positioning comprising a plane surface for bearing in sliding contact with the shoulder;
- the cylindrical bearing surface is formed by the internal surface of a jacket of the housing, the planar bearing surface being formed by one face of a washer disposed at one end of the sleeve;
- the cylindrical bearing surface is formed by the internal surface of a sleeve, the plane bearing surface being delimited by a flange extending one end of the sleeve;
- the additional means for guiding in rotation comprise rolling needles, carried by the housing, extending substantially parallel to the axis of rotation of the hub, and the additional means for axial positioning comprise rolling needles, carried by the housing , extending substantially radially with respect to the axis of rotation of the hub;
- the transferred liquid is a fuel for an internal combustion engine of a motor vehicle.
- FIG. 1 is a front view of a high pressure pump according to the invention.
- FIG. 2 is a sectional view along line 2-2 of Figure 1;
- - Figure 3 is a sectional view along line 3-3 of Figure 1;
- FIG. 4 is a detail view of Figure 2 in which the cutting plane has been slightly offset so as to pass through the axis of the screw shown in these Figures 2 and 4;
- - Figure 5 is a detail view of the surrounded part 5 of Figure 3 showing a plug for closing means for filling a reservoir of the pump in a pre-sealing position;
- FIG. 6 is a view similar to Figure 5 showing a first variant of the plug
- Figure 7 is a view similar to Figure 3 showing a second variant of the plug
- FIGS. 1 to 3 show a high pressure pump according to the invention, designated by the general reference 12.
- the pump 12 is intended for supplying high pressure fuel to an engine with internal combustion of motor vehicle.
- the pump 12 is therefore intended to pump a first liquid, namely fuel in the example described, called the transferred liquid.
- the pump 12 comprises a housing 16 of generally cylindrical shape, of axis X, in which are arranged a main unit 18 for pumping fuel and a secondary unit 20 for pumping a second conventional liquid, for example a mineral oil, called a working liquid.
- the main unit 18 is actuated by the secondary unit 20 according to general general operating principles described for example in WO 97/47883.
- the housing 16 comprises a body 22, of generally cylindrical shape, surrounding the secondary unit 20, and a cover 24, of generally cylindrical shape, surrounding the main unit 18.
- the housing body 22 and the cover 24 respectively form two ends opposite the housing 16.
- the housing body 22 is connected to the cover 24 by at least one screw 26, for example three screws 26.
- a screw 26 will be described in more detail detail later.
- the main unit 18 is separated from the secondary unit 20 by a separation disc 28 centered substantially on the axis X.
- This disc 28 is preferably made of steel or cast iron.
- the main unit 18 comprises at least one flexible membrane 30 for pumping fuel, for example three membranes 30 as in the example illustrated. It will be noted that only two membranes 30 are shown in the figures, in particular in FIG. 3.
- the membrane 30 separates a fuel pumping chamber 32, arranged in the main unit 18, from a chamber 34 for compressing working liquid. , arranged in the secondary unit 20.
- the volume of the pumping chamber 32 is variable.
- the compression chamber 34 is partially provided in the separation disc 28.
- Each pumping chamber 32 is associated with a fuel suction valve 36 and a fuel delivery valve 38.
- These valves 36, 38 are carried by a body 40 housed in the cover 24 between a bottom of the latter and the separation disc 28.
- the body 22 of the housing, the cover 24 and the valve body 40 are made of aluminum or an aluminum-based alloy or another equivalent light metal.
- valves 36, 38 are connected in a manner known per se to the corresponding pumping chamber 32 as well as to a safety valve 42 of conventional structure and operation.
- each membrane 30 can be moved between a first position of maximum volume of the pumping chamber 32, as shown in particular in FIGS. 2 and 3, and a second position of minimum volume of this pumping chamber (not shown in the figures).
- the displacements of the membrane 30 are imposed in particular by the secondary unit 20 and control the opening and closing of the fuel suction and discharge valves 36, 38.
- Each membrane 30 is constantly returned elastically to its first position by a spring 44, called a membrane spring.
- Each valve 36, 38 communicates, on the one hand, with a fuel suction chamber 46 and, on the other hand, a fuel delivery chamber 48.
- the suction chamber 46 is connected in a manner known per se to the fuel supply connector 14.
- the fuel suction 46 and discharge 48 chambers are delimited, at least in part, by facing surfaces 50, 52, of generally cylindrical shape, with an axis substantially coinciding with the axis X.
- a first surface 50 forms an inner surface of the cover 24.
- the second surface 52 forms a peripheral surface of the valve body 40.
- the facing surfaces 50, 52 comprise two complementary shoulders 50E, 52E bearing between them so as to form a sealed joint plane separating the suction 46 and discharge 48 chambers. This joint plane is substantially perpendicular to the axis X.
- the shoulders 50E, 52E form an effective metal-metal seal.
- suction chamber 46 in which the pressure is lower than in the discharge chamber 48, is delimited by the bottom of the cover 24, the thickness of which is relatively small.
- discharge chamber 48 is delimited by a peripheral wall of the cover 24 which is thicker than the bottom of this cover, so as to withstand the high pressure reached by the fuel circulating in this discharge chamber.
- the secondary unit 20 comprises a piston 54 for compressing working liquid associated with each membrane 30 and intended to move this membrane 30 between its two positions.
- the secondary unit 20 comprises three pistons 54 only two of which are visible in the figures, in particular in FIG. 3.
- the piston 54 is slidably mounted in a body 56, preferably made of steel or cast iron, so as to be movable substantially parallel to the axis X.
- the piston 54 extends between the chamber 34 for compression of the working liquid, formed partly in the piston body 56, and a reservoir 58 of working liquid.
- the end of the piston 54, external to the piston body 56, is elastically returned by a spring 59 in contact with a rolling stop, for example a needle stop 60, carried by a bias plate 62 for actuating the pistons 54
- This bias plate is carried by a hub 64 of the secondary unit 20.
- This hub 64 is rotatably mounted around the axis X in the body 22 of the housing forming a bearing.
- the bias plate 62 rotates around the axis X together with the hub 64, the latter being connected to conventional drive means by a seal 66 of the Oldham type.
- the sealing of the working liquid between the body 22 of the housing and the hub 64 is ensured by conventional means comprising in particular an annular seal 67 made of elastomer.
- the hub 64 will be described in more detail later.
- each screw 26 is provided with a head 26T and a threaded body 26C.
- the head 26T is supported on a passing seat 68 formed in the body 22 of the housing.
- the threaded body 26C is screwed into a threaded orifice 70 formed in an ear 72 integral with the cover 24.
- the axial dimension Ll of the intermediate assembly El is substantially equal to the length L2 of the part of the body 26C of the screw extending between the head 26T of this screw and the tapped orifice 70.
- the expansions of the different materials namely, on the one hand, aluminum or light metal and, on the other hand, steel or cast iron, are substantially identical inside and outside the housing 16 .
- the piston 54 is provided with an axial bore 74 through which the working liquid can flow between the reservoir 58 and the compression chamber 34.
- the bore 74 is stepped and comprises a section 74A of large diameter, opening into the compression chamber 34, and a section 74B of small diameter, opening into the reservoir 58.
- a ball, forming a valve 76 is housed in the section 74A of large diameter so as to be movable, on the one hand, between a shoulder E74, separating the sections 74A and 74B, forming a seat for closing the valve 76, and on the other hand, a stop 78 for limiting the opening stroke of this valve 76.
- the valve 76 opens as soon as the pressure of the working liquid in the reservoir 58 exceeds that of the working liquid in the compression chamber 34. Otherwise, the valve 76 closes so as to close the bore 74.
- the stiffness of the membrane return spring 44 associated with the piston 54 is dimensioned in such a way that this spring 44 maintains the working liquid contained in the compression chamber 34 under overpressure relative to the working liquid contained in the reservoir 58, this as long as the membrane 44 has not reached its first position of maximum volume of pumping chamber 32.
- main pumping 18 and secondary 20 units Some particular characteristics of the operation of the main pumping 18 and secondary 20 units will be indicated below, the main unit 18 operating according to the principles of a positive displacement pump.
- the membrane spring 44 allows the automatic return of the membrane 30 to its first position, this even in the absence of fuel in the main pumping unit 18. Furthermore, when the piston 54 moves towards the left considering Figures 2 and 3, given the leakage of working liquid between the compression chamber 34 and the reservoir 58, the membrane 30 reaches its first position before the piston 54 completes its stroke to the left. Consequently, once the membrane 30 reaches its first position, the pressure of the working liquid in the compression chamber 34 drops relative to that of the working liquid in the reservoir 58, which causes the valve 76 to open and replenishing the compression chamber 34 with working liquid so as to compensate for leaks.
- These filling means comprise a filling neck 80, connected to the reservoir 58, closable by a plug 82.
- the plug 82 is intended to cooperate by screwing with the neck 80.
- the plug 82 has a blind hole 84, substantially axial, communicating by means of a bore 86 of the plug , substantially radial, with a peripheral recess 88 of the plug extended axially by a sealing surface 90 of this plug intended to cooperate with a sealing seat 92 formed in the end of the neck 80 close to the reservoir 58.
- the shutter surface 90 and the shutter seat 92 have generally conical shapes, the shutter surface 90 converging towards the shutter seat 92.
- the plug 82 can be moved in the neck 80, by screwing, between a pre-closing position of the reservoir 58, in which the closing surface 90 is spaced from the seat 92, above this seat 92, as shown in FIG. 5, and a closing position of this reservoir 58, in which the closure surface 90 is in sealed contact with the seat 92, as shown in FIG. 3.
- the neck 80 is likely to contain an excess of working liquid in excess of the reservoir, the level No of this overflow extending into the neck 80 above the seat 92.
- the plug 82 when the plug 82 is in its pre-sealing position, the peripheral recess 88 of this plug communicates with the reservoir 58, so that the blind hole 84 forms a receptacle for the overflow of working liquid. Furthermore, in the presence of the overflow in the neck 80, the plug 82 can be moved in this neck between its pre-shutting and shutter positions.
- the plug 82 To move the plug 82, the latter is provided with an operating head 82T through which opens the open end of the blind hole 84.
- the head 82T is delimited by an inner polygonal surface 821 allowing the operation of the plug
- the maneuvering head 82T can be delimited by a polygonal outer surface 82E as shown in FIG. 6, for maneuvering the plug 82 using a conventional tool.
- the plug 82 carries a peripheral O-ring 93 positioned axially between the head 82T and the recess 88. This seal 93 seals between the neck 80 and the plug 82 above the recess 88.
- the plug 82 makes it possible to fill the reservoir 58 under vacuum in the following manner.
- the plug 82 is screwed into the neck 80 in its pre-sealing position as shown in FIG. 5.
- vacuum is produced in this reservoir, using conventional means, then the working liquid is introduced through the blind hole 84 of the plug. In this way, the working liquid flows into the reservoir 58 by circulating in the blind hole 84, the radial bore 86 and the recess 88.
- the filling of the reservoir 58 is continued until an overflow remains in the neck 80 and the blind hole 84, as shown in FIG. 5.
- the plug 82 is moved by screwing to its closed position as shown in FIG. 3.
- the reservoir 58 is then isolated from the filling neck 80, the quantity of working liquid remaining in the blind hole
- the reservoir 58 is connected to conventional means 94 for compensating for the expansion of the working liquid contained in the reservoir 58.
- These means comprise a flexible membrane 96 separating a channel 98 for setting communication of the membrane 96 with the working liquid of the reservoir 58 and a space 100 for release of the membrane 96 protected by a shell 102 of generally hemispherical shape.
- the membrane 96 deforms as a function of the variations in the volume of working liquid contained in the reservoir 58.
- the plug 82 comprises a ball 104 which can be forcibly moved between a position for pre-closing the reservoir 58, as shown in dashed lines in the figure. 7, and a position for closing off this reservoir 58, as shown in solid lines in this FIG. 7.
- the surface of the ball 104 forms the sealing surface intended to cooperate in a sealed manner with the seat 92 of the neck.
- the filling neck 80 is closed using the ball 104 as follows.
- the ball 104 In the presence of the overflow of working liquid, the level N of which is shown in dashed lines in FIG. 7, the ball 104 is placed in its pre-sealing position. as shown in phantom in this figure 7. Then, the ball 104 is forcibly moved into the neck 80 so as to press it against the seat 92, as shown in solid line in Figure 7.
- the hub 64 will be described below in more detail with reference to FIG. 3.
- the hub 64 comprises a sleeve
- the hub 64 also includes a ring 108 fixed to the external surface of the sleeve 106.
- the external surface of the sleeve 106 forms a peripheral cylindrical surface SG for guiding the hub in rotation in the housing body 22.
- One face of the ring 108 forms a shoulder FE for axial positioning of the hub 64 relative to the body 22 of the housing.
- the housing body 22 comprises a jacket 110, the internal surface of which forms a cylindrical surface with a bearing surface SP in sliding contact with the peripheral guide surface SG of the hub.
- the housing body 22 also includes a washer 112, disposed at one end of the jacket 110, provided with a face forming a plane surface of bearing range FP in sliding contact with the shoulder FE of the hub.
- the jacket 110 and the washer 112 are fixed in a manner known per se to the housing body 22 and are made of conventional materials, preferably with a low coefficient of friction.
- the shoulder FE of the hub 64 extending the guide surface SG of this hub, is urged to bear against the bearing face FP of the housing body 22 by the elastic return force of the pistons 54 in contact with the stop. with needles 60 as well as by the pressure of the working liquid in contact with the bias plate 62.
- the cylindrical surface of bearing SP is formed by the internal surface of a sleeve 114, carried by the body 22 of housing, provided with one end extended by a flange 116 delimiting the flat surface of range FP.
- the peripheral guide surface SG of the hub is formed by the external surface of a sleeve 118, in which is housed the bias plate 62, provided with an end extended by a collar 120 delimiting the axial positioning shoulder FE of the hub.
- the sleeve 118 of the hub cooperates with a sleeve 114 secured to the housing body 22 of the type shown in FIG. 8.
- the peripheral guide surface SG and the axial positioning shoulder FE of the hub are formed by the external surface of a tabular stage member 122, in one piece, in which the bias plate 62 is housed.
- the stage member 122 can be easily manufactured in a conventional manner, in particular by stamping, treatment and rectification.
- the stage member 122 is in sliding contact with a cylindrical surface with a range SP and a flat surface with a range FP formed on elements similar to those shown in FIG. 3.
- the peripheral guiding surface SG of the stage member 122 is in contact with rolling needles 124 extending substantially parallel to the axis X, and the axial positioning shoulder FE is in contact with rolling needles 126, extending substantially radially with respect to the axis X.
- the needles 124, 126 are carried by cages 128, 130 fixed in a manner known per se on the housing body 22.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Reciprocating Pumps (AREA)
- Details Of Reciprocating Pumps (AREA)
- Fuel-Injection Apparatus (AREA)
Abstract
Description
Claims
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR9907215 | 1999-06-08 | ||
| FR9907215A FR2794812B1 (fr) | 1999-06-08 | 1999-06-08 | Pompe a haute pression a moyeu perfectionne |
| PCT/FR2000/001466 WO2000075515A1 (fr) | 1999-06-08 | 2000-05-29 | Pompe a haute pression a moyeu perfectionne |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP1183468A1 true EP1183468A1 (fr) | 2002-03-06 |
| EP1183468B1 EP1183468B1 (fr) | 2006-01-04 |
Family
ID=9546515
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP00936968A Expired - Lifetime EP1183468B1 (fr) | 1999-06-08 | 2000-05-29 | Pompe a haute pression a moyeu perfectionne |
Country Status (7)
| Country | Link |
|---|---|
| US (1) | US6554582B1 (fr) |
| EP (1) | EP1183468B1 (fr) |
| JP (1) | JP2003501587A (fr) |
| DE (1) | DE60025351T2 (fr) |
| ES (1) | ES2253230T3 (fr) |
| FR (1) | FR2794812B1 (fr) |
| WO (1) | WO2000075515A1 (fr) |
Family Cites Families (13)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2381056A (en) * | 1942-10-19 | 1945-08-07 | New York Air Brake Co | Pump |
| FR1096453A (fr) * | 1953-10-14 | 1955-06-21 | Rech Etudes Production Sarl | Dispositif pour le graissage de pompes rotatives et structures similaires |
| US3143973A (en) * | 1960-03-28 | 1964-08-11 | Weatherhead Co | Axial piston pump drive |
| US3775030A (en) * | 1971-12-01 | 1973-11-27 | Wanner Engineering | Diaphragm pump |
| JPS50153143A (fr) * | 1974-05-31 | 1975-12-09 | ||
| US4221545A (en) * | 1977-10-08 | 1980-09-09 | Sankyo Electric Company Limited | Support mechanism of a wobble plate in a compressor unit |
| JPS58187615U (ja) * | 1982-06-09 | 1983-12-13 | 日本精工株式会社 | 複合軸受ユニツト |
| JPH0431692A (ja) * | 1990-05-24 | 1992-02-03 | Osaka Shinku Kiki Seisakusho:Kk | 真空ポンプの軸受装置 |
| EP0558389B1 (fr) * | 1992-02-28 | 1996-01-10 | Hydro Rene Leduc | Pompe hydraulique à pistons munis de clapets d'aspiration |
| JPH0629367U (ja) * | 1992-09-11 | 1994-04-15 | 株式会社三協精機製作所 | 小型電動機 |
| FR2716239B1 (fr) * | 1994-02-16 | 1996-05-15 | Peugeot | Pompe à cylindrée variable et à pistons et barillet. |
| FR2721352B1 (fr) * | 1994-06-17 | 1996-09-06 | Leduc Rene Hydro Sa | Pompe à haute pression pour alimenter des injecteurs d'essence pour moteurs à explosion. |
| EP1048849B1 (fr) | 1996-06-07 | 2005-03-16 | Hydro Leduc | Pompe à haute pression pour tous liquides |
-
1999
- 1999-06-08 FR FR9907215A patent/FR2794812B1/fr not_active Expired - Fee Related
-
2000
- 2000-05-29 EP EP00936968A patent/EP1183468B1/fr not_active Expired - Lifetime
- 2000-05-29 WO PCT/FR2000/001466 patent/WO2000075515A1/fr not_active Ceased
- 2000-05-29 DE DE60025351T patent/DE60025351T2/de not_active Expired - Lifetime
- 2000-05-29 ES ES00936968T patent/ES2253230T3/es not_active Expired - Lifetime
- 2000-05-29 US US10/009,364 patent/US6554582B1/en not_active Expired - Lifetime
- 2000-05-29 JP JP2001501765A patent/JP2003501587A/ja active Pending
Non-Patent Citations (1)
| Title |
|---|
| See references of WO0075515A1 * |
Also Published As
| Publication number | Publication date |
|---|---|
| FR2794812B1 (fr) | 2003-02-21 |
| JP2003501587A (ja) | 2003-01-14 |
| ES2253230T3 (es) | 2006-06-01 |
| FR2794812A1 (fr) | 2000-12-15 |
| EP1183468B1 (fr) | 2006-01-04 |
| DE60025351T2 (de) | 2006-09-28 |
| DE60025351D1 (de) | 2006-03-30 |
| US6554582B1 (en) | 2003-04-29 |
| WO2000075515A1 (fr) | 2000-12-14 |
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