CN101787944B - Fuel pump - Google Patents

Fuel pump Download PDF

Info

Publication number
CN101787944B
CN101787944B CN2009101766267A CN200910176626A CN101787944B CN 101787944 B CN101787944 B CN 101787944B CN 2009101766267 A CN2009101766267 A CN 2009101766267A CN 200910176626 A CN200910176626 A CN 200910176626A CN 101787944 B CN101787944 B CN 101787944B
Authority
CN
China
Prior art keywords
pump
fuel
flow
petrolift
core ring
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 - Fee Related
Application number
CN2009101766267A
Other languages
Chinese (zh)
Other versions
CN101787944A (en
Inventor
吉冈浩
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.)
Mitsubishi Electric Corp
Original Assignee
Mitsubishi Electric Corp
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 Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Publication of CN101787944A publication Critical patent/CN101787944A/en
Application granted granted Critical
Publication of CN101787944B publication Critical patent/CN101787944B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Structures Of Non-Positive Displacement Pumps (AREA)

Abstract

The invention provides a fuel pump, capable of effectively preventing a counter-flow area from generating in a pump flow path and promoting rotational flow formation to increase the flow rate and the flow speed of the fuel thereby increasing the pump efficiency. The fuel pump comprises a circular-plate shaped rotation component with a seal part at the perimeter and a blade plate (32) at the inner perimeter; a flow component (40,50) rotatably housing the rotation component and comprising a pump groove for forming a pump flow (11), wherein the pump groove is formed into an arc shape along the blade plate and provided with a fuel inlet (51) and a fuel outlet (41) and the fuel sucked through the fuel inlet is discharged from the fuel outlet through the pump flow by rotating by the rotation component and the fuel pump comprises a C shaped core ring (60) and arranged in the pump flow (11) between the fuel inlet and the fuel outlet and the section center is approximately same to the center of the rotation flow generated in the pump flow (11).

Description

Petrolift
Technical field
The present invention relates to a kind of petrolift that will spray from the fuel that fuel tank sucks.
Background technique
Current, known in the petrolift of the eddy flow through in the pump stream, generating fluid as the rotation of the impeller of rotary component, remain in a standstill in order to prevent that core at eddy flow from producing; Thereby for example patent documentation 1 disclosed that kind is provided with guide portion, and it is positioned at the approximate center of eddy flow; Preventing to remain in a standstill produces, and improves flow fuel and flow velocity in the pump stream, improves pump efficiency; Wherein, above-mentioned impeller forms discoideus, has vane plate in its outer periphery.
Patent documentation 1: the spy opens flat 7-133786 communique
Summary of the invention
In petrolift as noted above, because the viscous flow of eddy flow core is regional and be in a ratio of low pressure on every side, so the flow direction inner with respect to the pump stream becomes the adverse current zone.Under the situation between the vane plate of core at impeller of eddy flow, owing to being blocked by each vane plate in the adverse current zone, so the influence of adverse current is less.
On the contrary, eddy flow be centered close to impeller when outside, the influence in adverse current zone becomes big, pump efficiency descends.In described existing technology, because the guide portion of eddy flow is arranged between the vane plate of impeller,, that is, when eddy flow is centered close to the impeller outside, can't prevent to remain in a standstill so produce following problems, can't produce the effect that prevents adverse current.
The present invention proposes in view of said problem points, and its purpose is to provide a kind of petrolift, and it prevents to produce the adverse current zone in pump stream inside effectively, and promotes eddy flow to form and raising flow fuel and flow velocity, thereby improves pump efficiency.
The present invention is a kind of petrolift, and it has: discoideus rotary component, and its outer periphery have sealed department, and week have vane plate in it; And channel member, it rotatably accommodates said rotary component, has the pump groove that forms the pump stream; This pump groove forms circular-arc along said vane plate; This pump groove is provided with fuel inlet and fuel outlet, and this petrolift is rotated through said rotary component, thereby will discharge from said fuel outlet via said pump stream from the fuel that said fuel inlet sucks; It is characterized in that; This petrolift has the core ring (corering) of C word shape, and it is arranged on the inside of the said pump stream between said fuel inlet and the said fuel outlet, and the section center of this core ring is roughly consistent with the center of the eddy flow that in said pump stream, produces.
The effect of invention
According to petrolift involved in the present invention, the core ring can prevent that the viscous flow that in the pump stream, takes place owing to the eddy flow center from producing the adverse current zone, promotes eddy flow to form.Thus, the flow velocity of the fuel in the pump stream and flow are increased, thereby improve pump efficiency.In addition, because the core annular is formed between fuel inlet to the fuel outlet in the pump stream, so can be with the part that does not form the pump stream as sealed department.Thus, sealed department can be guaranteed sealing along circumferentially continuously.
Description of drawings
Fig. 1 is the sectional drawing of the petrolift of representing that schematically one embodiment of the present of invention are related.
Fig. 2 is the schematic representation of the pump stream of the related petrolift of expression one embodiment of the present of invention, is the enlarged view (II of encirclement portion of Fig. 1) of impeller outer perimembranous periphery.
Fig. 3 is the sectional drawing that the III-III line along Fig. 1 cuts off.
Fig. 4 is the sectional drawing that the IV-IV line along Fig. 1 cuts off.
Fig. 5 is the plan view of the impeller of the related petrolift of expression one embodiment of the present of invention.
Fig. 6 is the oblique drawing of the core ring of the related petrolift of expression one embodiment of the present of invention.
Fig. 7 is other embodiment's of expression core ring a oblique drawing.
Embodiment
Embodiment
Below, based on the description of drawings embodiments of the invention.In Fig. 1, petrolift 1 is housed in the fuel supply system of for example electronic type fuel injection system in the fuel tank of vehicle etc., and the fuel that will from fuel tank, suck is supplied with to engine side.
Petrolift 1 is by pump portion 10 and this pump portion 10 is carried out drive electric motor portion 20 constitute.Motor part 20 is the direct current motors that have brush, and it constitutes, and ring-type configuration permanent magnet in shell 21 cylindraceous is at interior all side configuration armatures 22 of this permanent magnet.
Armature 22 rotatably is housed in the motor part 20, and coil is wrapped on the periphery of iron core 23.Commutator 24 forms discoideus, is configured in the top of armature 22.Never illustrated power supply is via being embedded in the terminal 26 in the connector 25, not shown brush and commutator 24, to the coil supply capability.Supply with the electric power that come and after being rotated armature 22 utilization, as running shaft 27 rotations of the impeller 30 of rotary component with armature 22.
Pump portion 10 is made up of impeller 30, housing body 40 and housing cover body 50.Fig. 2 illustrates the enlarged view (II of encirclement portion of Fig. 1) of impeller outer perimembranous periphery; Fig. 3 illustrates the slip surface (the section III-III of Fig. 1) of the housing cover body 50 that slides with respect to impeller 30; Fig. 4 illustrates the slip surface (the section IV-IV of Fig. 1) of housing body 40, and Fig. 5 illustrates impeller 30.Impeller 30 is so-called side channel types, and its formation is roughly discoideus, has the outer shroud 80 as sealed department in outer periphery, and all within it sides have vane plate 32.Constitute a channel member by housing body 40 and housing cover body 50, impeller 30 is rotatably accommodated by portion within it.
Impeller 30 rotates if follow the rotation of armature 22; Then to pump stream 11, suck fuel from the fuel inlet 51 that forms at housing cover body 50; This fuel is accepted kinetic energy from each vane plate 32 of impeller 30;, discharge through the fuel outlet 41 in housing body 40 formation shown in Figure 4 from pump stream 11 to fuel chambers 12.Be expelled to the fuel of fuel chambers 12, around armature 22, be expelled to the outside of petrolift 1 from ejiction opening 28.In ejiction opening 28, accommodate safety check 29, this safety check 29 prevents from the fuel adverse current of ejiction opening 28 ejections.
As shown in Figure 1, housing body 40 and housing cover body 50 for example form through cast aluminium forming.Housing body 40 is pressed on the side end that is fixed on shell 21, therein the chimeric bearing 13 of the heart.Housing cover body 50 is fixed on the end of shell 21 through riveted joint etc. under the state that is covered by housing body 40.Be pressed at the center of housing cover body 50 and be fixed with thrust-bearing 14.One side end of the running shaft 27 of armature 22 is rotatably supported by bearing 13 diametrically, simultaneously, and by the load on the thrust-bearing 14 bearing thrust directions.The end side of running shaft 27 is rotatably supported by bearing 15 diametrically.
On housing cover body 50, as shown in Figure 3, the pump groove 52 of formation pump stream 11 forms circular-arc along the vane plate 32 of impeller 30.In addition, as shown in Figure 4 in housing body 40, the pump groove 42 that forms pump stream 11 also forms circular-arc along the vane plate 32 of impeller 30.In housing cover body 50, form fuel inlet 51,, and the fuel in the not shown fuel tank is sucked into the pump stream 11 from fuel inlet 51 through impeller 30 rotations.Be sucked into the fuel in the pump stream 11; Pressurized owing to the rotation of impeller 30; Through the path 81 that forms between other vane plate 32 of vane plate in the impeller 30 32 and adjacency; And the pump stream 11 through on housing body 40, forming, pressurized owing to the rotation of impeller 30 once more, discharge to the fuel chambers 12 of motor part 20 from fuel outlet 41.
Like Fig. 2, Fig. 3 and shown in Figure 4, core ring 60 is arranged in the set inside of pump stream 11.Core ring 60 lays respectively in the pump groove 42 of pump groove 52 and housing body 40 of housing cover body 50, is arranged on the approximate center of pump stream 11, forms the C word shape of circumferential part of opening.In addition, core ring 60 is arranged between fuel inlet 51 to the fuel outlet 41 of pump stream 11.As shown in Figure 6, core ring 60 has circular section and forms the C word shape, and its two end part have to said pump groove 42 and 52 and are pressed into fixing fixedly axial region 82.Fixedly axial region 82 is bent into mild R shape on the axial rotary of impeller 30.
Applied the fuel behind the energy of the sense of rotation of impeller 30 by vane plate 32; Not only flow to sense of rotation; Also shown in the arrow of Fig. 2, be rotated as the center with the core ring of the approximate center that is arranged on pump stream 11 60, form the eddy flow that circles round along pump groove 42,52.Core ring 60 promotes its formation through the eddy flow channeling conduct to fuel.In addition, become near the center of eddy flow near the section central part of pump stream 11,, remain in a standstill, produce the adverse current zone with respect to the flow direction of pump stream 11 easily so produce because flow velocity is little.Therefore, through in this adverse current zone, core ring 60 being set, thereby reduce the generation of adverse current.
On pump housing housing 50, between the terminal part 79 of fuel inlet 51 and pump stream 11, form sealed department 50a.In housing body 40, also identically, begin to form between portion 85 and the fuel outlet 41 sealed department 44a at the pump stream.Because core ring 60 is formed in the interval that does not form sealed department 50a and 44a, thus not can to guarantee accurately between impeller 30 and sealed department 50a and the 44a radial clearance this produce harmful effect on the one hand, can prevent that sealing from worsening.
Core ring 60 is pressed into to be fixed in pump groove 42 and 52 through fixing axial region 82 and is provided with. Pump groove 42 and 52 has and is used for fixing axial region 82 is pressed into fixing hole 84.Fixing through core ring 60 is pressed into, can between the surface of core ring 60 and impeller 30, guarantee micro-gap easily and accurately.In addition, as shown in Figure 7, through near the central authorities of the C of core ring 60 word shape, appending fixedly axial region 83, can guarantee more accurately and impeller 30 between micro-gap.In addition, because in fixing axial region 82, the two end part of C word shape are bent into mild R shape on the axial rotary of said impeller 30, so even, also can not be hooked on the vane plate 32 of impeller 30 just in case core ring 60 contacts with impeller 30 in rotating.
Shown in as described above, related according to one embodiment of present invention petrolift 1, owing in the approximate centre portion of pump stream 11 core ring 60 is set, the mobile of fuel that forms through impeller 30 is to circle round in the center with core ring 60.Thus, can promote in pump stream 11, to form fuel swirl, it is regional to prevent to produce adverse current owing to remaining in a standstill.Thus, can improve the flow velocity of the fuel in the pump stream 11, thereby improve pump efficiency.
In addition, in one embodiment of the invention, because core ring 60 is formed between fuel inlet 51 to the fuel outlet 41 in the pump stream 11, so can be with the part that does not form pump stream 11 as sealed department.Thus, sealed department 50a and 44a can improve sealing along circumferentially continuously.
In addition; In one embodiment of the invention because core ring 60 has to pump groove 42 and 52 and is pressed into fixing fixedly axial region 82, so can be set to impeller 30 between have micro-gap and do not contact; Thereby the loss that can avoid slip resistance to cause improves pump efficiency.In addition; Because in the fixedly axial region 82 of core ring 60, the two end part of C word shape impeller 30 axially on be bent into mild R shape, so even just in case core ring 60 contact with impeller 30; Also can prevent to be hooked on the vane plate 32 of impeller 30, can improve reliability.
More than, in one embodiment of the invention, illustration has also been explained the petrolift of application side grooved impeller.But the present invention also can be applied to have in the petrolift of vane plate kinds such as enclosed blade or open type blade.

Claims (4)

1. petrolift, it has: discoideus rotary component, its outer periphery have sealed department, and week have vane plate in it; And channel member; It rotatably accommodates said rotary component, has the pump groove that forms the pump stream, and this pump groove forms circular-arc along said vane plate; This pump groove is provided with fuel inlet and fuel outlet; This petrolift is rotated through said rotary component, thereby will discharge from said fuel outlet via said pump stream from the fuel that said fuel inlet sucks
It is characterized in that,
This petrolift has the core ring of C word shape, and it is arranged on the inside of the said pump groove between said fuel inlet and the said fuel outlet, and the section center of this core ring is roughly consistent with the center of the eddy flow that in said pump stream, produces.
2. petrolift as claimed in claim 1 is characterized in that,
Said core ring has to the fixing fixedly axial region of said pump groove.
3. petrolift as claimed in claim 2 is characterized in that,
In the said fixedly axial region of said core ring, the two end part of C word shape said rotary component axially on be bent into mild R shape.
4. like any described petrolift in the claim 1 to 3, it is characterized in that,
Said core ring is set to, and the section center is roughly consistent with the center of the said eddy flow that produces in the outside of said rotary component.
CN2009101766267A 2009-01-23 2009-09-23 Fuel pump Expired - Fee Related CN101787944B (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2009-013341 2009-01-23
JP2009013341A JP5207999B2 (en) 2009-01-23 2009-01-23 Fuel pump

Publications (2)

Publication Number Publication Date
CN101787944A CN101787944A (en) 2010-07-28
CN101787944B true CN101787944B (en) 2012-10-03

Family

ID=42531287

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009101766267A Expired - Fee Related CN101787944B (en) 2009-01-23 2009-09-23 Fuel pump

Country Status (2)

Country Link
JP (1) JP5207999B2 (en)
CN (1) CN101787944B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6594750B2 (en) * 2015-11-24 2019-10-23 愛三工業株式会社 Vortex pump

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10311068A1 (en) * 2002-03-13 2003-10-30 Aisan Ind Low-noise vane pumps

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02118191U (en) * 1989-03-10 1990-09-21
JPH07133786A (en) * 1993-11-10 1995-05-23 Aisan Ind Co Ltd Impeller type pump

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10311068A1 (en) * 2002-03-13 2003-10-30 Aisan Ind Low-noise vane pumps

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
JP特开2008-223553A 2008.09.25
JP特开平11-309208A 1999.11.09
JP特开平7-133786A 1995.05.23

Also Published As

Publication number Publication date
CN101787944A (en) 2010-07-28
JP2010169033A (en) 2010-08-05
JP5207999B2 (en) 2013-06-12

Similar Documents

Publication Publication Date Title
CN100526655C (en) Impeller for fuel oil pump and fuel oil pump using the same
US5257916A (en) Regenerative fuel pump
US6113363A (en) Turbine fuel pump
US6179579B1 (en) Multi-stage side-channel fuel pump for a motor vehicle
CN101865056B (en) Fuel pump
KR20160122775A (en) Hydrodynamic retarder
JPH07189978A (en) Device for supplying internal combustion engine for automobile with fuel from storage tank
US20050260088A1 (en) Electrically driven pump and domestic appliance having the pump
CN108869330B (en) Submersible electric pump with axial-flow sand-proof structure
JPH0650280A (en) Turbine blade fuel pump
US6149404A (en) Fuel supply unit
CN215521290U (en) High-efficiency centrifugal pump
CN101787944B (en) Fuel pump
JP4637990B2 (en) In-tank fuel pump / reservoir assembly
US10148150B2 (en) Liquid pump
JP2023509207A (en) Side channel compressor for fuel cell systems for conveying and/or compressing gaseous media, in particular hydrogen
US6641380B1 (en) Vane pump having a pressure plate and a shaft seal
US10876541B2 (en) Fluid pump
JPH073239B2 (en) Circular flow type liquid pump
US6283704B1 (en) Circumferential flow type liquid pump
CN210196043U (en) Water pump
KR101222017B1 (en) Impeller of fuel pump for vehicle
CN210111782U (en) Dry and wet dual-purpose motor
CN112392766A (en) Side flow pump
CN215890497U (en) Electronic water pump

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20121003

Termination date: 20140923

EXPY Termination of patent right or utility model