The present invention relates to a liquid pump for conveying a liquid, having a pump impeller arranged in a housing, and a cover for covering the housing.
In numerous applications, it is desirable, by means of a liquid pump, in addition to a main flow of a liquid, for example in a first circuit, to also convey an auxiliary flow of the liquid, for example in a second circuit. When the liquid pump is, for example, configured as a coolant pump, it is possible hereby to convey coolant from two different cooling circuits by means of the coolant pump.
Such a liquid pump, configured as a coolant pump, is known from DE 10 2014 113 412 B4. In this coolant pump, a pump impeller for conveying the coolant is arranged in a housing of the coolant pump, wherein the housing is covered by means of a cover. The cover is configured so as to be hemispherical or respectively bell-shaped and has a main connector for supplying a main flow of the coolant to the pump impeller, which protrudes axially from the cover on the side of the cover facing away from the housing. An auxiliary connector is provided spaced apart from the main connector and protruding radially from the cover, for supplying an auxiliary flow of the coolant to the pump impeller.
A disadvantage in such liquid pumps are, in particular, the high installation space requirement and the rigid specification of the arrangement of the auxiliary connector.
The present invention is therefore concerned with the problem of indicating, for a liquid pump of the type mentioned in the introduction, an improved or at least different embodiment, which is distinguished by a reduced installation space requirement and/or more variable arrangement of the auxiliary connector.
This problem is solved according to the invention by the subject of the independent claim(s). Advantageous embodiments are the subject of the dependent claim(s).
The present invention is based on the general idea of realizing, at an inlet opening of a housing of a liquid pump for letting in a liquid which is to be conveyed, both the supplying of a main flow of the liquid and also the supplying of an auxiliary flow to the liquid to a pump impeller of the liquid pump. Hereby, the dimensioning of the liquid pump and therefore the required installation space can be distinctly reduced. It is also therefore possible to arrange on the housing an auxiliary connector for supplying the auxiliary flow of the liquid in any desired manner, at least with a greater variability.
According to the idea of the invention, the liquid pump therefore has the housing in which the pump impeller for supplying the liquid is arranged. The housing is covered by a cover, wherein the cover has a main connector for supplying the main flow of the liquid to the pump impeller, and the auxiliary connector for supplying the auxiliary flow of the liquid to the pump impeller. According to the invention, the housing has an annular collar which protrudes axially from an edge of the inlet opening, wherein the cover lies against the annular collar in the region of the main connector. Therefore, the annular collar and the cover form an annular wall, which surrounds a flow path of the main flow of the liquid. In the annular wall now at least one radial opening is formed, which connects the flow path of the main flow with an inflow space surrounding the annular wall, which inflow space is fluidically connected to the auxiliary connector. The auxiliary flow of the liquid therefore arrives via the auxiliary connector and the inflow space through the at least one opening to the main flow, so that in the region of the annular wall a total flow arises, which arrives at the pump impeller for the purpose of conveying the liquid.
The annular collar and the inlet opening can form here in particular a suction port of the liquid pump, through which the main flow and the auxiliary flow together arrive at the pump impeller.
The edge of the inlet opening, from which the annular collar protrudes, preferably adjoins radially the inlet opening. However, it is also conceivable to arrange the edge, and therefore the annular collar, spaced apart radially from the inlet opening.
The at least one opening can basically be arranged in any desired manner in the annular wall.
Embodiments are conceivable in particular in which at least one such opening is formed in the annular collar. Configurations are also conceivable in which at least one such opening is formed in the cover, in particular in the main connector. In addition, it is possible that at least one such opening is formed in the annular collar and in the cover, in particular in the main connector.
In advantageous embodiments, the inflow space, which fluidically connects at least one such opening with the auxiliary connector, is formed between the housing and the cover. The inflow space can therefore be formed in particular by a cavity provided between the housing the cover. Hereby, the liquid pump can be realized in a simple manner and/or at a favourable cist and/or in a space-saving manner.
In so far as the annular wall has at least two such openings, it is preferred if these openings are arranged spaced apart, preferably spaced apart uniformly, in a circumferential direction of the annular wall, in particular of the annular collar. Hereby, a uniform mixing of the main flow and of the auxiliary flow of the liquid can be already achieved in the region of the annular wall.
The housing in which the pump impeller is arranged can basically be formed in any desired manner. It is conceivable in particular to form the housing in a spiral shape or as a spiral housing, in which the pump impeller is arranged and to which the liquid is supplied substantially axially and from which the liquid is discharged substantially radially. The spiral-shaped design of the housing leads in particular to a reduced installation space requirement of the liquid pump.
The inflow space, as mentioned above, fluidically connects at least one such opening with the auxiliary connector. Basically, the inflow space can be in fluidic contact here directly with the auxiliary connector. It is also conceivable to provide an intermediate duct between the inflow space and the auxiliary connector, which intermediate duct fluidically connects the inflow space with the auxiliary connector. The inflow space can therefore be, in particular, a component of an auxiliary duct which alongside the inflow space has a radial section adjoining at the inflow space and running radially, wherein the radial section fluidically connects the inflow space with the auxiliary connector. The auxiliary duct makes it possible here to provide the auxiliary connector in any desired manner on the housing. It is particularly preferred here if the auxiliary duct is formed entirely between the housing and the cover.
The cover can basically have any desired shape. It is preferred if the cover has a flat, radially extending wall on the side facing away from the housing, from which wall the main connector and/or the auxiliary connector protrude(s).
It is preferred if the main connector protrudes axially from the cover. Hereby, the connection possibility to the main connector for connecting the main connector, for example with an associated circuit, therefore the corresponding installation, is simplified.
It is preferred, in addition, if the auxiliary connector is arranged spaced apart from the main connector. Hereby, also, the corresponding installation on the main connector and the associated installation on the auxiliary connector, for example for connecting the auxiliary connector with an associated circuit, is facilitated.
It is also advantageous if the auxiliary connector runs in an inclined manner to the main connector.
According to advantageous variants, the housing has an axially protruding housing collar, which is arranged radially on the outside of the annular collar. The housing collar can be configured so as to be closed and encircling in circumferential direction. The cover lies here axially against the housing collar. Therefore, in particular a connection of the cover with the housing, in particular the installation and/or aligning of the cover on the housing, is simplified.
Embodiments prove to be advantageous, in which the cover has an axially protruding cover collar, which lies radially on the outside of the annular collar against the housing. The cover collar is advantageously configured so as to be encircling in circumferential direction and closed. The cover collar enables a simplified connection of the cover with the housing, in particular a simplified installation and/or aligning on the housing.
An advantageous embodiment of the liquid pump is achieved in that the housing collar of the housing is provided with a step on which a seal is arranged, and is pressed by the cover against the step for the purpose of sealing. Here, the seal can be arranged radially on the outside of the cover collar. It is particularly preferred if the seal is formed as a ring seal.
The cover can be produced in a one piece with the main connector and with the auxiliary connector, in particular from a single material, for example from plastic. In particular, it is conceivable to produce the cover as an injection-moulded part. The housing can also be produced in one piece, in particular from a single material, for example from plastic.
The liquid pump can basically be used for conveying any desired liquid. The liquid pump is used in particular in a motor vehicle for conveying a liquid in the motor vehicle. The use of the liquid pump is to be considered here for conveying a coolant, wherein the liquid pump conveys the coolant of a first cooling circuit, fluidically connected with the main connector, or of a main cooling circuit, and the coolant of a second cooling circuit or auxiliary cooling circuit, fluidically connected with the auxiliary connector.
Further important features and advantages of the invention will emerge from the subclaims, from the drawings and from the associated figure description with the aid of the drawings.
It shall be understood that the features mentioned above and to be explained further below are able to be used not only in the respectively indicated combination, but also in other combinations or in isolation, without departing from the scope of the present invention.
Preferred example embodiments of the invention are illustrated in the drawings and are explained further in the following description, wherein the same reference numbers refer to identical or similar or functionally identical components.
There are shown, respectively diagrammatically:
In
The cover 3 has, on the side facing away from the housing 2, a flat end wall 6, from which a main connector 7 and an auxiliary connector 8 protrude. The housing 2 has an inlet opening 9, from the edge of which an annular collar 10 protrudes axially. The main connector 7 protrudes axially from the cover 3 and is aligned substantially with the annular collar 10. The cover 3 lies in the region of the main connector 7, in particular with the main connector 7, axially against the annular collar 10, wherein the annular collar 10 and the cover 3, in particular in the contact region of the annular collar 10 with the main connector 7, form an annular wall 11. The auxiliary connector 8 is arranged spaced apart from the main connector 7 and runs in an inclined manner to the main connector 7, wherein the auxiliary connector 8 is arranged radially on the edge side of the cover 3. The main connector 7 serves for the supplying of a main flow 12 of the liquid to the pump impeller 4, whereas the auxiliary connector 8 serves for the supplying of an auxiliary flow 13 of the liquid to the pump impeller 4. With the liquid pump 1, it is therefore possible via the main connector 7 to convey liquid of a first circuit, in particular coolant in a first cooling circuit, and liquid via the auxiliary connector 8 in a second circuit, in particular coolant in a second cooling circuit. In the present case, the main connector 7 is concentric to the rotation axis 5, whereas the auxiliary connector 8 is eccentric thereto.
As can be seen in particular from
In the example which is shown, the openings 15 are formed in the annular collar 10, wherein the openings 15 are arranged spaced apart in a circumferential direction 17 and preferably distributed in a uniform manner. In addition, the inflow space 16 is formed between the cover 3 and the housing 2. In the example which is shown, the inflow space 16 forms an auxiliary duct 18, which is connected directly fluidically with the auxiliary connector 8.
The housing 2 has a housing collar 19, which surrounds the annular collar 10 radially externally, and is formed so as to be closed in the circumferential direction 17. In the example which is shown, the housing collar 19 is configured here so as to be oval (cf.
As can be seen in particular from
As can be seen in particular in
It can be seen from
Radially on the outside of the connection openings 32 the housing 2 has further connection structures 34, which in the example which is shown are also formed as openings. The connection structures 34 serve for connecting the liquid pump 1 with an associated application, for example with an associated motor vehicle, which is otherwise not shown. It is also conceivable to use the connection structures 34 for connecting the housing 2 with further components of the liquid pump 1, which are not shown.
The cover 3 is produced in one piece with the main connector 7 and the auxiliary connector 8, in particular from a single material, for example from plastic. The housing 2 can also be produced in one piece, in particular from a single material, for example from plastic.
Number | Date | Country | Kind |
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102016219418.6 | Oct 2016 | DE | national |
This application claims priority to International Patent Application No. PCT/EP2017/071984 filed on Sep. 1, 2017, and German Patent Application No. DE 10 2016 219 418.6 filed on Oct. 6, 2016, the contents of each are hereby incorporated by reference in their entirety.
Filing Document | Filing Date | Country | Kind |
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PCT/EP2017/071984 | 9/1/2017 | WO | 00 |