CLEANING DEVICE
20230088016 · 2023-03-23
Assignee
Inventors
Cpc classification
B08B5/02
PERFORMING OPERATIONS; TRANSPORTING
F04B53/1037
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60S1/481
PERFORMING OPERATIONS; TRANSPORTING
B08B3/02
PERFORMING OPERATIONS; TRANSPORTING
F04B1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A cleaning device for a vehicle, with which at least one cleaning location is cleaned with pressurized cleaning liquid and/or pressurized ambient air, is proposed, including: a pump-compressor stage for sucking up and conveying the cleaning liquid and/or the ambient air, a fluid path which fluidically connects the pump-compressor stage upstream to a cleaning liquid tank and to an environment of the cleaning device, and a fluid distribution apparatus downstream of the pump-compressor stage, which is fed with the cleaning liquid and/or the ambient air by the pump-compressor stage, the fluid distribution apparatus being fluidically connected to the cleaning location. A vehicle with such a cleaning device, the first and the second use, and a cleaning method for a vehicle are also proposed.
Claims
1. A cleaning device for a vehicle, with which at least one cleaning location is cleaned as needed and selectively with at least one of pressurized cleaning liquid or pressurized ambient air, the cleaning device comprising: a pump-compressor stage for selectively sucking up and conveying either the cleaning liquid and/or the ambient air; a cleaning tank; a fluid path which fluidically connects the pump-compressor stage upstream to the cleaning liquid tank and to an environment of the cleaning device; and a fluid distribution apparatus downstream of the pump-compressor stage, which is fed with the pressurized cleaning liquid and/or the pressurized ambient air by the pump-compressor stage, the fluid distribution apparatus being fluidically connected to the at least one cleaning location.
2. The cleaning device of claim 1, further comprising: a shut-off and release valve disposed in the fluid path; a cleaning liquid branch being part of the fluid path; and an ambient air branch being part of the fluid path; wherein the shut-off and release valve is used to selectively shut off or release at least one of the cleaning liquid branch or the ambient air branch.
3. The cleaning device of claim 2, further comprising: a plurality of shut-off and release valves; wherein a first of the plurality of shut-off and release valves is assigned to the cleaning liquid branch, and another of the plurality of shut-off and release valves is assigned to the ambient air branch.
4. The cleaning device of claim 2, the shut-off and release valve further comprising a multi-way valve arranged between the cleaning liquid branch and the ambient air branch.
5. The cleaning device of claim 1, wherein the pump-compressor stage is drivable electrically.
6. The cleaning device of claim 1, the pump-compressor stage further comprising a positive displacement pump stage.
7. The cleaning device of claim 1, the pump-compressor stage further comprising a flow pump stage.
8. (canceled)
9. The cleaning device of claim 1, wherein pump-compressor stage pressurizes the fluid path leading to the fluid distribution apparatus.
10. The cleaning device of claim 1, further comprising: a sensor; and a plurality of cleaning locations; wherein at least one of the plurality of cleaning locations is associated with a sensor.
11. A cleaning method for a vehicle, in which at least one cleaning location is cleaned according to a fluid-specific conveying requirement, and selectively with at least one of pressurized cleaning liquid or pressurized ambient air, the method comprising the steps of: providing a pump-compressor stage; providing a fluid distribution apparatus downstream of the pump-compressor stage; and providing at least one cleaning location of the vehicle being fluidically connected to the fluid distribution apparatus; using the pump-compressor stage to selectively to suck up and convey one of the cleaning liquid or the ambient air, and to feed the fluid distribution apparatus.
12. The method of claim 11, further comprising the steps of adapting the rotational speed of the pump-compressor stage to the respective fluid-specific conveying requirement.
13. The method of claim 12, further comprising the steps of providing a computer program for controlling the pump-compressor stage and the fluid distribution apparatus and adapting the rotational speed of the pump-compressor stage to the respective fluid-specific conveying requirement.
14. The method of claim 12, further comprising the steps of: providing a computer program product for controlling the pump-compressor stage and the fluid distribution apparatus; providing program code being part of the computer program product; and providing a computer-readable data storage medium, the program code stored on the computer-readable data storage medium; executing the program code on a computer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032] The invention will be explained below in detail with reference to illustrations in the Figures. Further advantageous refinements of the invention emerge from the description below of preferred embodiments. To this end, schematically:
[0033]
[0034]
[0035]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0036] The following description of the preferred embodiment(s) is merely exemplary in nature and is in no way intended to limit the invention, its application, or uses.
[0037] The proposed cleaning device 2 has a fluid conveying unit 4 which includes a pump-compressor stage PVS, for example in the form of a flow pump stage, and an electric motor 14 driving the pump-compressor stage PVS. The electric motor 14 drives a pump-compressor impeller or pump-compressor conveying wheel 18 via a shaft 16. In the case of the flow pump stage, this is, for example, a side channel pump impeller and/or a peripheral channel pump impeller. A pump-compressor stage housing 20 accommodating the impeller or conveying wheel 18 is fluidically connected to a fluid distribution apparatus via a discharge connection 22, from which a fluid line—not shown here—leads away. In an embodiment, the pump-compressor stage PVS is designed, for example, in the form of a centrifugal pump.
[0038] The respective cleaning medium or cleaning fluid is supplied to a plurality of possible cleaning locations of a vehicle via the fluid distribution apparatus. These may be cleaning locations associated in each case with a vehicle sensor—such as a cleaning location on a windshield associated with a camera, etc.—and/or other cleaning locations, such as another location on the windshield, a location on a headlight, and the like.
[0039] The pump-compressor stage housing 20 is also connected via an inflow connection to a fluid path 8 which fluidically connects the pump-compressor stage PVS to a cleaning liquid container 6 and to an environment U of the cleaning device 2. The fluid path 8, via which either a cleaning liquid and/or ambient air may be conveyed selectively and as needed, includes a cleaning liquid branch 8a and an ambient air branch 8b, which as such merge into one another or diverge at a branching point or bifurcation point of the fluid path 8. For the sake of completeness, it should be mentioned that an air filter—not illustrated in the Figures—is also provided in the ambient air branch 8b to the environment. With regard to the filtered ambient air, it should be pointed out that it may either be air sucked up from a vehicle environment and/or air sucked up from a vehicle interior (cf. also the definition of ambient air in the introduction).
[0040] In a proposed embodiment of the cleaning device 2, the cleaning liquid branch 8a and the ambient air branch 8b are each assigned a separate release and shut-off valve, for example in the form of a release flap and shut-off flap 10, 12, which releases and/or shuts off the respective branch in order to selectively permit either a desired conveying of cleaning liquid and/or a desired conveying of ambient air.
[0041] In a proposed, further embodiment of the cleaning device 2, in addition to or as an alternative to the previously mentioned separate release and shut-off valve 10, 12, a multi-way valve may be arranged between the cleaning liquid branch 8a and the ambient air branch 8b in an appropriately adjustable manner and, if needed and selectively, either permits the desired conveying of cleaning liquid and/or the desired conveying of ambient air or switches between these conveying modes of the device 2 accordingly.
[0042] The cleaning device 2 is part of a vehicle, such as in the form of an at least partially autonomously, or a fully autonomously operated vehicle.
[0043] By using the cleaning device 2, either the cleaning liquid and/or the ambient air may thus be supplied under pressure to at least one of the cleaning locations mentioned, selectively and as needed. The rotational speed of the pump-compressor stage PVS or of the impeller/conveying wheel 18 is adapted here to the respective fluid-specific conveying requirement. This is because the rotational speed n.sub.UL required for conveying ambient air (UL=ambient air; cf.
[0044] The proposed cleaning device 2 eliminates the need for two separate fluid conveying units together with the respective separate fluidic connections to the device 2. Consequently, the proposed cleaning device 2 reduces the number of components required for such a device and thus also the costs of the device.
[0045] Such a reduction in device components is also of benefit in terms of making such a device correspondingly compact, and therefore overall less construction space is required.
[0046] The rotational speed of the impeller/conveying wheel 18 is adapted here to the respective ambient air-specific conveying requirement in such a way that the purging of the respective fluid path and the cleaning of the respective cleaning location by pressurized ambient air are at least readily implemented.
[0047] Compared to a cleaning device that conveys only a cleaning liquid, the range that is achieved with the cleaning liquid of the cleaning liquid container 6 is significantly increased according to the invention.
[0048] This applies in an example to future fully autonomously driving vehicles which, compared to previous vehicles, may have a significantly higher number of sensors—such as safety-relevant sensors—whose functionality must be ensured.
[0049] Although exemplary embodiments are explained in the above description, it should be noted that numerous modifications are possible. It should be noted, furthermore, that the exemplary embodiments are merely examples which are in no way intended to limit the scope of protection, the applications, and the structure. Instead, the above description gives a person skilled in the art a guideline for the implementation of at least one exemplary embodiment, wherein various changes may be made, especially with regard to the function and arrangement of the integral parts described, without departing from the scope of protection as it is apparent from the combinations of features equivalent thereto.
[0050] The description of the invention is merely exemplary in nature and, thus, variations that do not depart from the gist of the invention are intended to be within the scope of the invention. Such variations are not to be regarded as a departure from the spirit and scope of the invention.