FLOOR CLEANING APPARATUS
20200297179 ยท 2020-09-24
Assignee
Inventors
Cpc classification
A47L11/4069
HUMAN NECESSITIES
A47L11/4083
HUMAN NECESSITIES
A47L11/4088
HUMAN NECESSITIES
A47L11/4055
HUMAN NECESSITIES
International classification
A47L11/40
HUMAN NECESSITIES
Abstract
The present disclosure discloses a floor cleaning apparatus, comprises a cleaning robot and a washing base, and the cleaning robot comprises a robot main body and a mop assembly; the mop assembly is provided with a turntable-type mop mechanism able to stretch out downwards; the washing base comprises an outer container, a rinse tank and a solution-feeding mechanism. In the technical scheme disclosed, the automatic floor cleaning and finishing cloth washing are achieved so as to realize intelligent automatic cleaning, effectively removing dirt attached to the finishing cloth automatically, and freeing from artificially detaching and then washing the finishing cloth stained with dirt, automatically performing washing operation, and greatly alleviating operation burden of a user. Meanwhile, with the structure of the finishing cloth with a lifting structure, secondary pollution caused by the finishing cloth is avoided.
Claims
1. A floor cleaning apparatus, comprising a cleaning robot (200) and a washing base (100), wherein, the cleaning robot (200) comprises a robot main body (1) and a mop assembly (2) arranged at the rear of the robot main body (1) in a lifting manner; the mop assembly (2) is provided with at least one turntable-type mop mechanism able to stretch downwards out of the lower end surface of the robot main body (1); the washing base (100) comprises an outer container, and a rinse tank (7) and a solution-feeding mechanism (5) that are mounted within the outer container; the outer container has an opening from which the rinse tank (7) is exposed; when the cleaning robot (200) stays above the rinse tank (7), the finishing cloth (24) at the bottom of the turntable-type mop mechanism downward stretches into the rinse tank (7) and rotates along with the turntable-type mop mechanism; the rinse tank (7) is internally provided with at least one washing component (71) for washing a finishing cloth (24) at a rotating state; the said washing component (71) is communicated with the solution-feeding mechanism (5) respectively.
2. The floor cleaning apparatus of claim 1, wherein the washing component (71) has a hollow inside and is communicated with the solution-feeding mechanism (5); spray holes (73) facing the finishing cloth (24) are formed in the washing component (71); at least one group of hair brush (74) is erected on the washing component (71) for cleaning the finishing cloth (24) at a rotation state after wetted by a solution sprayed from the spray holes (73); the washing component (71) is also provided with a scraping plate (75) for scraping the solution remaining on the finishing cloth (24).
3. The floor cleaning apparatus of claim 2, wherein the washing component (71) is of a tubular structure as a whole; one end of which is communicated with the solution-feeding mechanism (5) through a joint pipe; the upper end surface of the washing component (71) sinks to form at least one spraying trough (72) in which at least one spray hole (73) is formed along the length direction of the washing component (71), the left and right sides of the spray hole (73) are respectively erected with a group of hair brush (74), the upper end surface of the washing component (71) is also provided with a scraping plate (75), and at least one side of the scraping plate (75) is of a bevel structure.
4. The floor cleaning apparatus of claim 2, wherein the solution-feeding mechanism (5) comprises a cleaning solution case (51) and a first flow control unit (52) that are communicated with each other, and the first flow control unit (52) is communicated with the washing component (71) through a joint pipe; the outer container is also internally provided with a sewage treatment mechanism (6) that is communicated with the rinse tank (7) through a joint pipe.
5. The floor cleaning apparatus of claim 1, wherein the cleaning robot (200) is internally provided with a lifting component (3); the mop mechanism comprises: a housing stand (21), of which the upper end is in transmission connection with the output end of the lifting component (3); a drive motor, vertically mounted on the housing stand (21); at least one turntable-type mop mechanism having a finishing cloth (24) at its lower end, and a transmission mechanism (26), in transmission connection with the output end of the drive motor (22) and the turntable-type mop mechanism.
6. The floor cleaning apparatus of claim 5, wherein in the robot main body (1), there further provides a water supply component that comprises a water tank (41), a flow control mechanism (42) and a plurality of nozzles (43) which are successively communicated through joint pipes, and the nozzles (43) stretch into the turntable-type mop mechanism and are located right above the finishing cloth (24).
7. The floor cleaning apparatus of claim 6, wherein the turntable-type mop mechanism comprises a rotary plate (23), a finishing cloth (24) detachably mounted on the bottom of the rotary plate (23) and a rotary connector (25) connected to the upper end surface of the rotary plate (23), and the rotary connector (25) is connected onto the housing stand (21) through a bearing and an elastic element (5) is further embedded between the rotary plate (23) and the rotary connector (25).
8. The floor cleaning apparatus of claim 7, wherein a circle of annular trough (231) is formed on the upper end surface of the rotary plate (23), a plurality of liquid holes (232) are evenly, annularly formed in the annular trough (231), and the outlets of the nozzles (43) are right above the annular trough (231).
9. The floor cleaning apparatus of claim 5, wherein in the housing stand (21), a lifting plate (27) is erected; an internal spline is formed in the lifting plate (27) and the lifting component (3) comprises a lifting motor (31) secured in the robot main body (1), a driving gear (32) sheathing the output shaft of the lifting motor (31), and a transmission gear (33) mounted in the robot main body (1) through a rotary shaft and meshed with the driving gear (32); both the driving gear (32) and the transmission gear (33) are embedded in the internal spline and meshed with internal toothed racks at two sides of the internal spline respectively.
10. The floor cleaning apparatus of claim 5, wherein two turntable-type mop mechanisms are arranged in parallel; the transmission mechanism (26) comprises a first gear plate (261) and a second gear plate (262) that are meshed with each other, and two third gear plates (263) sheathing two rotary connectors (25); the central shafts of the first gear plate (261) and the second gear plate (262) are in transmission connection onto the housing stand (21) through bearings respectively; the lower ends of the first gear plate (261) and the second gear plate (262) are respectively meshed with tooth column structure (264) of the two third gear plates (263); the first gear plate (261) is also meshed with an output gear sheathing the shaft end of the drive motor (22).
11. The floor cleaning apparatus of claim 3, wherein the solution-feeding mechanism (5) comprises a cleaning solution case (51) and a first flow control unit (52) that are communicated with each other, and the first flow control unit (52) is communicated with the washing component (71) through a joint pipe; the outer container is also internally provided with a sewage treatment mechanism (6) that is communicated with the rinse tank (7) through a joint pipe.
12. The floor cleaning apparatus of claim 8, wherein in the housing stand (21), a lifting plate (27) is erected; an internal spline is formed in the lifting plate (27) and the lifting component (3) comprises a lifting motor (31) secured in the robot main body (1), a driving gear (32) sheathing the output shaft of the lifting motor (31), and a transmission gear (33) mounted in the robot main body (1) through a rotary shaft and meshed with the driving gear (32); both the driving gear (32) and the transmission gear (33) are embedded in the internal spline and meshed with internal toothed racks at two sides of the internal spline respectively.
Description
DETAILED DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] For easy understanding of the technical means, creative features, objects to be achieved and effects of the present disclosure, detailed explanation will be further given in the following embodiments by reference to the accompanying figures.
[0028] As shown in
[0029] Based on the above technical solution, the floor cleaning apparatus comprises a cleaning robot 200 and a washing base 100, the cleaning robot 200 comprises a robot main body 1 and a mop assembly 2, and the washing base 100 comprises an outer container, a rinse tank 7 and a solution-feeding mechanism 5. Therefore, automatic floor cleaning and finishing cloth washing are achieved so as to realize intelligent automatic cleaning, effectively removing dirt attached to the finishing cloth automatically, and freeing from artificially detaching and then washing the finishing cloth stained with dirt, automatically performing washing operation, and greatly alleviating operation burden of a user. Meanwhile, by virtue of the finishing cloth with a lifting structure, secondary pollution caused by the finishing cloth that is never cleaned is avoided, and the floor cleaning effect is better.
[0030] In a preferred embodiment, as shown in
[0031] As a further preferred embodiment, in conjunction with
[0032] In a preferred embodiment, as shown in
[0033] As a further preferred embodiment, in the robot main body 1, there further provides a water supply component that comprises a water tank 41, a flow control mechanism 42 and a plurality of nozzles 43 which are successively communicated through joint pipes, and the nozzles 43 stretch into the turntable-type mop mechanism and are located right above the finishing cloth 24. Moreover, referring to
[0034] As a further preferred embodiment, a circle of annular trough 231 is formed on the upper end surface of the rotary plate 23, a plurality of liquid holes 232 are evenly, annularly formed in the annular trough 231, and the outlets of the nozzles 43 are right above the annular trough 231 so that clear water flows in the annular trough 231 to the finishing cloth 24 below through the liquid holes 232 to wet the finishing cloth 24 in cleaning the floor. Further, on the housing stand 21, a lifting plate 27 is erected. An internal spline is mounted in the lifting plate 27. The lifting component 3 comprises a lifting motor 31 secured in the robot main body 1, a driving gear 32 sheathing the output shaft of the lifting motor 31, and a transmission gear 33 mounted in the robot main body 1 through a rotary shaft and meshed with the driving gear 32. Both the driving gear 32 and the transmission gear 33 are embedded in the internal spline and meshed with internal toothed racks at two sides of the internal spline respectively. Therefore, the effect of steady lifting is achieved, which is also can be realized by means of at least one electric push rod or other transmission parts.
[0035] As a further preferred embodiment, two turntable-type mop mechanisms are disposed in parallel. The transmission mechanism 26 comprises a first gear plate 261 and a second gear plate 262 that are meshed with each other, and two third gear plates 263 sheathing two rotary connectors 25. The central shafts of the first gear plate 261 and the second gear plate 262 are in rotary connection on the housing stand 21 through bearings respectively. The lower ends of the first gear plate 261 and the second gear plate 262 are respectively meshed with tooth column structure 264 of the two third gear plates 263. The first gear plate 261 is also meshed with an output gear sheathing the shaft end of the drive motor 22 to realize gear retarding and transmission. Meanwhile, two nozzles are correspondingly provided, which extend into two rotary plates 23 respectively. However, more nozzles are also permissible so as to enhance water supply effect. Besides, the robot main body 1 of the cleaning robot 200 also comprises rollers, a suction inlet, a rolling brush, a radar unit and other conventional components, for achieving functions of self-operation and cleaning of the cleaning robot 200. The robot main body 1 is internally provided with a central control system electrically connected with the above-mentioned all electric components therein to achieve united control. The washing base 100 is also internally provided with a controller for controlling the two flow control units, and a pressure sensor or an infrared sensor for detecting whether the cleaning robot 200 is in place or not so as to automatically supply the solution for washing. Detailed description about the above components is not given as they are conventional ones. The above finishing cloth 24 is directly adhered to the bottom of the rotary plate 23, detachably connected by magnetic blocks, connected by fasteners, or the like.
[0036] In specific use, when the cleaning robot 200 cleans the floor, the turntable-type mop mechanism descends to touch the floor, the water supply component supplies water for wetting the finishing cloth 24 at intervals, and the cleaning robot 200 mops the floor while moving; under the effect of the elastic element 5, the finishing cloth 24 always abuts the uneven floor, the turntable-type mop mechanism upward retracts when floor mopping is performed for a preset period of time (e.g., time is set or the finishing cloth 24 rotates for n circles), the cleaning robot 200 records the position as a breakpoint position and moves to the washing base 100 to perform washing procedure; in the washing procedure, the turntable-type mop mechanism descends to make the finishing cloth 24 stretch into the rinse tank 7 and abut the washing component 71, the rotary plate 23 rotates, under the effect of the elastic element 5, the finishing cloth 24 always abuts the scraping plate 75, and the washing component 71 performs the operations of solution spraying, friction washing and scraping remaining water and adhesives with the scraping plate 75; and after washing, the turntable-type mop mechanism ascends and moves to the breakpoint position to perform the operation of cleaning the floor once again, and so forth.
[0037] The above merely provides the preferred embodiments of the present disclosure, which is illustrative, rather than restrictive, to the present disclosure. However, it should be understood by those skilled in the art that, many variations, modifications even substitutions that do not depart from the spirit and scope defined by claims of the present disclosure, shall fall into the extent of protection of the present disclosure.