Disclosure of Invention
Aiming at the defects in the technology, the invention provides the cleaning dock capable of supplementing water to the floor mopping machine.
The technical scheme adopted by the invention for solving the technical problems is as follows:
a cleaning dock capable of refilling a floor scrubber comprising: the dock body comprises a water replenishing tank for containing liquid; the cleaning plate is arranged on the dock body and used for cleaning rags of the floor mopping machine; a water supply assembly for directing liquid from a floor wiping tank mounted on the floor wiping machine onto the cleaning plate to wet the floor wiping cloth to be cleaned; and a refill assembly for refilling the scrubber tank with liquid from the refill tank.
Preferably, the dock body further comprises a supporting base, the water replenishing box is arranged on the supporting base, and the cleaning plate is detachably arranged on the supporting base.
Preferably, a scrubber pump located on the scrubber is capable of pumping fluid from the scrubber tank to a spray head located on the scrubber, or to a cleaning plate.
Preferably, the water supply assembly comprises a nozzle which is the water outlet end of the water supply assembly; the cleaning flow channel is provided with a first water inlet end and a first water outlet end, and the first water outlet end is communicated with the nozzle; the cleaning plug is communicated with the first water inlet end;
wherein, after the cleaning plug is communicated with the cleaning valve body arranged on the floor-scrubbing machine, the passage between the nozzle arranged on the floor-scrubbing machine and the cleaning valve body is cut off.
Preferably, the cleaning valve body is an electromagnetic valve, and the electromagnetic valve is configured to conduct only one of the nozzle and the cleaning nozzle.
Preferably, the cleaning plate comprises a plate body, and a plurality of cleaning parts are arranged on the plate body.
Preferably, the refill assembly comprises a refill pump mounted in the support base; the water replenishing flow passage is provided with a second water inlet end and a second water outlet end, and the second water inlet end is communicated with the water replenishing pump; the water replenishing spigot is communicated with the second water outlet end;
wherein, the water supplementing spigot can be communicated with a water supplementing valve body arranged on the floor wiping machine.
Preferably, a mounting cavity for mounting the cleaning plate is formed on the supporting base; the bottom surface of the mounting cavity is provided with a lowest relief area, and the lowest relief area is provided with a water falling hole; a sewage cleaning box used for collecting the sewage guided from the water falling hole is detachably arranged in the supporting base.
Preferably, the cleaning valve body is a mechanical valve; a first cleaning valve port, a second cleaning valve port and a third cleaning valve port are formed on the cleaning valve body; a first through-flow cavity communicated with the first cleaning valve port, the second cleaning valve port and the third cleaning valve port is formed in the cleaning valve body; a first valve core is arranged in the first through-flow cavity; a first elastic piece for resetting the first valve core is arranged in the cleaning valve body; the first elastic member is defined to be capable of cutting off a passage between the first cleaning valve port and the third cleaning valve port by acting on the first valve core when the cleaning nozzle is pulled out.
Preferably, a water level sensor used for collecting the water level information of the liquid in the water tank of the floor-scrubbing machine is arranged on the water tank of the floor-scrubbing machine.
Compared with the prior art, the invention has the beneficial effects that: according to the cleaning dock capable of supplementing water to the floor wiping machine, firstly, the cleaning dock can provide a storage function for the floor wiping machine, and the cleaning cloth of the floor wiping machine is prevented from being in long-term contact with the ground to generate bacteria or mildew; secondly, the electric quantity of the battery in the floor wiping machine can be continuously supplemented, the cruising duration of the normal use of the floor wiping machine is ensured, and whether the floor wiping machine is installed in place on the dock body can be detected; thirdly, the water tank of the floor mopping machine can be automatically supplemented with water according to the water level information in the water tank of the floor mopping machine; finally, it can carry out the friction washing with water to the rag of mopping machine on the clean board according to the user's demand. The floor cleaning machine is compact in structure and simple and convenient to operate, can be used for accommodating and supplementing the floor cleaning machine in a one-stop mode, and has high practical value and popularization value.
Detailed Description
The present invention is further described in detail below with reference to the attached drawings so that those skilled in the art can implement the invention by referring to the description text.
As shown in fig. 1 to 9, the present invention provides a cleaning dock capable of supplementing water to a floor cleaning machine, which includes a dock body 1, a cleaning plate 4, a water supply assembly, and a water supplement assembly. The dock body 1 comprises a water replenishing tank 12 for containing liquid; wherein, the liquid can be clear water or cleaning liquid. The cleaning plate 4 is arranged on the dock body 1 and used for cleaning rags of the floor cleaning machine. The cleaning plate 4 is constructed like a washboard to effectively clean the cloth. The water supply assembly is used to direct liquid from a floor wiping tank 21 mounted on the floor wiping machine 2 onto the cleaning plate 4 in order to wet the floor wiping cloth 23 to be cleaned. The refill assembly is used to refill the scrubber tank 21 with fluid from the refill tank 12.
As an embodiment of the invention, the dock body 1 further comprises a support base 11, the water replenishing tank 12 is arranged on the support base 11, and the cleaning plate 4 is detachably arranged on the support base 11.
As an embodiment of the present invention, a water level sensor for collecting water level information of liquid inside the water tank 21 of the floor-scrubbing machine is arranged on the water tank, so as to monitor the water level inside the water tank, wherein the water level sensor may be a gravity sensor or an optical sensor, which is not described in detail herein.
The floor scrubbing machine 2 includes a machine body 20 and a floor scrubbing base 22. A scrubber tank 21 is detachably mounted to the body 20. The floor-scrubbing machine base 22 is arranged on the machine body 20 in a swinging mode, a rotary driving device 27 is fixed on the floor-scrubbing machine base 22, and the floor-scrubbing machine cleaning cloth 23 is connected to the rotary driving device 27 in a rotating mode. The floor scrubbing machine 2 also includes a spray head 26 for spraying wet the floor to be cleaned. The scrubber pump is disposed in the body 20. A scrubber pump provided on the scrubber 2 is capable of pumping liquid from the scrubber tank 21 into a spray head 26 provided on the scrubber 2 or onto the cleaning plate 4.
As an embodiment of the invention, a charging plug 24 is arranged on the floor cleaning machine 2, and a charging socket 14 is arranged on the dock body 1; a charging plug 24 can be plugged into the charging socket 14 to charge the battery installed in the floor scrubbing machine 2.
As an embodiment of the present invention, the water supply assembly includes
A nozzle 42, which is the water outlet end of the water supply assembly;
a cleaning channel 510 having a first water inlet end and a first water outlet end, the first water outlet end being in communication with the nozzle; and
a cleaning spigot 51 which is communicated with the first water inlet end;
when the cleaning nozzle 51 communicates with the cleaning valve body 252 provided in the floor cleaning machine, the passage between the nozzle 26 provided in the floor cleaning machine and the cleaning valve body 252 is cut off.
In one embodiment of the present invention, the cleaning nozzle 51 can be hermetically connected to the cleaning valve body 252, and the nozzle 26 and the scrubber pump are connected to the cleaning valve body 252.
In one embodiment of the present invention, the cleaning valve body 252 is formed with
The first cleaning valve port 291 is communicated with a water pump of the floor mopping machine;
a second cleaning valve port 292 communicated with the spray head 26; and
a third cleaning valve port 293, in which the cleaning nozzle 51 can be hermetically connected and inserted into the third cleaning valve port 293;
when the cleaning nozzle 51 is hermetically connected to the third cleaning valve port 293, the third cleaning valve port 293 is in a conductive state with the first cleaning valve port 291, and the second cleaning valve port 292 is in a non-conductive state with the first cleaning valve port 291;
when the cleaning nozzle 51 and the third cleaning valve port 293 are disconnected from each other, the third cleaning valve port 293 and the first cleaning valve port 291 are not connected to each other, and the second cleaning valve port 292 and the first cleaning valve port 291 are connected to each other.
As an embodiment of the present invention, the cleaning valve body 252 is one of a mechanical valve and an electromagnetic valve;
the cleaning valve body 252 is disposed so as to conduct only one of the shower head 26 and the cleaning nozzle 51.
Referring to fig. 10, as an embodiment of the present invention, a first flow chamber 90 is formed in the cleaning valve body 252, and the first cleaning valve port 291, the second cleaning valve port 292, and the third cleaning valve port 293 are communicated with each other. The first flow chamber 90 is provided with a first valve core 91 for connecting or disconnecting a passage between the first cleaning valve port 291 and the second cleaning valve port 292 and a passage between the first cleaning valve port 291 and the third cleaning valve port 293.
In an embodiment of the present invention, the cleaning valve body 252 is provided with a first elastic member 92 for returning the first valve body 91. The first elastic member 92 is defined to be able to cut off a passage between the first cleaning valve port 291 and the third cleaning valve port 293 by operating the first valve body 91 when the cleaning nozzle 51 is pulled out.
In one embodiment of the present invention, the first elastic member 92 is a spring, one end of which abuts against the cleaning valve body 252 and the other end of which abuts against the first valve body 91. The first valve core 91 is formed with a first valve core flow passage for communicating the first cleaning valve port 291, the second cleaning valve port 292, and the first cleaning valve port 291, the third cleaning valve port 293. A first sealing ring for blocking the second cleaning valve port 292 or the third cleaning valve port 293 is fixed on the first valve core 91. The first valve core 91 is a cylinder structure with a cross-shaped cross section, and a first valve core flow passage is formed between two adjacent cylinder edges. The first valve core 91 is inserted into the first elastic member 92, so that the whole first valve core 91 is vertical to play a guiding role, the first valve core 91 moves along the axial direction of the cleaning valve body 252, and the sealing surface of the first sealing ring can be sufficiently sealed with the second cleaning valve port 292 or the third cleaning valve port 293.
In one embodiment of the present invention, the cleaning nozzle 51 is fixed to the cleaning plate 4, and the cleaning flow path 510 is formed in the cleaning plate 4. The cleaning plate 4 comprises a plate body 40, and a plurality of cleaning parts are arranged on the plate body 40. The cleaning part comprises a plurality of cleaning rib plates 41 which are arranged in a ring shape and are arranged on the plate body 40. The cleaning part further includes a plurality of sewage holes 43 for guiding the sewage, which are formed on the plate body 40. The plate body 40 is also provided with a reinforcing rib plate 44. The nozzle 42 is fixedly provided on the plate body 40.
In one particular embodiment, the cleaning plate includes a plate body, a nozzle, and a first flow passage. In the present embodiment, the plate body 1 is substantially rectangular, and the four corners are slightly curved, and the shape is only an example and is not limited in detail. The plate body 1 has, in its thickness direction, an upper surface defining a washing zone 2 for washing the washing elements of the floor cleaning machine, which may be the entire upper surface of the plate body or a part of the upper surface, preferably corresponding to the cleaning elements. A plurality of outwardly projecting cleaning structures are arranged in the washing zone 2. The number of nozzles 23 is at least one for ejecting fluid to the cleaning member.
The cleaning areas are two circular areas corresponding to the shapes of the cleaning pieces, and the circular areas are slightly larger than the cleaning pieces, so that the cleaning pieces can be effectively cleaned. In this embodiment, at least one nozzle is disposed in each cleaning region, and the nozzles spray liquid toward a surface of the cleaning member facing the cleaning plate to wet the cleaning member. The cleaning structure is a rib plate integrally formed with the plate body. A plurality of rib plates in the cleaning area are annularly arranged along a preset center. The rib plates are arranged to protrude out of the plate body, and the cross sections of the rib plates are triangular. The plurality of webs includes a first web having a first length and a second web having a second length; the first rib plates and the second rib plates are arranged at intervals, and the outer end parts of the first rib plates, which are far away from the preset center, and the outer end parts of the second rib plates, which are far away from the preset center, are located on the same circumferential line. Two rib plates with different lengths are arranged at intervals, and a part of space is reserved at a position close to the circle center, so that the cleaning effect is effectively prevented from being influenced due to the fact that the rib plates at the circle center are too dense.
Referring to fig. 1-3, the webs are further described. In an embodiment of the present invention, the two end portions of the rib plate are formed with slope surfaces 213. The rib plates are integrally triangular so as to enhance the cleaning effect. The rib plate and the plate body are integrally formed, and meanwhile, the rib plate is hollow, so that the cost is reduced.
As an embodiment of the present invention, the nozzle 23 is integrally formed with the plate body 1; the nozzle 23 includes a nozzle boss 231 having a nozzle hole 233 formed therein to communicate with the first flow path 31; a V-shaped nozzle groove 232 is formed at the water spraying position of the nozzle boss 231. The V-shaped nozzle groove 232 can spray out the liquid in a scattering mode, and the wetting area of the cleaning piece is increased.
As an embodiment of the invention, the water replenishing assembly comprises
A water replenishing pump 3 installed in the support base 11;
a water replenishing flow passage 520 having a second water inlet end and a second water outlet end, the second water inlet end being communicated with the water replenishing pump 3; and
a water replenishing spigot 52 communicated with the second water outlet end;
the water replenishing spigot 52 is in communication with a water replenishing valve body 251 provided in the floor wiping machine.
In an embodiment of the present invention, the water replenishing nozzle 52 can be connected to the water replenishing valve body 251 in a sealing manner, and the floor scrubber tank 21 and the water replenishing valve body 251 are connected in a communicating manner.
As an embodiment of the present invention, a valve body 251 for water supply is formed thereon
A first water replenishing valve port 281 communicated with the floor scrubbing machine water tank 21; and
a second water replenishing valve port 282 in which the water replenishing spigot 52 can be sealingly connected and inserted;
when the water replenishing spigot 52 and the second water replenishing valve port 282 are hermetically inserted, the first water replenishing valve port 281 and the second water replenishing valve port 282 are in a conduction state;
when the refill socket 52 and the second refill valve port 282 are disconnected from each other, the first refill valve port 281 and the second refill valve port 282 are not in a conductive state.
As an embodiment of the present invention, the valve body 251 for water supply is one of a mechanical valve and an electromagnetic valve.
Referring to fig. 11, as an embodiment of the present invention, a second flow-through chamber 80 communicating with both the first refill valve port 281 and the second refill valve port 282 is formed in the refill valve body 251;
the second flow chamber 80 is provided with a second valve spool 81 for opening or closing a passage between the first and second water replenishing valve ports 281 and 282.
In an embodiment of the present invention, the valve body 251 for water replenishment is provided with a second elastic member 82 for returning the second valve spool 81. The second elastic member 82 is defined to be able to cut off a passage between the first refill valve port 281 and the second refill valve port 282 by acting on the second valve spool 81 when the refill socket 52 is pulled out. The second elastic member 82 is a spring, and has one end portion abutting against the water replenishing valve body 251 and the other end portion abutting against the second valve body 81. A second spool flow passage for communicating the first and second water replenishing ports 281 and 282 is formed in the second spool 81. A second sealing ring for blocking the second water replenishing valve port 282 is fixed to the second valve core 81. The second valve core 81 is a cylinder structure with a cross-shaped cross section, and a second valve core flow passage is formed between two adjacent cylinder edges. The second valve body 81 is inserted into the second elastic member 82, so that the entire second valve body 81 is vertical to function as a guide, and the second valve body 81 moves along the axial direction of the water replenishing valve body 251, so that the sealing surface of the second seal ring can be sufficiently sealed with the second water replenishing valve port 282.
In one embodiment of the present invention, the refill socket 52 is fixed to the cleaning plate 4, and the refill flow path 520 is formed in the cleaning plate 4. A flow path joint 521 is formed on the water replenishing flow path 520. The water replenishing pump 3 is communicated and connected with the water replenishing tank 12 through a water inlet pipe 31 and is communicated and connected with the flow channel joint 521 through a water outlet pipe 32.
In an embodiment of the present invention, the water replenishing tank 12 is formed with a side tank 120 for storing liquid, the side tank 120 is provided with a water filling hole for filling liquid, and the water filling hole is covered with a sealing cap 121 in a sealing manner.
In an embodiment of the present invention, a mounting cavity 110 for mounting the cleaning plate 4 is formed on the supporting base 11. The bottom surface of the installation cavity 110 has a lowest relief area, and the lowest relief area is provided with a water falling hole 111. A sewage disposal tank 13 for collecting sewage guided from the water dropping hole 111 is detachably installed in the support base 11. The sewage flowing down from the cleaning plate 4 can pass through the drain hole 43 and the drain hole 111 and is guided down in the sewage cleaning tank 13 to be uniformly treated.
In one embodiment, the refill tank 12 is for storing liquid and has an annular enclosure portion with a first storage chamber formed therein for storing liquid. The box enclosing part is formed by limiting an annular inner wall and an outer wall arranged on the outer edge of the annular inner wall, wherein a liquid containing space is limited between the inner wall and the outer wall and is used for containing liquid. The whole box enclosing part is generally annular, meanwhile, an accommodating space for accommodating a floor cleaning head of the floor cleaning machine is limited by the annular water tank, and the cleaning plate can be arranged in the accommodating space. The lateral part of enclosing the case portion shaping has one side case portion, is formed with one in the side case portion and deposits the second of water chamber intercommunication setting with first water chamber. In particular, the side box portion has a height that is higher than the surrounding box portion to form a support for the handle of the floor scrubbing machine. In this embodiment, the side box portion is a rectangular parallelepiped, and the lower end thereof is flush with the ground to form an effective support. The side box part is provided with a side supporting block for carrying out side supporting on the floor cleaning machine. The side supporting block is limited with a groove for accommodating a handle of the floor cleaning machine, an electric connecting device can be arranged in the groove, and after the electric connecting device is conducted with a circuit of the handle, a user can control the water pump through a button on the handle.
This can carry out the theory of operation of clean depressed place of moisturizing to mopping machine as follows:
when the floor cleaning machine 2 is used for cleaning the ground, the rotary driving device 27 is linked with the floor cleaning cloth 23 to rotationally clean the ground, the operation of the water pump of the floor cleaning machine can be controlled by the corresponding button, the water pump of the floor cleaning machine can pump out liquid from the water tank 21 of the floor cleaning machine, the liquid is pumped into the spray head 26 through the first cleaning valve port 291 and the second cleaning valve port 292 in sequence, and the liquid is sprayed onto the ground to be cleaned through the spray head 26.
After the floor cleaning machine 2 is used, the floor cleaning machine 2 is placed on the dock body 1, when the charging plug 24 is inserted into the charging socket 14 and the charging plug and the charging socket are in a power-on state, the floor cleaning machine 2 is determined to be installed in place, namely the cleaning plug 51 is hermetically and communicatively inserted into the third cleaning valve port 293, and the water replenishing plug 52 is hermetically and communicatively inserted into the second water replenishing valve port 282;
at this time, the third cleaning valve port 293 and the first cleaning valve port 291 are in a conduction state, and the second cleaning valve port 292 and the first cleaning valve port 291 are in a non-conduction state; and the first water replenishing valve port 281 and the second water replenishing valve port 282 are in a conduction state.
During this time, the battery in the scrubber 2 is continuously replenished with electricity and the level sensor detects the level of the liquid in the scrubber tank 21;
when the water level is below the max value, the water replenishing pump 3 starts to operate, can sequentially pass the liquid in the water replenishing tank 12 through the water replenishing flow passage 520, the water replenishing spigot 52 and the water replenishing valve body 251, and pumps the liquid into the water tank 21 of the floor-scrubbing machine until the water level in the water tank 21 of the floor-scrubbing machine is not lower than the max value;
when the water level is not below the max value, the water replenishing pump 3 is not operated, that is, only the battery in the floor cleaning machine 2 is charged.
When the floor cleaning cloth 23 needs to be cleaned, a corresponding button on the floor cleaning machine 2 is pressed, at the moment, the rotary driving device 27 is linked with the floor cleaning cloth 23 to rotate and rub on the cleaning plate 4, meanwhile, a floor cleaning machine water pump pumps out liquid from a floor cleaning machine water tank 21, and the liquid passes through the first cleaning valve port 291, the third cleaning valve port 293, the cleaning nozzle 51, the cleaning flow channel 510 and the nozzle 42 in sequence and is sprayed onto the cleaning plate 4 to be used for wetting the floor cleaning cloth 23; the floor-scrubbing cloth 23 obtains a cleaning effect under the water-carrying friction washing of the cleaning rib plate 41, and the sewage flowing down from the cleaning plate 4 is guided into the sewage cleaning tank 13 to be cleaned uniformly.
While embodiments of the invention have been described above, it is not limited to the applications set forth in the description and the embodiments, which are fully applicable in various fields of endeavor to which the invention pertains, and further modifications may readily be made by those skilled in the art, it being understood that the invention is not limited to the details shown and described herein without departing from the general concept defined by the appended claims and their equivalents.