CN220735322U - Quick-charging and replenishing station of floor washing machine - Google Patents

Quick-charging and replenishing station of floor washing machine Download PDF

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Publication number
CN220735322U
CN220735322U CN202321959714.6U CN202321959714U CN220735322U CN 220735322 U CN220735322 U CN 220735322U CN 202321959714 U CN202321959714 U CN 202321959714U CN 220735322 U CN220735322 U CN 220735322U
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China
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sewage
water
floor
water tank
tank
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CN202321959714.6U
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Chinese (zh)
Inventor
孙大亮
杜昌海
孙志强
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Guangde Lerong Industrial Co ltd
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Guangde Lerong Industrial Co ltd
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Abstract

The utility model discloses a quick-filling and replenishing station of a floor washing machine, which comprises a shell structure and an embedded replenishing structure, wherein the replenishing structure comprises a T-shaped seat, a charging structure, a water tank structure and a sewage discharging structure. The T-shaped seat is provided with a cleaning port, a water inlet of the floor cleaning machine and a sewage outlet of the floor cleaning machine, the cleaning port and the water inlet of the floor cleaning machine are fixedly connected with the water tank structure, and the sewage outlet of the floor cleaning machine is fixedly connected with the sewage structure. When the water pumping motor and the sewage discharging motor work, water in the clean water tank is pumped out and sprayed into the sewage tank through the cleaning opening to clean the sewage tank of the floor cleaning machine, the floor cleaning machine absorbs water and is prone to be cleaned through the high-pressure spray head in the groove, and meanwhile, sewage after cleaning is discharged through the sewage storage tank, so that the problems that the sewage tank of the floor cleaning machine and the floor cleaning machine absorbs water and still need to be manually cleaned and discharged, and the working efficiency of the floor cleaning machine is low are solved.

Description

Quick-charging and replenishing station of floor washing machine
Technical Field
The utility model relates to the technical field of quick-filling and replenishing station devices, in particular to a quick-filling and replenishing station of a floor washing machine.
Background
The quick-charging supply station of the existing floor washing machine is provided with the functions of charging the floor washing machine, adding water to the water tank of the floor washing machine and discharging sewage from the sewage tank of the floor washing machine, but the sewage tank of the floor washing machine and the floor washing machine still need to be manually cleaned after absorbing water, and the water adding speed of the water tank of the floor washing machine is slow, so that the supply efficiency of the floor washing machine is low.
Disclosure of Invention
The utility model aims to provide a quick-filling and replenishing station of a floor washing machine, which solves the problems that in the background art, a sewage tank of the floor washing machine and a water absorption groveling position of the floor washing machine still need to be manually cleaned, and the water adding speed of the water tank of the floor washing machine is low, so that the replenishing efficiency of the floor washing machine is low.
The technical scheme of the utility model is as follows: the quick-filling and replenishing station of the floor washing machine comprises a shell structure and a replenishing structure, wherein the replenishing structure is embedded in the shell structure; the replenishing structure comprises a T-shaped seat, a water tank structure, a pollution discharge structure and a charging structure; the T-shaped seat is provided with a cleaning port, a water inlet of the floor scrubber, a sewage outlet of the floor scrubber and a charging port of the floor scrubber; the cleaning port and the water inlet of the floor cleaning machine are structurally connected with the water tank; the sewage outlet of the floor washing machine is connected with the sewage structure; the ground washer charging port is connected with the charging structure.
Optionally, the water tank structure comprises a clean water tank, a high-pressure spray nozzle water outlet, a water delivery pipe, a water pumping motor, a three-way pipe fitting and an electromagnetic valve; the water outlet of the high-pressure spray head and the water delivery pipe penetrate through the bottom surface of the clear water tank and extend to the outside; the water delivery pipe penetrates through the water pumping motor and is fixedly connected with the three-way pipe fitting, and the three-way pipe fitting is fixedly connected with the water inlet and the cleaning port of the floor cleaning machine through the electromagnetic valve.
Optionally, the blowdown structure includes dirt storage tank, blowdown motor and blow off pipe, the one end of blow off pipe with the dirt storage tank is connected, the other end of blow off pipe pass the blowdown motor and with wash ground machine drain fixed connection.
Optionally, the housing structure includes a base station housing and a base; the replenishing structure is arranged inside the base station shell, a T-shaped hole is formed in the front surface of the base station shell, and the T-shaped seat is arranged in the T-shaped hole; and a battery is arranged in the charging structure.
Optionally, a groove is formed in the base, a high-pressure spray head is arranged on the inner wall of the groove, and the high-pressure spray head is connected with a water outlet of the high-pressure spray head.
Optionally, the sewage draining structure further comprises a base sewage draining outlet; and a backflow port is arranged on the bottom surface of the groove and is fixedly connected with the base drain outlet.
Optionally, the water tank structure further comprises a water filling port; the water injection port is arranged at the top end of the clear water tank and is connected with an external water source.
Optionally, a ball float valve is arranged in the clear water tank; one end of the float valve penetrates through and is fixed on the outer wall of the clear water tank.
Optionally, a display screen is embedded on the base station casing.
Optionally, the sewage draining structure further comprises a sewage draining outlet of the sewage storing tank; the high-pressure spray heads are arranged in a plurality and are linearly and uniformly arranged on the inner wall of the groove; the reflux ports are arranged in a plurality, and are uniformly arranged on the bottom surface of the groove.
Compared with the prior art, the utility model has the following beneficial effects:
the utility model provides a quick-filling and replenishing station of a floor washing machine, which comprises a shell structure and an embedded replenishing structure, wherein the replenishing structure comprises a T-shaped seat, a charging structure, a water tank structure and a pollution discharge structure. The T-shaped seat is provided with a cleaning port, a water inlet of the floor cleaning machine and a sewage outlet of the floor cleaning machine, the cleaning port and the water inlet of the floor cleaning machine are fixedly connected with the water tank structure, and the sewage outlet of the floor cleaning machine is fixedly connected with the sewage structure. When the water pumping motor and the sewage discharging motor work, water in the clean water tank is pumped out and sprayed into the sewage tank through the cleaning opening to clean the sewage tank of the floor cleaning machine, the floor cleaning machine absorbs water and is prone to be cleaned through the high-pressure spray head in the groove, and meanwhile, sewage after cleaning is discharged through the sewage storage tank, so that the problems that the sewage tank of the floor cleaning machine and the floor cleaning machine absorbs water and still need to be manually cleaned and discharged, and the working efficiency of the floor cleaning machine is low are solved.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of the housing structure of the present utility model;
FIG. 3 is a schematic diagram of the front structure of the replenishment structure of the present utility model;
FIG. 4 is a schematic view of the internal structure of the clean water tank of the replenishment structure of the present utility model;
FIG. 5 is a schematic view of the reverse structure of the replenishment structure of the present utility model.
In the figure: 1-a housing mechanism; 11-a base station housing; a 111-T-shaped hole; 112-a display screen; 12-a base; 121-grooves; 122-high pressure spray head; 123-a reflux port; 2-a replenishment structure; a 21-T shaped seat; 211-cleaning the mouth; 212-a water inlet of the floor scrubber; 213-a sewage outlet of the floor scrubber; 214-a scrubber charging port; 22-charging structure; 23-a water tank structure; 231-clean water tank; 232-water filling port; 233-a high-pressure spray nozzle water outlet; 234-a water pumping motor; 235-a water delivery pipe; 236-a three-way tube; 2361-a first linker; 2362-a second linker; 2363-a third linker; 237-a first solenoid valve; 238-a second solenoid valve; 239-float valve; 24-a sewage draining structure; 241-a dirt bin; 242-a sewage outlet of the sewage storage tank; 243-a base drain outlet; 244-a sewage discharge motor; 245-blow-down pipe.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Examples:
referring to fig. 1, 3 and 5, the quick-filling and replenishing station of the floor scrubber comprises a shell structure 1 and a replenishing structure 2, wherein the replenishing structure 2 is embedded in the shell structure 1; the replenishment structure 2 comprises a T-shaped seat 21, a charging structure 22, a water tank structure 23 and a pollution discharge structure 24.
The one side of T type seat 21 is provided with wash port 211, scrubber water inlet 212, scrubber drain 213 and scrubber charge mouth 214, wash port 211 scrubber water inlet 212 with water tank structure 23 is connected, scrubber drain 213 with blowdown structure 24 is connected, scrubber charge mouth 214 with charging structure 22 is connected.
A battery is disposed in the charging structure 22, and connects the scrubber charging port 214 to the scrubber for charging the scrubber.
Referring to fig. 3 and 5, the water tank structure 23 includes a clean water tank 231, a water injection port 232, a high pressure nozzle water outlet 233, a water pumping motor 234 and a water pipe 235, wherein one ends of the high pressure nozzle water outlet 233 and the water pipe 235 are fixedly arranged at the bottom end of the clean water tank 231, the other end of the water pipe 235 passes through the water pumping motor 234 and is fixedly connected with a first connector 2361 of a three-way pipe fitting 236, a second connector 2362 of the three-way pipe fitting 236 is fixedly connected with a first electromagnetic valve 237, the first electromagnetic valve 237 is fixedly connected with a water inlet 212 of the floor washer through a pipeline, a third connector 2363 of the three-way pipe fitting 236 is fixedly connected with a second electromagnetic valve 238 through a pipeline, and the second electromagnetic valve 238 is fixedly connected with the cleaning port 211 through a pipeline. The water pumping motor 234 is used for conveying water in the clean water tank 231 to the water inlet 212 of the scrubber and the cleaning port 211 through the three-way pipe fitting 236, increasing the flow rate of the water, the first electromagnetic valve 237 is used for controlling the switch of the water inlet 212 of the scrubber, and the second electromagnetic valve 238 is used for controlling the switch of the cleaning port 211.
The water tank of the floor washer is connected with the water inlet 212 of the floor washer, the water pumping motor 234 and the first electromagnetic valve 237 are started, water in the clean water tank 231 can be injected into the water tank of the floor washer from the water inlet 212 of the floor washer through the water pipe 235, and water can be added to the water tank of the floor washer in a short time.
The cleaning port 211 is connected with a water spraying gun, the water pumping motor 234 and the second electromagnetic valve 238 are started, and water in the clean water tank 231 can be sprayed out of the water spraying gun through the water conveying pipe 235 and the cleaning port 211 for cleaning the sewage tank of the floor cleaning machine.
Referring to fig. 3, the water injection port 232 is provided at the top of the clean water tank 231, the water injection port 232 is connected to an external water source, and the external water source injects water into the clean water tank 231 through the water injection port 232.
Referring to fig. 3 and 4, a ball float valve 239 is fixedly arranged at the upper end of the interior of the clean water tank 231, one end of the ball float valve passes through the outer wall of the clean water tank 231 and is fixed on the outer wall of the clean water tank 231, the other end of the ball float valve 239 is suspended in the interior of the clean water tank 231, when the water level in the clean water tank 231 is lower than the lower limit of the set range, the ball float valve 239 is opened, and an external water source starts to fill the clean water tank 231 through the water filling port 232; when the water level in the clean water tank 231 is higher than the upper limit of the set range, the float valve 239 is closed, and the external water source stops supplying water, so that the water in the clean water tank 231 is always kept in the set range, and sufficient water can be provided for the floor washing machine.
Referring to fig. 3 and 5, the sewage draining structure 24 includes a sewage storing tank 241, a sewage storing Hunan sewage draining outlet 242, a base sewage draining outlet 243, a sewage draining motor 244 and a sewage draining pipe 245, one end of the sewage draining pipe 245 is connected with the sewage storing tank 241, and the other end of the sewage draining pipe 245 passes through the sewage draining motor 244 and is fixedly connected with the sewage draining outlet 213 of the scrubber. The sewage discharge motor 244 serves to convey sewage flowing into the scrubber sewage discharge outlet 213 into the sewage storage tank 241 and increase a sewage flow rate.
The side bottom of the sewage storage tank 241 is provided with the sewage drain 242 for discharging sewage in the sewage storage tank 241.
The bottom of the front surface of the sewage storage tank 241 is provided with the base sewage drain 243.
The sewage tank of the floor washing machine is connected with the sewage drain outlet 213 of the floor washing machine, and the sewage in the sewage tank of the floor washing machine can be quickly discharged into the sewage storage tank 241 by starting the sewage drain motor 244. The sewage in the sewage storage tank 241 may be discharged from the sewage storage tank drain 242.
Referring to fig. 1 and fig. 2, the housing structure 1 includes a base station housing 11 and a base 12, the inside of the base station housing 11 is a hollow structure, the replenishment structure 2 is disposed inside the base station housing 11, a T-shaped hole 111 is formed in the front surface of the base station housing 11, and the shape and the size of the T-shaped hole 111 are adapted to those of the T-shaped seat 21, so that the T-shaped seat 21 is disposed in the T-shaped hole 111.
The side surface of the base station housing 11 is embedded with a display screen 112 for displaying management information of the replenishment station and performing operation management, such as charging, electricity replenishment, clean water filling, sewage discharge conditions and progress, displaying the number of times and time of station returning of the floor cleaning machine, adjusting the electricity consumption time of the valley peak, and being used for attendance of cleaning staff and the like.
Referring to fig. 2 and 3, the base 12 connected to the front bottom of the base station housing 11 is provided, a groove 121 is provided on the base 12, and the size and shape of the groove 121 are adapted to the size and shape of the water absorption body of the floor scrubber. The inner wall of the groove 121 is provided with a high-pressure spray head 122, the high-pressure spray head 122 is fixedly connected with the other end of the high-pressure spray head water outlet 233 through a pipeline, and the high-pressure spray heads 122 are provided with a plurality of high-pressure spray heads which are linearly and uniformly arranged on the inner walls of the two sides of the groove 121. Placing the water absorption groveling of the floor cleaning machine in the groove 121, starting the high-pressure spray head 122, spraying water in the clean water tank 231 from the high-pressure spray head 122 through the high-pressure spray head water outlet 233, and cleaning the water absorption groveling of the floor cleaning machine.
Referring to fig. 2, 3 and 5, a backflow port 123 is disposed on the bottom surface of the groove 121, the backflow port 123 is fixedly connected with the base drain port 243 through a pipeline, the backflow port 123 is disposed in a plurality of areas, and is uniformly arranged on the bottom surface of the groove 121, and the sewage after the floor scrubber absorbs water and is cleaned flows into the base drain port 243 through the pipeline through the backflow port 123, and finally is discharged into the sewage storage tank 241.
The foregoing description is only of the preferred embodiments of the present utility model and is not intended to limit the scope of the present utility model.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The quick-filling and replenishing station of the floor washing machine comprises a shell structure and a replenishing structure, wherein the replenishing structure is embedded in the shell structure, and the quick-filling and replenishing station is characterized in that:
the replenishing structure comprises a T-shaped seat, a water tank structure, a pollution discharge structure and a charging structure;
the T-shaped seat is provided with a cleaning port, a water inlet of the floor scrubber, a sewage outlet of the floor scrubber and a charging port of the floor scrubber;
the cleaning port and the water inlet of the floor cleaning machine are structurally connected with the water tank;
the sewage outlet of the floor washing machine is connected with the sewage structure;
the ground washer charging port is connected with the charging structure.
2. The floor scrubber quick fill replenishment station of claim 1, wherein:
the water tank structure comprises a clean water tank, a high-pressure spray nozzle water outlet, a water delivery pipe, a water pumping motor, a three-way pipe fitting and an electromagnetic valve;
the water outlet of the high-pressure spray head and the water delivery pipe penetrate through the bottom surface of the clear water tank and extend to the outside;
the water delivery pipe penetrates through the water pumping motor and is fixedly connected with the three-way pipe fitting, and the three-way pipe fitting is fixedly connected with the water inlet and the cleaning port of the floor cleaning machine through the electromagnetic valve.
3. The floor scrubber quick fill replenishment station of claim 1, wherein:
the sewage discharging structure comprises a sewage storing tank, a sewage discharging motor and a sewage discharging pipe;
one end of the drain pipe is connected with the sewage storage box, and the other end of the drain pipe penetrates through the drain motor and is fixedly connected with the drain outlet of the floor scrubber.
4. The floor scrubber quick fill replenishment station of claim 1, wherein:
the shell structure comprises a base station shell and a base;
the replenishing structure is arranged inside the base station shell, a T-shaped hole is formed in the front surface of the base station shell, and the T-shaped seat is arranged in the T-shaped hole;
and a battery is arranged in the charging structure.
5. The floor scrubber quick fill replenishment station as set forth in claim 4, wherein:
the base is provided with a groove, the inner wall of the groove is provided with a high-pressure spray head, and the high-pressure spray head is connected with a water outlet of the high-pressure spray head.
6. The floor scrubber quick fill replenishment station as set forth in claim 5, wherein:
the sewage draining structure also comprises a base sewage draining outlet;
and a backflow port is arranged on the bottom surface of the groove and is fixedly connected with the base drain outlet.
7. The floor scrubber quick fill replenishment station of claim 2, wherein:
the water tank structure also comprises a water filling port;
the water injection port is arranged at the top end of the clear water tank and is connected with an external water source.
8. The floor scrubber quick fill replenishment station of claim 2, wherein:
a ball float valve is arranged in the clear water tank;
one end of the float valve penetrates through and is fixed on the outer wall of the clear water tank.
9. The floor scrubber quick fill replenishment station as set forth in claim 4, wherein:
and a display screen is embedded in the base station shell.
10. The floor scrubber quick fill replenishment station as set forth in claim 6, wherein:
the sewage discharging structure also comprises a sewage discharging outlet of the sewage storage tank;
the high-pressure spray heads are arranged in a plurality and are linearly and uniformly arranged on the inner wall of the groove;
the reflux ports are arranged in a plurality, and are uniformly arranged on the bottom surface of the groove.
CN202321959714.6U 2023-07-21 2023-07-21 Quick-charging and replenishing station of floor washing machine Active CN220735322U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321959714.6U CN220735322U (en) 2023-07-21 2023-07-21 Quick-charging and replenishing station of floor washing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321959714.6U CN220735322U (en) 2023-07-21 2023-07-21 Quick-charging and replenishing station of floor washing machine

Publications (1)

Publication Number Publication Date
CN220735322U true CN220735322U (en) 2024-04-09

Family

ID=90564985

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321959714.6U Active CN220735322U (en) 2023-07-21 2023-07-21 Quick-charging and replenishing station of floor washing machine

Country Status (1)

Country Link
CN (1) CN220735322U (en)

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