A water tank self-cleaning mechanism for a scrubber dryer
By designing a self-cleaning mechanism for the floor scrubber, and using a combination of gear transmission and heating drying, the problem of incomplete cleaning of the floor scrubber's water tank is solved, achieving all-round cleaning and drying effects and improving the floor scrubber's performance.
Patent Information
- Application Number
- CN202522140015.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-10-10
AI Technical Summary
Existing floor scrubber water tank cleaning devices cannot perform all-round cleaning without dead angles, resulting in poor cleaning effect and affecting the use effect.
A self-cleaning mechanism was designed, which includes rinsing, drying, feeding, ultrasonic cleaning, support, and drainage mechanisms. It achieves all-round rinsing through gear transmission driven by a micro motor, and combines a fan and heating components for drying. Ultrasonic cleaning and support structures enhance stability.
It achieves all-round cleaning of the floor scrubber's water tank, ensuring improved cleaning effect, thorough drying, enhanced structural stability, and convenient operation.
Smart Images

Figure CN224671447U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water tank self-cleaning technology, and in particular to a water tank self-cleaning mechanism for floor scrubbers. Background Technology
[0002] The water tank of a floor scrubber is mainly divided into a clean water tank and a wastewater tank. The clean water tank is mainly used to store cleaning water. Its capacity varies depending on the model of the floor scrubber. It is generally made of high-strength, wear-resistant plastic with good sealing properties to prevent water leakage. During operation, the water in the clean water tank is pumped out by a water pump and transported to the nozzle through water pipes to achieve the function of spraying water for cleaning, thus providing a water source guarantee for the cleaning work of the floor scrubber. The wastewater tank is used to collect the wastewater generated during the cleaning process. It usually consists of a tank body, a wastewater inlet, a filter, etc. The tank body is made of corrosion-resistant plastic and comes in various shapes. The capacity also varies depending on the design of the floor scrubber. The wastewater inlet is the channel connecting the cleaning part of the floor scrubber. Wastewater containing dirt enters the wastewater tank through the wastewater inlet. The filter is an important component of the wastewater tank. It is generally made of fine filter screen and sponge material, which can filter out larger solid debris, preventing blockage of drainage pipes and damage to water pump parts. When the wastewater tank is full, it needs to be removed and cleaned in time to ensure the normal use of the floor scrubber. When cleaning the wastewater tank, the wastewater should be completely emptied and the inside of the tank should be rinsed to remove residual dirt and odors.
[0003] A search revealed Chinese Patent Publication No. CN220487711U, which discloses a self-cleaning device for automotive radiator tanks. This device relates to the field of automotive radiator tank technology and addresses the problems of existing automotive radiators easily accumulating dust after prolonged use, being difficult to clean, and affecting heat dissipation efficiency. The device includes a main body for the automotive radiator tank; the main body has a hollow cavity inside, and radiator fins are symmetrically fixed to its outer side; a booster pump is installed inside the heat exchanger / cooler to ensure proper cleaning of the internal components. Cooling water circulates, driving the power shaft inside the heat exchanger to rotate. This power shaft then drives the synchronous belt A to rotate, which in turn drives the rotating shaft. This causes the rotating rod and the bevel gear A on the rotating rod to drive the bevel gear B and the reciprocating screw to rotate. This causes the cleaning block to move back and forth on the radiator fins on the outside of the car's radiator body, cleaning the radiator fins. Although this device can drive the cleaning block to move back and forth on the radiator fins on the outside of the car's radiator body to clean the radiator fins, it cannot perform a thorough cleaning without dead angles, resulting in poor cleaning effect and affecting the performance of the device. Utility Model Content
[0004] To overcome the above shortcomings, this utility model provides a self-cleaning mechanism for the water tank of a floor scrubber, aiming to improve the problem that the existing technology cannot perform all-round cleaning without dead angles, resulting in poor cleaning effect and affecting the use effect.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a water tank self-cleaning mechanism for a floor scrubber, comprising a tank body, a fixed plate fixedly connected to the top of the tank body, a rinsing mechanism provided at the bottom of the fixed plate for rinsing, a drying mechanism provided near the middle of the bottom of the tank body for heating and drying, a feeding mechanism provided on the top left side of the tank body, multiple ultrasonic mechanisms provided on the inner wall of the tank body, a support mechanism provided at the lower end of the outer wall of the tank body, a drainage mechanism provided on the front side of the bottom of the tank body, a bottom plate provided at the bottom of the tank body, and a square box fixedly connected to the top left side of the tank body; The rinsing mechanism includes a micro motor, the top of which is fixedly connected to the bottom of a fixed plate. A rotating rod is fixedly connected to the output end of the micro motor. A rotating rod is rotatably connected to the bottom of the rotating rod. A rotating rod is rotatably connected to the other end of the rotating rod. A large gear is rotatably connected to the other end of the rotating rod. A limit post is fixedly connected to the bottom of the large gear. A small gear is meshed with the outer wall of the large gear. A rotating post is fixedly connected to the bottom of the small gear. A water storage component is provided at the bottom of the rotating post.
[0006] The above technical solution includes a main body box with a fixed plate fixedly connected to the top. A rinsing mechanism is located at the bottom of the fixed plate, which is mainly used for effective rinsing. A drying mechanism is located near the middle of the bottom of the box, which is mainly used for heating and drying the items. A feeding mechanism is located on the top left side of the box to feed the items to be processed into the box. Multiple ultrasonic mechanisms are evenly distributed on the inner wall of the box to provide ultrasonic cleaning function. A support mechanism is located at the lower part of the outer wall of the box to enhance the stability and load-bearing capacity of the box. A drainage mechanism is located at the bottom front of the tank to drain wastewater. A base plate is also provided at the bottom of the tank to protect the bottom and facilitate cleaning. In addition, a square box is fixedly connected to the top left side of the tank for storing and installing related components. The rinsing mechanism consists of a micro motor, the top of which is fixedly connected to the bottom of the fixed plate. A rotating rod is fixedly connected to the output end of the micro motor. A rotating rod is rotatably connected to the bottom of the rotating rod. The other end of the rotating rod is also rotatably connected to a rotating rod. The other end of the rotating rod is rotatably connected to a large gear. A limiting post is fixedly connected to the bottom of the large gear to limit its rotation range. The outer wall of the large gear is connected to a small gear through a meshing connection. A rotating post is fixedly connected to the bottom of the small gear. A water storage component is located at the bottom of the rotating post to store and supply water for rinsing.
[0007] As a further description of the above technical solution: The drying mechanism includes a square frame, the top of which is fixedly connected to the bottom of the box. Multiple fans are fixedly connected to the bottom of the inner wall of the square frame. An air outlet plate is fixedly connected to the top of each fan. A heating component is provided on the top of the air outlet plate. An air outlet plate is fixedly connected to the upper end of the inner wall of the square frame. A heat-conducting plate is fixedly connected to the top of the air outlet plate.
[0008] The above technical solution describes a drying mechanism comprising a sturdy square frame. The top of the square frame is securely connected to the bottom of the housing via a reliable fixing method, ensuring the overall structural stability. Multiple high-efficiency fans are uniformly and firmly fixedly connected to the bottom inner wall of the square frame. An air outlet plate is fixedly connected to the top of each fan, and a heating element is installed at the top of the air outlet plate. This heating element efficiently provides the required heat. Similarly, an air outlet plate is fixedly connected to the upper inner wall of the square frame, and a heat-conducting plate with excellent thermal conductivity is further fixedly connected to the top of the air outlet plate to ensure uniform heat distribution and efficient heat transfer.
[0009] As a further description of the above technical solution: The water storage assembly includes a water storage tank. The top of the water storage tank is fixedly connected to the bottom of the rotating column near the middle. A rotating ring is fixedly connected to the outer wall of the water storage tank. The outer wall of the rotating ring is slidably connected to the upper end of the inner wall of the tank. The bottom of the rotating ring is connected to multiple connecting cylinders, and the bottom of each connecting cylinder is connected to a nozzle.
[0010] The above technical solution involves a water storage tank located at the center of the entire assembly. Its top, near the center, is firmly connected to the bottom of the rotating column, ensuring stability and synchronization during operation. A rotating ring is fixedly connected to the outer wall of the tank, providing structural support and sliding connection between its outer wall and the upper inner wall of the tank. This connection allows the ring to move flexibly within a certain range to adapt to different operational needs. Multiple evenly distributed connecting cylinders are connected to the bottom of each rotating ring, arranged radially to ensure uniform water flow. Each connecting cylinder is further connected to a nozzle at its bottom, which sprays water from the tank at a specific manner and angle, achieving efficient water flow control and utilization. This ensures the functionality and stability of the water storage assembly and improves the overall system's operational efficiency and reliability.
[0011] As a further description of the above technical solution: The heating assembly includes a heating tube, the bottom of which is fixedly connected to the top of the air outlet plate, and a plug is fixedly connected to the right side of the heating tube.
[0012] Through the above technical solution: the heating component is mainly composed of a heating tube. The bottom of the heating tube is tightly connected to the top of the air outlet plate by a specific fixing method to ensure that the connection between the two is stable and not easy to loosen. On the right side of the heating tube, there is a plug for power supply connection. The plug is fixedly connected to the heating tube to ensure that it will not fall off or have poor contact during the plugging and unplugging process, thereby ensuring the normal operation and safe use of the heating component.
[0013] As a further description of the above technical solution: The feeding mechanism includes a threaded cylinder, the bottom of which is connected to the top left side of the water storage tank, and a threaded cap is threadedly connected to the outer wall of the threaded cylinder.
[0014] Through the above technical solution: the feeding mechanism is mainly composed of a threaded cylinder. The bottom of the threaded cylinder is precisely connected to the top left side of the water storage tank, so that the threaded cylinder can smoothly receive liquid and powder materials from the water storage tank. In addition, in order to ensure the sealing and stability of the threaded cylinder, its outer wall is tightly threaded to a threaded cap, which makes the threaded cylinder stable during use and also facilitates the disassembly and installation of the threaded cap, thus making the maintenance and cleaning of the feeding mechanism more convenient.
[0015] As a further description of the above technical solution: The ultrasonic mechanism includes multiple threaded rods, and the opposite sides of the multiple threaded rods are fixedly connected to the inner wall of the housing. The outer wall of each threaded rod is threaded with a vibrator.
[0016] Through the above technical solution: the ultrasonic mechanism is composed of multiple threaded rods, which are structurally independent and evenly distributed. One end of each threaded rod, i.e., the side furthest from each other, is tightly connected to the inner wall of the housing through a robust fixing method, ensuring its stability during operation. The outer wall of the threaded rod precisely matches the internal thread of the vibrator, thereby realizing the threaded connection between the vibrator and the threaded rod. Through this connection method, the vibrator can be firmly installed on the threaded rod and can be easily disassembled and adjusted when needed. This not only ensures the overall stability of the ultrasonic mechanism but also improves its working efficiency and operational flexibility.
[0017] As a further description of the above technical solution: The support mechanism includes a support ring, the inner wall of which is fixedly connected to the lower end of the outer wall of the box, and multiple support columns are fixedly connected to the bottom of the support ring, with the bottom of each of the multiple support columns fixedly connected to the top of the base plate.
[0018] Through the above technical solution: the support mechanism mainly consists of a support ring, the inner wall of which is fixedly connected to the lower end of the outer wall of the box to ensure the stability and safety of the entire structure. At the bottom of the support ring, multiple support columns are evenly and fixedly connected. The function of the support columns is to provide additional support force to withstand greater weight and pressure. The bottom of each support column is fixedly connected to the top of the base plate to ensure the stability and reliability of the entire support mechanism. The support mechanism achieves effective support for the box through the combination of the support ring and the support columns.
[0019] As a further description of the above technical solution: The drainage mechanism includes a drain pipe, the top of which is connected to the bottom of the box, and a valve is rotatably connected to the inner wall of the drain pipe.
[0020] The above technical solution includes a drainage pipe, the top of which is connected to the bottom of the tank to ensure that liquid can flow from the tank into the drainage pipe. A valve is installed on the inner wall of the drainage pipe by a rotating connection. The valve can be flexibly opened and closed to control the flow rate and timing of liquid discharge, thereby achieving precise control of the drainage process.
[0021] As a further description of the above technical solution: This utility model has the following beneficial effects: 1. In this utility model, the micro motor is started, and then the micro motor drives the first rotating rod to rotate. At the same time, the first rotating rod drives the second rotating rod to rotate, and then the second rotating rod drives the third rotating rod to rotate. Then the third rotating rod will drive the large gear to rotate. When the second rotating rod rotates one revolution, the large gear rotates half a revolution. Then the large gear will move in the opposite direction. At this time, the large gear will drive the small gear to rotate. The small gear rotates one revolution and then rotates one revolution in the opposite direction. Then the small gear can drive the rotating column and the water tank to rotate, realizing the function of comprehensive rinsing through forward and reverse rotation. 2. In this utility model, when drying is required, the fan is turned on, and the fan will blow out air. Then the heating tube can heat up. At this time, the air from the fan is conducted to the heating tube through the holes on the first air outlet plate. The hot air is then transferred to the heat-conducting plate through the second air outlet plate. At the same time, the heat-conducting plate will heat and dry the inside of the chamber, thus achieving the function of heating and drying the inside of the chamber with hot air, ensuring that the pipes are thoroughly dried. Attached Figure Description
[0022] Figure 1 This is a front perspective view of a water tank self-cleaning mechanism for a floor scrubber proposed in this utility model; Figure 2 This is a partial structural breakdown diagram of the tank body of a water tank self-cleaning mechanism for a floor scrubber proposed in this utility model; Figure 3 This is a partial structural breakdown diagram of the heating tube of a water tank self-cleaning mechanism for a floor scrubber proposed in this utility model; Figure 4 This is a partial structural breakdown diagram of the water tank of a self-cleaning mechanism for a floor scrubber proposed in this utility model. Figure 5 This is a partial structural breakdown diagram of the vibrator of the self-cleaning mechanism for the water tank of a floor scrubber proposed in this utility model.
[0023] Legend: 1. Housing; 2. Washing mechanism; 201. Micro motor; 202. Rotating rod one; 203. Rotating rod two; 204. Rotating rod three; 205. Large gear; 206. Limiting post; 207. Small gear; 208. Rotating column; 209. Water storage assembly; 2091. Water storage tank; 2092. Rotating ring; 2093. Connecting cylinder; 2094. Nozzle; 3. Drying mechanism; 301. Square frame; 302. Fan; 303. Air outlet plate one; 304. Heating component; 3041. Heating tube; 3042. Plug; 305. Air outlet plate II; 306. Heat-conducting plate; 4. Feeding mechanism; 401. Threaded cap; 402. Threaded cylinder; 5. Ultrasonic mechanism; 501. Threaded rod; 502. Vibrator; 6. Support mechanism; 601. Support ring; 602. Support column; 7. Drainage mechanism; 701. Drainage pipe; 702. Valve; 8. Fixing plate; 9. Base plate; 10. Square box. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see the appendix Figure 1 Appendix Figure 2 and attached Figure 4 The present invention provides an embodiment of a water tank self-cleaning mechanism for a floor scrubber, comprising a tank body 1, a fixed plate 8 fixedly connected to the top of the tank body 1, a rinsing mechanism 2 provided at the bottom of the fixed plate 8 for rinsing, a drying mechanism 3 provided near the middle of the bottom of the tank body 1 for heating and drying, a feeding mechanism 4 provided on the left side of the top of the tank body 1 for easy feeding, multiple ultrasonic mechanisms 5 provided on the inner wall of the tank body 1, a support mechanism 6 provided at the lower end of the outer wall of the tank body 1 for support, a drainage mechanism 7 provided on the front side of the bottom of the tank body 1 for drainage, a bottom plate 9 provided at the bottom of the tank body 1, and a square box 10 fixedly connected to the left side of the top of the tank body 1. The rinsing mechanism 2 includes a micro motor 201. The top of the micro motor 201 is fixedly connected to the bottom of the fixed plate 8. A rotating rod 202 is fixedly connected to the output end of the micro motor 201. A rotating rod 203 is rotatably connected to the bottom of the rotating rod 202. A rotating rod 204 is rotatably connected to the other end of the rotating rod 203. A large gear 205 is rotatably connected to the other end of the rotating rod 204. A limit post 206 is fixedly connected to the bottom of the large gear 205. A small gear 207 is meshed with the outer wall of the large gear 205. The bottom of the small gear 207 is fixedly connected to... A rotating column 208 is connected to the rotating column 208, which has a rotating function. A water storage component 209 is provided at the bottom of the rotating column 208. The water storage component 209 includes a water storage tank 2091. The top of the water storage tank 2091 is fixedly connected to the bottom of the rotating column 208 near the middle. A rotating ring 2092 is fixedly connected to the outer wall of the water storage tank 2091. The outer wall of the rotating ring 2092 is slidably connected to the upper end of the inner wall of the box body 1. Multiple connecting cylinders 2093 are connected to the bottom of the rotating ring 2092. A nozzle 2094 is connected to the bottom of the connecting cylinder 2093, which can spray water. Specifically, it includes a main body box 1, with a fixed plate 8 fixedly connected to the top of the box 1. A rinsing mechanism 2 is provided at the bottom of the fixed plate 8, and the main function of the rinsing mechanism 2 is to perform effective rinsing. A drying mechanism 3 is provided at the bottom of the box 1 near the middle, and the main function of the drying mechanism 3 is to heat and dry the items. A feeding mechanism 4 is provided on the top left side of the box 1, which is used to feed the items to be processed into the box 1. Multiple ultrasonic mechanisms 5 are evenly distributed on the inner wall of the box 1 to provide ultrasonic cleaning function. A support mechanism 6 is provided at the lower part of the outer wall of the box 1 to enhance the stability and load-bearing capacity of the box 1. A drainage mechanism 7 is provided at the bottom front of the box 1 to drain the wastewater inside the box 1. A bottom plate 9 is also provided at the bottom of the box 1 to protect the bottom of the box 1 and facilitate cleaning. In addition, a square box 10 is fixedly connected to the top left side of the box 1 for storing and installing related components. The flushing mechanism 2 includes a micro motor 201. The top of the micro motor 201 is fixedly connected to the bottom of the fixed plate 8. A rotating rod 202 is fixedly connected to the output end of the micro motor 201. The bottom of the rotating rod 202 is connected by a rotational connection. A rotating rod 203 is connected via a rotatable connection. The other end of the rotating rod 203 is also connected via a rotatable connection to a rotating rod 204. The other end of the rotating rod 204 is then connected via a rotatable connection to a large gear 205. A limiting post 206 is fixedly connected to the bottom of the large gear 205 to limit its rotation range. The outer wall of the large gear 205 is connected to a small gear 207 via a meshing connection. A rotating post 208 is fixedly connected to the bottom of the small gear 207, and a water storage component is located at the bottom of the rotating post 208. 209, used for storing and supplying water for rinsing, includes a water storage tank 2091, which is structurally located at the center of the entire assembly. Its top, near the center, is firmly connected to the bottom of the rotating column 208, ensuring stability and synchronization during operation. A rotating ring 2092 is also fixedly connected to the outer wall of the water storage tank 2091. This rotating ring 2092 not only provides structural support but also slides against the upper end of the inner wall of the tank 1 through its outer wall. This connection method allows the rotating ring 2092 to... The rotating ring 2092 can move flexibly within a certain range to adapt to different working needs. The bottom of the rotating ring 2092 is connected to multiple evenly distributed connecting cylinders 2093. The connecting cylinders 2093 are arranged radially to ensure the uniform distribution of water flow. The bottom of each connecting cylinder 2093 is further connected to a nozzle 2094. The nozzle 2094 can spray the water in the water storage tank 2091 in a specific way and angle, thereby achieving efficient water flow control and utilization, ensuring the functionality and stability of the water storage component 209, and improving the operating efficiency and reliability of the entire system.
[0026] Please see the appendix Figure 1 Appendix Figure 2 and attached Figure 3 The drying mechanism 3 includes a square frame 301. The top of the square frame 301 is fixedly connected to the bottom of the box 1. Multiple fans 302 are fixedly connected to the bottom of the inner wall of the square frame 301 to blow air. An air outlet plate 303 is fixedly connected to the top of the fan 302. A heating component 304 is provided on the top of the air outlet plate 303. An air outlet plate 305 is fixedly connected to the upper end of the inner wall of the square frame 301. A heat-conducting plate 306 is fixedly connected to the top of the air outlet plate 305. The heating component 304 includes a heating tube 3041 for convenient heating. The bottom of the heating tube 3041 is fixedly connected to the top of the air outlet plate 303. A plug 3042 is fixedly connected to the right side of the heating tube 3041. Specifically, the drying mechanism 3 includes a structurally stable square frame 301. The top of the square frame 301 is reliably fixed to the bottom of the housing 1 to ensure the stability of the overall structure. Multiple high-efficiency fans 302 are evenly and firmly fixed to the bottom of the inner wall of the square frame 301. An air outlet plate 303 is fixedly connected to the top of each fan 302. A heating element 304 is installed at the top of the air outlet plate 303, which efficiently provides the required heat. Similarly, an air outlet plate 305 is fixedly connected to the upper inner wall of the square frame 301, and the top of the air outlet plate 305... A heat-conducting plate 306 with excellent thermal conductivity is further fixedly connected to ensure uniform heat distribution and efficient heat transfer. The heating component 304 is mainly composed of a heating tube 3041. The bottom of the heating tube 3041 is tightly connected to the top of the air outlet plate 303 through a specific fixing method to ensure that the connection between the two is stable and not easy to loosen. On the right side of the heating tube 3041, there is a plug 3042 for power supply connection. The plug 3042 is fixedly connected to the heating tube 3041 to ensure that there will be no detachment or poor contact during plugging and unplugging, thereby ensuring the normal operation and safe use of the heating component 304.
[0027] Please see the appendix Figure 1 Appendix Figure 2 and attached Figure 5 The feeding mechanism 4 includes a threaded cylinder 402. The bottom of the threaded cylinder 402 is connected to the top left side of the water storage tank 2091. A threaded cap 401 is threadedly connected to the outer wall of the threaded cylinder 402. The ultrasonic mechanism 5 includes multiple threaded rods 501, which can be fixed. The outward side of each threaded rod 501 is fixedly connected to the inner wall of the box 1. A vibrator 502 is threadedly connected to the outer wall of the threaded rod 501, which can vibrate. Specifically, the feeding mechanism 4 mainly consists of a threaded cylinder 402. The bottom of the threaded cylinder 402 is precisely connected to the top left side of the water storage tank 2091, allowing the threaded cylinder 402 to smoothly receive liquid and powder materials from the water storage tank 2091. Furthermore, to ensure the sealing and stability of the threaded cylinder 402, its outer wall is tightly threaded to a threaded cap 401, ensuring the stability of the threaded cylinder 402 during use and facilitating the disassembly and installation of the threaded cap 401. This makes the maintenance and cleaning of the feeding mechanism 4 more convenient. The structure 5 consists of multiple threaded rods 501. One end of each threaded rod 501, i.e. the side furthest from the other, is tightly connected to the inner wall of the housing 1 by a sturdy fixing method, ensuring that it remains stable during operation. The outer wall of the threaded rod 501 is precisely matched with the internal thread of the vibrator 502, thereby realizing the threaded connection between the vibrator 502 and the threaded rod 501. Through this connection method, the vibrator 502 can be firmly installed on the threaded rod 501, and can be easily disassembled and adjusted when needed. This not only ensures the overall stability of the ultrasonic mechanism 5, but also improves its working efficiency and operational flexibility.
[0028] Please see the appendix Figure 1 Appendix Figure 2 and attached Figure 3 The support mechanism 6 includes a support ring 601, the inner wall of which is fixedly connected to the lower end of the outer wall of the box 1. Multiple support columns 602 are fixedly connected to the bottom of the support ring 601, which plays a supporting role. The bottom of the multiple support columns 602 is fixedly connected to the top of the base plate 9. The drainage mechanism 7 includes a drain pipe 701, the top of which is connected to the bottom of the box 1. A valve 702 is rotatably connected to the inner wall of the drain pipe 701 to facilitate drainage. Specifically, the support mechanism 6 mainly consists of a support ring 601. The inner wall of the support ring 601 is fixedly connected to the lower end of the outer wall of the box 1 to ensure the stability and safety of the entire structure. At the bottom of the support ring 601, multiple support columns 602 are evenly and fixedly connected. The function of the support columns 602 is to provide additional support force to withstand greater weight and pressure. The bottom of each support column 602 is fixedly connected to the top of the base plate 9 to ensure the stability and reliability of the entire support mechanism 6. The support mechanism 6 achieves effective support for the box 1 through the combination of the support ring 601 and the support columns 602. The drainage mechanism 7 specifically includes a drain pipe 701. The top part of the drain pipe 701 is tightly connected to the bottom area of the box 1 to ensure that liquid can flow from the box 1 into the drain pipe 701. On the inner wall of the drain pipe 701, a valve 702 is installed by a rotating connection. The valve 702 can be flexibly opened and closed to control the flow rate and timing of liquid discharge, thereby achieving precise control of the drainage process.
[0029] Working principle: First, when the box 1 needs cleaning after use, the micro motor 201 is started. Then, the micro motor 201 drives the rotating rod 1 202 to rotate. At the same time, the rotating rod 1 202 drives the rotating rod 203 to rotate. Then, the rotating rod 203 drives the rotating rod 3 204 to rotate. Then, the rotating rod 3 204 will drive the large gear 205 to rotate. After the rotating rod 203 rotates one revolution, the large gear 205 rotates half a revolution. Then, the large gear 205 will move in the opposite direction. At this time, the large gear 205 will drive the small gear 207 to rotate. The small gear 207 rotates one revolution and then rotates one revolution in the opposite direction. Then, the small gear 207 can drive the rotating column 208 and the water tank 2091 to rotate. The water tank 2091 and the rotating ring 2092 will rotate on the inner wall of the box 1. At this time, the cleaning liquid in the water tank 2091 will be sprayed out through the connecting cylinder 2093 and the nozzle 2094 for rinsing, realizing the function of comprehensive rinsing through forward and reverse rotation. When drying is required, fan 302 is turned on. At this time, fan 302 will blow out air, and heating tube 3041 can heat up. The air from fan 302 is conducted to heating tube 3041 through the holes on air outlet plate 303. The hot air is then transferred to heat conduction plate 306 through air outlet plate 305. At the same time, heat conduction plate 306 will heat and dry the inside of the chamber 1, thus achieving the function of heating and drying the inside of the chamber 1 with hot air and ensuring that the pipes are thoroughly dried.
[0030] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A self-cleaning mechanism for a water tank in a floor scrubber, comprising a housing (1), characterized in that: A fixed plate (8) is fixedly connected to the top of the box (1). A rinsing mechanism (2) is provided at the bottom of the fixed plate (8). The rinsing mechanism (2) is used for rinsing. A drying mechanism (3) is provided near the middle of the bottom of the box (1). The drying mechanism (3) is used for heating and drying. A feeding mechanism (4) is provided on the left side of the top of the box (1). Multiple ultrasonic mechanisms (5) are provided on the inner wall of the box (1). A support mechanism (6) is provided at the lower end of the outer wall of the box (1). A drainage mechanism (7) is provided on the front side of the bottom of the box (1). A bottom plate (9) is provided at the bottom of the box (1). A square box (10) is fixedly connected to the left side of the top of the box (1). The rinsing mechanism (2) includes a micro motor (201), the top of which is fixedly connected to the bottom of the fixed plate (8). The output end of the micro motor (201) is fixedly connected to a rotating rod (202). The bottom of the rotating rod (202) is rotatably connected to a rotating rod (203). The other end of the rotating rod (203) is rotatably connected to a rotating rod (204). The other end of the rotating rod (204) is rotatably connected to a large gear (205). The bottom of the large gear (205) is fixedly connected to a limiting post (206). The outer wall of the large gear (205) is meshed with a small gear (207). The bottom of the small gear (207) is fixedly connected to a rotating post (208). The bottom of the rotating post (208) is provided with a water storage component (209).
2. The self-cleaning mechanism for a water tank of a floor scrubber according to claim 1, characterized in that: The drying mechanism (3) includes a square frame (301), the top of which is fixedly connected to the bottom of the box (1), and multiple fans (302) are fixedly connected to the bottom of the inner wall of the square frame (301). An air outlet plate (303) is fixedly connected to the top of the fan (302), and a heating component (304) is provided on the top of the air outlet plate (303). An air outlet plate (305) is fixedly connected to the upper end of the inner wall of the square frame (301), and a heat-conducting plate (306) is fixedly connected to the top of the air outlet plate (305).
3. The self-cleaning mechanism for a water tank of a floor scrubber according to claim 1, characterized in that: The water storage assembly (209) includes a water storage tank (2091). The top of the water storage tank (2091) is fixedly connected to the bottom of the rotating column (208) near the middle. A rotating ring (2092) is fixedly connected to the outer wall of the water storage tank (2091). The outer wall of the rotating ring (2092) is slidably connected to the upper end of the inner wall of the box body (1). The bottom of the rotating ring (2092) is connected to multiple connecting cylinders (2093). The bottom of the connecting cylinders (2093) is connected to a nozzle (2094).
4. The self-cleaning mechanism for a water tank of a floor scrubber according to claim 2, characterized in that: The heating assembly (304) includes a heating tube (3041), the bottom of which is fixedly connected to the top of the air outlet plate (303), and a plug (3042) is fixedly connected to the right side of the heating tube (3041).
5. The self-cleaning mechanism for a water tank of a floor scrubber according to claim 1, characterized in that: The feeding mechanism (4) includes a threaded cylinder (402), the bottom of which is connected to the top left side of the water storage tank (2091), and the outer wall of the threaded cylinder (402) is threadedly connected to a threaded cap (401).
6. The self-cleaning mechanism for a water tank of a floor scrubber according to claim 1, characterized in that: The ultrasonic mechanism (5) includes multiple threaded rods (501), and the opposite sides of the multiple threaded rods (501) are fixedly connected to the inner wall of the housing (1). The outer wall of the threaded rods (501) is threaded with a vibrator (502).
7. The self-cleaning mechanism for a water tank of a floor scrubber according to claim 1, characterized in that: The support mechanism (6) includes a support ring (601), the inner wall of the support ring (601) is fixedly connected to the lower end of the outer wall of the box (1), and a plurality of support columns (602) are fixedly connected to the bottom of the support ring (601), and the bottom of the plurality of support columns (602) is fixedly connected to the top of the base plate (9).
8. The self-cleaning mechanism for a water tank of a floor scrubber according to claim 1, characterized in that: The drainage mechanism (7) includes a drain pipe (701), the top of which is connected to the bottom of the box (1), and a valve (702) is rotatably connected to the inner wall of the drain pipe (701).
Citation Information
Patent Citations
Self-cleaning device for water tank of automobile radiator
CN220487711U