Novel radish cleaning machine
By incorporating a multi-stage filtration and sedimentation system into the radish washing machine, the problem of direct wastewater discharge from traditional washing machines is solved, enabling wastewater recycling and reuse, reducing costs, and improving operational efficiency.
Patent Information
- Application Number
- CN202423108344.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Traditional radish washing machines directly discharge wastewater, resulting in serious waste of water resources and high cleaning costs.
Two-stage filtration is performed by installing filter screen one and filter screen two in the drain pipe, combined with sedimentation tank one and sedimentation tank two for two-stage sedimentation filtration. The purified wastewater is then recycled to the water tank using pump two, thus employing multi-stage filtration treatment.
It enables the recycling and reuse of wastewater, reduces water waste, lowers cleaning costs, and improves operational efficiency through an intelligent control system.
Smart Images

Figure CN223667220U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of agricultural machinery equipment, in particular to a novel radish cleaning machine. BACKGROUND
[0002] With the development of agricultural modernization, radish cleaning has become an important link in agricultural production. In the radish cleaning process of the traditional radish cleaning machine, the generated sewage is generally directly discharged, resulting in serious waste of water resources and high cleaning cost. Therefore, the application provides a novel radish cleaning machine to solve the above problems. CONTENT OF THE INVENTION
[0003] The application provides a novel radish cleaning machine, which is characterized in that filter screen one and filter screen two are arranged in the drain pipe from top to bottom, sewage is subjected to two-stage filtration treatment to remove large-particle impurities and suspended matters and other sundries in the sewage, then the filtered sewage is subjected to two-stage sedimentation filtration treatment by using sedimentation tanks one and two, and then the filtered and purified sewage is conveyed back to the water tank under the action of pump two for reuse, the sewage is subjected to multi-stage filtration and purification treatment in the form of multi-stage filtration treatment, the sewage recycling is realized, the water resource waste rate is reduced, the energy-saving purpose is achieved, and the cleaning cost is effectively reduced.
[0004] The application provides a novel radish cleaning machine, which comprises a box body, two groups of cleaning rollers are arranged in the box body, the first group of cleaning rollers has three cleaning rollers, the second group of cleaning rollers has eight cleaning rollers, the first group of cleaning rollers is located above the front end of the second group of cleaning rollers, a feeding port is formed in one side of the box body, a feeding pocket is fixed at the feeding port, one supporting leg is fixed at each corner of the bottom of the box body, the same water tank is fixed on two supporting legs on one side, a water filling pipe is arranged on the top of the water tank, a water level monitoring sensor one is arranged on the inner wall of one side of the water tank, a pump one is arranged at the bottom of the water tank, a water supply pipe is connected to the output end of the pump one, a water valve is arranged on the water supply pipe, a plurality of spray heads are arranged at the bottom of the water supply pipe, the plurality of spray heads pass through the top of the box body and are located above the first group of cleaning rollers and the second group of cleaning rollers, a drain pipe is arranged at the bottom of the box body, filter screen one and filter screen two are sequentially arranged in the drain pipe from top to bottom, the filter screen one and the filter screen two are both arranged in an inclined manner, a sundry discharge port is formed in the drain pipe at the low end of the filter screen one and the filter screen two, the same sundry tank is fixed at the two sundry discharge ports, a sedimentation tank one is connected to the bottom of the drain pipe, a sedimentation tank two is connected to the side wall of the sedimentation tank one through a pipeline, a water level monitoring sensor two and a water level monitoring sensor three are arranged on one side of the inner wall of the sedimentation tank two from top to bottom, a pump two is arranged in the sedimentation tank two at a position parallel to the water level monitoring sensor three, a water return pipe is connected to the output end of the pump two, the water return pipe is communicated with the water tank at the tail end, a discharge port is formed in one side of the box body, a discharge chute is fixed at the discharge port, a controller is installed on the outer wall of the box body, and the controller is in wired connection with the pump one, the pump two, the water level monitoring sensor one, the water level monitoring sensor two, the water level monitoring sensor three and the water valve.
[0005] Further, two adjacent cleaning rollers in the first group of three cleaning rollers are connected by a belt.
[0006] Further, two adjacent cleaning rollers in the second group of eight cleaning rollers are connected by a belt.
[0007] Further, one of the cleaning rollers in the first group and one of the cleaning rollers in the second group are connected to a motor through the box and are connected to the controller.
[0008] Further, the bottom of the sediment tank one and the bottom of the sediment tank two are provided with a pipe cover, which is detachable.
[0009] Further, the impurity tank is provided with a pipe cover.
[0010] The application provides a novel radish cleaning machine, which comprises a box body, a frame body provided with a cleaning roller and a spray head and the like structure and simultaneously serving as a collecting device for collecting sewage generated during radish cleaning, so that the sewage can be discharged into a sewage recycling device for purification and recycling treatment, resource recycling and reuse are realized, resource waste is reduced, two groups of cleaning rollers are arranged in the box body, the first group of cleaning rollers comprises three cleaning rollers, the second group of cleaning rollers comprises eight cleaning rollers, the first group of cleaning rollers is located above the front end of the second group of cleaning rollers, the cleaning structure is provided with a brush on the surface, the radish is conveyed and brushed at the same time under the driving of a motor, so that mud and the like on the surface of the radish is removed, the purpose of cleaning the radish is achieved, a feeding port is formed in one side of the box body, the feeding port is a channel for feeding radish into the box body, a feeding bag is fixed at the feeding port, the feeding bag is a container for feeding radish, the feeding bag serves as an orderly feeding device, the radish fed into the box body in an orderly manner, the radish is cleaned in an orderly and comprehensive manner by the cleaning roller, the phenomenon of material jamming or incomplete cleaning caused by too much radish feeding at the same time is avoided, the cleaning effect is guaranteed, one supporting leg is fixed at each corner of the bottom of the box body, the supporting legs support the box body, the same water tank is fixed on the two supporting legs on one side of the box body, the water tank is a storage container for cleaning water, a water injection pipe is arranged on the top of the water tank, the water injection pipe in the water tank is connected with a water source, when the amount of cleaning water in the water tank is lower than a water level monitoring sensor, the cleaning water in the water tank is automatically supplemented under the control of a controller, so that the water tank can be normally used, the water level monitoring sensor is arranged on the inner wall of one side of the water tank, the water level monitoring sensor serves as a monitoring device, the water level monitoring sensor is used for monitoring the water level of the cleaning water in the water tank in real time, and the monitoring result is transmitted to the controller in real time, when the water level in the water tank is lower than the water level monitoring sensor, the water tank is timely supplemented, so that the device can be normally operated, a pump is arranged at the bottom of the water tank, the pump is a kinetic energy output device, the pump outputs kinetic energy during radish cleaning, the cleaning water in the water tank is continuously pumped out through the water supply pipe and then is conveyed to the spray head, so that the cleaning water is sprayed on the radish and the cleaning roller through the spray head, the radish is cleaned by the cleaning roller, the output end of the pump is connected with the water supply pipe, the pump is used for conveying the cleaning water in the water tank to the spray head through the water supply pipe, a water valve is arranged on the water supply pipe, the water valve serves as a control device, the water valve is used for controlling the opening and closing of the channel in the water supply pipe and adjusting the flow of the cleaning water, a plurality of spray heads are arranged at the bottom of the water supply pipe, the spray heads pass through the top of the box body and are located above the first group of cleaning rollers and the second group of cleaning rollers, the spray heads serve as spraying devices, the cleaning water conveyed by the pump is sprayed on the radish and the cleaning roller in a pressurized manner, the mud adhered to the radish and the cleaning roller is washed away, the radish is cleaned and the cleanliness of the cleaning roller is ensured, so that the radish cleaning operation is continuously supported, a drain pipe is arranged at the bottom of the box body, the drain pipe is a channel for discharging the sewage generated during radish cleaning out of the box body, a filter screen one and a filter screen two are sequentially arranged in the drain pipe from top to bottom, the filter screen one and the filter screen two are both arranged in an inclined manner, the filter screen one and the filter screen two serve as filtering devices, the filter screen one and the filter screen two are used for filtering the sewage discharged through the drain pipe, large-particle impurities and suspended matters are respectively blocked on the filter screen one and the filter screen two,The water is allowed to flow into the impurity tank along the filter screen one and the filter screen two, so that the water passes through the mesh and enters the sediment tank one, so as to remove the large particle impurities and suspended matters in the sewage and achieve the purpose of primary filtration. The drain pipe at the low end of the filter screen one and the filter screen two is provided with a discharge port. The large particle impurities and suspended matters filtered out by the filter screen one and the filter screen two are discharged to the channel in the impurity tank. The two discharge ports are fixed with the same impurity tank, which is a collection container for the large particle impurities and suspended matters filtered out by the filter screen one and the filter screen two. The bottom of the drain pipe is communicated with the sediment tank one. The primary sediment device uses the sediment principle to allow most of the easily precipitated matters to remain in the sediment tank one, so that the sewage flows into the sediment tank two. The side wall of the sediment tank one is communicated with the sediment tank two through a pipeline. The secondary sediment device allows the remaining easily precipitated matters to remain in the sediment tank two. The water is returned to the water tank under the action of the pump two, so as to achieve the recycling of the sewage. The inner wall of the sediment tank two is provided with a water level monitoring sensor two and a water level monitoring sensor three from top to bottom on one side. Both are used for monitoring the water level and transmitting the detection results back to the controller in real time, so that the controller controls the pump two to complete the water returning operation. When the water level reaches the water level monitoring sensor two, the pump two starts to transport the precipitated water back to the water tank. When the water level reaches the water level monitoring sensor three, the pump two stops working and stops returning water. Enough time is left for the sediment treatment of the water to ensure the sediment effect. The pump two is arranged in parallel with the water level monitoring sensor three inside the sediment tank two. When the water is returned, the kinetic energy is output. The water treated by the sediment tank two is transported back to the water tank through the water returning pipe for reuse. The output end of the pump two is connected with the water returning pipe. The end of the water returning pipe is communicated with the water tank. The pipeline for transporting the water in the sediment tank two back to the water tank by the pump two is arranged on one side of the tank. The discharge port is arranged on one side of the tank. The clean radish is discharged from the channel in the tank. The discharge port is fixed with a discharge chute, which plays a guiding role and is used for guiding the cleaned radish from the discharge port to the radish collection frame. The controller is installed on the outer wall of the tank and plays a control role. An advanced intelligent control system is adopted to control the pump one and the two groups of cleaning rollers to mechanically clean the radish and the water level monitoring sensor one, the water level monitoring sensor two, the water level monitoring sensor three and the pump two to cooperatively work and intelligently treat and recycle the sewage. The controller is in wired connection with the pump one, the pump two, the water level monitoring sensor one, the water level monitoring sensor two, the water level monitoring sensor three and the water valve.
[0011] In summary, the application has the following beneficial effects:
[0012] 1. Inside the drain pipe, filter screen one and filter screen two are installed from top to bottom to perform two-stage filtration of sewage, removing large particulate impurities and suspended solids. Then, sedimentation tank one and sedimentation tank two perform two-stage sedimentation filtration of the filtered sewage. Finally, pump two transports the filtered and purified sewage back to the water tank for reuse. This multi-stage filtration process purifies the sewage, enabling sewage recycling and reducing water waste, achieving energy conservation, and effectively reducing cleaning costs.
[0013] 2. An advanced intelligent control system is adopted, which controls pump one and two sets of washing rollers to mechanically clean the radishes. The water level monitoring sensor one, water level detection sensor two, and water level monitoring sensor three work together with pump two to intelligently treat the wastewater through sedimentation and recycling. It is simple to operate, convenient to use, and highly efficient.
[0014] 3. The radishes are cleaned by simultaneously brushing with two sets of upper and lower cleaning rollers, which not only has high cleaning efficiency but also excellent cleaning effect. Attached Figure Description
[0015] To more clearly illustrate the technical solution of this application, the accompanying drawings used in the implementation examples will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained from these drawings without any creative effort.
[0016] Figure 1 This is a schematic diagram of the structure of this application.
[0017] Illustration:
[0018] Among them, 1-box body, 2-washing roller, 3-feed bag, 4-water tank, 5-water injection pipe, 6-water level monitoring sensor one, 7-pump one, 8-water supply pipe, 9-water valve, 10-nozzle, 11-discharge trough, 12-drain pipe, 13-filter screen one, 14-filter screen two, 15-impurities box, 16-sedimentation tank one, 17-impurities discharge pipe, 18-sedimentation tank two, 19-water level monitoring sensor two, 20-water level monitoring sensor three, 21-pump two, 22-return water pipe, 23-controller. Detailed Implementation
[0019] To enable those skilled in the art to better understand the technical solutions in this application, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings.
[0020] From the above technical solutions, it can be seen that:
[0021] Example 1:
[0022] SeeFigure 1 。
[0023] The utility model provides a new radish cleaning machine, including box 1, setting up the frame body of cleaning roller 2 and shower nozzle 10 etc.The filter screen one 13 and the filter screen two 14 are both arranged obliquely, and have a filtering effect, and the sewage discharged through the drain pipe 12 is filtered, and the large-particle impurities and the suspended matters are blocked on the filter screen one 13 and the filter screen two 14 respectively, and the large-particle impurities and the suspended matters are made to slide into the impurity box 15 along the filter screen one 13 and the filter screen two 14, and the water passes through the mesh holes and enters the sediment tank one 16, so that the large-particle impurities and the suspended matters in the sewage are removed, and the purpose of primary filtration is achieved, and the drain pipe 12 is provided with a drain opening at the low end of the filter screen one 13 and the filter screen two 14, and the large-particle impurities and the suspended matters filtered by the filter screen one 13 and the filter screen two 14 are discharged to the channel of the impurity box 15, and the two drain openings are fixed with the same impurity box 15, and the large-particle impurities and the suspended matters filtered by the filter screen one 13 and the filter screen two 14 are collected in the impurity box 15, and the drain pipe 12 is communicated with the sediment tank one 16 at the bottom, and the primary sediment device is used to make most of the easily-sedimented matters remain in the sediment tank one 16, and the sewage flows into the sediment tank two 18, and the side wall of the sediment tank one 16 is communicated with the sediment tank two 18 through a pipeline, and the secondary sediment device is used to make the remaining easily-sedimented matters remain in the sediment tank two 18, and the water is made to flow back to the water tank 4 under the action of the pump two 21, so that the sewage is recycled, and the inner wall of the sediment tank two 18 is provided with the water level monitoring sensor two 19 and the water level monitoring sensor three 20 from top to bottom on one side, and both are used to monitor the water level, and the detection results are transmitted back to the controller 23 in real time, so that the controller 23 controls the pump two 21 to complete the water backflow operation, when the water level reaches the water level monitoring sensor two 19, the pump two 21 starts to work, and the water precipitated is transported back to the water tank 4, when the water level reaches the water level monitoring sensor three 20, the pump two 21 stops working, and the water backflow is stopped, and enough time is left for the water sedimentation treatment, so as to ensure the sedimentation effect, and the pump two 21 is arranged in parallel with the water level monitoring sensor three 20 inside the sediment tank two 18, and the kinetic energy output structure, when the water backflows, the kinetic energy is output, and the water treated by the sedimentation in the sediment tank two 18 is transported back to the water tank 4 through the backwater pipe 22 for reuse, and the backwater pipe 22 is connected to the output end of the pump two 21, and the end of the backwater pipe 22 is communicated with the water tank 4, and the pipeline for transporting the water in the sediment tank two 18 back to the water tank 4 by the pump two 21, the box body 1 is provided with a discharge opening on one side, and the channel of the clean radish in the box body 1 is discharged, and the discharge opening is fixed with the discharge chute 11, and the discharge chute 11 has a guide function, and is used to guide the cleaned radish from the discharge opening to the radish collection frame, so as to provide convenience for the rapid collection of the radish, and the controller 23 is installed on the outer side wall of the box body 1, and has a control function, and an advanced intelligent control system is adopted, and the pump one 7 and the two groups of cleaning rollers 2 are used to mechanically clean the radish, and the water level monitoring sensor one 6, the water level monitoring sensor two 19, the water level monitoring sensor three 20 and the pump two 21 are used to cooperatively work, and the sewage is intelligently treated by sedimentation and recycling, so as to provide strong support for the intelligent control of the equipment, and the controller 23 is connected with the pump one 7, the pump two 21, the water level monitoring sensor one 6, the water level monitoring sensor two 19, the water level monitoring sensor three 20 and the water valve 9.
[0024] As a preferred embodiment, two of the three cleaning rollers 2 in the first group are connected by a belt.
[0025] As a preferred embodiment, two of the eight cleaning rollers 2 in the second group are connected by a belt.
[0026] As a preferred embodiment, one of the cleaning rollers 2 in the first group and one of the cleaning rollers 2 in the second group are each connected to a motor through the box 1, and are connected in line with the controller 23, to provide power for the cleaning operation of the cleaning rollers 2.
[0027] As a preferred embodiment, the bottom of the first sediment tank 16 and the second sediment tank 18 is provided with a pipe 17, and the pipe 17 is provided with a pipe cover, which is detachable and provides strong support for the discharge of the sediment.
[0028] Other embodiments of the application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. It is intended that the specification and examples be considered as exemplary only, with the true scope of the application being indicated by the following claims.
[0029] It should be understood that the application is not limited to the precise construction that has been described above and shown in the accompanying drawings, and that various modifications and changes can be made by those skilled in the art without departing from the scope of the application. The embodiments of the application described above are not intended to be limiting of the scope of the application.
Claims
1. A new type of radish washing machine, characterized by, Including the box (1), the box (1) inside is provided with two groups of cleaning roller (2), the first group cleaning roller (2) has 3, the second group cleaning roller (2) has 8, the first group cleaning roller (2) is located above the second group cleaning roller (2) front end, the box (1) one side is provided with feed inlet, the feed inlet is fixed with feed pocket (3), the box (1) bottom four corners are each fixed with a support leg, one side two support legs are fixed with same water tank (4), the water tank (4) top is provided with water injection pipe (5), the water tank (4) one side inner wall is provided with water level monitoring sensor one (6), the water tank (4) bottom is provided with pump one (7), the pump one (7) output end is connected with water supply pipe (8), the water supply pipe (8) is provided with water valve (9), the water supply pipe (8) bottom is provided with multiple spray heads (10), multiple spray heads (10) pass through the box (1) top, are located above the first group cleaning roller (2) and the second group cleaning roller (2), the box (1) bottom is provided with drain pipe (12), the drain pipe (12) inside is sequentially provided with filter screen one (13) and filter screen two (14) from top to bottom, the filter screen one (13) and the filter screen two (14) are both obliquely arranged, the filter screen one (13) and the filter screen two (14) low end are provided with the drain pipe (12) on the both sides of the impurity discharge port, two impurity discharge ports are fixed with same impurity tank (15), the drain pipe (12) bottom is communicated with sediment tank one (16), the sediment tank one (16) side wall is communicated with sediment tank two (18) through pipeline, the sediment tank two (18) inner wall one side is provided with water level monitoring sensor two (19) and water level monitoring sensor three (20) from top to bottom, the sediment tank two (18) inside is provided with pump two (21) with the water level monitoring sensor three (20) parallel position, the pump two (21) output end is connected with return water pipe (22), the return water pipe (22) end is communicated with the water tank (4), the box (1) one side is provided with discharge port, the discharge port is fixed with discharge chute (11), the box (1) outer wall is provided with controller (23), the controller (23) is connected with the pump one (7), the pump two (21), the water level monitoring sensor one (6), the water level monitoring sensor two (19), the water level monitoring sensor three (20) and water valve (9) are all wired.
2. A new type of radish washing machine according to claim 1, characterized in that, Two two adjacent cleaning rollers (2) in the first group of three cleaning rollers (2) are connected by a belt.
3. A new type of radish cleaning machine according to claim 1, characterized in that, Two two adjacent cleaning rollers (2) in the second group of eight cleaning rollers (2) are connected by a belt.
4. A new type of radish cleaning machine according to claim 1, characterized in that, One of the cleaning rollers (2) in the first group and one of the cleaning rollers (2) in the second group are both connected with a motor through the box (1).
5. A new type of radish cleaning machine according to claim 1, characterized in that, The sediment tank one (16) and the sediment tank two (18) are both provided with a pipe cover on the impurity discharge pipe, which can be removed.
6. A new type of radish cleaning machine according to claim 1, characterized in that, The impurity tank (15) is provided with an impurity discharge door on one side.