Automatic intelligent dish washing machine
By designing lifting, transportation, cleaning, transportation and disinfection mechanisms in smart dishwashers, efficient cleaning of bowls and water savings are achieved, solving the problem of waste of existing smart dishwasher resources.
Patent Information
- Application Number
- CN202421710002.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-18
AI Technical Summary
Existing smart dishwashers use a lot of liquid resources during the cleaning process, resulting in waste of resources.
An automatic intelligent dishwasher is designed, including a lifting mechanism, a transportation mechanism, a cleaning mechanism, a transfer mechanism and a disinfection mechanism. The adsorption assembly absorbs impurities in the bowl, the cleaning assembly sprays in the cleaning liquid and rotates to clean the inner wall of the bowl, the liquid pours out the cleaning liquid, and the transport mechanism transports the bowl to the disinfection mechanism for disinfection.
By absorbing impurities by adsorbing components and rotary cleaning of the cleaning components, efficient cleaning of the bowl is achieved, replacing the traditional water flushing equipment and saving water resources.
Smart Images

Figure CN222968515U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of dishwashers, and in particular relates to an automatic intelligent dishwasher. Background Art
[0002] In recent years, driven by intelligent and automated high technology, the smart home industry has entered a period of rapid development. According to the deployment of the state and government departments to vigorously support smart homes, more than 500 cities in China have started or are building smart cities to promote the construction of smart cities. China's smart dishwasher industry is an emerging industry that has received great attention from consumers, which has also attracted attention to the market size and development trend of China's smart dishwasher industry. According to market research, the 2023-2029 China Freestyle Smart Dishwasher Industry Market Competitiveness Analysis and Investment Prospect Forecast Report released by the online website shows that the market size of China's smart dishwasher industry in 2023 is about 8.3 billion yuan, a year-on-year increase of 14%. With the development of science and technology, the market size of China's smart dishwasher industry will continue to expand. According to the latest data, by 2025, the market size of China's smart dishwasher industry is expected to reach 76.5 billion yuan, a year-on-year increase of 93.8%. In summary, the market size and development trend of China's smart dishwasher industry are constantly changing. With the development of science and technology and the support of policies, China's smart dishwasher industry will usher in a broader market space and more opportunities in the future.
[0003] Through market research and data review, we found that the number and types of smart dishwashers on the market are still relatively small. Existing dishwashers mainly rely on large amounts of liquid to rinse the dishes, which results in a large amount of liquid resources being wasted. Utility Model Content
[0004] In order to solve the above technical problems, the utility model provides an automatic intelligent dishwasher, which is used to solve the problems of the above background technology.
[0005] The utility model provides the following technical solution: an automatic intelligent dishwasher, comprising a machine body, wherein a lifting mechanism, a transport mechanism, a cleaning mechanism, a transfer mechanism and a disinfection mechanism are sequentially arranged inside the machine body, wherein the lifting mechanism is used to place the bowls to be cleaned and lift the bowls to be cleaned to the transport mechanism, wherein the transport mechanism is used to transport the bowls to be cleaned to the cleaning mechanism and the transfer mechanism, and wherein the transfer mechanism is used to transport the bowls cleaned by the cleaning machine to the disinfection mechanism;
[0006] The transport mechanism includes a transport track disposed within the machine body, a moving member disposed on the transport track, and a clamping assembly disposed on the moving member. The cleaning mechanism includes a cleaning assembly, a liquid pouring assembly, a turnover assembly, and an adsorption assembly. The adsorption assembly is used to absorb impurities in the bowl to be cleaned. The cleaning assembly is used to spray cleaning liquid into the bowl after absorbing impurities and rotate and clean the inner wall thereof. The turnover assembly is used to rotate the bowl after cleaning so that the liquid pouring assembly can pour the liquid from the bowl after liquid cleaning.
[0007] Compared with the prior art, the beneficial effects of the present utility model are as follows: Stack the bowls to be cleaned on the lifting mechanism, and then the lifting mechanism drives the multiple bowls to be cleaned in the stack of bowls to rise to the clamping assembly. The clamping assembly clamps a single bowl to be cleaned. The moving member drives the clamping assembly to move on the transport track and move to the adsorption assembly. The adsorption assembly absorbs impurities from the bowl to be cleaned. Move the bowl after absorbing impurities to the cleaning assembly. The cleaning assembly sprays cleaning liquid into the bowl after absorbing impurities, and then the cleaning assembly rotates and cleans the inner wall of the bowl with cleaning liquid. After the cleaning is completed, the liquid pouring assembly can pour the liquid from the bowl after liquid cleaning. The moving member drives the bowl on the clamping assembly to move directly above the turnover assembly, releases the clamping assembly so that the bowl after rotating and cleaning falls onto the turnover assembly. The liquid pouring assembly pours the liquid from the bowl on the turnover assembly. After the liquid pouring is completed, the transfer mechanism transports the bowl after liquid pouring into the disinfection mechanism, and the disinfection mechanism disinfects the bowl. It can be seen that the adsorption assembly absorbs impurities from the bowl to be cleaned, and then the cleaning assembly rotates and cleans the inner wall of the bowl with cleaning liquid to complete the cleaning of the bowl, replacing the existing water flushing equipment and saving water.
[0008] Further, the liquid pouring assembly includes a second transverse lead screw structure disposed at the bottom of the machine body, a first motor connected to the second transverse lead screw structure, a first gear disk connected to the first motor, and a first mechanical gripper connected to the first gear disk.
[0009] Further, the lifting mechanism includes a first lead screw lifting structure and a placement member disposed on the first lead screw lifting structure. A placement groove is formed at the top of the placement member.
[0010] Further, the clamping assembly includes a mounting frame disposed on the moving member, a first transverse lead screw structure disposed within the mounting frame, a moving plate disposed on the first transverse lead screw structure, and a fixing plate fixed to one end of the mounting frame. The fixing plate is adapted to the moving plate to clamp the bowl.
[0011] Further, the cleaning assembly includes a second screw rod lifting structure disposed on one side of the body, a liquid discharging structure disposed on one side of the body, a second motor disposed on the second screw rod lifting structure, and a cleaning brush connected to the motor. The liquid discharging structure is used to spray the cleaning liquid into the bowl, and the second motor is used to drive the cleaning brush to rotate to clean the bowl sprayed with the cleaning liquid.
[0012] Further, the transfer mechanism includes a third horizontal screw rod structure disposed at the inner bottom of the body, a third motor connected to the third horizontal screw rod structure, a second gear disk connected to the third motor, a third screw rod lifting structure connected to the second gear disk, and a second mechanical gripper connected to the third screw rod lifting structure.
[0013] Further, the adsorption assembly includes a fourth screw rod lifting structure and a vacuum cleaner placed on the fourth screw rod lifting structure.
[0014] Further, a chopstick cleaning mechanism is provided on one side of the body. The chopstick cleaning mechanism includes a receiving column, a support disk disposed at the inner bottom of the receiving column, a fourth motor disposed at the bottom of the receiving column, a transmission structure connected to the fourth motor, and a plurality of rotating rods connected to the transmission structure. The rotating rods pass through the bottom of the receiving column and extend into the receiving column. Description of the Drawings
[0015] Figure 1 It shows a three-dimensional structural schematic diagram of the automatic intelligent dishwasher in the embodiment of the present invention;
[0016] Figure 2 It shows a three-dimensional structural schematic diagram of the disinfection cabinet in the embodiment of the present invention;
[0017] Figure 3 It shows a structural schematic diagram of the inside of the cleaning cavity in the embodiment of the present invention;
[0018] Figure 4 It shows a partial structural schematic diagram of the inside of the cleaning cavity in the embodiment of the present invention;
[0019] Figure 5 It shows a three-dimensional structural schematic diagram of the transportation mechanism in the embodiment of the present invention;
[0020] Figure 6 It shows a three-dimensional structural schematic diagram of the transfer mechanism in the embodiment of the present invention;
[0021] Figure 7 It shows a three-dimensional structural schematic diagram of the liquid pouring assembly in the embodiment of the present invention;
[0022] Figure 8It shows a three-dimensional structural schematic diagram of the lifting mechanism in the embodiment of the present utility model.
[0023] Main element symbol description: 100, body; 10, lifting mechanism; 11, first screw rod lifting structure; 12, placing member; 13, placing groove; 20, transporting mechanism; 21, transporting track; 22, moving member; 23, clamping assembly; 231, mounting frame; 232, first transverse screw rod structure; 233, moving plate; 234, fixing plate; 30, cleaning mechanism; 31, cleaning assembly; 311, second screw rod lifting structure; 312, liquid discharging structure; 313, second motor; 314, cleaning brush; 32, pouring liquid assembly; 321, second transverse screw rod structure; 322, first motor; 323, first gear disk; 324, first mechanical gripper; 33, turnover assembly; 34, adsorption assembly; 341, fourth screw rod lifting structure; 342, vacuum cleaner; 40, transfer mechanism; 41, third transverse screw rod structure; 42, third motor; 44, second gear disk; 45, third screw rod lifting structure; 46, second mechanical gripper; 50, disinfection mechanism; 60, chopstick cleaning mechanism; 61, accommodating column; 62, supporting disk; 63, fourth motor; 64, transmission structure; 65, rotating rod.
[0024] The following specific embodiments will further illustrate the present utility model in conjunction with the above-mentioned drawings. Specific embodiments
[0025] It is shown that for the convenience of understanding the present utility model, the present utility model will be described more comprehensively below with reference to the relevant drawings. Several embodiments of the present utility model are given in the drawings. However, the present utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present utility model more thorough and comprehensive.
[0026] It should be noted that when an element is said to be "fixedly provided on" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration.
[0027] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the specification of the present utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the present utility model. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0028] Please refer to Figures 1 to 3 As shown, an automatic intelligent dishwasher in an embodiment of the present utility model includes a machine body 100. Inside the machine body 100, a lifting mechanism 10, a transportation mechanism 20, a cleaning mechanism 30, a transfer mechanism 40, and a disinfection mechanism 50 are sequentially arranged. The lifting mechanism 10 is used to place the bowls to be cleaned and lift the bowls to be cleaned to the transportation mechanism 20. The transportation mechanism 20 is used to transport the bowls to be cleaned to the cleaning mechanism 30 and the transfer mechanism 40. The transfer mechanism 40 is used to transport the bowls cleaned by the cleaning machine to the disinfection mechanism 50;
[0029] Among them, the transportation mechanism 20 includes a transportation track 21 arranged in the machine body 100, a moving member 22 arranged on the transportation track 21, and a clamping assembly 23 arranged on the moving member 22. The cleaning mechanism 30 includes a cleaning assembly 31, a liquid pouring assembly 32, a turnover assembly 33, and an adsorption assembly 34. The adsorption assembly 34 is used to absorb impurities in the bowls to be cleaned. The cleaning assembly 31 is used to spray cleaning liquid into the bowls after absorbing impurities and rotate and clean the inner walls of the bowls. The turnover assembly 33 is used to turn over the bowls after cleaning so that the liquid pouring assembly 32 can pour out the liquid from the bowls after liquid washing.
[0030] During the specific use process, the operator stacks the bowls to be cleaned on the lifting mechanism 10, and then the lifting mechanism 10 drives the multiple bowls to be cleaned in the stack of bowls to rise to the clamping assembly 23. The clamping assembly 23 clamps a single bowl to be cleaned. The moving member 22 drives the clamping assembly 23 to move on the transportation track 21 and move to the adsorption assembly 34. The adsorption assembly 34 absorbs impurities from the bowls to be cleaned. The bowl after absorbing impurities is moved to the cleaning assembly 31. The cleaning assembly 31 sprays cleaning liquid into the bowl after absorbing impurities, and then the cleaning assembly 31 rotates and cleans the inner wall of the bowl with cleaning liquid. After the cleaning is completed, the liquid pouring assembly 32 can pour out the liquid from the bowl after liquid washing. The moving member 22 drives the bowl on the clamping assembly 23 to move directly above the turnover assembly 33, and the clamping assembly 23 is loosened so that the bowl after rotating and cleaning falls onto the turnover assembly 33. The liquid pouring assembly 32 pours out the liquid from the bowl on the turnover assembly 33. After the liquid pouring is completed, the transfer mechanism 40 transports the bowl after liquid pouring to the disinfection mechanism 50, and the disinfection mechanism 50 disinfects the bowl. It can be seen that the adsorption assembly 34 absorbs impurities from the bowls to be cleaned, and then the cleaning assembly 31 rotates and cleans the inner wall of the bowl with cleaning liquid to complete the cleaning of the bowls, replacing the existing water flushing equipment and saving water.
[0031] In this embodiment, the moving member 22 is a moving trolley. The body 100 includes a disinfection cabinet and a cleaning cavity. The lifting mechanism 10, the transportation mechanism 20, and the cleaning mechanism 30 are installed in the cleaning cavity, and the transfer mechanism 40 and the disinfection mechanism 50 are arranged in the disinfection cabinet. The disinfection mechanism 50 includes an ultraviolet lamp tube, a heating lamp tube, and a fan, and the ultraviolet lamp tube, the heating lamp tube, and the fan are all arranged in the disinfection cabinet. The fan realizes ventilation and air exchange in the disinfection cabinet, the heating lamp tube realizes drying of tableware, and the ultraviolet lamp tube realizes sterilization.
[0032] Please refer to Figures 4 to 8 As shown, the liquid pouring assembly 32 includes a second horizontal lead screw structure 321 arranged at the inner bottom of the body 100, a first motor 322 connected to the second horizontal lead screw structure 321, a first gear disk 323 connected to the first motor 322, and a first mechanical gripper 324 connected to the first gear disk 323. During specific implementation, the second horizontal lead screw structure 321 moves horizontally to enable the first mechanical gripper 324 to grab a bowl. After grabbing, the second horizontal lead screw structure 321 moves back, and then the first motor 322 is started to drive the first gear disk 323. At this time, the first gear disk 323 drives the first mechanical gripper 324 to rotate around the Y-axis direction, so that the grabbed bowl is flipped to pour the remaining liquid in the bowl.
[0033] Specifically, the lifting mechanism 10 includes a first lead screw lifting structure 11 and a placing member 12 arranged on the first lead screw lifting structure 11. A placing groove 13 is formed at the top of the placing member 12. The size of the placing groove 13 corresponds to the size of the bowl, which is convenient for placing the bowl in the placing groove 13.
[0034] Specifically, the clamping assembly 23 includes a mounting frame 231 disposed on the moving member 22, a first transverse lead screw structure 232 disposed within the mounting frame 231, a moving plate 233 disposed on the first transverse lead screw structure 232, and a fixing plate 234 fixed to one end of the mounting frame 231. The fixing plate 234 is adapted to the moving plate 233 to clamp the bowl. In this embodiment, there are two clamping assemblies 23. The mounting frame 231 of one clamping assembly 23 is stacked with the mounting frame 231 of the other clamping assembly 23. Among them, a moving track is provided at the top of one mounting frame 231, and a moving trolley is provided on the moving track. The moving trolley is connected to the other mounting frame 231. Through the cooperation of the moving track provided at the top of the mounting frame 231 and the moving trolley, the bowls respectively clamped by one clamping assembly 23 and the other clamping assembly 23 can be offset, which is convenient for simultaneously cleaning two bowls and improving work efficiency. Specifically, during implementation, the first transverse lead screw structure 232 drives the moving plate 233 to move towards the fixing plate 234 so that the fixing plate 234 and the moving plate 233 clamp the bowl. After the transportation mechanism 20 moves it to the corresponding position, the first transverse lead screw structure 232 drives the moving plate 233 to move away from the fixing plate 234 so that the fixing plate 234 and the moving plate 233 release the clamping of the bowl and the bowl falls into the corresponding position.
[0035] Specifically, the cleaning assembly 31 includes a second lead screw lifting structure 311 disposed on one side of the machine body 100, a liquid outlet structure 312 disposed on one side of the machine body 100, a second motor 313 disposed on the second lead screw lifting structure 311, and a cleaning brush 314 connected to the motor. The liquid outlet structure 312 is used to spray the cleaning liquid into the bowl, and the second motor 313 is used to drive the cleaning brush 314 to rotate to clean the bowl sprayed with the cleaning liquid. The liquid outlet structure 312 includes a liquid storage tank, a pump connected to the liquid storage tank, and a liquid outlet pipe connected to the pump. Specifically, during implementation, the second lead screw lifting structure 311 drives the cleaning brush 314 connected to the second motor 313 to descend into the bowl on the clamping assembly 23, and then the second motor 313 is started to drive the cleaning brush 314 to rotate to clean the inner wall of the bowl.
[0036] Specifically, the transfer mechanism 40 includes a third horizontal lead screw structure 41 disposed at the inner bottom of the body 100, a third motor 42 connected to the third horizontal lead screw structure 41, a second gear disk 44 connected to the third motor 42, a third lead screw lifting structure 45 connected to the second gear disk 44, and a second mechanical gripper 46 connected to the third lead screw lifting structure 45. During specific implementation, the third horizontal lead screw structure 41 drives the second mechanical gripper 46 to move to the bowl placing position after pouring water (i.e., the turnover assembly 33), then the second mechanical gripper 46 grabs the bowl, and then the third motor 42 drives the second gear disk 44 to rotate, so that the second mechanical gripper 46 rotates inside the disinfection cabinet. At the same time, the third lead screw lifting structure 45 moves up and down, so that the second mechanical gripper 46 moves up and down inside the disinfection cabinet. When the second mechanical gripper 46 moves to a suitable position, the second mechanical gripper 46 is released, so that the bowl is placed in the disinfection cabinet, and then the bowl is disinfected by the disinfection mechanism 50 in the disinfection cabinet.
[0037] Specifically, the turnover assembly 33 and the lifting mechanism 10 have the same structure, and both include a lifting structure placement member 12.
[0038] Specifically, the adsorption assembly 34 includes a fourth lead screw lifting structure 341 and a vacuum cleaner 342 placed on the fourth lead screw lifting structure; the fourth lead screw lifting structure drives the working section of the vacuum cleaner 342 to move up and down to absorb impurities inside the bowl.
[0039] Specifically, a chopstick cleaning mechanism 60 is provided on one side of the body 100. The chopstick cleaning mechanism 60 includes a receiving column 61, a support disk 62 provided at the inner bottom of the receiving column 61, a fourth motor 63 provided at the bottom of the receiving column 61, a transmission structure 64 connected to the fourth motor 63, and a plurality of rotating rods 65 connected to the transmission structure 64, and the rotating rods 65 pass through the bottom of the receiving column 61 and extend into the receiving column 61.
[0040] In this embodiment, the transmission structure 64 includes a driving gear and a plurality of driven gears. The driving gear meshes with the plurality of driven gears respectively. The driving gear and the driven gears are respectively connected to the rotating rods 65. The driving gear is connected to the fourth motor 63. Brushes are sleeved on the plurality of rotating rods 65. During specific implementation, the chopsticks are placed between the brushes on two adjacent rotating rods 65 inside the receiving column 61. At this time, the ends of the chopsticks are placed at the inner bottom of the receiving column 61. The third motor 42 is started, and the third motor 42 drives the rotating rods 65 to rotate through the transmission structure 64, and the rotating rods 65 drive the brushes to brush the chopsticks.
[0041] In this embodiment, the intelligent control system consists of ROBOPro control software, interface boards, and sensors. The intelligent control part also includes a TXT controller, a monitoring device, a temperature control device, and a computer. After power-on and startup, the program runs automatically. The monitoring device uses a camera to monitor the internal operating conditions. The temperature control device monitors the temperature through a temperature sensor and displays the temperature inside the cabinet in real time outside the cabinet to avoid accidental scalding. It reduces the use of cleaning agents, saves water resources, is environmentally friendly, safe for users, convenient to use, intelligent in control, and has broad market prospects and promotion value.
[0042] In summary, for the automatic intelligent dishwasher in the above embodiments of the present utility model, the operator stacks the bowls to be cleaned on the lifting mechanism 10, and then the lifting mechanism 10 drives the multiple bowls to be cleaned on the bowl stack to rise to the clamping assembly 23. The clamping assembly 23 clamps a single bowl to be cleaned, and the moving member 22 drives the clamping assembly 23 to move on the transport track 21 and move to the adsorption assembly 34. The adsorption assembly 34 absorbs impurities from the bowl to be cleaned, and then moves the bowl after absorbing impurities to the cleaning assembly 31. The cleaning assembly 31 sprays cleaning liquid onto the bowl after absorbing impurities, and then the cleaning assembly 31 rotates and cleans the inner wall of the bowl with cleaning liquid. After cleaning is completed, the liquid pouring assembly 32 can pour the liquid from the bowl after liquid washing. The moving member 22 drives the bowl on the clamping assembly 23 to move directly above the turnover assembly 33, releases the clamping assembly 23 so that the bowl after rotational cleaning falls onto the turnover assembly 33, and the liquid pouring assembly 32 pours the liquid from the bowl on the turnover assembly 33. After pouring is completed, the transfer mechanism 40 transports the bowl after pouring to the disinfection mechanism 50, and the disinfection mechanism 50 disinfects the bowl. It can be seen that impurities are absorbed from the bowl to be cleaned through the adsorption assembly 34, and then the inner wall of the bowl with cleaning liquid is rotationally cleaned through the cleaning assembly 31 to complete the cleaning of the bowl, replacing the existing water flushing equipment and saving water.
[0043] Save time and effort: It can automatically complete the washing task, eliminating the cumbersome process of manual dishwashing and saving a lot of time and physical strength.
[0044] Provide a thorough cleaning effect: Usually having multiple washing programs and temperature options, it can thoroughly remove food residues and bacteria, ensuring the hygiene of tableware.
[0045] Save water resources: Compared with manual dishwashing, it usually requires less water, helping to save precious water resources.
[0046] Improve the quality of family life: Reduce the quarrels among family members over dishwashing tasks and allow everyone to enjoy more free time.
[0047] Reduce the pollution of tableware in the air and meet people's needs for health and hygiene.
[0048] Washing dishes and storage in one key make people's lives more convenient.
[0049] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0050] The above-described embodiments only represent several implementation manners of the present utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the patent of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the patent of the present utility model shall be subject to the appended claims.
Claims
1. An automatic intelligent dishwasher, characterized in that: The machine body comprises a lifting mechanism, a transport mechanism, a cleaning mechanism, a transfer mechanism and a disinfection mechanism, wherein the lifting mechanism is used to place the bowls to be cleaned and lift the bowls to be cleaned to the transport mechanism, the transport mechanism is used to transport the bowls to be cleaned to the cleaning mechanism and the transfer mechanism, and the transfer mechanism is used to transport the bowls cleaned by the cleaning machine to the disinfection mechanism; The transport mechanism includes a transport track arranged in the body, a moving part arranged on the transport track, and a clamping assembly arranged on the moving part. The cleaning mechanism includes a cleaning assembly, a liquid pouring assembly, a turnover assembly and an adsorption assembly. The adsorption assembly is used to absorb impurities in the bowl to be cleaned, the cleaning assembly is used to spray liquid into the bowl after absorbing the impurities and rotate the inner wall to clean it, and the turnover assembly is used to rotate the cleaned bowl so that the liquid pouring assembly can pour liquid into the bowl after liquid washing.
2. The automatic intelligent dishwasher according to claim 1, characterized in that: The liquid pouring assembly includes a second transverse screw rod structure arranged at the bottom of the body, a first motor connected to the second transverse screw rod structure, a first gear plate connected to the first motor, and a first mechanical gripper connected to the first gear plate.
3. The automatic intelligent dishwasher according to claim 1, characterized in that: The lifting mechanism comprises a first screw rod lifting structure and a placing piece arranged on the first screw rod lifting structure, and a placing groove is arranged on the top of the placing piece.
4. The automatic intelligent dishwasher according to claim 1, characterized in that: The clamping assembly includes a mounting frame arranged on the moving part, a first transverse screw rod structure arranged in the mounting frame, a moving plate arranged on the first transverse screw rod structure, and a fixed plate fixed to one end of the mounting frame, wherein the fixed plate is adapted to the moving plate to clamp the bowl.
5. The automatic intelligent dishwasher according to claim 1, characterized in that: The cleaning component is provided with a second screw lifting structure on one side of the machine body, a liquid outlet structure provided on one side of the machine body, a second motor provided on the second screw lifting structure, and a cleaning brush connected to the motor. The liquid outlet structure is used to spray cleaning liquid into the bowl, and the second motor is used to drive the cleaning brush to rotate to clean the bowl sprayed with cleaning liquid.
6. The automatic intelligent dishwasher according to claim 1, characterized in that: The transfer mechanism includes a third transverse screw rod structure arranged at the bottom of the body, a third motor connected to the third transverse screw rod structure, a second gear plate connected to the third motor, a third screw rod lifting structure connected to the second gear plate, and a second mechanical grab connected to the third screw rod lifting structure.
7. The automatic intelligent dishwasher according to claim 1, characterized in that: The adsorption assembly includes a fourth screw rod lifting structure and a dust collector placed on the fourth screw rod lifting structure.
8. The automatic intelligent dishwasher according to claim 1, characterized in that: A chopstick cleaning mechanism is arranged on one side of the machine body, and the chopstick cleaning mechanism includes a accommodating column, a support plate arranged on the inner bottom of the accommodating column, a fourth motor arranged on the bottom of the accommodating column, a transmission structure connected to the fourth motor and a plurality of rotating rods connected to the transmission structure, and the rotating rods pass through the bottom of the accommodating column and extend into the accommodating column.