Accurate quantifying device based on artificial intelligence and control method

Through an accurate quantitative device based on artificial intelligence, combined with spiral discharge device, weighing platform and voice control, the problems of inaccurate discharge of seasonings and deterioration of materials are solved, and high-precision and personalized quantitative discharge and cleaning effects are achieved.

CN120255586APending Publication Date: 2025-07-04黄钜豪
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Patent Information

Application Number
CN202510401948.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

The existing seasoning quantitative discharge device has a simple structure, difficult to continuously and stably discharge, limited accuracy, and the material is prone to deterioration and agglomeration due to moisture or temperature changes.

Method used

The precise quantification device based on artificial intelligence is adopted, combined with the spiral discharge device, weighing platform and voice control method, and is equipped with dehumidification and refrigeration functions. The instructions are obtained through the voice input device, and the spiral discharge device and weighing platform are controlled to achieve accurate quantification. It is also equipped with a serpentine tube cooling system and an ultrasonic transducer for cleaning.

Benefits of technology

High-precision quantitative discharge is achieved, ensuring that the material does not deteriorate in the dry and refrigerated environment, improving the continuity and accuracy of discharge, and realizing human-computer interaction and personalized service through voice control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of quantifying devices, and discloses a precise quantifying device based on artificial intelligence and a control method.The precise quantifying device comprises a rack, a plurality of discharging pipes are arranged at the top of the rack, the top ends of the discharging pipes are in threaded connection with a storage bin, the outer side of the top of the storage bin is in threaded connection with a bin cover, and the bottom of the bin cover is detachably connected with a bottom cover; a plurality of through holes are distributed in the bottom cover; a spiral discharging device is arranged at the bottom of the discharging pipe, a weighing platform is arranged at the position, located below an output port of the spiral discharging device, of the bottom of the rack, and a material receiving box is placed at the top of the weighing platform. The device is high in quantification precision and has the functions of dehumidifying and refrigerating materials, so that the storage environment of the materials is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of quantitative devices, and particularly to an accurate quantitative device based on artificial intelligence and a control method therefor. Background Art

[0002] In daily life or work, many things need to be accurately quantified when we use them. For example, our demand for seasonings in life. The existing quantitative discharging devices for seasonings have a relatively simple structure. During use, manual discharging is adopted, and it is difficult to discharge continuously and stably, with limited accuracy. The materials stored inside the quantitative discharging device are prone to deterioration and caking due to moisture or temperature because of environmental or human operation factors. The present invention proposes an accurate quantitative device based on artificial intelligence and a control method therefor, which has high quantitative accuracy and has the functions of dehumidifying and refrigerating the materials to improve the storage environment of the materials. Summary of the Invention

[0003] In view of this, the purpose of the present invention is to provide an accurate quantitative device based on artificial intelligence and a control method therefor to solve the problems mentioned in the above background art.

[0004] To achieve the above purpose, the present invention adopts the following technical solution: An accurate quantitative device based on artificial intelligence includes a frame. A plurality of feeding pipes are arranged at the top of the frame. The top ends of the feeding pipes are threadedly connected with storage bins. The outer side of the top of the storage bin is threadedly connected with a bin cover. The bottom of the bin cover is detachably connected with a bottom cover. A plurality of through holes are distributed on the bottom cover. A moisture absorption packet can be placed in the space formed by the bottom cover and the bin cover. A spiral discharging device is arranged at the bottom of the feeding pipe. A weighing platform is arranged below the output port of the spiral discharging device at the bottom of the frame. A receiving box is placed on the top of the weighing platform.

[0005] Further, a connecting pipe is arranged in the middle of the top of the bin cover. A plug cap is arranged on the top of the connecting pipe. The bottom end of the connecting pipe is located above the bottom cover.

[0006] Further, a first sealing strip is arranged between the top of the storage bin and the bin cover. An installation groove one is arranged around the outer side of the top of the storage bin. A convex edge one protrudes from the bottom of the installation groove one. A first sealing ring with an L-shaped longitudinal cross-section is arranged in the installation groove one. The first sealing ring is located on the top surface of the convex edge one.

[0007] Further, the top end of the feeding pipe is connected with an outer box. The outer box houses the storage bin. The outer box is threadedly connected with an outer cover at the top. The middle of the outer cover is provided as a hollow part. The side wall of the hollow part is threadedly connected with the outer wall of the bin cover.

[0008] Further, a serpentine tube is disposed in the interlayer formed between the outer box and the storage bin. The serpentine tube surrounds the storage bin, and the inlet and outlet of the serpentine tube are vertically disposed and respectively penetrate through the outer bottom of the outer box.

[0009] Further, the inlet of the serpentine tube is connected to a cooling box disposed at the rear side of the frame through a circulation pump, and its outlet is connected to the cooling box; a refrigerating sheet is disposed at the rear side of the cooling box.

[0010] Further, two T-shaped slots are disposed on the inner side wall of the outer box. A transducer support is disposed in the interlayer. The transducer support is connected with a plug adaptively inserted and connected to the slots, and an ultrasonic transducer is disposed at the top of the transducer support.

[0011] Further, an elastic pad is disposed on the outer edge of the transducer support and contacts with the outer wall of the storage bin and the outer wall of the serpentine tube through the elastic pad.

[0012] Further, a control device is mounted on the frame, and the control device is electrically connected to the weighing platform and the screw discharging device.

[0013] The present invention also provides a control method for the precise quantitative device based on artificial intelligence. The precise quantitative device based on artificial intelligence as described above is adopted, and the method includes the following steps:

[0014] (1) The control device is connected with a voice input device. Through the voice input device, a voice command is picked up. The voice command includes material and gram weight information or menu information. The control device analyzes the voice command and judges the material information and gram weight information included in the voice command.

[0015] (2) The control device controls the screw discharging device connected to the storage bin of the corresponding material to discharge materials. The weighing platform weighs the materials in the receiving box and sends the weighing data to the control device, and the control device judges whether the materials in the receiving box reach the required gram weight.

[0016] (3) If the gram weight of the materials meets the standard, the control device controls the screw discharging device to end the work; if the gram weight of the materials does not meet the standard, the screw discharging device continues to work until the gram weight of the materials meets the standard.

[0017] (4) The control device stores each voice command to form memory bank data. When the user's voice command mentions materials or menus, the control device calls the memory bank data and automatically outputs the gram weight of the corresponding materials.

[0018] Beneficial effects

[0019] Compared with the prior art, the present invention has at least the following advantages: The space formed by the bottom cover and the bin cover of the present invention can place a moisture absorber to absorb moisture from the environment for seasonings that require a dry environment. When the connecting pipe is connected to a water pipe, the bottom cover can act as a water distribution tray to improve the cleaning effect of the device. The serpentine pipe, the cooling box, the circulation pump, and the Peltier device cooperate to form a cooling system for the storage bin to refrigerate seasonings that require refrigeration treatment. The ultrasonic transducer arranged between the outer box and the storage bin transmits vibrations to the serpentine pipe and the storage bin during device cleaning, which helps to clean the serpentine pipe and the storage bin. Through the weighing platform and the spiral discharging device, a weighing system is formed to improve the quantitative discharging accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a front view structural schematic diagram of the present invention.

[0021] Figure 2 It is a structural schematic diagram of a storage box according to an embodiment of the present invention.

[0022] Figure 3 It is a structural schematic diagram of a storage box according to another embodiment of the present invention.

[0023] Figure 4 For the present invention Figure 3 An enlarged structural schematic diagram of part A.

[0024] Figure 5 For the present invention Figure 3 An enlarged structural schematic diagram of part B.

[0025] Figure 6 It is a structural schematic diagram of a storage box according to another embodiment of the present invention.

[0026] Figure 7 For the present invention Figure 6 An installation structural schematic diagram of the serpentine pipe according to an embodiment.

[0027] Figure 8 For the present invention Figure 6 An installation structural schematic diagram of the ultrasonic transducer.

[0028] Figure 9 It is a connection structural schematic diagram of the serpentine pipe and the cooling box of the present invention.

[0029] Figure 10 It is a block diagram of the control system of the present invention.

[0030] Labels in the figure: 1 - frame; 2 - storage box; 3 - blanking pipe; 4 - spiral discharging device; 5 - weighing platform; 6 - outer box; 60 - slot; 7 - box cover; 70 - connection groove; 8 - bottom cover; 80 - through hole; 81 - connection ring; 10 - connecting pipe; 11 - sealing plug; 12 - sealing strip one; 13 - sealing ring one; 14 - installation groove one; 15 - convex edge one; 16 - outer cover; 17 - sealing ring; 18 - sealing ring two; 19 - convex edge two; 20 - installation groove two; 21 - sealing strip two; 22 - sealing strip three; 23 - serpentine pipe; 230 - inlet; 231 - outlet; 24 - transducer bracket; 240 - plug-in; 241 - elastic pad; 25 - ultrasonic transducer; 26 - circulation pump; 27 - cooling box; 28 - refrigeration chip; 29 - material receiving box. Specific embodiments

[0031] To make the objectives, technical solutions and advantages of the present invention clearer, the following provides a detailed description in conjunction with the accompanying drawings and specific embodiments. Many specific details are set forth in the following description to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways different from those described herein. Those skilled in the art can make similar improvements without departing from the connotation of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.

[0032] It should be noted that when an element is referred to as being "fixedly provided on" another element, it can be directly on the other element or there may also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to an element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation.

[0033] 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 this invention belongs. The terms used in the description of the present invention herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0034] Embodiment 1:

[0035] See Figures 1 - 2, the precise quantitative device based on artificial intelligence provided by this embodiment includes a frame 1. A plurality of feeding pipes 3 are arranged at the top of the frame 1. The top end of the feeding pipe 3 is threadedly connected to a storage bin 2. The outer side of the top of the storage bin 2 is threadedly connected to a bin cover 7. The bottom of the bin cover 7 is detachably connected to a bottom cover 8. Among them, a connecting ring 81 extends upward from the top of the bottom cover 8, and a connecting groove 70 is arranged at the bottom of the bin cover 7. The connecting ring 81 and the connecting groove 70 are threadedly connected. A plurality of through holes are distributed on the bottom cover 8. Preferably, a handle (not marked in the figure) protrudes from the bottom surface of the bottom cover 8 to facilitate the operation of the bottom cover 8.

[0036] During use, a plurality of moisture absorption packets 9 are arranged in the space formed by the bottom cover 8 and the bin cover 7 for dehumidifying the inside of the storage bin 2 that requires a dry environment. The detachable bottom cover 7 facilitates the replacement of the moisture absorption packets 9. A spiral discharging device 4 is arranged at the bottom of the feeding pipe 3. A weighing platform 5 is arranged below the output port of the spiral discharging device 4 at the bottom of the frame 1. A receiving box 31 is placed on the top of the weighing platform 5. When discharging, the corresponding spiral discharging device 4 of the material works for discharging. The weighing platform 5 weighs the material. When the weight of the material reaches the requirement, the spiral discharging device 4 stops working, solving the problem that it is difficult to discharge continuously and stably manually.

[0037] Preferably, for the convenience of cleaning the device, a connecting pipe 10 is arranged in the middle of the top of the bin cover 7. A plug cap 11 covers the top of the connecting pipe 10. The bottom end of the connecting pipe 11 is located above the bottom cover 8. When the device needs to be cleaned, the moisture absorption packet 9 is taken out, and the connecting pipe is connected to an external water source. At this time, the bottom cover 8 serves as a water distribution plate for evenly dispersing water, increasing the water flow coverage area and cleaning the storage bin 2. The cleaning effect is better than single-point flushing.

[0038] In the technical solution of this embodiment, a sealing strip one 12 in a ring structure is arranged between the top of the storage bin 2 and the bin cover 7. An installation groove one 14 is arranged around the outer side of the top of the storage bin 2. A convex edge one 15 protrudes from the bottom of the installation groove one 14. A sealing ring one 13 with an L-shaped longitudinal section is arranged in the installation groove one 14. The sealing ring one 13 is located on the top surface of the convex edge one 15. When the bin cover 7 is tightened on the top of the storage bin 2, the sealing strip one 12 and the sealing ring one 13 respectively play a sealing role. The sealing ring one 13 contacts the bottom surface and the side surface of the inner bottom end of the bin cover 7 respectively, and the sealing effect is good.

[0039] In the technical solution of this embodiment, a control device is installed on the frame 1. The control device is electrically connected to the weighing platform 5 and the spiral discharging device 4. The control device receives the weighing data of the weighing platform and controls the spiral discharging device 4 to work.

[0040] It should be noted that the spiral discharging device 4 in this embodiment has a forward and reverse function. Forward rotation can achieve discharging, and reverse rotation can friction and extrude the caked materials to break them up.

[0041] Embodiment Two

[0042] Refer to Figures 3 - 5 , on the basis of Embodiment One, an outer box 6 is connected to the top end of the feeding pipe 3 in this embodiment. The outer box 6 houses the storage bin 2, and a sandwich layer is formed between the outer box 6 and the storage bin 2. The top of the outer box 6 is threadedly connected with an outer cover 16. The middle of the outer cover 16 is provided as a hollow part, and the bin cover 7 is located in the hollow part. The side wall of the hollow part is threadedly connected with the outer wall of the bin cover 7. By opening the outer cover 16, ice bags can be placed inside the sandwich layer to cool the storage bin in hot weather.

[0043] An installation groove two 20 is provided on the outside of the bin cover. The bin cover 7 is provided with a flange two 19 at the bottom of the installation groove two 20. A sealing ring two 18 is provided in the installation groove two 20. The longitudinal section of the sealing ring two 18 is arranged in an L-shaped structure. The sealing ring two 18 is located on the top surface of the flange two 18. A sealing ring 17 is installed in the groove provided on the top of the outer cover 16. When the outer cover 16 is covered on the outer box 6, the sealing ring 17 is located between the top of the outer box 16 and the outer cover 16. The bottom surface and side surface of the inner end of the outer cover 16 are in contact with the sealing ring two 18.

[0044] Embodiment Three

[0045] Refer to Figures 6 - 7 and Figure 9 As shown, on the basis of Embodiment Two, a serpentine tube 23 is provided in the sandwich layer formed between the outer box 6 and the storage bin 2 in this embodiment. The serpentine tube 23 surrounds the storage bin 2. The inlet 230 and outlet 231 of the serpentine tube 23 are vertically arranged and respectively penetrate through the outer bottom of the outer box 6.

[0046] The inlet 230 of the serpentine tube 23 is connected to a circulation pump 26 through a hose. The circulation pump 26 is connected to a cooling box 27 provided at the rear side of the frame 1. The outlet 231 of the serpentine tube 23 is connected to the cooling box 27 through a water pipe. Water is contained inside the cooling box 27. A refrigerating sheet 29 is provided at the rear side of the cooling box 27 for cooling the liquid inside the cooling box 27. It should be noted that in other embodiments, a fan can be installed at the rear side of the cooling box through a bracket. The fan works to accelerate air flow and dissipate heat from the hot end of the refrigerating sheet.

[0047] When this device is in use, cooling water is injected into the serpentine tube, and the seasonings that need to be refrigerated can be refrigerated.

[0048] Embodiment Four

[0049] See Figure 8 Figure 8 , in this embodiment, on the basis of Embodiment 3, a transducer bracket 24 and an ultrasonic transducer 25 are added. Two T-shaped slots 240 are provided on the inner side wall of the outer box 6. The transducer bracket 24 is disposed in the interlayer. The transducer bracket 24 is connected with a plug 240 adapted to be inserted into the slot 240. An ultrasonic transducer 25 is disposed at the top of the transducer bracket 24.

[0050] Preferably, an elastic pad 241 is provided at the outer edge of the transducer bracket 24. By contacting the outer wall of the storage bin 2 and the outer wall of the serpentine tube 23 through the elastic pad 241, it is convenient to transmit vibration to the storage bin 2 and the serpentine tube 23. In the technical solution of this embodiment, the elastic pad 241 is made of silica gel material. When cleaning the device, when the connecting pipe 11 is connected to a water source to clean the device, the ultrasonic transducer 25 is turned on. The vibration generated by the operation of the ultrasonic transducer 25 is transmitted to the serpentine tube 23 and the storage bin 2 through the elastic pad 241, so that the impurities and dirt in the storage bin 2 and the serpentine tube 23 are discharged, improving the cleaning effect of the device.

[0051] The present invention also provides a control method for an accurate quantitative device based on artificial intelligence. Using the above-mentioned accurate quantitative device based on artificial intelligence, the method is characterized in that the method includes the following steps:

[0052] (1) The control device is connected with a voice input device. Through the voice input device, a voice command is picked up. The voice command includes material and gram weight information, or menu information. The control device analyzes the voice command and judges the material information and gram weight information included in the voice command. Among them, the menu information is the material information and gram weight information corresponding to the menu built in the control device. The menu information can also be input into the control device through voice for storage.

[0053] (2) The control device controls the spiral discharging device connected to the storage bin of the corresponding material to discharge materials. The weighing platform weighs the materials in the receiving box and feeds back the weighing data to the control device. The control device judges whether the materials in the receiving box reach the required gram weight.

[0054] (3) If the gram weight of the material meets the standard, the control device controls the spiral discharging device to end the operation; if the gram weight of the material does not meet the standard, the spiral discharging device continues to work until the gram weight of the material meets the standard.

[0055] (4) The control device stores each voice command to form memory data. When the user's voice command mentions materials or menus, the control device calls the memory data to automatically determine the weight of the corresponding materials to control the operation of the spiral discharging device. The control device analyzes the memory data, counts the proportion and frequency of the user's previous use of different seasonings, and forms material and weight information that conforms to the user's daily eating habits. When in use, the material information that conforms to the user's daily eating habits can be directly called.

[0056] The control method of the present invention picks up voice instructions through a voice input device, covering material and gram weight information or menu information. The control device can analyze and judge it, provide clear target data for discharging, and realize the function of man-machine interaction to issue task instructions; the control device controls the spiral discharging device to discharge materials according to the instructions, and the weighing platform weighs and feeds back data in real time. The control device judges whether the gram weight requirement is met based on the weighing result, thereby determining the working state of the discharging device, and constructs a closed-loop control system to ensure accurate control of the discharging amount. The voice instructions are stored to form a memory bank, which can be called according to the user's subsequent instructions to achieve rapid judgment and control. In particular, by analyzing the memory bank data to count the user's usage habits of seasonings, the material and gram weight information that conforms to the user's daily eating habits is formed, further improving the system's intelligent and personalized service capabilities.

[0057] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. An artificial intelligence-based precise quantification device, characterized in that, It includes a frame. Multiple blanking pipes are arranged at the top of the frame. The top end of the blanking pipe is threadedly connected with a storage bin. The outer side of the top of the storage bin is threadedly connected with a bin cover. The bottom of the bin cover is detachably connected with a bottom cover. Multiple through holes are distributed on the bottom cover. A moisture absorption packet can be placed in the space formed by the bottom cover and the bin cover. A spiral discharging device is arranged at the bottom of the blanking pipe. A weighing platform is arranged below the output port of the spiral discharging device at the bottom of the frame. A receiving box is placed on the top of the weighing platform.

2. The precise quantification device based on artificial intelligence according to claim 1, characterized in that, In the middle of the top of the bin cover, there is a connecting pipe. A plug cap is covered on the top of the connecting pipe. The bottom end of the connecting pipe is above the bottom cover.

3. The precise quantification device based on artificial intelligence according to claim 1, characterized in that, A first sealing strip is arranged between the top of the storage bin and the bin cover. An installation groove one is arranged around the outer side of the top of the storage bin. A first convex edge protrudes from the bottom of the installation groove one. A first sealing ring with an L-shaped longitudinal cross-section is arranged in the installation groove one. The first sealing ring is located on the top surface of the first convex edge.

4. The precise quantification device based on artificial intelligence according to any one of claims 1-3, characterized in that, The top end of the blanking pipe is connected with an outer box. The outer box houses the storage bin. The top of the outer box is threadedly connected with an outer cover. The middle of the outer cover is provided with a hollow part. The side wall of the hollow part is threadedly connected with the outer wall of the bin cover.

5. The precise quantitative device based on artificial intelligence according to claim 4, characterized in that, A serpentine pipe is arranged in the interlayer formed between the outer box and the storage bin. The serpentine pipe surrounds the storage bin. The inlet and outlet of the serpentine pipe are vertically arranged and respectively penetrate through the outer bottom of the outer box.

6. The precise quantitative device based on artificial intelligence according to claim 5, wherein The inlet of the serpentine pipe is connected to a cooling box arranged at the rear side of the frame through a circulation pump, and its outlet is connected to the cooling box. A refrigerating sheet is arranged at the rear side of the cooling box.

7. The precise quantification device based on artificial intelligence according to claim 5, characterized in that, Two T-shaped slots are arranged on the inner side wall of the outer box. A transducer support is arranged in the interlayer. The transducer support is connected with a plug-in part that is adaptively inserted and connected with the slots. An ultrasonic transducer is arranged on the top of the transducer support.

8. The precise quantification device based on artificial intelligence according to claim 7, characterized in that An elastic pad is arranged on the outer edge of the transducer support and contacts the outer wall of the storage bin and the outer wall of the serpentine pipe through the elastic pad.

9. The precise quantification device based on artificial intelligence according to claim 1, wherein, A control device is installed on the frame. The control device is electrically connected with the weighing platform and the spiral discharging device.

10. A control method for an accurate quantitative device based on artificial intelligence, using the accurate quantitative device based on artificial intelligence according to any one of claims 1-9, characterized in that, The method includes the following steps: (1) The control device is connected with a voice input device. Through the voice input device, a voice command is picked up. The voice command includes material and gram weight information or menu information. The control device analyzes the voice command and judges the material information and gram weight information included in the voice command. (2) The control device controls the spiral discharging device connected to the storage bin of the corresponding material to discharge materials. The weighing platform weighs the materials in the receiving box and sends the weighing data to the control device. The control device judges whether the materials in the receiving box reach the required gram weight. (3) If the gram weight of the materials meets the standard, the control device controls the spiral discharging device to end the work; if the gram weight of the materials does not meet the standard, the spiral discharging device continues to work until the gram weight of the materials meets the standard. (4) The control device stores each voice command to form memory bank data. When the user mentions a material or menu in the voice command, the control device calls the memory bank data and automatically outputs the gram weight of the corresponding material.