Automatic bag breaking and feeding and recording integrated collection device for kitchen waste

By designing an integrated collection device for automatic bag breaking, disposal, and recording of kitchen waste, the device enables automatic isolation, aggregation, and sorting of garbage bags, thus solving the negative impact of bagged garbage bags on waste disposal, improving efficiency and resource utilization, and protecting residents' health and hygiene.

CN119460478BActive Publication Date: 2025-11-21HAINAN JIELI ENVIRONMENTAL ENGINEERING CO LTD
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Patent Information

Application Number
CN202411796232.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-11-21
Estimated Expiration
2044-12-09

AI Technical Summary

Technical Problem

In existing technologies, the presence of bagged garbage bags during the recycling of kitchen waste leads to low processing efficiency and low resource utilization rate. Furthermore, the process is cumbersome and unhygienic for residents, which can negatively impact their health.

Method used

Design an integrated collection device for automatic bag breaking, disposal, and recording of kitchen waste, including sorting and blocking components, gathering components, bag breaking components, and electric sliding tables, to realize automatic isolation, gathering, bag breaking, and classified disposal of garbage bags.

Benefits of technology

It has improved the efficiency of waste disposal and the rate of resource utilization, reduced the complexity of operations for residents, and ensured hygiene and health.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of garbage classification equipment, and discloses a kitchen garbage automatic bag breaking, throwing and recording integrated collecting device, which comprises a garbage throwing box, wherein a kitchen garbage can and other garbage cans are further placed in the garbage throwing box, two garbage throwing openings are formed in the surface of the garbage throwing box, and the garbage throwing box further comprises a sorting and blocking assembly arranged above the kitchen garbage can, wherein a bagged garbage bag can be thrown into the garbage throwing opening to fall on the sorting and blocking assembly; and a gathering assembly arranged in the garbage throwing box and located above the sorting and blocking assembly, which is used for gathering the bagged garbage bag to the center of the sorting and blocking assembly. The kitchen garbage automatic bag breaking, throwing and recording integrated collecting device can automatically complete the breaking of a kitchen garbage bag, the throwing of garbage and the generation of throwing records, thereby greatly simplifying the operation process of residents, improving the efficiency and resource utilization rate of garbage treatment, and guaranteeing the health and safety of residents.
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Description

Technical Field

[0001] This invention relates to the field of waste sorting equipment technology, specifically to an integrated collection device for automatic bag breaking, dispensing, and recording of kitchen waste. Background Technology

[0002] If kitchen waste is mixed with plastic bags during the recycling process, it will significantly impact its processing efficiency and resource utilization. First, plastic bags interfere with the pre-processing of kitchen waste, such as crushing, squeezing, and decomposition, reducing the efficiency of waste treatment. Kitchen waste typically needs to be crushed and dehydrated before entering the biochemical reaction chamber for secondary high-temperature fermentation, which can reduce waste volume by 80% and remove most of the water. Some of the output becomes raw material for organic fertilizer, and the oil extracted after oil-water separation is used as raw material for biodiesel. The presence of plastic bags hinders these operations, making the processing more complicated. If kitchen waste is not removed from its bags before disposal, the plastic bags and kitchen waste will be shredded together by the machine, causing damage to the processing equipment and clogging pipes. The final output, organic fertilizer, will be mixed with broken plastic strips, which are not easily degraded and may pollute the soil and groundwater if used. Therefore, plastic bags should be avoided during the recycling process to improve waste treatment efficiency and resource utilization.

[0003] In current technology, when residents dispose of kitchen waste, they need to personally break open the bag and empty it at the kitchen waste disposal port before putting the bag into the other waste disposal port. This process is relatively cumbersome. Existing bag-breaking devices are not very effective and can easily cause cuts. Moreover, residents inevitably come into contact with kitchen waste when disposing of garbage, which not only brings hygiene problems but may also affect their health. Kitchen waste often contains moist and easily perishable substances, which can easily breed bacteria and produce odors, posing a potential threat to residents' health. The cumbersome operation and health risks greatly damage residents' enthusiasm for participating in garbage sorting. Furthermore, the current lack of information on whether each household participates in garbage sorting makes law enforcement and evidence collection difficult, and the promotion of sorting work is needed. Corresponding information collection and evidence collection systems are required. Summary of the Invention

[0004] The purpose of this invention is to automatically complete the breaking of garbage bags, garbage disposal, and the generation of disposal records, thereby greatly simplifying the residents' operation process, improving the efficiency of garbage disposal and resource utilization, and protecting the hygiene and health of residents. The invention proposes an integrated collection device for automatic bag breaking, disposal, and recording of kitchen waste.

[0005] The technical solution of the present invention to solve the above-mentioned technical problems is as follows:

[0006] An integrated automatic bag-breaking, dispensing, and recording collection device for kitchen waste includes a waste disposal bin, which also contains a kitchen waste bin and other waste bins. The surface of the waste disposal bin has two waste dispensing openings. The device also includes:

[0007] A sorting barrier assembly is installed above the food waste bin, where bagged garbage bags can be dropped from the garbage disposal opening and fall onto the sorting barrier assembly;

[0008] A gathering component, located inside the waste disposal bin and above the sorting barrier component, is used to gather bagged waste bags toward the center of the sorting barrier component.

[0009] A bag-breaking component, installed inside the garbage bin, is used to puncture bagged garbage bags;

[0010] An electric sliding table is installed on the inner wall of the waste disposal bin and above the collection assembly, wherein the moving end of the electric sliding table can move horizontally along the transverse length of the waste disposal bin.

[0011] The bag fixing component is located on the moving end of the electric slide. It is used to fix the bag body of the garbage bag and, driven by the electric slide, to throw the bag body of the garbage bag into the other garbage bin.

[0012] Based on the above technical solution, the present invention can be further improved as follows.

[0013] Furthermore, the sorting barrier assembly includes:

[0014] The column, with one end fixedly installed inside the garbage disposal bin, consists of four columns symmetrically distributed around the center of the food waste bin.

[0015] The fixed frame is set on the other end of the column and directly above the food waste bin, with an opening in its central area;

[0016] Two base plates are rotatably mounted inside the fixed frame, each base plate covering the opening of the fixed frame; and

[0017] The rotation drive component is located on the outside of the fixed frame and is connected to the base plate. It is used to drive the two base plates to rotate and move so as to complete the disposal of kitchen waste.

[0018] Furthermore, a rotating shaft with one end penetrating through and extending to the outside of the fixed frame is fixedly installed at the end of the base plate. A through hole is formed on the surface of the fixed frame, and a bearing is fixedly installed inside the through hole. The rotating shaft and the inner ring of the bearing are fixedly connected to each other. The rotation driving component includes:

[0019] The first electric push rod has its fixed end fixedly installed on the outer wall of the fixed frame, and its output end can be displaced in the horizontal direction.

[0020] Gears, fixedly mounted on the outside of the rotating shaft, their number and distribution position adapted to the rotating shaft; and

[0021] The rack is fixedly installed on the output end of the first electric push rod and meshes with the gear.

[0022] Furthermore, a distribution pipe is fixedly installed on the outer wall of the fixed frame, and a water inlet pipe is fixedly installed on the side of the distribution pipe away from the fixed frame. The water inlet pipe and the distribution pipe are interconnected. A flushing nozzle with one end penetrating through and extending into the inside of the fixed frame is fixedly installed on the side of the distribution pipe near the fixed frame. The number of flushing nozzles is set to several and they are symmetrically distributed around the center of the fixed frame.

[0023] Furthermore, the gathering component includes:

[0024] The mounting frame is fixedly installed inside the garbage disposal bin and located above the fixed frame;

[0025] The first drive motor, which consists of two motors, is fixedly installed on the inner wall of the garbage disposal box and located above the mounting frame. The output end of one first drive motor is arranged vertically, and the output end of the other first drive motor is arranged horizontally.

[0026] The first screw is fixedly installed on the output end of the first drive motor. Its number and distribution position are adapted to the first drive motor. The external thread of the first screw is divided into two equal sections with opposite orientations. Each first screw has a push rod threadedly connected to the outer side of the two external threads. The two push rods on the longitudinal first screw are front and rear pushing members, and the two push rods on the transverse first screw are left and right pushing members.

[0027] Furthermore, the bag-breaking assembly includes:

[0028] A rectangular frame is fixedly installed inside the waste disposal bin and located between the fixed frame and the mounting frame;

[0029] The bag-breaking motor is fixedly installed on the inside of the rectangular frame, and a transmission screw is fixedly installed at its output end;

[0030] The displacement plate is threaded to the outside of the transmission screw, and its surface has threaded holes that are compatible with the transmission screw.

[0031] An irregularly shaped bag-tearing tool is fixedly installed on the surface of a displacement plate; and

[0032] A guide rod is fixedly installed on the inner side of a rectangular frame. A circular hole adapted to the guide rod is opened on the surface of the displacement plate, and the displacement plate is slidably connected to the outer side of the guide rod through the circular hole.

[0033] Furthermore, the bag securing assembly includes:

[0034] The first connecting arm is fixedly installed on the moving end of the electric slide table, and it can move laterally under the drive of the electric slide table.

[0035] The third electric push rod is fixedly installed on the surface of the first connecting arm, and its output end can move vertically.

[0036] The second connecting arm is fixedly installed on the output end of the third electric push rod, wherein the second connecting arm is generally arranged in an n-shape.

[0037] Two hooks are respectively located at the vertical ends of the second connecting arm; and

[0038] An electric vacuum suction cup is fixedly installed on the lateral end surface of the second connecting arm.

[0039] Furthermore, the hook includes:

[0040] The housing consists of two units, each fixedly mounted on the vertical end of the second connecting arm.

[0041] An arc-shaped channel is fixedly installed on the inner side of the housing, wherein a hook is slidably connected to the inner side of the arc-shaped channel, one end of which passes through and extends to the outer side of the arc-shaped channel, and the hook is made entirely of iron.

[0042] The connecting ring is fixedly installed on the outside of the hook claw;

[0043] A spring, fitted onto the outside of the hook, has one end abutting against the end of the arc-shaped channel, and the other end fixedly connected to the surface of the connecting ring; and

[0044] An electromagnet is fixedly installed inside the arc-shaped channel, where the electromagnet and the hook are attracted to each other, and the hook can be retracted into the arc-shaped channel.

[0045] Furthermore, a protective canopy is fixedly installed on the outside of the waste disposal bin, and an information reader, a recognition camera, a voice broadcasting device, and a display screen are fixedly installed inside the canopy. A handwashing sink is also provided inside the canopy. An infrared sensor is fixedly installed on the outside of the waste disposal bin. The surface of the waste disposal bin is equipped with electrically operated covers, the number of which correspond to the distribution position of the waste disposal opening. A weighing sensor is installed between the column and the fixed frame, and a fixed frame is installed on the weighing end of the weighing sensor. A 3D scanner and a recording camera are also installed on the inner top wall of the waste disposal bin. An information transceiver and a control center are also provided inside the canopy.

[0046] Compared with the prior art, the technical solution of this application has the following beneficial technical effects:

[0047] This invention incorporates a sorting and blocking component, effectively isolating bagged garbage bags after disposal and preventing direct mixing with kitchen waste, thus facilitating subsequent processing. Secondly, the introduction of a gathering component automatically gathers the bagged garbage bags towards the center of the sorting and blocking component, ensuring accurate disposal and avoiding processing difficulties caused by scattered garbage bags. Furthermore, the bag-breaking component automatically tears the bagged garbage bags, effectively separating them from kitchen waste. In addition, the combined use of an electric slide and a bag-fixing component automatically fixes and moves the torn garbage bags to other garbage bins, achieving automatic sorting and processing of garbage bags. This function not only reduces the cumbersome operations for residents when disposing of garbage but also improves the automation level of garbage disposal. In summary, through integrated design and intelligent functions, this invention effectively solves the negative impact of bagged garbage bags on garbage disposal efficiency and resource utilization in existing technologies, improving garbage disposal efficiency and resource utilization rates while protecting residents' hygiene and health. Attached Figure Description

[0048] Figure 1 This is a schematic diagram of the overall connection structure of the present invention;

[0049] Figure 2 This is a schematic diagram of the connection structure between the garbage disposal bin and the kitchen waste bin / other garbage bin of the present invention;

[0050] Figure 3 This is a schematic diagram of the connection structure of the sorting barrier component of the present invention;

[0051] Figure 4 For the present invention Figure 3 Enlarged view of point A in the middle;

[0052] Figure 5 This is a schematic diagram of the connection structure between the fixing frame and the flushing nozzle of the present invention;

[0053] Figure 6 This is a schematic diagram of the connection structure of the aggregation component of the present invention;

[0054] Figure 7 This is a schematic diagram of the connection structure of the bag-breaking component of the present invention;

[0055] Figure 8 This is a schematic diagram of the connection structure between the electric slide table and the bag fixing assembly of the present invention;

[0056] Figure 9 This is a schematic diagram of the internal cross-sectional connection structure of the hook of the present invention;

[0057] Figure 10 This is a schematic diagram of the connection structure between the shelter and the garbage disposal bin of the present invention;

[0058] Figure 11 This is a left-side view of the connection between the first connecting arm and the third electric push rod of the present invention.

[0059] In the diagram: 1. Waste disposal bin; 101. Kitchen waste bin; 102. Other waste bin; 103. Waste disposal opening; 2. Sorting barrier assembly; 21. Column; 22. Fixing frame; 23. Base plate; 24. Rotation drive component; 241. First electric push rod; 242. Gear; 243. Rack; 3. Gathering assembly; 31. Mounting frame; 32. First drive motor; 33. First screw; 34. Push rod; 4. Bag breaking assembly; 41. Rectangular frame; 42. Bag breaking motor; 43. Transmission screw; 44. Displacement plate; 45. Bag breaking tool for irregular shapes; 46. Guide rod; 5. Electric slide; 6. Bag fixing assembly; 61. First connection. 62. Third electric push rod; 63. Second connecting arm; 64. Hook; 641. Housing; 642. Arc-shaped channel; 643. Claw; 644. Connecting ring; 645. Spring; 646. Electromagnet; 65. Electric vacuum suction cup; 7. Rotating shaft; 8. Dividing pipe; 9. Water inlet pipe; 10. Rinsing nozzle; 11. Canopy; 12. Information reader; 13. Recognition camera; 14. Voice broadcasting device; 15. Display screen; 16. Handwashing sink; 17. Infrared sensor; 18. Electric cover; 19. Weighing sensor; 20. 3D scanner; 25. Recording camera; 26. Information transceiver; 27. Control center. Detailed Implementation

[0060] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0061] Combination Figures 1-11 As shown, the present invention provides an integrated collection device for automatic bag-breaking, disposing of, and recording of kitchen waste, comprising a waste disposal bin 1, wherein a kitchen waste bin 101 and other waste bins 102 are placed inside the waste disposal bin 1, and two waste disposal openings 103 are provided on the surface of the waste disposal bin 1, and further comprising:

[0062] The sorting barrier component 2 is located above the kitchen waste bin 101, wherein the bagged garbage bag can be put into the garbage disposal port 103 and fall onto the sorting barrier component 2.

[0063] The gathering component 3 is located inside the waste disposal bin 1 and above the sorting barrier component 2. It is used to gather the bagged waste bags towards the center of the sorting barrier component 2.

[0064] The bag-breaking component 4 is installed inside the garbage disposal bin 1 and is used to break open the bagged garbage bags;

[0065] An electric sliding table 5 is installed on the inner wall of the garbage disposal box 1 and located above the gathering component 3. The moving end of the electric sliding table 5 can be horizontally displaced along the transverse length of the garbage disposal box 1.

[0066] The bag fixing component 6 is set on the moving end of the electric slide 5. It is used to fix the bag body of the garbage bag and, driven by the electric slide 5, to throw the bag body of the garbage bag into the other garbage bin 102.

[0067] When residents need to dispose of kitchen waste, they first put the bagged garbage bag into the garbage disposal opening 103 on the surface of the garbage disposal bin 1. The bagged garbage bag falls onto the sorting barrier component 2 located above the kitchen waste bin 101. The function of the sorting barrier component 2 is to temporarily support and isolate the bagged garbage bag, preventing it from directly mixing with the garbage in the kitchen waste bin 101 below. Next, the gathering component 3 starts to work. The gathering component 3 is set inside the garbage disposal bin 1 and is located above the sorting barrier component 2. It gathers the bagged garbage bag towards the center of the sorting barrier component 2. This step ensures that the bagged garbage is properly disposed of. The bag can be accurately positioned at the center of the sorting barrier component 2, facilitating the subsequent bag-breaking operation. Once the bagged garbage bag is successfully gathered and positioned, the 3D scanner 20 begins to scan its volume and transmits the data to the control center. The bag-breaking component 4 then begins to work. The bag-breaking component 4 is located inside the garbage bin 1 and tears open the bagged garbage bag. The kitchen waste inside the torn garbage bag falls onto the sorting barrier component 2 below. At the same time, the electric slide 5 begins to operate. The electric slide 5 is located on the inner wall of the garbage bin 1 and above the gathering component 3. Its moving end can move along the garbage bin. The disposal bin 1 moves horizontally along its lateral length. After the bag-breaking operation is completed, the moving end of the electric slide 5, carrying the bag fixing component 6, moves above the broken garbage bag. The bag fixing component 6, located on the moving end of the electric slide 5, moves downward to fix the broken garbage bag after the control center calculates the movement data. Once the bag is fixed, the electric slide 5 drives the bag fixing component 6 to move, disposing of the bag into the other waste bin 102. Simultaneously, the recording camera 25 records the separation of kitchen waste on the sorting barrier component 2 for later use. After evidence collection and purity identification, and recording, the first electric push rod 241 operates to flip the base plate 23, pouring the kitchen waste into the kitchen waste bin 101, thus effectively separating the garbage bag from the kitchen waste. In this way, the garbage bag is successfully separated from the kitchen waste and sorted. Throughout the process, the device, through its integrated design and intelligent functions, realizes the integrated collection of automatic bag breaking, disposal, and recording of kitchen waste. This not only improves the efficiency of waste treatment and resource utilization, but also reduces the cumbersome operation for residents when disposing of garbage, and protects the hygiene and health of residents.

[0068] In a preferred embodiment, the present invention may be further configured as follows: Figure 2 , Figure 3 As shown; the sorting barrier assembly 2 includes:

[0069] The column 21, one end of which is fixedly installed inside the garbage disposal bin 1, consists of four columns 21, which are symmetrically distributed around the center of the kitchen waste bin 101.

[0070] The fixing frame 22 is set on the other end of the column 21 and located directly above the kitchen waste bin 101, with an opening in its central area;

[0071] Two base plates 23 are rotatably mounted inside the fixed frame 22, and the two base plates 23 can cover the opening of the fixed frame 22; and

[0072] The rotation drive component 24 is located on the outside of the fixed frame 22 and is connected to the base plate 23. It drives the two base plates 23 to rotate and displace, thereby completing the disposal of kitchen waste. The sorting barrier component 2 mainly consists of a column 21, a fixed frame 22, a base plate 23, and the rotation drive component 24. One end of the column 21 is firmly installed on the inside of the waste disposal bin 1. There are four columns, which are symmetrically distributed around the center of the kitchen waste bin 101. This layout ensures the stability and balance of the sorting barrier component 2. The fixed frame 22 is fixed to the other end of the column 21 and is located directly above the kitchen waste bin 101. The central area of ​​the fixed frame 22 is designed as an opening so that bagged garbage bags can fall into it. The fixed frame 22 not only supports and fixes the base plate 23, but also... It also ensures the stability of the base plate 23 during rotation. There are two base plates 23, which are rotatably set inside the fixed frame 22. When the two base plates 23 are in the closed state, they can completely cover the opening of the fixed frame 22, thereby preventing the bagged garbage bags from falling directly into the kitchen waste bin 101. This design allows the sorting barrier component 2 to temporarily store the bagged garbage bags when needed for subsequent sorting and bag breaking operations. The rotation drive component 24 is set outside the fixed frame 22 and is connected to the base plate 23. When a control signal is received, the rotation drive component 24 starts to work, driving the two base plates 23 to rotate. This rotational movement allows the base plates 23 to open or close the opening of the fixed frame 22, thereby controlling the timing and method of bagged garbage bag disposal.

[0073] In a preferred embodiment, the present invention may be further configured as follows: Figure 3 , Figure 4 As shown; a rotating shaft 7 is fixedly installed at the end of the base plate 23, with one end penetrating through and extending to the outside of the fixed frame 22. A through hole is provided on the surface of the fixed frame 22, and a bearing is fixedly installed inside the through hole. The rotating shaft 7 is fixedly connected to the inner ring of the bearing. The rotation driving component 24 includes:

[0074] The first electric push rod 241 is fixedly installed on the outer wall of the fixed frame 22 at its fixed end, and the output end of the first electric push rod 241 can be displaced in the horizontal direction.

[0075] Gears 242 are fixedly mounted on the outside of the rotating shaft 7, and their number and distribution are adapted to the rotating shaft 7; and

[0076] A rack 243 is fixedly mounted on the output end of the first electric push rod 241 and meshes with the gear 242. A rotating shaft 7, with one end penetrating and extending to the outside of the fixed frame 22, is fixedly mounted on the end of the base plate 23. To ensure that the rotating shaft 7 can rotate smoothly and stably within the fixed frame 22, a through hole is opened on the surface of the fixed frame 22, and a bearing is fixedly mounted inside the through hole. The rotating shaft 7 is fixedly connected to the inner ring of the bearing. This design effectively reduces the friction between the rotating shaft 7 and the fixed frame 22, improving the efficiency and stability of rotation. The rotation drive component 24 consists of a first electric push rod 241, a gear 242, and a rack 243. The fixed end of the first electric push rod 241 is firmly mounted on the outer wall of the fixed frame 22, and its output end can be displaced in the horizontal direction. This displacement characteristic allows the first electric push rod 241 to push the rack 243 connected to it to move horizontally. The gears 242 are fixedly mounted on the outside of the rotating shaft 7, and their number and distribution are adapted to the rotating shaft 7. This means that each rotating shaft 7 corresponds to one gear 242 to ensure the rotation shaft... 7 can be driven smoothly and accurately. The rack 243 is fixedly installed on the output end of the first electric push rod 241 and meshes with the gear 242. When the output end of the first electric push rod 241 moves horizontally, the rack 243 also moves accordingly. Due to the meshing relationship between the rack 243 and the gear 242, the movement of the rack 243 will drive the gear 242 to rotate, thereby causing the rotating shaft 7 and the base plate 23 to flip. During the flipping process of the base plate 23, the opening of the fixing frame 22 will be opened or closed. When the base plate 23 is in the open state... When the bagged garbage bag is closed, it can fall into the food waste bin 101 below. When the bottom plate 23 is closed, it can prevent the bagged garbage bag or other debris from entering the food waste bin 101 below the fixed frame 22. In addition, in order to ensure the smoothness of the rack 243 during movement, a slide rail is provided on the outside of the fixed frame 22. Slider is fixedly installed on the surface of the rack 243. These sliders can be slidably connected to the inside of the slide rail. This design not only improves the stability of the rack 243 movement, but also ensures the reliability and durability of the entire rotation drive component 24.

[0077] In a preferred embodiment, the present invention may be further configured as follows: Figure 3 , Figure 5As shown; a distribution pipe 8 is fixedly installed on the outer wall of the fixed frame 22. A water inlet pipe 9 is fixedly installed on the side of the distribution pipe 8 away from the fixed frame 22. The water inlet pipe 9 and the distribution pipe 8 are interconnected. A flushing nozzle 10 is fixedly installed on the side of the distribution pipe 8 near the fixed frame 22, with one end penetrating and extending into the inside of the fixed frame 22. Several flushing nozzles 10 are arranged symmetrically around the center of the fixed frame 22. The fixed frame 22, as an important component of the sorting and blocking assembly 2, has a distribution pipe 8 fixedly installed on its outer wall. This distribution pipe 8 plays a key role in distributing and evenly conveying water flow. A water inlet pipe 9 is fixedly connected to the side of the distribution pipe 8 away from the fixed frame 22. The water inlet pipe 9 and the distribution pipe 8 are interconnected, ensuring that the water source can smoothly enter the distribution pipe 8. A series of flushing nozzles 10 are fixedly installed on the side of the distribution pipe 8 near the fixed frame 22. One end of the nozzle 10 extends through and into the inner side of the fixed frame 22 to directly rinse the inside of the fixed frame 22 and its surrounding area. There are several rinsing nozzles 10, and they are symmetrically distributed around the center of the fixed frame 22. This layout ensures that the rinsing water flow can evenly cover all corners of the fixed frame 22, thereby effectively removing residual garbage, stains or other impurities. When the rinsing system starts working, the water source enters the distribution pipe 8 through the inlet pipe 9. Then, the distribution pipe 8 evenly distributes the water flow to each rinsing nozzle 10. The rinsing nozzles 10 use high-pressure water flow or fine water mist to thoroughly rinse the inside of the fixed frame 22 and the area around its base plate 23. This rinsing process not only helps to keep the fixed frame 22 and its internal components clean, but also reduces garbage residue and odor generation, thereby improving the hygiene level and operating efficiency of the entire garbage disposal device. The inlet pipe 9 is connected to the outlet of the external water source.

[0078] In a preferred embodiment, the present invention may be further configured as follows: Figure 2 , Figure 6 As shown; the gathering component 3 includes:

[0079] Mounting frame 31 is fixedly installed on the inside of garbage disposal box 1 and located above fixing frame 22;

[0080] The first drive motor 32, there are two of them, both of which are fixedly installed on the inner wall of the garbage disposal box 1 and located above the mounting frame 31. The output end of one of the first drive motors 32 is arranged vertically, and the output end of the other first drive motor 32 is arranged horizontally.

[0081] The first screw 33 is fixedly installed on the output end of the first drive motor 32. Its number and distribution are adapted to the first drive motor 32. The external thread of the first screw 33 is divided into two equal sections, with the two sections facing opposite directions. Each first screw 33 has push rods 34 threadedly connected to the outer sides of its two external threads. The two push rods 34 on the longitudinal first screw 33 are for forward and backward pushing, and the two push rods 34 on the transverse first screw 33 are for left and right pushing. The gathering assembly 3 mainly consists of a mounting frame 31, the first drive motor 32, the first screw 33, and the push rods 34. The mounting frame 31 is fixedly installed on the waste disposal bin 1. The mounting frame 31 is located on the inner side of the garbage bin 1 and above the fixed frame 22. Its overall shape is U-shaped, providing a stable framework for subsequent gathering operations. Horizontal and vertical sliding grooves are formed on the ends of the mounting frame 31 away from the fixed frame 22, guiding the movement of the push rod 34. Two first drive motors 32 are fixedly mounted on the inner wall of the garbage bin 1 and above the mounting frame 31. The output ends of these two first drive motors 32 are arranged vertically and horizontally, respectively. This layout allows the gathering assembly 3 to gather the bagged garbage bags in two directions. The first screw 33 is fixed... Mounted on the output end of the first drive motor 32, the number and distribution of these components are adapted to the first drive motor 32. Specifically, the external thread of the first screw 33 is divided into two equal segments, with the two segments facing opposite directions. This design allows the two push rods 34 on the first screw 33 to move simultaneously in opposite directions when the first screw 33 rotates. Each of the two external threads of the first screw 33 has a push rod 34 threadedly connected to its outer side. For the longitudinal first screw 33, the two push rods 34 act as forward and backward pushing members. Longitudinal sliders are fixedly mounted on their surfaces. These longitudinal sliders are slidably connected to the longitudinal sliders on the mounting frame 31. Similarly, on the inner side of the groove, the two push rods 34 on the first transverse screw 33 serve as left and right pushing members. Transverse sliders are fixedly installed on their surfaces. These transverse sliders are slidably connected to the outer side of the transverse sliding groove on the mounting frame 31. When the first drive motor 32 starts to work, it drives the first screw 33 to rotate. Since the external thread of the first screw 33 is divided into two equal segments with opposite directions, when the first screw 33 rotates, the two push rods 34 on it will move towards the center of the mounting frame 31 at the same time. In this way, through the combined action of the front and rear pushing members and the left and right pushing members, the bagged garbage bag can be pushed to the exact center of the mounting frame 31.

[0082] In a preferred embodiment, the present invention may be further configured as follows: Figure 2 , Figure 7 As shown; the bag-breaking component 4 includes:

[0083] A rectangular frame 41 is fixedly installed on the inside of the garbage disposal box 1 and located between the fixed frame 22 and the mounting frame 31;

[0084] The bag-breaking motor 42 is fixedly installed inside the rectangular frame 41, and a transmission screw 43 is fixedly installed at its output end;

[0085] The displacement plate 44 is threaded to the outside of the transmission screw 43, and its surface is provided with threaded holes that are compatible with the transmission screw 43.

[0086] An irregular bag-tearing tool 45 is fixedly installed on the surface of the displacement plate 44; and

[0087] The guide rod 46 is fixedly installed on the inner side of the rectangular frame 41. The surface of the displacement plate 44 is provided with a round hole that matches the guide rod 46. The displacement plate 44 is slidably connected to the outer side of the guide rod 46 through the round hole. The rectangular frame 41 is provided to install the position of the bag breaking motor. During the bag breaking process, the bag breaking motor 42 can be started. The bag breaking motor 42 drives the transmission screw 43 to rotate, thereby driving the displacement plate 44 to move within the rectangular frame 41. During the movement of the displacement plate 44, the irregular bag breaking tool 45 can be moved synchronously, thereby puncturing the bagged garbage bag through the irregular bag breaking tool 45. Since the irregular bag breaking tool 45 is irregularly shaped, it can tear the bagged garbage bag by pulling force when it comes into contact with it during the bag breaking process.

[0088] In a preferred embodiment, the present invention may be further configured as follows: Figure 2 , Figure 8 As shown; the bag fixing component 6 includes:

[0089] The first connecting arm 61 is fixedly installed on the moving end of the electric slide table 5, and can move laterally under the drive of the electric slide table 5.

[0090] The third electric push rod 62 is fixedly installed on the surface of the first connecting arm 61, and its output end can move vertically.

[0091] The second connecting arm 63 is fixedly installed on the output end of the third electric push rod 62, wherein the second connecting arm 63 is generally arranged in an n-shape or multiple n-shapes;

[0092] Two hooks 64 are respectively disposed on the vertical ends of the second connecting arm 63; and

[0093] An electric vacuum suction cup 65 is fixedly installed on the lateral end surface of the second connecting arm 63. The bag fixing assembly 6 mainly consists of components such as the first connecting arm 61, the third electric push rod 62, the second connecting arm 63, the hook 64, and the electric vacuum suction cup 65. These components work together to fix and shake the outer packaging of the bagged garbage bag so that the garbage can be shaken onto the base plate 23. First, the first connecting arm 61 is fixedly installed on the moving end of the electric slide table 5. Therefore, when the electric slide table 5 is started, it can drive the first connecting arm 61 to move laterally in the horizontal direction. This displacement capability allows... The bag fixing assembly 6 can be flexibly moved to different positions within the garbage disposal bin 1 to accommodate garbage bags of different sizes and locations. Next, the third electric push rod 62 is fixedly mounted on the surface of the first connecting arm 61. The output end of the third electric push rod 62 can move vertically. This vertical movement capability allows the second connecting arm 63, its hook 64, and the electric vacuum suction cup 65 to approach or move away from the outer packaging of the garbage bag. The second connecting arm 63 is generally n-shaped; this design not only provides sufficient strength and stability but also provides space for the hook 64 and the electric vacuum suction cup 65. The suction cup 65 provides suitable space for installation. Two or more hooks 64 are respectively located on the vertical end of the second connecting arm 63. These hooks 64 work together to hook the outer packaging of the garbage bag for subsequent fixing and shaking operations. The electric vacuum suction cup 65 is fixedly installed on the lateral end surface of the second connecting arm 63. The electric vacuum suction cup 65 generates strong suction to further adhere to the outer packaging of the garbage bag, enhancing the stability of the fixation. During operation, the hooks 64 and... The electric vacuum suction cup 65 moves to the appropriate position, and then the hook 64 first hooks the outer packaging of the garbage bag. Next, the electric vacuum suction cup 65 is activated to further adhere to the outer packaging of the garbage bag. At this time, the outer packaging of the garbage bag has been firmly fixed to the bag fixing component 6. Finally, by utilizing the lateral displacement capability of the electric slide table 5 and the vertical movement capability of the third electric push rod 62, the outer packaging of the broken bag can be shaken back and forth. This shaking operation can effectively shake the garbage inside the garbage bag onto the bottom plate 23 for subsequent garbage disposal.

[0094] In a preferred embodiment, the present invention may be further configured as follows: Figure 8 , Figure 9 As shown; hook 64 includes:

[0095] The housing 641 consists of two units, each fixedly mounted on the vertical end of the second connecting arm 63.

[0096] An arc-shaped channel 642 is fixedly installed on the inner side of the housing 641, wherein a hook 643 is slidably connected to the inner side of the arc-shaped channel 642, one end of which passes through and extends to the outer side of the arc-shaped channel 642, wherein the hook 643 is made entirely of iron.

[0097] The connecting ring 644 is fixedly installed on the outside of the hook 643;

[0098] Spring 645 is sleeved on the outside of hook 643, with one end abutting against the end of arc-shaped channel 642, and the other end fixedly connected to the surface of connecting ring 644; and

[0099] An electromagnet 646 is fixedly installed inside the arc-shaped channel 642. The electromagnet 646 and the hook 643 are attracted to each other, and the hook 643 can retract into the arc-shaped channel 642. The hook 64 mainly consists of a housing 641, an arc-shaped channel 642, a hook 643, a connecting ring 644, a spring 645, and an electromagnet 646. These components work together to achieve flexible hooking and fixing of the outer packaging of bagged garbage bags. Two housings 641 are fixedly installed on the vertical ends of the second connecting arm 63. This layout ensures that the hook 64 can... The hook 643 is stably mounted on the second connecting arm 63 and performs effective hooking operations when needed. An arc-shaped channel 642 is fixedly mounted inside the housing 641. The design of the arc-shaped channel 642 allows the hook 643 to slide inside and smoothly move out or retract. The hook 643 is made entirely of iron, ensuring sufficient strength and rigidity to firmly hook the outer packaging of the garbage bag. A connecting ring 644 is fixedly mounted on the outside of the hook 643, providing a fixed connection point for the spring 645. This design also ensures the stability and accuracy of the grappling hook 643 during movement. A spring 645 is fitted onto the outside of the grappling hook 643, with one end abutting against the end of the arc-shaped channel 642 and the other end fixedly connected to the surface of the connecting ring 644. This arrangement of the spring 645 allows the grappling hook 643 to undergo a certain displacement when subjected to external force and return to its original position after the force disappears. An electromagnet 646 is fixedly installed inside the arc-shaped channel 642 and attracts the grappling hook 643. Under normal conditions, the electromagnet 646 is energized and generates magnetic force. The hook 643 is firmly attached to the inside of the arc-shaped channel 642. At this time, the spring 645 is in a stretched state, providing the necessary power for the hook 643 to move out. When the bag fixing assembly 6 moves to the vicinity of the bagged garbage bag, the electromagnet 646 is de-energized and loses its magnetic force, no longer attaching the hook 643. At this time, the spring 645 returns to its original state, and its elastic force pulls the connecting ring 644 to move, thereby driving the hook 643 to move out to the outside of the arc-shaped channel 642. During the removal process, the hook 643 will hook onto the outer packaging of the bagged garbage bag, thereby fixing it.

[0100] In a preferred embodiment, the present invention may be further configured as follows: Figure 1 , Figure 10As shown; a canopy 11 is fixedly installed on the outside of the garbage disposal bin 1. An information reader 12, a recognition camera 13, a voice broadcasting device 14, and a display screen 15 are fixedly installed inside the canopy 11. A handwashing sink 16 is also installed inside the canopy 11. An infrared sensor 17 is fixedly installed on the outside of the garbage disposal bin 1. Electric covers 18, the number and distribution of which correspond to the garbage disposal opening 103, are installed on the surface of the garbage disposal bin 1. A weighing sensor 19 is installed between the column 21 and the fixed frame 22. The fixed frame 22 is installed on the weighing end of the weighing sensor 19. A 3D scanner 20 and a recording camera 25 are also installed on the inner top wall of the garbage disposal bin 1. An information transceiver is also installed inside the canopy 11. The device 26 and control center 27 are equipped with a canopy 11 fixedly installed on the outside of the garbage disposal bin 1. This canopy 11 not only provides shelter from wind and rain for users disposing of garbage, but also integrates multiple intelligent devices inside. First, an information reader 12 is fixedly installed inside the canopy 11. This device can read the user's identity information such as information cards or smart bracelets, thereby recording the user who disposed of the garbage. Next, a recognition camera 13 can also recognize the resident's face. Both of these methods are for authenticating the resident's identity to ensure the standardization and traceability of garbage disposal. In addition, a voice broadcasting device 14 can provide voice prompts to the user when disposing of garbage, indicating the operation steps or feedback. Feedback on waste disposal results, such as "Please put the waste into the corresponding slot" and "Disposal successful," enhances the user experience. The display screen 15 shows disposal guidelines, waste sorting knowledge, disposal records, and disposal data, helping users better understand and participate in waste sorting. A handwashing station 16 is also provided inside the shelter 11 to facilitate users washing their hands promptly after disposing of waste, maintaining personal hygiene and reflecting the device's user-friendly design. An infrared sensor 17 is also fixedly installed on the outside of the waste disposal bin 1. This device can sense whether a user is approaching the waste disposal slot 103, thereby triggering the opening or closing of the electric cover 18. When the infrared sensor 17 senses a user approaching, the corresponding electric cover 18 will automatically open or close. The electric cover 18 automatically opens to expose the garbage disposal opening 103, allowing users to dispose of garbage. After the user finishes disposing of garbage and leaves, the electric cover 18 automatically closes to keep the disposal opening clean and sealed. In addition, a weighing sensor 19 is installed between the column 21 and the fixed frame 22. The fixed frame 22 is installed on the weighing end of the weighing sensor 19. When the user puts the garbage bag into the fixed frame 22 to prepare for disposal, the weighing sensor 19 will measure the weight of the garbage bag in real time and transmit the data to the system control center 27. The control center will immediately grant the information reader 12 the permission to swipe the card and record it. At the same time, after the weighing sensor senses the weight, the recognition camera 13 can also perform facial recognition and record it.After the control center collects weight information and classification user information, it can transmit the data through the information transceiver 26 to provide data support for subsequent waste transportation and treatment. It also provides data support for resident participation in waste sorting and subsequent management. To prevent the bags from bursting during the gathering process, a 3D scanner 20 is installed. This scanner scans the dimensions of the bags and transmits the data to the control center for volume calculation. After calculation, the control center transmits a control signal to the first drive motor 32. The first drive motor 32 then adjusts the moving speed and distance of the push rod 34 according to the actual size of the bags, thus preventing the bags from bursting during the pushing process. Simultaneously, it transmits a signal to the third electric push rod 62 to control the position of the electric vacuum suction cup 65 and the hook 64, ensuring accurate hooking and fixing of the bags after the bag-breaking process. When the bottom plate 23 is opened, the 3D scanner can also detect kitchen waste. The overflow status of the waste bin 101 can be displayed in real time on the display screen 15. When the waste bin 101 is about to overflow, the data can be transmitted to the relevant personnel by the information transceiver 26, reminding the staff to replace the waste bin 101 in time. The information transceiver 26 has the function of transmitting and receiving information. At the same time, in conjunction with the use of the recording camera 25, the recording camera 25 can record the situation of the residents' disposal of kitchen waste when the waste falls on the bottom plate 23, and can analyze the purity of the disposed kitchen waste in the backend. The recording camera 25 can also determine whether the garbage in the bagged garbage bag is entirely kitchen waste according to the internal program, which is convenient for tracing the residents' disposal of garbage in the future. According to the purity and situation of the disposed garbage, the corresponding residents can be given corresponding rewards and penalties. It should also be noted that the recording camera 25 has an automatic supplementary light function, and the electric cover 18 can still take pictures, record and identify normally after it is closed.

[0101] The specific working principle of the integrated automatic bag-breaking, dispensing, and recording collection device for kitchen waste of the present invention is as follows:

[0102] When residents are about to dispose of kitchen waste, they will first approach the garbage disposal bin 1. At this time, the infrared sensor 17 on the outside of the garbage disposal bin 1 will sense the resident's approach and trigger the electrical components of the entire device to start working. The electric cover 18 corresponding to the garbage disposal opening 103 will automatically open, allowing residents to dispose of garbage.

[0103] Residents can deposit bagged garbage into the garbage disposal port 103. The bagged garbage will first fall onto the base plate 23, where the weighing sensor 19 will weigh the kitchen waste and transmit the data to the system control center. The control center will immediately grant the information reader 12 permission to swipe and record the data. Residents can swipe their cards to record the data. At the same time, after the weighing sensor detects the weight, the recognition camera 13 can also perform facial recognition and record the data, ensuring the standardization and traceability of garbage disposal. After the control center collects the weight information and classification user information, it can transmit the data through the information transceiver 26 to provide data support for subsequent garbage transportation and processing. It also provides data support for residents' participation in classification and subsequent management, continuously improving the participation and enthusiasm for garbage classification.

[0104] Next, the first drive motor 32 starts and drives the first screw 33 to rotate. Since the external thread of the first screw 33 is divided into two equal parts and the two external threads face opposite directions, the first screw 33 will push the four push rods 34 to move towards the center of the mounting frame 31 during rotation. These push rods 34, as front-back and left-right pushers, will push the bagged garbage bag to the center of the mounting frame 31 for subsequent bag breaking. In order to prevent the left-right and front-back pushers from bursting the bagged garbage bag during the gathering process, a three-dimensional scanner 20 is also provided. This three-dimensional scanner 20 can scan the size of the bagged garbage bag and transmit the data to the control center to calculate the three dimensions and volume. After the calculation is completed, the control center transmits the control signal to the first drive motor 32. In this way, the first drive motor 32 can adjust the moving speed and distance of the push rods 34 according to the actual size of the bagged garbage bag, thereby avoiding bursting the bagged garbage bag during the pushing process.

[0105] After the bagged garbage bag is pushed to the center of the installation frame 31, the bag breaking motor 42 of the bag breaking component 4 starts. Under the transmission of the transmission screw 43, the displacement plate 44 and the bag breaking irregular blade 45 are displaced. The bag breaking irregular blade 45 will cut the outer packaging of the bagged garbage bag, so that the kitchen waste inside falls onto the bottom plate 23 of the sorting barrier component 2.

[0106] Then, the electric slide 5 will drive the first connecting arm 61 to move laterally, while the third electric push rod 62 will drive the second connecting arm 63 to move vertically. Simultaneously, the 3D scanner 20 transmits signals to the third electric push rod 62 to control the position of the entire electric vacuum suction cup 65 and the hook 64, ensuring accurate hooking and securing of the bagged garbage bag after the bag-breaking process. In this way, the hook 64 and the electric vacuum suction cup 65 can be accurately moved to the vicinity of the bagged garbage bag. Under normal circumstances, the electromagnet 646 of the hook 64 will attract the hook claw 643, placing it inside the arc-shaped channel 642. However, when the electromagnet... After power is cut off, spring 645 returns to its original state, pulling connecting ring 644 so that hook 643 moves out to the outside of arc channel 642 and hooks the outer packaging of bagged garbage bag. At the same time, electric vacuum suction cup 65 will further adhere to the outer packaging of bagged garbage bag to ensure its stability during bag breaking and disposal. Utilizing the lateral displacement capability of electric slide table 5 and the vertical movement capability of third electric push rod 62, the already broken outer packaging can be shaken back and forth. This shaking operation can effectively shake the garbage inside the bagged garbage bag onto bottom plate 23 for subsequent garbage disposal.

[0107] The food waste on the base plate 23 will then undergo further processing. At this time, the first electric push rod 241 of the rotation drive component 24 will be activated and push the rack 243 to move horizontally. The rack 243 meshes with the gear 242, which will drive the rotating shaft 7 and the base plate 23 to flip. In this way, the food waste on the base plate 23 will be poured into the food waste bin 101.

[0108] When the base plate 23 is open, the 3D scanner can also detect the overflow of garbage in the kitchen waste bin 101 and display it in real time on the display screen 15. When the scanner detects that the garbage in the kitchen waste bin 101 is about to overflow, the data can be transmitted to the relevant personnel by the information transceiver 26 to remind the relevant staff to replace the kitchen waste bin 101 in time. The information transceiver 26 has the function of transmitting and receiving information. At the same time, in conjunction with the use of the recording camera 25, the recording camera 25 can record the situation of the kitchen waste disposed of by the residents when the garbage falls on the base plate 23, and can analyze the purity of the disposed kitchen waste in the backend. The recording camera 25 can also determine whether the garbage in the bagged garbage bag is entirely kitchen waste according to the internal program, which is convenient for tracing the situation of residents' garbage disposal in the future. According to the purity and situation of the disposed garbage, the corresponding residents can be given corresponding rewards and punishments. It should also be noted that the recording camera 25 has an automatic supplementary light function, and the electric cover 18 can also take pictures, record and identify normally after it is closed.

[0109] In addition, to keep the device clean and hygienic, the distribution pipe 8 and the flushing nozzle 10 can also flush the fixed frame 22 and the base plate 23 to remove residual garbage and stains. The whole process is simple, convenient and quick, and can effectively improve the accuracy and efficiency of garbage sorting.

[0110] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0111] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An integrated collection device for automatic bag breaking, disposing of, and recording of kitchen waste, comprising a waste disposal bin (1), wherein a kitchen waste bin (101) and other waste bins (102) are placed inside the waste disposal bin (1), and two waste disposal openings (103) are provided on the surface of the waste disposal bin (1), characterized in that, Also includes: The sorting barrier component (2) is set above the kitchen waste bin (101), wherein the bagged garbage bag can be put into the garbage disposal port (103) and fall onto the sorting barrier component (2); The gathering component (3) is located inside the garbage bin (1) and above the sorting barrier component (2), and is used to gather the bagged garbage bags toward the center of the sorting barrier component (2). The bag-breaking component (4) is installed inside the garbage disposal bin (1) and is used to break open the bagged garbage bags; An electric slide (5) is installed on the inner wall of the garbage disposal box (1) and above the gathering component (3), wherein the moving end of the electric slide (5) can be horizontally displaced along the transverse length direction of the garbage disposal box (1). The bag fixing component (6) is set on the moving end of the electric slide (5) to fix the bag body of the garbage bag and to throw the bag body of the garbage bag into the other garbage bin (102) under the drive of the electric slide (5). The sorting barrier assembly (2) includes: The column (21) has one end fixedly installed inside the garbage disposal bin (1). There are four columns (21) and they are symmetrically distributed around the center of the kitchen waste bin (101). The fixing frame (22) is set on the other end of the column (21) and located directly above the kitchen waste bin (101), with an opening in its central area; A base plate (23) is rotatably mounted inside the fixed frame (22), wherein there are two base plates (23), and the two base plates (23) can cover the opening of the fixed frame (22); and The rotation drive component (24) is located on the outside of the fixed frame (22) and is connected to the base plate (23). It is used to drive the two base plates (23) to rotate and displace in order to complete the disposal of kitchen waste. The gathering component (3) includes: The mounting frame (31) is fixedly installed on the inside of the garbage disposal box (1) and located above the fixed frame (22); The first drive motor (32) consists of two motors, both of which are fixedly installed on the inner wall of the garbage disposal box (1) and located above the mounting frame (31). The output end of one of the first drive motors (32) is arranged vertically, and the output end of the other first drive motor (32) is arranged horizontally. The first screw (33) is fixedly installed on the output end of the first drive motor (32). Its number and distribution position are adapted to the first drive motor (32). The external thread of the first screw (33) is divided into two equal parts, and the two external threads face opposite directions. Each first screw (33) has a push rod (34) threadedly connected to the outside of the two external threads. The two push rods (34) on the longitudinal first screw (33) are front and rear pushing members, and the two push rods (34) on the transverse first screw (33) are left and right pushing members. The bag-breaking component (4) includes: A rectangular frame (41) is fixedly installed on the inside of the garbage disposal box (1) and located between the fixed frame (22) and the mounting frame (31); The bag-breaking motor (42) is fixedly installed on the inside of the rectangular frame (41), and a transmission screw (43) is fixedly installed at its output end. The displacement plate (44) is threaded to the outside of the transmission screw (43), and its surface is provided with a threaded hole that matches the transmission screw (43). An irregular bag-tearing tool (45) is fixedly installed on the surface of a displacement plate (44); and The guide rod (46) is fixedly installed on the inner side of the rectangular frame (41). The surface of the displacement plate (44) is provided with a circular hole that matches the guide rod (46). The displacement plate (44) is slidably connected to the outer side of the guide rod (46) through the circular hole.

2. The integrated automatic bag-breaking, dispensing, and recording collection device for kitchen waste according to claim 1, characterized in that, A rotating shaft (7) with one end penetrating through and extending to the outside of the fixed frame (22) is fixedly installed at the end of the base plate (23). A through hole is provided on the surface of the fixed frame (22), and a bearing is fixedly installed inside the through hole. The rotating shaft (7) and the inner ring of the bearing are fixedly connected to each other. The rotating drive component (24) includes: The first electric push rod (241) has its fixed end fixedly installed on the outer wall of the fixed frame (22), wherein the output end of the first electric push rod (241) can be displaced along the horizontal direction; Gears (242) are fixedly installed on the outside of the rotating shaft (7), and their number and distribution are adapted to the rotating shaft (7); and The rack (243) is fixedly installed on the output end of the first electric push rod (241) and meshes with the gear (242).

3. The integrated automatic bag-breaking, dispensing, and recording collection device for kitchen waste according to claim 2, characterized in that, A distribution pipe (8) is fixedly installed on the outer wall of the fixed frame (22). A water inlet pipe (9) is fixedly installed on the side surface of the distribution pipe (8) away from the fixed frame (22). The water inlet pipe (9) and the distribution pipe (8) are interconnected. A flushing nozzle (10) with one end penetrating through and extending to the inside of the fixed frame (22) is fixedly installed on the side surface of the distribution pipe (8) close to the fixed frame (22). The number of flushing nozzles (10) is set to several and they are symmetrically distributed according to the center of the fixed frame (22).

4. The integrated automatic bag-breaking, dispensing, and recording collection device for kitchen waste according to claim 1, characterized in that, The bag fixing assembly (6) includes: The first connecting arm (61) is fixedly installed on the moving end of the electric slide (5), and it can move laterally under the drive of the electric slide (5). The third electric push rod (62) is fixedly installed on the surface of the first connecting arm (61), and its output end can move vertically. The second connecting arm (63) is fixedly installed on the output end of the third electric push rod (62), wherein the second connecting arm (63) is arranged in an n-shape; Hooks (64), two of which are respectively located on the vertical ends of the second connecting arm (63); and An electric vacuum suction cup (65) is fixedly mounted on the lateral end surface of the second connecting arm (63).

5. The integrated automatic bag-breaking, dispensing, and recording collection device for kitchen waste according to claim 4, characterized in that, The hook (64) includes: The housing (641) consists of two units, each fixedly mounted on the vertical end of the second connecting arm (63); An arc-shaped channel (642) is fixedly installed on the inner side of the housing (641), wherein a hook (643) is slidably connected to the inner side of the arc-shaped channel (642) and extends to the outer side of the arc-shaped channel (642), wherein the hook (643) is made entirely of iron; The connecting ring (644) is fixedly installed on the outside of the hook (643); A spring (645) is fitted onto the outside of the hook (643), with one end abutting against the end of the arc-shaped channel (642), and the other end fixedly connected to the surface of the connecting ring (644); and An electromagnet (646) is fixedly installed inside the arc-shaped channel (642), wherein the electromagnet (646) and the hook (643) are attracted to each other, and the hook (643) can be retracted into the arc-shaped channel (642).

6. The integrated automatic bag-breaking, dispensing, and recording collection device for kitchen waste according to claim 1, characterized in that, A canopy (11) is fixedly installed on the outside of the garbage disposal bin (1). An information reader (12), a recognition camera (13), a voice broadcasting device (14), and a display screen (15) are fixedly installed inside the canopy (11). A handwashing basin (16) is also provided inside the canopy (11). An infrared sensor (17) is fixedly installed on the outside of the garbage disposal bin (1). An electric cover plate (18) with a quantity and distribution position corresponding to the garbage disposal opening (103) is provided on the surface of the garbage disposal bin (1). A weighing sensor (19) is provided between the column (21) and the fixed frame (22). A fixed frame (22) is provided on the weighing end of the weighing sensor (19). A three-dimensional scanner (20) and a recording camera (25) are also provided on the inner top wall of the garbage disposal bin (1). An information transceiver device (26) and a control center (27) are also provided inside the canopy (11).

Citation Information

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