Beverage bottle recycling machine
By using a flipping sorting mechanism and a sorting opening mechanism, combined with barcode scanners and AI image recognition technology, accurate sorting of beverage bottles is achieved, solving the problem of inaccurate sorting in existing beverage bottle recycling machines and improving recycling efficiency and resource recycling efficiency.
Patent Information
- Application Number
- CN202520175496.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-26
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2035-01-26
AI Technical Summary
Existing beverage bottle recycling machines lack effective sorting and screening functions, resulting in inaccurate sorting of beverage bottles and affecting the efficiency of resource recycling.
By employing a flip-and-sort mechanism and a sorting and opening mechanism, combined with barcode scanners and AI image recognition technology, accurate classification of beverage bottles can be achieved.
This improves the quality and efficiency of beverage bottle recycling, ensuring that different types of beverage bottles enter the appropriate recycling channels and maximizing the value of resource recycling.
Smart Images

Figure CN223519991U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of beverage bottle recycling, especially to a beverage bottle recycling machine. BACKGROUND
[0002] With the continuous expansion of the beverage consumption market, the production of beverage bottles is increasing, and if not effectively recycled, it will not only waste resources, but also cause serious environmental pollution. Beverage bottle recycling machines can guide consumers to actively participate in recycling, realize efficient collection and classification of beverage bottles, provide a basis for subsequent resource regeneration, and have important significance for promoting sustainable development.
[0003] In today's era of environmental protection and resource recycling, beverage bottle recycling machines play a key role in promoting waste recycling and reducing environmental pollution.
[0004] At present, the existing beverage bottle recycling machine has some shortcomings: most of the existing beverage bottle recycling machines are directly put into the machine, and there is no corresponding function for classifying and screening beverage bottles. Some devices may have a mechanism for classifying beverage bottles, but they do not have an effective and efficient classification scanning function for beverage bottles. Therefore, a beverage bottle recycling machine is proposed to solve the above problems. UTILITY MODEL CONTENT
[0005] In order to make up for the above shortcomings, the utility model provides a beverage bottle recycling machine, which aims to improve the problem that most of the existing beverage bottle recycling machines in the prior art are directly put into the machine and do not have a corresponding function for classifying and screening beverage bottles.
[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: a beverage bottle recycling machine, comprising a box body, a feeding door is arranged on the upper surface of the box body, a delivery port is formed in the surface of the feeding door, a state indicating lamp is arranged on the inner side wall of the delivery port, a turnover sorting mechanism is arranged in the box body, a sorting door opening mechanism and a rack assembly are further arranged in the box body.
[0007] The rack assembly comprises a rack, a turnover front baffle is arranged on the front end surface of the rack, an optical axis is fixedly connected to the front end surface of the rack, a pass door is arranged on the surface of the rack, a linear module is arranged on the left side of the pass door, a module upper proximity switch is arranged on the top end of the outer wall of the linear module, a module lower proximity switch is arranged on the lower end of the linear module, the optical axis is in contact with the right side surface of the pass door, and a delivery port grating is arranged on the side wall of the rear end of the pass door.
[0008] As a further description of the above technical scheme:
[0009] The turnover sorting mechanism includes a weighing bottom plate, the inner side wall of the weighing bottom plate is provided with a weighing sensor, the top end of the outer wall of the weighing sensor is fixedly connected with a turnover rack, the rear end of the turnover rack is provided with a turnover trigger plate, the rear end of the turnover rack is fixedly connected with a cover, the inner wall of the rear end of the turnover rack is fixedly connected with a turnover motor, the front end output shaft of the turnover motor is fixedly connected with a shaft coupling, the rotating center shaft of the shaft coupling is fixedly connected with a rear roller mounting plate, the surface of the rear roller mounting plate is fixedly connected with two groups of electric rollers, the end of the electric roller away from the rear roller mounting plate is fixedly connected with a front roller mounting plate, the rotating center shaft of the front roller mounting plate is fixedly connected with a rotating shaft, the front end of the rotating shaft is provided with a vertical bearing seat, the center of the inner wall of the rear end of the turnover rack is provided with a turnover middle proximity switch, the inner wall of the left side of the rear end of the turnover rack is provided with a turnover left proximity switch, and the inner wall of the right side of the rear end of the turnover rack is provided with a turnover right proximity switch.
[0010] As a further description of the above technical solution:
[0011] The upper surface of the feeding door is provided with an Android screen, the surface of the feeding door is provided with a receipt paper outlet, the surface of the feeding door is provided with a code scanning and card swiping device, and the bottom end of the outer wall of the box body is provided with four groups of Foma wheels.
[0012] As a further description of the above technical solution:
[0013] The bottom end of the outer wall of the rack is fixedly connected with a rack bottom plate, the surface of the rack bottom plate is provided with a conveying machine, the right surface of the rack bottom plate is provided with an AI box, the inner wall of the top end of the rack is fixedly connected with a code scanning gun mounting plate, the inner wall of the code scanning gun mounting plate is provided with a camera, the inner side wall of the code scanning gun mounting plate is penetrated through and fixedly connected with a light supplementing lamp, the bottom end of the inner wall of the box body is provided with a recycling frame, the inside of the code scanning gun mounting plate is provided with a code scanning gun, the recycling frame is placed at the inner bottom of the box body, the code scanning gun is arranged at the inner side of the box body, the rear end of the box body is provided with conveying terminal gratings, the middle of the conveying terminal gratings is provided with a sorting partition plate, the sorting partition plate is fixedly connected to the inner wall of the rear end of the box body, the rear end of the box body is provided with a compressor, and the rack bottom plate is fixedly connected to the inner side of the box body.
[0014] As a further description of the above technical solution:
[0015] The optical axis is fixedly connected with the optical axis seat.
[0016] As a further description of the above technical solution:
[0017] The top end of the outer wall of the box body is fixedly connected with a top cover, the bottom end of the box body is rotatably connected with a recycling bin door, the surface of the recycling bin door is provided with a mechanical lock, and the surface of the feeding door is provided with a loudspeaker sound outlet.
[0018] As a further description of the above technical solution:
[0019] The vertical bearing seat is fixedly connected to the top end of the front end of the turnover rack, and the weighing bottom plate is fixedly connected to the inner side of the rack.
[0020] As a further description of the above technical solution:
[0021] The swing rod motor mounting plate is fixedly connected to the top end of the rear end of the rack.
[0022] The utility model has the following beneficial effects:
[0023] 1. In the utility model, the turnover sorting mechanism and the sorting door opening mechanism work cooperatively, ensuring that the recognized beverage bottles can quickly and accurately enter the corresponding recycling channel. This precise identification and efficient classification recycling mechanism improves the quality and efficiency of beverage bottle recycling, is conducive to the subsequent resource recycling of different types of beverage bottles, and maximizes the recycling value of resources.
[0024] 2. In the utility model, the code scanning gun preferentially identifies bar codes, and the image recognition technology of the camera and the AI box can accurately identify the type of beverage bottles. Whether the beverage bottles have bar codes or damaged bar codes, they can be accurately classified. ABSTRACT
[0025] Figure 1 isometric view of the present application;
[0026] Figure 2 front view of the present application;
[0027] Figure 3 schematic diagram of the present application;
[0028] Figure 4 top view of the present application;
[0029] Figure 5 front view of the present application;
[0030] Figure 6 isometric view of the present application;
[0031] Figure 7 front view of the present application;
[0032] Figure 8 schematic diagram of the present application;
[0033] Figure 9 isometric view of the present application;
[0034] Figure 10 isometric view of the present application;
[0035] Figure 11 schematic diagram of the present application;
[0036] Figure 12 schematic diagram of the present application;
[0037] Figure 13 top view of the present application.
[0038] Legend:
[0039] 1, box; 2, card scanning and card swiping device; 3, receipt outlet; 4, loudspeaker sound outlet; 5, Android screen; 6, top cover; 7, status indicator light; 8, delivery port; 9, feeding door; 10, recycling bin door; 11, mechanical lock; 12, foma wheel; 13, weighing bottom plate; 14, turnover frame; 15, cover; 16, turnover motor; 17, turnover trigger plate; 19, electric roller; 20, front roller mounting plate; 21, vertical bearing seat; 22, rotating shaft; 23, weighing sensor; 24, turnover intermediate proximity switch; 25, rear roller mounting plate; 26, shaft coupling; 27, turnover right proximity switch; 28, turnover left proximity switch; 29, swing rod trigger plate; 30, right rubber buffer pad; 31, sorting intermediate proximity switch; 32, sorting right proximity switch; 33, swing rod motor mounting plate; 34, worm gear reduction motor; 35, sorting left proximity switch; 36, left rubber buffer pad; 37, swing rod wheel; 38, turnover front baffle; 39, frame; 40, frame bottom plate; 41, optical axis; 42, optical axis seat; 43, access door; 44, upper proximity switch of module; 45, linear module; 46, lower proximity switch of module; 47, delivery port grating; 48, conveyor; 49, camera; 50, code scanning gun; 51, code scanning gun mounting plate; 52, AIbox; 53, right side sorting door; 54, left side sorting door; 55, light supplementing lamp; 56, transmission end grating; 57, sorting partition plate; 58, compressor; 59, recycling frame. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0041] Referring to Figures 1-3The utility model provides a kind of beverage bottle recycling machine, including box 1, box 1 as the main structure of entire recycling machine, provide installation and support base for other parts, the top of the outer wall of box 1 is fixedly connected with top cover 6, top cover 6 is used to protect the part inside box 1, prevent foreign matter from falling into, it also plays the role of rain-proof, sun-proof to some extent, the bottom of box 1 is rotatably connected with recycling bin door 10, recycling bin door 10 facilitates staff to take out the beverage bottle of recycling from the bottom of box 1, carries out subsequent processing, the surface of recycling bin door 10 is provided with mechanical lock 11, mechanical lock 11 is used to lock recycling bin door 10, ensure that bin door does not accidentally open in recycling process, guarantee equipment operation safety, the surface of feeding door 9 is provided with loudspeaker sound outlet 4, loudspeaker sound outlet 4 is used to transmit sound prompt information, guide user to operate recycling machine correctly, for example, prompt user to scan code successfully, deposit beverage bottle, etc., the upper surface of feeding door 9 is provided with android screen 5, and android screen 5 can display operating guide, recycling information, rebate amount and the like, facilitate user to intuitively understand the relevant information and operating procedure of recycling machine, the surface of feeding door 9 is provided with receipt paper outlet 3, and receipt paper outlet 3 is used to output printed receipt, and the relevant information of user recycling beverage bottle, such as rebate amount, recycling time, etc., is recorded on receipt, the right surface of feeding door 9 is provided with code scanning card swiping device 2, and code scanning card swiping device 2 is used for user to carry out code scanning or card swiping operation to start recycling process, verify user identity and associate corresponding account information, the bottom of the outer wall of box 1 is provided with four groups of foma wheel 12, and foma wheel 12 makes recycling machine convenient to move, and it is convenient to adjust equipment position according to actual use scene, the upper surface of box 1 is provided with feeding door 9, and feeding door 9 is the entrance of user deposit beverage bottle, and its design facilitates user to place beverage bottle into recycling machine, and the surface of feeding door 9 is provided with delivery port 8, and delivery port 8 is the passageway of beverage bottle into recycling machine, and its size and shape design are adapted to the size of common beverage bottle, facilitate user to deposit, and the inside side wall of delivery port 8 is provided with state indicating lamp 7, and state indicating lamp 7 shows the working state of recycling machine to user by different color and flickering state, the inside of box 1 is provided with turnover sorting mechanism, and turnover sorting mechanism is used to identify the type of beverage bottle, and guides beverage bottle to corresponding passageway by turnover action, realizes the sorting of different bottle type beverage bottle, the inside of box 1 is also provided with sorting door opening mechanism and rack assembly.
[0042] Refer to Figures 2-4The turnover sorting mechanism includes a weighing base plate 13, which provides a mounting platform for a weighing sensor 23 and bears the weight from the components above and the beverage bottles. A vertical bearing seat 21 is fixedly connected to the top end of the left side outer wall of the turnover frame 14, and is used to support a rotating shaft 22, so that the rotating shaft 22 can stably rotate, thereby ensuring the normal operation of components such as the electric cylinder 19. The weighing base plate 13 is fixedly connected to the inner side wall of the frame 39, thereby stably connecting the turnover sorting mechanism with the frame 39 and ensuring the stability of the entire mechanism during operation. The inner side wall of the weighing base plate 13 is provided with the weighing sensor 23, which is used to detect the weight of the beverage bottles placed on the turnover sorting mechanism in real time, so as to determine whether there is an abnormal condition such as excessive liquid remaining in the beverage bottles. The top end of the outer wall of the weighing sensor 23 is fixedly connected with the turnover frame 14, which provides support for the weighing sensor 23 and ensures the stable installation of the turnover frame 14 above the weighing sensor 23. The rear end of the turnover frame 14 is provided with a turnover trigger plate 17, which cooperates with a turnover proximity switch to control the start and end of the turnover action of the turnover sorting mechanism, so that the beverage bottles can be poured at a suitable position and angle
[0043] Further, the rear end of the turnover frame 14 is fixedly connected with a cover 15, which protects part of the components of the turnover sorting mechanism and prevents foreign matter from entering, thereby ensuring the safety of the operator to a certain extent. The inner wall of the rear end of the turnover frame 14 is fixedly connected with a turnover motor 16, which serves as the power source for the turnover action of the turnover sorting mechanism. The turnover motor 16 drives the related components to realize the turnover of the beverage bottles through rotation. The front end output shaft of the turnover motor 16 is fixedly connected with a coupling 26, which is used to connect the output shaft of the turnover motor 16 and the rear cylinder mounting plate 25, thereby transmitting the power of the motor and enabling the rear cylinder mounting plate 25 and the connected components to rotate with the motor. The rotating center shaft of the coupling 26 is fixedly connected with the rear cylinder mounting plate 25, which is used to fix one end of the electric cylinder 19, thereby ensuring the stable installation and rotation of the electric cylinder 19. The surface of the rear cylinder mounting plate 25 is fixedly connected with two groups of electric cylinders 19. The electric cylinders 19 rotate during operation, thereby driving the beverage bottles placed thereon to rotate, cooperating with components such as the code scanning gun 50 to identify the bottle type, and driving the beverage bottles to turn over together during turnover,
[0044] Referring to Figures 2-4, the other end of the electric roller 19 is fixedly connected with the front roller mounting plate 20, the front roller mounting plate 20 fixes the other end of the electric roller 19, and the rear roller mounting plate 25 and the front roller mounting plate 20 together ensure the stable installation and rotation of the electric roller 19, the rotating center shaft of the front roller mounting plate 20 is fixedly connected with the rotating shaft 22, the rotating shaft 22 rotates under the support of the vertical bearing seat 21, drives the electric roller 19 and the front roller mounting plate 20 to rotate together, the outer wall of the rotating shaft 22 is provided with the vertical bearing seat 21, the vertical bearing seat 21 supports the rotating shaft 22 to ensure the stable rotation of the rotating shaft 22, the center of the inner wall of the rear end of the turnover frame 14 is provided with a turnover intermediate proximity switch 24, the turnover intermediate proximity switch 24 is used for detecting whether the turnover trigger plate 17 returns to the initial position, when the turnover trigger plate 17 triggers the switch, it indicates that the turnover sorting mechanism returns to the initial state and is ready for the next operation, the inner wall of the left side of the turnover frame 14 is provided with a turnover left proximity switch 28, the turnover left proximity switch 28 cooperates with the turnover trigger plate 17, when the turnover trigger plate 17 moves to the position, it indicates that the turnover sorting mechanism is turned to the left and is in place, at this time, the beverage bottle may be a pop can and will be poured into the corresponding channel, the inner wall of the right side of the turnover frame 14 is provided with a turnover right proximity switch 27, the turnover right proximity switch 27 cooperates with the turnover trigger plate 17, when the turnover trigger plate 17 moves to the position, it indicates that the turnover sorting mechanism is turned to the right and is in place, at this time, the beverage bottle may be a plastic bottle and will be poured into the corresponding channel.
[0045] Referring to Figures 5-7 , the sorting door opening mechanism includes a swing rod motor mounting plate 33, the swing rod motor mounting plate 33 provides a mounting position for a worm gear deceleration motor 34 and other related components, and ensures the stable installation of each component of the sorting door opening mechanism, the swing rod motor mounting plate 33 is fixedly connected to the top end of the rear end of the frame 39, stably connects the sorting door opening mechanism with the frame 39, and ensures the stability of the entire mechanism during the working process, the upper surface of the swing rod motor mounting plate 33 is fixedly connected with the worm gear deceleration motor 34, the worm gear deceleration motor 34 serves as a power source of the sorting door opening mechanism, drives the swing rod wheel 37 and the swing rod trigger plate 29 to rotate through forward and reverse rotation, and further controls the opening of the sorting door, the output shaft of the worm gear deceleration motor 34 is fixedly connected with the swing rod wheel 37, the swing rod wheel 37 rotates under the drive of the worm gear deceleration motor 34, further drives the swing rod trigger plate 29 connected therewith to rotate, realizes the operation of the sorting door,
[0046] Further, the lower surface of the swing lever motor mounting plate 33 is provided with a sorting intermediate proximity switch 31, which is used to detect whether the swing lever trigger plate 29 is in the initial position. When the swing lever trigger plate 29 triggers the switch, it indicates that the sorting door opening mechanism is in the initial state, ready to respond to the bottle type identification signal. The left lower surface of the swing lever motor mounting plate 33 is provided with a sorting left proximity switch 35, which cooperates with the swing lever trigger plate 29. When the trigger structure on the swing lever trigger plate 29 moves to this position, it indicates that the left sorting door 54 opening action is in place. At this time, the channel corresponding to the pull-tab can be opened. The right lower surface of the swing lever motor mounting plate 33 is provided with a sorting right proximity switch 32, which cooperates with the swing lever trigger plate 29. When the trigger structure on the swing lever trigger plate 29 moves to this position, it indicates that the right sorting door 53 opening action is in place. At this time, the channel corresponding to the plastic bottle is opened.
[0047] Referring to Figure 5 and Figure 11 The surface of the swing lever wheel 37 is rotatably connected with the swing lever trigger plate 29, which rotates with the swing lever wheel 37. The trigger structure on the swing lever trigger plate 29 cooperates with the proximity switch to control the opening and closing of the sorting door. The rubber buffer pads at both ends of the swing lever trigger plate 29 are used to push the sorting door. The left rubber buffer pad 36 is fixedly connected to the left surface of the bottom end of the swing lever trigger plate 29. When the swing lever trigger plate 29 rotates, the left rubber buffer pad 36 contacts and pushes the left sorting door 54 to open, and also serves as a buffer to avoid damage to the sorting door. The right rubber buffer pad 30 is fixedly connected to the right surface of the bottom end of the swing lever trigger plate 29. When the swing lever trigger plate 29 rotates, the right rubber buffer pad 30 contacts and pushes the right sorting door 53 to open, and also serves as a buffer to avoid damage to the sorting door. The inner side of the box body 1 is provided with a rack assembly. The outer wall of the right rubber buffer pad 30 contacts the right sorting door 53, which is pushed open by the right rubber buffer pad 30 to provide a channel for beverage bottles identified as plastic bottles to enter the corresponding recycling path. The outer wall of the left rubber buffer pad 36 contacts the left sorting door 54, which is pushed open by the left rubber buffer pad 36 to provide a channel for beverage bottles identified as pull-tab cans to enter the corresponding recycling path.
[0048] Referring to Figures 7-11The rack assembly comprises a rack 39, which serves as a support frame of the entire recycling machine internal structure, provides a mounting base for other numerous components, ensures the relative positions between components and the stability of the overall structure, and is provided with a turnover front baffle 38 on the front surface of the rack 39. The turnover front baffle 38 covers the gap between the access door 43 and the turnover sorting mechanism, prevents beverage bottles from falling into the gap during the feeding process, and improves the safety of the equipment operation. The right surface of the rack 39 is fixedly connected with an optical shaft 41, and the optical shaft 41 is fixedly connected with an optical shaft seat 42. The optical shaft 41 and the optical shaft seat 42 cooperate to guide the movement of the access door 43, so that the access door 43 can be stably opened and closed. The surface of the rack 39 is provided with the access door 43. The access door 43 is opened after the user successfully scans the code or swipes the card, allowing the user to put the beverage bottle into the recycling machine through the delivery port 8. Meanwhile, the access door 43 is closed during the operation of the equipment to ensure the safety of the internal components. The left side of the access door 43 is provided with a linear module 45 for controlling the linear motion of the access door 43 to realize the opening and closing actions of the access door 43. The top end of the outer wall of the linear module 45 is provided with a module upper proximity switch 44 for detecting whether the access door 43 is opened to the position. When the access door 43 triggers the switch, it indicates that the access door 43 has been completely opened. The lower end of the linear module 45 is provided with a module lower proximity switch 46 for detecting whether the access door 43 is closed to the position. When the access door 43 triggers the switch, it indicates that the access door 43 has been completely closed. The right surface of the access door 43 is in contact with the optical shaft 41, which guides the access door 43 to move stably along the optical shaft 41. The rear end of the side wall of the access door 43 is provided with a delivery port grating 47 for detecting whether there is an object passing through the delivery port 8, which serves as a signal for starting the delivery action and also plays a role in preventing hand clamping to ensure user safety. The bottom end of the outer wall of the rack 39 is fixedly connected with a rack bottom plate 40, which provides bottom support for the rack 39 and is used to install other bottom components such as a conveyor 48. The surface of the rack bottom plate 40 is provided with the conveyor 48, which is used to convey the beverage bottles processed by the turnover sorting mechanism and the sorting door opening mechanism to the subsequent compression and recycling area.
[0049] Further, the right side surface of the rack bottom plate 40 is provided with an AI box 52, which cooperates with the camera 49 to identify the image of the beverage bottle. When the code scanner 50 cannot identify the bottle type through the barcode, the AI technology is used to retrieve the picture in the library for comparison to identify the bottle type. The inner wall at the top of the rack 39 is fixedly connected with a code scanner mounting plate 51, which is used to install the code scanner 50 to ensure that the code scanner 50 is in the right position and can accurately read the barcode information on the outer packaging of the beverage bottle. The inner wall of the code scanner mounting plate 51 is provided with a camera 49, which cooperates with the AI box 52 to collect images of the beverage bottle and assist in identifying the bottle type, especially when the barcode cannot be identified. The inner side wall of the code scanner mounting plate 51 is fixedly connected with a fill light 55, which provides sufficient light for the camera 49 and the code scanner 50 to work, ensuring that the information of the beverage bottle can be accurately identified under different lighting conditions. The bottom end of the inner wall of the box body 1 is provided with a recycling frame 59, which is used to collect the compressed beverage bottles. The left recycling frame 59 is used to collect the cans, and the right recycling frame 59 is used to collect the plastic bottles, which facilitates the subsequent centralized processing of different types of beverage bottles. The outer wall at the top of the code scanner mounting plate 51 is provided with a code scanner 50, which is used to scan the barcode on the outer packaging of the beverage bottle to identify the type of beverage bottle and provide a basis for the subsequent sorting action. The recycling frame 59 is placed inside the box body 1, which facilitates the removal of the recycling frame 59 from the side of the box body 1 for cleaning and transferring the recycled beverage bottles.
[0050] Referring to Figure 10 and Figures 12-13 , the rear end of the box body 1 is provided with a transmission end grating 56, which is used to detect whether the beverage bottle is transmitted to the designated position at the rear end, and also serves as a signal for the start of the compressor 58 and counts the beverage bottles. The rear end of the transmission end grating 56 is fixedly connected with a sorting partition plate 57, which separates the transmission channels of the cans and the plastic bottles to ensure that different types of beverage bottles enter their respective compression channels and recycling frames 59. The sorting partition plate 57 is fixedly connected to the inner wall at the rear end of the box body 1 to ensure stable installation of the sorting partition plate 57 and effectively separate the channels of different types of beverage bottles. The rear end of the box body 1 is provided with a compressor 58, which compresses the transmitted beverage bottles to reduce their volume for subsequent storage and transportation. The rack bottom plate 40 is fixedly connected to the inner side wall of the box body 1, and the connection between the rack bottom plate 40 and the box body 1 ensures stable installation of the entire rack assembly inside the box body 1.
[0051] Working principle: When the user scans the code or swipes the card successfully through the code scanning card 2, the access door 43 opens, and the status indicator light 7 is green. The beverage bottle is placed from the delivery port 8 to the turnover sorting mechanism inside the rack 39. The delivery port grating 47 identifies that there is an object passing through, and the turnover mechanism and the code scanning gun 50 start working. The two electric rollers 19 of the turnover sorting mechanism rotate to drive the beverage bottle to rotate. The two code scanning guns 50 above identify the outer packaging barcode of the beverage bottle. If it is identified as a plastic bottle, the electric roller 19 stops working. The turnover motor 16 of the turnover sorting mechanism rotates clockwise to drive the two electric rollers 19 and the beverage bottle to rotate clockwise. At the same time, the sorting door opening mechanism works simultaneously. The worm gear and worm reduction motor 34 rotates counterclockwise to open the right sorting door 53 through the right rubber buffer pad 30 on the swing lever trigger plate 29. When the trigger mechanism of the swing lever trigger plate 29 moves to the sorting right proximity switch 32, the door opening action is in place. At the same time, the turnover trigger plate 17 of the turnover sorting mechanism moves to the turnover left proximity switch 28, and the turnover action is in place. The plastic bottle is poured and falls onto the conveyor 48. When the bottle type is identified, the conveyor 48 starts working, and the plastic bottle is transmitted backward by the conveyor 48. Conversely, if it is identified as a pop can, it will be poured to the left and transmitted backward by the conveyor 48. The code scanning gun 50 identifies the bottle type by scanning the barcode on the outer packaging of the beverage bottle.
[0052] If the outer packaging of the beverage bottle does not have a barcode, the code scanning gun 50 cannot identify it. The camera 49 cooperates with the AIbox 52 to take pictures of the beverage bottle and compare the bottle type by AI retrieval of library pictures. In addition, if there is a lot of liquid left in the beverage bottle, the mass is greater than the mass of the bottle body. For example, a 550ml mineral water bottle weighs about 18g, and a 330ml mineral water bottle weighs 15.8g. A 1.5L and 2L mineral water bottle weighs 35g and 45g respectively. When the weighing sensor 23 detects that the mass is greater, the status indicator light 7 flashes red, and the Android screen 5 prompts the user to retrieve the beverage.
[0053] When the beverage bottle is transmitted to the rear by the conveyor 48, if it is a pop can, it will fall from the left side to the left side of the compressor 58, and conversely, the plastic bottle will fall from the right side to the right side of the compressor 58. The volume of the acceptable pop can is smaller than that of the plastic bottle, so the pop can compression channel is smaller than the plastic bottle compression channel. The gap between the rack 39 components and the sorting partition plate 57 does not block the normal work of the two grating transmission end gratings 56. The gratings here are used for beverage bottle counting and the signal for starting the work of the compressor 58. The compressor 58 can compress different bottle bodies and bottle shapes to accept pop can specifications, can length 80-200mm, diameter 50-100; accept plastic bottle specifications, bottle length 85-380mm, diameter 50-130mm. The compressed beverage bottle will fall into the recycling frame 59. The left side is the pop can recycling frame, and the right side is the beverage bottle recycling frame.
[0054] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for the equivalent replacement of some of the technical features of the technical solutions recorded in the foregoing embodiments, any modification; equivalent replacement; improvement, etc., should be included within the scope of the present application.
Claims
1. A beverage bottle recycler comprising a housing (1), characterised in that: The upper surface of the box (1) is provided with a feeding door (9), the surface of the feeding door (9) is provided with a delivery port (8), the inner side wall of the delivery port (8) is provided with a state indicating lamp (7), the inside of the box (1) is provided with a turnover sorting mechanism, the inside of the box (1) is also provided with a sorting door opening mechanism and a rack assembly; The rack assembly comprises a rack (39), the front end surface of the rack (39) is provided with a turnover front baffle (38), the front end surface of the rack (39) is fixedly connected with an optical axis (41), the surface of the rack (39) is provided with a pass door (43), the left side of the pass door (43) is provided with a linear module (45), the top end of the outer wall of the linear module (45) is provided with a module upper proximity switch (44), the lower end of the linear module (45) is provided with a module lower proximity switch (46), the right surface of the pass door (43) is in contact with the optical axis (41), the rear end of the pass door (43) is provided with a delivery port grating (47).
2. A beverage bottle recycler according to claim 1, characterized in that: The turnover sorting mechanism includes a weighing bottom plate (13), the inner side wall of the weighing bottom plate (13) is provided with a weighing sensor (23), the top end of the outer wall of the weighing sensor (23) is fixedly connected with a turnover rack (14), the rear end of the turnover rack (14) is provided with a turnover trigger plate (17), the rear end of the turnover rack (14) is fixedly connected with a cover (15), the inner wall of the rear end of the turnover rack (14) is fixedly connected with a turnover motor (16), the front end output shaft of the turnover motor (16) is fixedly connected with a shaft coupling (26), the rotating center shaft of the shaft coupling (26) is fixedly connected with a rear roller mounting plate (25), the surface of the rear roller mounting plate (25) is fixedly connected with two groups of electric rollers (19), one end of the electric roller (19) away from the rear roller mounting plate (25) is fixedly connected with a front roller mounting plate (20), the rotating center shaft of the front roller mounting plate (20) is fixedly connected with a rotating shaft (22), the front end of the rotating shaft (22) is provided with a vertical bearing seat (21), the center of the rear end inner wall of the turnover rack (14) is provided with a turnover middle proximity switch (24), the inner wall of the left side of the rear end of the turnover rack (14) is provided with a turnover left proximity switch (28), the inner wall of the right side of the rear end of the turnover rack (14) is provided with a turnover right proximity switch (27), the sorting door opening mechanism includes a swing rod motor mounting plate (33), the upper surface of the swing rod motor mounting plate (33) is fixedly connected with a worm gear deceleration motor (34), the output shaft of the worm gear deceleration motor (34) is fixedly connected with a swing rod wheel (37), the lower surface of the swing rod motor mounting plate (33) is provided with a sorting middle proximity switch (31), the lower surface of the left side of the swing rod motor mounting plate (33) is provided with a sorting left proximity switch (35), the lower surface of the right side of the swing rod motor mounting plate (33) is provided with a sorting right proximity switch (32), the surface of the swing rod wheel (37) is rotatably connected with a swing rod trigger plate (29), the left side surface of the bottom end of the swing rod trigger plate (29) is fixedly connected with a left rubber buffer pad (36), the right side surface of the bottom end of the swing rod trigger plate (29) is fixedly connected with a right rubber buffer pad (30), the inner side of the box body (1) is provided with a rack assembly, the outer wall of the right rubber buffer pad (30) is in contact with a right side sorting door (53), the outer wall of the left rubber buffer pad (36) is in contact with a left side sorting door (54).
3. A beverage bottle recycler according to claim 1, wherein: The upper surface of the feeding door (9) is provided with an Android screen (5), the surface of the feeding door (9) is provided with a receipt paper outlet (3), the surface of the feeding door (9) is provided with a code scanning and card swiping device (2), the bottom end of the outer wall of the box body (1) is provided with four groups of Foma wheels (12).
4. A beverage bottle recycler as defined in claim 3, characterized in that: The bottom end of the outer wall of the rack (39) is fixedly connected with a rack bottom plate (40), the surface of the rack bottom plate (40) is provided with a conveying machine (48), the right surface of the rack bottom plate (40) is provided with an AIbox (52), the inner wall of the top end of the rack (39) is fixedly connected with a code scanning gun mounting plate (51), the inner wall of the code scanning gun mounting plate (51) is provided with a camera (49), the inner side wall of the code scanning gun mounting plate (51) is fixedly connected with a light supplementing lamp (55) penetrating through, the bottom end of the inner wall of the box (1) is provided with a recycling frame (59), the code scanning gun mounting plate (51) is internally provided with a code scanning gun (50), the recycling frame (59) is placed at the inner bottom of the box (1), the code scanning gun (50) is arranged in the inner side of the box (1), the rear end of the box (1) is provided with a conveying end grating (56) on both sides, the middle of the conveying end grating (56) is provided with a sorting partition plate (57), the sorting partition plate (57) is fixedly connected to the inner wall of the rear end of the box (1), the rear end of the box (1) is provided with a compressor (58), and the rack bottom plate (40) is fixedly connected to the inner side of the box (1).
5. A beverage bottle recycler according to claim 1, wherein: The optical axis (41) is fixedly connected with the optical axis seat (42).
6. A beverage bottle recycler according to claim 1, characterized in that: The top end of the outer wall of the box (1) is fixedly connected with a top cover (6), the bottom end of the box (1) is rotatably connected with a recycling bin door (10), the surface of the recycling bin door (10) is provided with a mechanical lock (11), and the surface of the feeding door (9) is provided with a loudspeaker sound outlet (4).
7. A beverage bottle recycler according to claim 2, wherein: The vertical bearing seat (21) is fixedly connected to the top end of the front end of the turnover rack (14), and the weighing bottom plate (13) is fixedly connected to the inner side of the rack (39).
8. A beverage bottle recycler according to claim 2, wherein: The swing rod motor mounting plate (33) is fixedly connected to the top end of the rear end of the rack (39).