Beverage bottle sorting mechanism and sorting and recycling equipment
By introducing the first and second sorting parts into the beverage bottle sorting mechanism, combining the detection components and the passage door, the accurate allocation of three types of beverage bottles is achieved, which solves the problem of high equipment costs in the prior art, reduces the investment cost of recycling equipment and improves the sorting accuracy.
Patent Information
- Application Number
- CN202421799704.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-07-29
AI Technical Summary
The existing sorting agencies cannot sort three types of beverage bottles at the same time, resulting in high investment costs for recycling equipment.
A beverage bottle sorting mechanism including the first and second segments is adopted, and three sorting stations are realized through the driving part driving, and the detection components are combined to ensure that the beverage bottles are accurately distributed to the corresponding recycling bin.
A device has realized the classification and recycling of three kinds of beverage bottles, reducing the equipment procurement costs of recycling companies, and protecting users' safety through passes and ensuring sorting accuracy.
Smart Images

Figure CN223128646U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of beverage bottle recycling equipment, in particular to a beverage bottle sorting mechanism and sorting and recycling equipment. Background Art
[0002] Sorting mechanisms are widely used in beverage bottle recycling equipment to sort beverage bottles (such as aluminum cans, plastic bottles, and glass bottles) conveyed from an identification bin and introduce them into different recycling bins, thereby realizing the classification of beverage bottle materials. Currently, the commonly used sorting mechanisms on the market can only sort two types of beverage bottles at the same time and cannot sort three types of beverage bottles simultaneously. To solve the above problems, usually two or three beverage bottle recycling devices are required to meet the recycling of different types of beverage bottles at the same time. This results in a relatively high investment cost for the recycling equipment. Content of the Utility Model
[0003] To solve the above problems, the purpose of the utility model is to provide a beverage bottle sorting mechanism and sorting and recycling equipment.
[0004] The utility model adopts the following methods to achieve:
[0005] A beverage bottle sorting mechanism includes a frame, and further includes a first sorting member and a second sorting member. The first sorting member and the second sorting member are arranged side by side on the frame. A driving member is further provided on the frame, and the driving member is respectively in transmission connection with the first sorting member and the second sorting member to drive the first sorting member and the second sorting member to rotate to execute a first sorting station, a second sorting station, and a third sorting station.
[0006] Preferably, the first sorting member includes a first rotating shaft and a first sorting guide plate, and the second sorting member includes a second rotating shaft and a second sorting guide plate. The first rotating shaft and the second rotating shaft are installed at intervals and rotatably in the frame. The first sorting guide plate is fixedly connected to the first rotating shaft, and the second sorting guide plate is fixedly connected to the second rotating shaft; the first rotating shaft and the second rotating shaft are in transmission connection with the driving member.
[0007] Preferably, a passage door is provided on the entrance side of the opposite surfaces of the first sorting guide plate and the second sorting guide plate; alternatively, a passage door is provided on the entrance side of the opposite surfaces of the second sorting guide plate and the first sorting guide plate.
[0008] Preferably, when the passage door is provided on the first sorting guide plate, a reinforcing plate is connected between the side of the passage door close to the second sorting guide plate and the first rotating shaft; alternatively, when the passage door is provided on the second sorting guide plate, a reinforcing plate is connected between the side of the passage door close to the first sorting guide plate and the second rotating shaft.
[0009] Preferably, a first guiding plate inclined downward is provided at the bottom of the side of the first sorting guiding plate facing away from the second sorting guiding plate; a second guiding plate inclined downward is provided at the bottom of the side of the second sorting guiding plate facing away from the first sorting guiding plate.
[0010] Preferably, the frame includes a mounting plate, the first rotating shaft and the second rotating shaft are rotatably mounted on the lower surface of the mounting plate, and the driving member is mounted on the upper surface of the mounting plate; the driving member includes a first driving motor and a second driving motor, the first driving motor is in transmission connection with the first rotating shaft, and the second driving motor is in transmission connection with the second rotating shaft.
[0011] Preferably, a detection assembly is provided on the frame. The detection assembly includes a first detection member provided on the frame for detecting the first sorting station, the second sorting station, and the third sorting station of the first sorting member. The detection assembly further includes a second detection member provided on the frame for detecting the first sorting station, the second sorting station, and the third sorting station of the second sorting member.
[0012] Preferably, the first detection member includes a first proximity sensor, a second proximity sensor, and a third proximity sensor; the second detection member includes a fourth proximity sensor, a fifth proximity sensor, and a sixth proximity sensor. A first induction sheet is provided on the first sorting member, and a second induction sheet is provided on the second sorting member. The first proximity sensor, the second proximity sensor, and the third proximity sensor are arranged on the moving track of the first induction sheet, and the fourth proximity sensor, the fifth proximity sensor, and the sixth proximity sensor are arranged on the moving track of the second induction sheet.
[0013] Preferably, the first detection member includes a first proximity sensor and a second proximity sensor; the second detection member includes a third proximity sensor and a fourth proximity sensor; a first induction sheet and a second induction sheet are provided on the first sorting member, and the first proximity sensor and the second proximity sensor are located on the moving tracks of the first induction sheet and the second induction sheet; a third induction sheet and a fourth induction sheet are provided on the second sorting member, and the third proximity sensor and the fourth proximity sensor are located on the moving tracks of the third induction sheet and the fourth induction sheet; in the initial state, the first induction sheet is opposite to the first proximity sensor, the second induction sheet is opposite to the second proximity sensor, the third induction sheet is opposite to the third proximity sensor, and the fourth induction sheet is opposite to the fourth proximity sensor.
[0014] A sorting and recycling device comprises an identification bin, three recycling bins and a conveying mechanism, wherein the conveying mechanism is arranged in the identification bin, and also comprises a beverage bottle sorting mechanism as described in any one of the above items, wherein the entrance side of the beverage bottle sorting mechanism is connected to the exit side of the conveying mechanism, and the discharge side of the beverage bottle sorting mechanism is connected to the three recycling bins.
[0015] The beneficial effects of the utility model are:
[0016] The utility model provides a beverage bottle sorting mechanism. Compared with the prior art, the utility model has at least the following technical effects: 1. By installing a first sorting member and a second sorting member in the frame, compared with the traditional sorting mechanism using a single sorting plate to sort, which can only realize the sorting of materials in two directions, the utility model can realize the adjustment of three sorting stations through the setting of the first sorting member and the second sorting member, and can realize three sorting positions between the two sorting members, on the left, and on the right, so that three types of beverages can be sorted to different positions according to the identification results of the previous process, and one sorting mechanism can realize the sorting action of sorting three types of beverage bottles. 2. A pass door is set in one of the sorting guide plates, which can play a protective role on the one hand. For example, when the compressor of the sorting equipment installed with it breaks the beverage bottle, fragments will splash, and the existence of the pass door can prevent the fragments from flying out and splashing the user, and on the other hand, it can also prevent some improper operations of the user. 3. A guide plate is provided at the bottom of the first sorting guide plate and the second sorting guide plate on the side facing away from each other, which can guide the beverage bottles to slide down and prevent the beverage bottles from falling vertically to the space below the middle station, so as to ensure that the sorted beverage bottles accurately fall into the corresponding recycling bin. 4. The detection part is set to detect the position of the first sorting part and the second sorting part, which can ensure that the driving part drives the first sorting part and the second sorting part to move accurately to the corresponding sorting position, which helps the beverage bottles of the three materials to accurately enter the corresponding recycling bin.
[0017] The utility model provides a sorting and recycling equipment. Compared with the prior art, the utility model has at least the following technical effects: the beverage bottle sorting mechanism can be used to classify and recycle beverage bottles of three materials using one device, which can effectively reduce the equipment procurement cost of the recycling company. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a structural schematic diagram of a beverage bottle sorting mechanism in an initial state according to Embodiment 1 of the utility model.
[0019] Figure 2 It is a schematic diagram of a beverage bottle sorting mechanism in the first embodiment of the utility model in a leftward sorting state.
[0020] Figure 3It is a schematic diagram of the state of a beverage bottle sorting mechanism in Embodiment 1 of the present utility model when sorting towards the middle.
[0021] Figure 4 It is a schematic diagram of the state of a beverage bottle sorting mechanism in Embodiment 1 of the present utility model when sorting towards the right side.
[0022] Figure 5 In Figure A, it is a schematic cross-sectional view of the initial state of a beverage bottle sorting mechanism in Embodiment 1 or 2 of the present utility model.
[0023] Figure 5 In Figure B, it is a schematic cross-sectional state view of a beverage bottle sorting mechanism in Embodiment 1 or 2 of the present utility model when sorting towards the left recovery bin.
[0024] Figure 6 In Figure A, it is a schematic cross-sectional state view of a beverage bottle sorting mechanism in Embodiment 1 or 2 of the present utility model when sorting towards the middle recovery bin.
[0025] Figure 6 In Figure B, it is a schematic cross-sectional state view of a beverage bottle sorting mechanism in Embodiment 1 or 2 of the present utility model when sorting towards the right recovery bin.
[0026] Figure 7 It is a schematic connection diagram of the frame of a beverage bottle sorting mechanism in Embodiment 1 of the present utility model with the first rotating shaft and the second rotating shaft.
[0027] Figure 8 It is a structural view of a sorting and recovery device of the present utility model.
[0028] Figure 9 It is a schematic structural diagram of a beverage bottle sorting mechanism in Embodiment 2 of the present utility model in the initial state.
[0029] Figure 10 It is a schematic diagram of the state of a beverage bottle sorting mechanism in Embodiment 2 of the present utility model when sorting towards the left side.
[0030] Figure 11 It is a schematic diagram of the state of a beverage bottle sorting mechanism in Embodiment 2 of the present utility model when sorting towards the right side.
[0031] Figure 12 It is a schematic diagram of the state of a beverage bottle sorting mechanism in Embodiment 2 of the present utility model when sorting towards the middle.
[0032] Explanation of the accompanying drawings: 1. Frame; 2. First sorting member; 21. First rotating shaft; 22. First sorting guide plate; 23. First guide plate; 3. Second sorting member; 31. Second rotating shaft; 32. Second sorting guide plate; 33. Second guide plate; 4. Driving member; 41. First driving motor; 42. Second driving motor; 5. Pass door; 51. Reinforcement plate; 6. Detection component; 61. First proximity sensor; 62. Second proximity sensor; 63. Third proximity sensor; 64. Fourth proximity sensor; 65. Fifth proximity sensor; 66. Sixth proximity sensor; 8. Identification bin; 9. Recovery bin; 10. Conveying mechanism; 11. First induction sheet; 12. Second induction sheet; 13. Third induction sheet; 14. Fourth induction sheet. DETAILED DESCRIPTION
[0033] The utility model is further described below in conjunction with the accompanying drawings and specific embodiments.
[0034] Embodiment 1
[0035] See also Figures 1 to 7 , a beverage bottle sorting mechanism, a beverage bottle sorting mechanism, comprising a frame 1, and also comprising a first sorting element 2 and a second sorting element 3, wherein the first sorting element 2 and the second sorting element 3 are installed side by side on the frame 1, and a driving element 4 is also provided on the frame 1, wherein the driving element 4 is respectively connected to the first sorting element 2 and the second sorting element 3 in a transmission manner, and is used to drive the first sorting element 2 and the second sorting element 3 to rotate and perform a first sorting station, a second sorting station and a third sorting station. By installing the first sorting element 2 and the second sorting element 3 in the frame 1, compared with the traditional sorting mechanism using a single sorting plate to sort materials in two directions, the utility model can realize the adjustment of three sorting stations through the setting of the first sorting element 2 and the second sorting element 3, and can realize three sorting positions between the two sorting elements, the left side and the right side, so that three types of beverages can be sorted to different positions according to the recognition results of the pre-process, and one sorting mechanism can realize the sorting action of sorting three types of beverage bottles.
[0036] See also Figures 1 to 7Preferably, the first sorting member 2 includes a first rotating shaft 21 and a first sorting guide plate 22, the second sorting member 3 includes a second rotating shaft 31 and a second sorting guide plate 32, the first rotating shaft 21 and the second rotating shaft 31 are installed in the frame 1 at intervals and rotationally, the first sorting guide plate 22 is fixedly connected to the first rotating shaft 21, and the second sorting guide plate 32 is fixedly connected to the second rotating shaft 31; the first rotating shaft 21 and the second rotating shaft 31 are transmission-connected to the driving member 4. Through the three station stop positions of the first sorting guide plate and the three station stop positions of the second sorting guide plate, the two cooperate to realize the three-station sorting of beverage bottles, and push the three types of beverage bottles into three recovery bins 9 respectively.
[0037] See also Figures 1 to 6 Preferably, a pass door 5 is provided on the entrance side of the surface opposite to the first sorting guide plate 22 and the second sorting guide plate 32; or a pass door 5 is provided on the entrance side of the surface opposite to the first sorting guide plate 22. Providing a pass door 5 on one of the sorting guide plates can, on the one hand, play a protective role. For example, when the compressor of the sorting equipment on which it is installed breaks a beverage bottle, fragments will be splashed, and the existence of the pass door 5 can prevent the fragments from flying out and injuring the user, and on the other hand, it can also prevent some improper operations of the user.
[0038] See also Figures 1 to 6 Preferably, when the passage door 5 is provided on the first sorting guide plate 22, a reinforcing plate 51 is connected between the side of the passage door 5 close to the second sorting guide plate 32 and the first rotating shaft 21; or, when the passage door 5 is provided on the second sorting guide plate 32, a reinforcing plate 51 is connected between the side of the passage door 5 close to the first sorting guide plate 22 and the second rotating shaft 31. This serves to strengthen the structural strength of the passage door 5.
[0039] See also Figures 1 to 4 Preferably, a first guide plate 23 tilted downward is provided at the bottom of the first sorting guide plate 22 on the side away from the second sorting guide plate 32; a second guide plate 33 tilted downward is provided at the bottom of the second sorting guide plate 32 on the side away from the first sorting guide plate 22. Guide plates are provided at the bottom of the first sorting guide plate 22 and the second sorting guide plate 32 on the side away from each other, which can guide the sliding of the beverage bottles and prevent the beverage bottles from falling vertically to the space below the middle station, so as to ensure that the sorted beverage bottles accurately fall into the corresponding recovery bin 9.
[0040] See also Figures 1 to 7Preferably, the frame 1 includes a mounting plate, the first rotating shaft 21 and the second rotating shaft 31 are rotatably mounted on the lower surface of the mounting plate, and the driving member 4 is mounted on the upper surface of the mounting plate; the driving member 4 includes a first driving motor 41 and a second driving motor 42, the first driving motor 41 is drivingly connected to the first rotating shaft 21, and the second driving motor 42 is drivingly connected to the second rotating shaft 31. It is convenient to install and arrange the driving member 4, the first rotating shaft 21, the second rotating shaft 31, etc.
[0041] See also Figures 1 to 7 Preferably, a baffle is provided on the side of the lower surface of the mounting plate away from the entrance, and the first rotating shaft 21 and the second rotating shaft 31 are located in front of the baffle in the direction of the entrance. The baffle plays a role in strengthening the structural strength.
[0042] See also Figures 1 to 4 Preferably, the frame 1 is provided with a detection component 6, the detection component 6 includes a first detection component provided on the frame 1 for detecting the first sorting station, the second sorting station, and the third sorting station of the first sorting component 2, and the detection component 6 also includes a second detection component provided on the frame 1 for detecting the first sorting station, the second sorting station, and the third sorting station of the second sorting component 3. The first detection component includes a first proximity sensor 61, a second proximity sensor 62, and a third proximity sensor 63; the second detection component includes a fourth proximity sensor 64, a fifth proximity sensor 65, and a sixth proximity sensor 66. The first sorting component 2 is provided with a first induction sheet 11, and the second sorting component 3 is provided with a second induction sheet 12. The first proximity sensor 61, the second proximity sensor 62, and the third proximity sensor 63 are arranged on the moving track of the first induction sheet 11, and the fourth proximity sensor 64, the fifth proximity sensor 65, and the sixth proximity sensor 66 are arranged on the moving track of the second induction sheet 12. Setting a detection member to detect the positions of the first sorting member 2 and the second sorting member 3 can ensure that the driving member 4 drives the first sorting member 2 and the second sorting member 3 to accurately move to the corresponding sorting positions, which helps beverage bottles of the three materials to accurately enter the corresponding recycling bin 9.
[0043] See also Figures 1 to 8 A sorting and recycling device comprises an identification bin 8, three recycling bins 9, a conveying mechanism 10 and a compressor, wherein the conveying mechanism 10 is arranged in the identification bin 8, and further comprises a beverage bottle sorting mechanism as described in any one of the above items, wherein the inlet side of the beverage bottle sorting mechanism is docked with the outlet side of the conveying mechanism 10, and the outlet side of the beverage bottle sorting mechanism is docked with the three recycling bins 9. The identification bin 8 identifies the material of the beverage bottle and sends it in through the conveying mechanism 10.
[0044] The utility model has the following working principle:
[0045] After the beverage bottle is identified in the identification bin 8, the conveyor mechanism 10 will convey the beverage bottle to the rear end of the recycling machine. At the same time, the sorting mechanism also starts to work synchronously:
[0046] If the beverage bottle is identified as a glass bottle, the first sorting guide plate 22 will be driven by the first rotating shaft 21 to turn from the position of the second proximity sensor 62 (initial position) to the position of the third proximity sensor 63 synchronously; at the same time, the second sorting guide plate 32 and the access door 5 will be driven by the second rotating shaft 31 to turn from the position of the fifth proximity sensor 65 (initial position) to the position of the sixth proximity sensor 66 synchronously. Then the glass bottle is conveyed and introduced into the left recycling bin 9. After sorting, the first sorting guide plate 22, the second sorting guide plate 32 and the access door 5 will be driven by their respective first rotating shaft 21 and second rotating shaft 31 to return to the positions close to the second proximity sensor 62 and the fifth proximity sensor 65 respectively;
[0047] If the beverage bottle is identified as a canned drink, the second sorting guide plate 32 and the access door 5 will be driven by the second rotating shaft 31 to turn from the position of the fifth proximity sensor 65 (initial position) to the position of the sixth proximity sensor 66 synchronously. At the same time, the first sorting guide plate 22 remains at the position of the second proximity sensor 62 (initial position). Then the canned drink is conveyed and introduced into the middle recycling bin 9. After sorting, the second sorting guide plate 32 and the access door 5 will be driven by their respective second rotating shaft 31 to return to the position of the fifth proximity sensor 65;
[0048] If the beverage bottle is identified as a plastic bottle, the first sorting guide plate 22 will be driven by the first rotating shaft 21 to turn from the position of the second proximity sensor 62 (initial position) to the position of the first proximity sensor 61 synchronously; at the same time, the second sorting guide plate 32 and the access door 5 will be driven by the second rotating shaft 31 to turn from the position of the fifth proximity sensor 65 (initial position) to the position of the fourth proximity sensor 64 synchronously. Then the plastic bottle is conveyed and introduced into the right recycling bin 9. After sorting, the first sorting guide plate 22, the second sorting guide plate 32 and the access door 5 will be driven by their respective first rotating shaft 21 and second rotating shaft 31 to return to the positions close to the second proximity sensor 62 and the fifth proximity sensor 65 respectively.
[0049] Embodiment 2
[0050] Please refer to Figures 9 to 12, in another embodiment, the difference from the first embodiment is that: the first detection member includes a first proximity sensor 61 and a second proximity sensor 62; the second detection member includes a third proximity sensor 63 and a fourth proximity sensor 64; a first induction sheet 11 and a second induction sheet 12 are provided on the first sorting member 2, and the first proximity sensor 61 and the second proximity sensor 62 are located on the moving tracks of the first induction sheet 11 and the second induction sheet 12; a third induction sheet 13 and a fourth induction sheet 14 are provided on the second sorting member 3, and the third proximity sensor 63 and the fourth proximity sensor 64 are located on the moving tracks of the third induction sheet 13 and the fourth induction sheet 14; as Figure 9 shown in the initial state, the first induction sheet 11 and the first proximity sensor 61 are opposite to each other, the second induction sheet 12 and the second proximity sensor 62 are opposite to each other, the third induction sheet 13 and the third proximity sensor 63 are opposite to each other, the fourth induction sheet 14 and the fourth proximity sensor 64 are opposite to each other, and the access door 5 blocks the conveying mechanism 10 at this time, and the beverage bottles cannot enter; as Figure 10 shown, the second proximity sensor 62 detects the first induction sheet 11, the fourth proximity sensor 64 detects the third induction sheet 13, and the first proximity sensor 61 and the third sensor do not detect the induction sheet. At this time, the beverage bottles enter the left recycling bin 9; as Figure 11 shown, the first proximity sensor 61 detects the second induction sheet 12, the third proximity sensor 63 detects the fourth induction sheet 14, and the second proximity sensor 62 and the fourth proximity sensor 64 do not detect the induction sheet. At this time, the beverage bottles are introduced into the right recycling bin 9; as Figure 12 shown, the first proximity sensor 61 detects the first induction sheet 11, the second proximity sensor 62 detects the second induction sheet 12, the fourth proximity sensor 64 detects the third induction sheet 13, and the third proximity sensor 63 does not detect the induction sheet. At this time, the beverage bottles are introduced into the middle recycling bin 9.
[0051] Please refer to Figures 8 to 12 , a sorting and recycling device, including an identification bin 8, three recycling bins 9, a conveying mechanism 10 and a compressor, the conveying mechanism 10 is arranged in the identification bin 8, and further includes a beverage bottle sorting mechanism as described in the second embodiment. The inlet side of the beverage bottle sorting mechanism is docked with the outlet side of the conveying mechanism 10, and the discharge side of the beverage bottle sorting mechanism is docked with the three recycling bins 9. The identification bin 8 identifies the material of the beverage bottles and sends them in through the conveying mechanism 10.
[0052] The following points should be noted: First, in the description of this application, it should be noted that unless otherwise specified and defined, the terms "installed", "connected", and "coupled" should be understood in a broad sense, which can be a mechanical connection or an electrical connection, or can also be the communication inside two components, and can be directly connected. The terms such as "upper", "lower", "left", and "right" are only used to represent the relative position relationship. When the absolute position of the object being described changes, the relative position relationship may change.
[0053] Second, in the attached drawings of the disclosed embodiments of the present utility model, only the structures related to the disclosed embodiments are involved. For other structures, reference can be made to the general design. Without conflict, the same embodiment and different embodiments of the present utility model can be combined with each other.
[0054] Finally, the above are only the preferred embodiments of the present utility model. The protection scope of the present utility model is not limited to the above embodiments. All technical solutions falling within the concept of the present utility model belong to the protection scope of the present utility model.
[0055] It should be noted that for those of ordinary skill in the art in this technical field, several improvements and refinements made without departing from the principle of the present utility model should also be regarded as within the protection scope of the present utility model.
Claims
1. A beverage bottle sorting mechanism, comprising a frame, characterized in that: It also includes a first sorting component and a second sorting component, which are installed side by side on the frame. The frame is also provided with a driving component, which is respectively connected to the first sorting component and the second sorting component for driving the first sorting component and the second sorting component to rotate and execute the first sorting station, the second sorting station and the third sorting station.
2. The sorting mechanism for beverage bottles according to claim 1, wherein: The first sorting component includes a first rotating shaft and a first sorting guide plate, the second sorting component includes a second rotating shaft and a second sorting guide plate, the first rotating shaft and the second rotating shaft are spaced apart and rotatably installed in the frame, the first sorting guide plate is fixedly connected to the first rotating shaft, and the second sorting guide plate is fixedly connected to the second rotating shaft; the first rotating shaft and the second rotating shaft are transmission-connected to the driving component.
3. A beverage bottle sorting mechanism according to claim 2, characterized in that: A passage door is provided on the entrance side of the opposite surface of the first sorting guide plate and the second sorting guide plate; or a passage door is provided on the entrance side of the opposite surface of the second sorting guide plate and the first sorting guide plate.
4. The sorting mechanism for beverage bottles according to claim 3, wherein: When the access door is arranged on the first sorting guide plate, a reinforcing plate is connected between the side of the access door close to the second sorting guide plate and the first rotating shaft; or, when the access door is arranged on the second sorting guide plate, a reinforcing plate is connected between the side of the access door close to the first sorting guide plate and the second rotating shaft.
5. A beverage bottle sorting mechanism according to claim 2, characterized in that: A first guide plate inclined downward is provided at the bottom of the first sorting guide plate on the side away from the second sorting guide plate; a second guide plate inclined downward is provided at the bottom of the second sorting guide plate on the side away from the first sorting guide plate.
6. The sorting mechanism for beverage bottles according to claim 2, wherein: The frame includes a mounting plate, the first rotating shaft and the second rotating shaft are rotatably mounted on the lower surface of the mounting plate, and the driving member is mounted on the upper surface of the mounting plate; the driving member includes a first driving motor and a second driving motor, the first driving motor is drivingly connected to the first rotating shaft, and the second driving motor is drivingly connected to the second rotating shaft.
7. A beverage bottle sorting mechanism according to claim 1, characterized in that: The frame is provided with a detection component, which includes a first detection component provided on the frame for detecting the first sorting station, the second sorting station and the third sorting station of the first sorting component, and the detection component also includes a second detection component provided on the frame for detecting the first sorting station, the second sorting station and the third sorting station of the second sorting component.
8. A beverage bottle sorting mechanism according to claim 7, characterized in that: The first detecting member includes a first proximity sensor, a second proximity sensor and a third proximity sensor; the second detecting member includes a fourth proximity sensor, a fifth proximity sensor and a sixth proximity sensor; the first sorting member is provided with a first sensing sheet, the second sorting member is provided with a second sensing sheet, the first proximity sensor, the second proximity sensor and the third proximity sensor are arranged on the moving track of the first sensing sheet, and the fourth proximity sensor, the fifth proximity sensor and the sixth proximity sensor are arranged on the moving track of the second sensing sheet.
9. The sorting mechanism for beverage bottles according to claim 7, wherein: The first detection member includes a first proximity sensor and a second proximity sensor; the second detection member includes a third proximity sensor and a fourth proximity sensor; a first induction sheet and a second induction sheet are provided on the first sorting member, and the first proximity sensor and the second proximity sensor are located on the moving trajectories of the first induction sheet and the second induction sheet; a third induction sheet and a fourth induction sheet are provided on the second sorting member, and the third proximity sensor and the fourth proximity sensor are located on the moving trajectories of the third induction sheet and the fourth induction sheet; In the initial state, the first induction sheet is opposite to the first proximity sensor, the second induction sheet is opposite to the second proximity sensor, the third induction sheet is opposite to the third proximity sensor, and the fourth induction sheet is opposite to the fourth proximity sensor.
10. A sorting and recycling device, comprising an identification bin, three recycling bins and a conveying mechanism, wherein the conveying mechanism is arranged in the identification bin, and is characterized in that: It further includes the beverage bottle sorting mechanism according to any one of claims 1-9, an inlet side of the beverage bottle sorting mechanism is docked with an outlet side of the conveyor mechanism, and a discharge side of the beverage bottle sorting mechanism is docked with three of the recycling bins.