Bottle unscrambling shifting wheel and device thereof
By designing the transmission part and paddle structure of the bottle rigging wheel, a bottle rigging area is formed, and the arc-shaped bottle rigging surface and positioning surface are used to stabilize the bottle steering, solving the problem of falling and falling bottles during the steering process, achieving neat steering and reducing manual finishing.
Patent Information
- Application Number
- CN202422644981.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-31
AI Technical Summary
In the prior art, bottles are prone to falling or falling in the steering process, resulting in uneven arrangements and require manual secondary finishing.
A bottle lever is designed, including a transmission part and multiple paddles. The paddle is equipped with an arc-shaped bottle lever and a positioning surface. The transmission part drives the paddle to rotate to form a bottle lever. The bottle is located in the bottle lever. The bottle lever and the positioning surface ensure stable steering of the bottle.
Prevent the bottle from moving outward when steering, improve stability, avoid inverting the bottle, ensure the product is steered neatly, and reduce the workload of manual secondary finishing.
Smart Images

Figure CN223239042U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of production equipment, in particular to a bottle unscrambling dial wheel and a device thereof. Background Art
[0002] Currently, bottles (products) are placed on a conveyor belt and passed through a guide guard to a steering mechanism for deflection. The steering mechanism consists of a motor and linear steering blades. When the system detects a product, the motor rotates, and the linear blades and the conveyor belt work together to steer the product. The steering blades consist of four straight blades. As they rotate, they propel the product. However, due to inertia, the product tends to move outward from the blades during deflection, causing it to fall to the ground, fall over, or become misaligned after deflection. This frequent occurrence requires multiple people to reorganize the bottles after deflection. Utility Model Content
[0003] The utility model aims to solve at least one of the technical problems existing in the prior art. The utility model provides a bottle unscrambling wheel and a device thereof, which prevents the products from falling or falling during the turning process, ensures the neat turning of the products, and reduces the workload of manual secondary sorting.
[0004] In order to achieve the above-mentioned purpose, the utility model provides a bottle unscrambling dial wheel, comprising a transmission part and a plurality of paddles, the transmission part being provided with a transmission hole for being connected to a drive shaft, one end of the paddle being connected to the outer periphery of the transmission part, and the other end extending radially along the transmission hole, the paddles being arranged at intervals along the circumference of the transmission hole, the paddles being provided with a bottle-pickup surface and a positioning surface arranged oppositely, the bottle-pickup surface being arc-shaped, the bottle-pickup surface being connected to the positioning surface of an adjacent paddle at one end facing the transmission hole, the bottle-pickup surface and the positioning surface of the adjacent paddle defining a bottle unscrambling area.
[0005] As a preferred solution, the bottle-pushing surface and the positioning surface extend along the axial direction of the transmission hole respectively.
[0006] As a preferred solution, the arc B of the bottle-pushing surface is set at 40-50°.
[0007] As a preferred solution, four paddles are provided, and the paddles are arranged at equal intervals along the circumference of the transmission hole. In the axial projection of the transmission hole, an angle a is formed between the chord of the bottle-picking surface and the positioning surface, and the angle a=90°.
[0008] A bottle unscrambling device comprises a frame, a conveyor belt, a thumbwheel frame, a driving member and the bottle unscrambling thumbwheel, wherein the conveyor belt is arranged on the frame, the thumbwheel frame is connected to the frame, the driving member is connected to the thumbwheel frame, the output shaft of the driving member is connected to the transmission hole, the driving member is in transmission connection with the transmission part, and the paddle is arranged toward the conveyor belt.
[0009] As a preferred solution, the frame is connected with a front steering guardrail and a rear steering guardrail extending along the moving direction of the conveyor belt. The front steering guardrail and the rear steering guardrail are located above the conveyor belt, and the bottle sorting wheel is located between the front steering guardrail and the rear steering guardrail.
[0010] As a preferred solution, the frame is provided with an air blowing nozzle for blowing air on the bottles, the air blowing nozzle and the bottle unscrambling dial wheel are respectively arranged opposite to the conveyor belt, a turning and loading area is provided between the turning front guardrail and the bottle unscrambling dial wheel, the air blowing nozzle is located in the turning and loading area and is connected to the frame, and the blowing direction of the air blowing nozzle is set toward the bottle unscrambling dial wheel.
[0011] As a preferred solution, a guide rod and a screw for adjusting the position of the bottle unscrambling wheel are connected to one side of the frame, the guide rod and the screw extend in the same direction, the wheel frame is slidably connected to the guide rod, and the screw is threadedly connected to the wheel frame.
[0012] As a preferred solution, the frame is connected to a bottle unscrambling wheel with the first sensor provided thereon, and the bottle unscrambling wheel has a loading state. When the bottle unscrambling wheel is in the loading state, the first sensor senses that one of the paddles is located in the steering loading area, and the opening of the bottle unscrambling area faces the steering front guardrail.
[0013] As a preferred solution, the frame is connected to a controller and a second sensor for sensing bottles, and the first sensor, the second sensor, the conveyor belt and the driving member are electrically connected to the controller respectively.
[0014] Compared with the prior art, the present invention provides a bottle sorting wheel and device thereof, which has the following advantages: a transmission part is provided with a transmission hole for connecting with a driving shaft, thereby driving the transmission part to rotate, the transmission part is connected with a plurality of paddles, and the plurality of paddles are driven to rotate by the transmission part, a bottle sorting area is formed between adjacent paddles, the bottles are located in the bottle sorting area, and the bottles are driven to turn by the rotation of the paddles. The paddles are provided with bottle picking surfaces and positioning surfaces arranged opposite to each other, the bottle picking surfaces and the positioning surfaces of adjacent paddles define the bottle sorting area, after the bottles enter the bottle sorting area, the bottle picking surfaces are curved, and the bottles are located in the concave part of the curved bottle picking surfaces, thereby preventing the bottles from moving outward from the paddles and falling when turning. At the same time, the first side surface of the bottle is in contact with the positioning surface to achieve positioning of one side of the bottle, so that the bottles are respectively in contact with the bottle picking surfaces and the positioning surface when turning, thereby improving the stability of the bottles when turning, preventing the bottles from falling over when turning, thereby ensuring the neat turning of the products and reducing the workload of manual secondary sorting. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present utility model.
[0016] Figure 2 It is a schematic diagram of the assembly structure of the guide rod and the screw rod on the frame according to an embodiment of the utility model.
[0017] Figure 3 This is a schematic structural diagram of the state of the bottle turning in an embodiment of the utility model.
[0018] Figure 4 It is a schematic structural diagram of the turning state of the diamond-shaped bottle in the embodiment of the utility model.
[0019] Figure 5 It is a schematic structural diagram of the turning state of the oval bottle in the embodiment of the utility model.
[0020] Figure 6 It is a structural schematic diagram of the bottle unscrambling dial wheel in an embodiment of the utility model.
[0021] Figure 7 It is a top view of the bottle unscrambling dial wheel according to an embodiment of the present utility model.
[0022] Figure 8 It is a structural schematic diagram of the diamond-shaped bottle in the embodiment of the utility model, which cooperates with the positioning surface and the bottle-pushing surface respectively.
[0023] Figure 9 It is a structural schematic diagram of the oval bottle in the embodiment of the utility model, which cooperates with the positioning surface and the bottle-pushing surface respectively.
[0024] In the picture:
[0025] 10. Bottle unscrambling wheel; 11. Frame; 12. Conveyor belt; 13. Wheel frame; 14. Driving element; 15. Front guardrail for steering; 16. Rear guardrail for steering; 17. Air blowing nozzle; 18. Steering loading area; 19. Guide rod; 20. Screw; 21. First sensor; 22. Second sensor;
[0026] 30. Transmission part; 31. Transmission hole;
[0027] 40. Pick; 41. Bottle-prying surface; 42. Positioning surface; 43. Bottle-sorting area;
[0028] 50. Bottle; 51. First side; 52. Second side. DETAILED DESCRIPTION
[0029] The following embodiments are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0030] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like used in the present invention to indicate orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0031] In the description of the present invention, it should be understood that the terms "connected," "connected," "fixed," etc. used in the present invention should be interpreted broadly. For example, the terms may refer to fixed connection, detachable connection, or integration; mechanical connection, welding connection; direct connection, indirect connection through an intermediate medium, internal communication between two elements, or interaction between two elements, unless otherwise explicitly defined. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0032] like Figures 1 to 9As shown, a bottle unscrambling dial wheel according to a preferred embodiment of the present invention includes a transmission part 30 and a plurality of paddles 40. The transmission part 30 is provided with a transmission hole 31 for transmission connection with the drive shaft. One end of the paddle 40 is connected to the outer periphery of the transmission part 30, and the other end extends radially along the transmission hole 31. The paddles 40 are arranged at intervals along the circumference of the transmission hole 31. The paddles 40 are provided with a bottle-prying surface 41 and a positioning surface 42 arranged oppositely. The bottle-prying surface 41 is arc-shaped. One end of the bottle-prying surface 41 facing the transmission hole 31 is connected to the positioning surface 42 of the adjacent paddle 40. The bottle-prying surface 41 and the positioning surface 42 of the adjacent paddle 40 define a bottle unscrambling area 43.
[0033] The bottle unscrambling dial of the present invention has a transmission part 30 provided with a transmission hole 31 for connecting with a drive shaft, thereby driving the transmission part 30 to rotate. The transmission part 30 is connected to a plurality of paddles 40, which are driven to rotate by the transmission part 30. A bottle unscrambling area 43 is formed between adjacent paddles 40. Bottles 50 are located in the bottle unscrambling area 43, and the bottles 50 are driven to turn by the rotation of the paddles 40. Among them, the paddle 40 is provided with a bottle-prying surface 41 and a positioning surface 42 arranged oppositely. The bottle-prying surface 41 and the positioning surface 42 of the adjacent paddle 40 define a bottle-unscrambling area 43. After the bottle 50 enters the bottle-unscrambling area 43, the bottle-prying surface 41 is arc-shaped, and the bottle 50 is located in the concave part of the arc-shaped bottle-prying surface 41, preventing the bottle 50 from moving to the outside of the paddle 40, and preventing the bottle 50 from moving to the outside and falling when turning. At the same time, the first side surface 51 of the bottle 50 is in contact with the positioning surface 42 to achieve positioning of one side of the bottle 50, so that the bottle 50 is respectively in contact with the bottle-prying surface 41 and the positioning surface 42 when turning, thereby improving the stability of the bottle 50 when turning, preventing the bottle 50 from falling over when turning, thereby ensuring the neat turning of the product and reducing the workload of manual secondary sorting.
[0034] Further, such as Figures 6 to 9 As shown, the bottle-pushing surface 41 and the positioning surface 42 each extend along the axial direction of the transmission hole 31. The axial direction of the transmission hole 31 corresponds to the height direction of the bottle 50. The bottle-pushing surface 41 and the positioning surface 42 each extend along the axial direction of the transmission hole 31 to ensure that the surfaces in contact with the bottle 50 are aligned with the height direction of the bottle 50. This keeps the bottle 50 vertical during the steering process, improves the stability of the bottle 50 during steering, and prevents the bottle 50 from falling over during steering. This ensures that the products are neatly steered, facilitates collection, and reduces the workload of manual secondary sorting.
[0035] As one embodiment, Figures 6 to 9 As shown, the shape of the positioning surface 42 is set to correspond to the shape of the first side surface 51 at the corresponding position of the bottle 50, so that the bottle 50 can fit better with the positioning surface 42.
[0036] As one embodiment, Figures 6 to 9As shown, the positioning surface 42 is linear, and the surface of the bottle 50 in contact with the positioning surface 42 is flat. The positioning surface 42 and the surface in contact with the bottle 50 are correspondingly shaped so that the bottle 50 can better fit the positioning surface 42.
[0037] Further, such as Figures 6 to 9 As shown, the curvature B of the bottle-pushing surface 41 is set at 40-50 °. The curvature of the bottle-pushing surface 41 is set in an appropriate range to ensure that the bottle 50 can be prevented from moving outward when turning. At the same time, a smaller curvature has a wider range of application for the bottle 50.
[0038] As one embodiment, Figures 6 to 9 As shown, the arc B of the bottle-pushing surface 41 is set at 46°.
[0039] Further, such as Figures 6 to 9 As shown, four paddles 40 are provided, and the paddles 40 are arranged at equal intervals along the circumference of the transmission hole 31. In the axial projection of the transmission hole 31, an angle a is formed between the chord of the bottle-prying surface 41 and the positioning surface 42. The angle a=90°. Most adjacent side surfaces of the bottles 50 are basically arranged at 90°. In the axial projection of the transmission hole 31, an angle a is formed between the chord of the bottle-prying surface 41 and the positioning surface 42. This improves the fit between the bottle-prying surface 41 and the positioning surface 42 and the bottle 50, keeps the bottle 50 vertical during the steering process, improves the stability of the bottle 50 during steering, and prevents the bottle 50 from falling over during steering, thereby ensuring neat steering of the products, facilitating collection, and reducing the workload of manual secondary sorting.
[0040] A bottle unscrambling device, such as Figures 1 to 5 As shown, the machine comprises a frame 11, a conveyor belt 12, a dial frame 13, a driving member 14, and a bottle unscrambling dial wheel 10. The conveyor belt 12 is mounted on the frame 11, the dial frame 13 is connected to the frame 11, the driving member 14 is connected to the dial frame 13, the output shaft of the driving member 14 is connected to the transmission hole 31, the driving member 14 is in transmission connection with the transmission part 30, and the paddle 40 is disposed toward the conveyor belt 12. The frame 11 is used to support the conveyor belt 12 and the dial frame 13. The conveyor belt 12 is used to place bottles 50 and drive the bottles 50 to move in a certain direction. During the movement of the conveyor belt 12, the bottles 50 are steered by the bottle unscrambling dial wheel 10 to achieve the desired direction of rotation. Among them, the dial frame 13 is connected to the frame 11 for fixation, the driving member 14 is connected to the dial frame 13 for fixation, the driving member 14 is connected to the transmission part 30 for transmission, and the driving member 14 drives the paddle 40 to rotate, and the paddle 40 drives the bottle 50 to turn, so as to realize the turning and sorting of the bottle 50.
[0041] As one embodiment, the driving member 14 is a motor.
[0042] In one embodiment of the composition, the dial frame 13 is detachably connected to the frame 11, so as to facilitate the assembly of the improved bottle unscrambling dial 10 on the original steering production line, thereby facilitating improved assembly.
[0043] Further, such as Figures 1 to 5 As shown, the frame 11 is connected to a front guardrail 15 and a rear guardrail 16 extending along the direction of travel of the conveyor belt 12. The front guardrail 15 and the rear guardrail 16 are located above the conveyor belt 12, respectively. The bottle unscrambling dial 10 is located between the front guardrail 15 and the rear guardrail 16. Bottles 50, before being turned, are located within the front guardrail 15. The front guardrail 15 limits the placement of the bottles 50 on the conveyor belt 12, enabling more accurate placement of the bottles 50 in the bottle unscrambling area 43 of the bottle unscrambling dial 10. Both the front guardrail 15 and the rear guardrail 16 are used to prevent bottles 50 from falling off the conveyor belt 12. The bottle unscrambling dial 10 is located between the front guardrail 15 and the rear guardrail 16. The bottles 50 move from the front guardrail 15 to the bottle unscrambling dial 10 to be turned. After turning, the bottles 50 enter the rear guardrail 16 to ensure that the bottles 50 are located in the guardrails before and after turning, which is convenient for sorting the bottles 50.
[0044] Among them, such as Figures 1 to 5 As shown, the width of the front guardrail 15 is smaller than the width of the rear guardrail 16. The width of the front guardrail 15 is the dimension within the front guardrail 15 perpendicular to the direction of movement of the conveyor belt 12, and the width of the rear guardrail 16 is the dimension within the rear guardrail 16 perpendicular to the direction of movement of the conveyor belt 12. A predetermined spacing of 1 mm to 2 mm is provided between the front guardrail 15 and the rear guardrail 16 and the corresponding side surfaces of the bottle 50 to ensure that the bottle 50 can move smoothly within the front guardrail 15 and the rear guardrail 16.
[0045] As one embodiment, Figures 1 to 5 As shown, the front guardrail 15 includes a first guardrail and a second guardrail, and the first guardrail and the second guardrail are spaced apart in a direction perpendicular to the moving direction of the conveyor belt 12, and the bottle 50 is located between the first guardrail and the second guardrail. The rear guardrail 16 includes a third guardrail and a fourth guardrail, and the third guardrail and the fourth guardrail are spaced apart in a direction perpendicular to the moving direction of the conveyor belt 12, and the bottle 50 is located between the third guardrail and the fourth guardrail.
[0046] Further, such as Figures 1 to 5As shown, the frame 11 is provided with a blowing nozzle 17 for blowing air on the bottles 50. The blowing nozzle 17 and the bottle unscrambling dial wheel 10 are arranged opposite to each other on the conveyor belt 12. A turning loading area 18 is provided between the turning front guardrail 15 and the bottle unscrambling dial wheel 10. The blowing nozzle 17 is located in the turning loading area 18 and is connected to the frame 11. The blowing direction of the blowing nozzle 17 is set toward the bottle unscrambling dial wheel 10. The bottles 50 in the front guardrail 15 of the steering are moved to the steering loading area 18, and the opening of the bottle unscrambling area 43 faces the front guardrail 15 of the steering. Driven by the conveyor belt 12, the first side surface 51 of the bottle 50 is in contact with the positioning surface 42, and the second side surface 52 of the bottle 50 is in contact with the bottle-pushing surface 41, so as to realize the positioning of the bottle 50 in the bottle unscrambling area 43. The air blowing nozzle 17 blows air toward the bottle 50 in the bottle unscrambling area 43, exerting a force toward the bottle-pushing surface 41, thereby improving the contact degree between the bottle 50 and the bottle-pushing surface 41 and the positioning surface 42 during the steering process, preventing the bottle 50 from falling over during the steering process, facilitating collection, and reducing the workload of manual secondary sorting.
[0047] Further, such as Figures 1 to 5 As shown, a guide rod 19 and a screw 20 for adjusting the position of the bottle unscrambling wheel 10 are connected to one side of the frame 11. The guide rod 19 and the screw 20 extend in the same direction. The wheel frame 13 is slidably connected to the guide rod 19, and the screw 20 is threadedly connected to the wheel frame 13. The guide rod 19 guides the thumbwheel frame 13. One end of the screw rod 20 is connected to the frame 11 for fixation. The screw rod 20 is threadedly connected to the thumbwheel frame 13. Rotating the screw rod 20 drives the thumbwheel frame 13 to move, which in turn drives the bottle unscrambling thumbwheel 10 to move, thereby adjusting the position of the bottle unscrambling thumbwheel 10 in the width direction of the conveyor belt 12. When a bottle 50 in the front guardrail 15 enters the bottle unscrambling area 43, the first side 51 of the bottle 50 can be in contact with the positioning surface 42, and the second side 52 of the bottle 50 can be in contact with the bottle unscrambling surface 41. The first side 51 and the second side 52 are two intersecting side surfaces of the bottle 50, respectively, which improves the fit between the bottle 50 and the paddle 40 in the bottle unscrambling area 43. The adjustable position of the thumbwheel frame 13 improves its applicability to bottles 50 of different sizes.
[0048] As one embodiment, Figures 1 to 5 As shown, two guide rods 19 are provided, one end of the two guide rods 19 is respectively connected to the frame 11 for fixation, and the other end of the two guide rods 19 is respectively connected to a cross bar, and the two ends of the screw rod 20 are respectively rotatably connected to the frame 11 and the cross bar to improve the connection stability of the screw rod 20.
[0049] Further, such as Figures 1 to 5As shown, the frame 11 is connected to a first sensor 21 disposed toward the bottle unscrambling dial wheel 10. The bottle unscrambling dial wheel 10 has a loading state. When the bottle unscrambling dial wheel 10 is in the loading state, the first sensor 21 senses that one of the paddles 40 is located in the loading zone 18, and the opening of the bottle unscrambling zone 43 faces the front guardrail 15. The first sensor 21 ensures that the opening of one of the bottle unscrambling zones 43 in the bottle unscrambling dial wheel 10 faces the front guardrail 15, allowing the bottles 50 to smoothly enter the bottle unscrambling zone 43 for steering.
[0050] Further, such as Figures 1 to 5 As shown, the frame 11 is connected to a controller and a second sensor 22 for sensing bottles 50. The first sensor 21, second sensor 22, conveyor belt 12, and drive member 14 are each electrically connected to the controller. The second sensor 22 senses the presence of bottles 50 on the conveyor belt 12 to drive the bottle unscrambling wheel 10 to rotate. The controller controls the conveyor belt 12's conveying speed and the drive member 14's rotation. The first sensor 21 ensures that the bottle unscrambling area 43 faces the front steering guardrail 15, ensuring that the bottles 50 can smoothly enter the unscrambling area 43, achieving automatic steering of the bottles 50.
[0051] In summary, the embodiment of the present invention provides a bottle unscrambling wheel 10 and a device thereof, wherein the transmission part 30 is provided with a transmission hole 31 for connecting with a drive shaft, thereby driving the transmission part 30 to rotate, and the transmission part 30 is connected to a plurality of paddles 40, which are driven to rotate by the transmission part 30, and a bottle unscrambling area 43 is formed between adjacent paddles 40, and the bottle 50 is located in the bottle unscrambling area 43, and the bottle 50 is driven to turn by the rotation of the paddle 40. Among them, the paddle 40 is provided with a bottle-prying surface 41 and a positioning surface 42 arranged oppositely. The bottle-prying surface 41 and the positioning surface 42 of the adjacent paddle 40 define a bottle-unscrambling area 43. After the bottle 50 enters the bottle-unscrambling area 43, the bottle-prying surface 41 is arc-shaped, and the bottle 50 is located in the concave part of the arc-shaped bottle-prying surface 41, preventing the bottle 50 from moving to the outside of the paddle 40, and preventing the bottle 50 from moving to the outside and falling when turning. At the same time, one side of the bottle 50 is in contact with the positioning surface 42 to achieve positioning of one side of the bottle 50, so that the bottle 50 is respectively in contact with the bottle-prying surface 41 and the positioning surface 42 when turning, thereby improving the stability of the bottle 50 when turning, preventing the bottle 50 from falling over when turning, thereby ensuring the neat turning of the product and reducing the workload of manual secondary sorting.
[0052] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and replacements can be made without departing from the technical principles of the present invention. These improvements and replacements should also be regarded as the scope of protection of the present invention.
Claims
1. A bottle unscrambling wheel, characterized by: The invention comprises a transmission part and a plurality of paddles, wherein the transmission part is provided with a transmission hole for transmission connection with a drive shaft, one end of the paddle is connected to the outer periphery of the transmission part, and the other end extends radially along the transmission hole, and each of the paddles is arranged at intervals along the circumference of the transmission hole, and the paddle is provided with a bottle-pickup surface and a positioning surface arranged oppositely, and the bottle-pickup surface is arc-shaped, and one end of the bottle-pickup surface facing the transmission hole is connected to the positioning surface of the adjacent paddle, and the bottle-pickup surface and the positioning surface of the adjacent paddle define a bottle unscrambling area.
2. The bottle unscrambling wheel according to claim 1, characterized in that: The bottle-pushing surface and the positioning surface extend along the axial direction of the transmission hole respectively.
3. The bottle unscrambling wheel according to claim 1, characterized in that: The arc B of the bottle-pushing surface is set at 40-50°.
4. The bottle unscrambling wheel according to claim 3, characterized in that: There are four plectrums, which are evenly spaced along the circumference of the transmission hole. In the axial projection of the transmission hole, an angle a is formed between the chord of the bottle-pickup surface and the positioning surface, and the angle a=90°.
5. A bottle unscrambling device, characterized by: It includes a frame, a conveyor belt, a dial frame, a driving member and the bottle unscrambling dial wheel according to any one of claims 1 to 4, the conveyor belt is arranged on the frame, the dial frame is connected to the frame, the driving member is connected to the dial frame, the output shaft of the driving member is connected to the transmission hole, the driving member is in transmission connection with the transmission part, and the paddle is arranged toward the conveyor belt.
6. The bottle unscrambling device according to claim 5, characterized in that: The frame is connected with a front steering guardrail and a rear steering guardrail extending along the moving direction of the conveyor belt. The front steering guardrail and the rear steering guardrail are located above the conveyor belt respectively, and the bottle unscrambling dial wheel is located between the front steering guardrail and the rear steering guardrail.
7. The bottle unscrambling device according to claim 6, characterized in that: The frame is provided with an air blowing nozzle for blowing air on the bottles. The air blowing nozzle and the bottle unscrambling dial wheel are respectively arranged opposite to each other on the conveyor belt. A turning and loading area is provided between the turning front guardrail and the bottle unscrambling dial wheel. The air blowing nozzle is located in the turning and loading area and is connected to the frame. The blowing direction of the air blowing nozzle is set toward the bottle unscrambling dial wheel.
8. The bottle unscrambling device according to claim 5, characterized in that: A guide rod and a screw rod for adjusting the position of the bottle unscrambling wheel are connected to one side of the frame. The guide rod and the screw rod extend in the same direction. The wheel frame is slidably connected to the guide rod, and the screw rod is threadedly connected to the wheel frame.
9. The bottle unscrambling device according to claim 7, characterized in that: The frame is connected to a first sensor provided toward the bottle unscrambling dial wheel, and the bottle unscrambling dial wheel has a loading state. When the bottle unscrambling dial wheel is in the loading state, the first sensor senses that one of the paddles is located in the steering loading area, and the opening of the bottle unscrambling area faces the steering front guardrail.
10. The bottle unscrambling device according to claim 9, characterized in that: The frame is connected to a controller and a second sensor for sensing bottles, and the first sensor, the second sensor, the conveyor belt and the driving member are electrically connected to the controller respectively.