Rotary feeding type bottle body feeding platform

By designing a rotary feeding bottle feeding platform, and utilizing the cooperation of conveyor belts and turntables in conjunction with a gear system, the automatic fixing and transfer of bottles is achieved, solving the problem of needing external equipment for fixing in existing technologies and improving processing efficiency.

CN223973371UActive Publication Date: 2026-03-06TAIAN XINMING PLASTIC IND CO LTD
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Patent Information

Application Number
CN202520501811.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-03-06
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

Existing bottle feeding platforms require external equipment to fix the bottles on the platform during processing, which is cumbersome and inconvenient for efficient processing.

Method used

A rotary feeding bottle feeding platform was designed. By setting up a horizontal plate, a ring, a turntable, a conveyor belt, gears and a drive mechanism, the automatic fixing and transfer of bottles can be realized. The stable transfer and fixing of bottles can be achieved by using the cooperation of the conveyor belt and the turntable in combination with the gear system.

Benefits of technology

It enables automatic fixing and transfer of bottles, simplifies the operation process, improves processing efficiency, and facilitates the processing of bottles by staff.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223973371U_ABST
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Abstract

The utility model relates to a rotary feeding type bottle body feeding platform which comprises a transverse plate and a circular ring fixed above the transverse plate through a connecting rod, a rotary disc is coaxially arranged in the circular ring, two first through grooves are formed in the outer side wall of the transverse plate, a second through groove is formed in the outer side wall of the circular ring, and a conveying belt is arranged in the first through grooves. A fixed through groove is formed in the outer side wall of the rotating disc, a vertical rod is coaxially and fixedly connected to the bottom of the rotating disc, a first gear is coaxially and fixedly connected to the bottom of the vertical rod, a second gear is meshed with the first gear, a half gear is arranged above the transverse plate, a mounting block is fixedly connected to the top of the transverse plate, a first sliding groove is formed in the mounting block, and a rack is slidably arranged in the first sliding groove; pressing plates are arranged on the outer sides of the rings, springs are arranged at the bottoms of the first sliding grooves, and driving mechanisms are arranged at the bottoms of the transverse plates. The bottle body transfer device has the beneficial effects that not only can a worker transfer bottle bodies conveniently, but also the transferred bottle bodies can be fixed, and the worker can process the bottle bodies conveniently.
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Description

Technical Field

[0001] This utility model relates to the field of transfer equipment technology, specifically to a rotary feeding bottle feeding platform. Background Technology

[0002] A bottle feeding platform is a piece of equipment specifically designed for automated production lines. Its core function is to stably and continuously supply bottles to subsequent processing stages, ensuring a continuous supply and accurate positioning of bottles throughout the processing flow. It plays a crucial role in today's manufacturing industry.

[0003] While existing bottle feeding platforms can transport bottles to the processing stage, they often require external equipment to fix the bottles on the horizontal plate during processing. This makes the operation of the device cumbersome and inconvenient for workers to process the bottles efficiently. Utility Model Content

[0004] This utility model addresses the shortcomings of existing technologies by providing a rotary feeding platform for bottles that not only facilitates the transfer of bottles by workers but also secures the bottles during transfer, thus enabling workers to process the bottles.

[0005] This utility model is achieved through the following technical solution: a rotary feeding bottle feeding platform is provided, including a horizontal plate and a ring fixed above the horizontal plate by a connecting rod. A turntable is coaxially arranged inside the ring. Two first through slots are formed on the outer wall of the horizontal plate, extending laterally towards the axis of the ring to the bottom of the turntable. A second through slot is formed on the outer wall of the ring, extending through towards the axis of the ring and matching the first through slots. A conveyor belt is arranged in the first through slot. A fixing through slot matching the bottle is formed on the outer wall of the turntable. The lateral distance between the bottom of the fixing through slot and the inner wall of the ring is the same as the diameter of the bottle. The bottom of the turntable... A vertical rod is coaxially fixed to a horizontal plate and rotatably connected to it. A first gear is coaxially fixed to the bottom of the vertical rod, and a second gear meshes with the first gear. A half gear connected to the second gear is provided above the horizontal plate. A mounting block is fixed to the top of the horizontal plate. A first sliding groove is provided on the side wall of the mounting block facing the axis of the ring. A rack extending laterally towards the axis of the ring and meshing with the half gear is slidably arranged in the first sliding groove. A pressure plate is fixed to the end of the rack away from the mounting block on the outside of the ring. A spring fixed to the rack is provided at the bottom of the first sliding groove. A drive mechanism for rotating the first gear is provided at the bottom of the horizontal plate.

[0006] In use, this invention features a horizontal plate and a ring fixed above it by a connecting rod. A turntable is coaxially mounted inside the ring. Two first through slots extending laterally towards the ring's axis to below the turntable are formed on the outer wall of the horizontal plate. A second through slot, corresponding to the first through slots, is formed on the outer wall of the ring and extends towards the ring's axis. A conveyor belt is installed within the first through slots. A fixing slot, adapted to the bottle body, is formed on the outer wall of the turntable. The lateral distance between the bottom of the fixing slot and the inner wall of the ring is the same as the diameter of the bottle body. A vertical rod, passing through the horizontal plate and rotatably connected to it, is coaxially fixed to the bottom of the turntable. A first gear is coaxially fixed to the bottom of the vertical rod, and a second gear meshes with the first gear. A transmission connection to the second gear is located above the horizontal plate. The device consists of a half-gear and a mounting block fixed to the top of a horizontal plate. A first groove is formed on the side wall of the mounting block facing the axis of the circular ring. A rack extending laterally towards the axis of the circular ring and meshing with the half-gear slides within the first groove. A pressure plate is fixed to the end of the rack away from the mounting block on the outside of the circular ring. A spring fixed to the rack is located at the bottom of the first groove. A drive mechanism for rotating the first gear is located at the bottom of the horizontal plate. In operation, the device controls the forward and reverse rotation of the conveyor belts in the two first grooves, causing one upper conveyor belt to move towards the axis of the circular ring and the other away from it. The bottle to be processed is then placed on the upper conveyor belt moving towards the axis of the circular ring, allowing the bottle to... Driven by the conveyor belt, the bottle moves towards the center of the ring, passing through the second slot and abutting against the outer wall of the turntable. At this point, due to the limiting effect of the turntable, the bottle will no longer move towards the center of the ring with the conveyor belt, but will remain relatively stationary on the conveyor belt. Then, by activating the drive mechanism, the first gear rotates, driving the vertical rod to rotate on the horizontal plate, thereby causing the turntable to rotate with the vertical rod. This causes the fixed slot on the turntable to rotate with the vertical rod and move to the side of the bottle facing the center of the ring. At this point, since the bottle is no longer abutting against the outer wall of the turntable and is no longer limited by the turntable, the bottle will continue to move towards the center of the ring under the drive of the conveyor belt and enter the fixed slot. After entering the fixed slot, the bottle will again be affected by the turntable. The limiting effect of the ring prevents the bottle from moving towards the ring axis with the conveyor belt. Instead, it remains relatively stationary on the conveyor belt. The drive mechanism then continues to drive the first gear to rotate, causing the vertical rod and turntable to rotate on the horizontal plate. This allows the bottle to be transferred from the upper conveyor belt moving towards the ring axis to the horizontal plate under the push of the turntable. The bottle then moves on the horizontal plate under the push of the turntable and the limiting effect of the ring, moving towards the upper conveyor belt moving away from the ring axis. At this point, the bottle, no longer limited by the ring, moves away from the ring axis, passing through the second slot to the outside of the ring, driven by the upper conveyor belt moving away from the ring axis. During this process...The rotation of the first gear also drives the second gear to rotate, causing the half gear to rotate along with the second gear. This, in turn, drives the rack meshing with the half gear to slide towards the axis of the ring within the mounting block, and moves the pressure plate towards the axis of the ring. This abuts and fixes the bottle moving on the horizontal plate, and stretches the spring. Once the pressure plate is abutted and fixed to the bottle on the horizontal plate, the drive mechanism stops driving the first gear to rotate. The bottle is then processed by a processing device. After processing, the drive mechanism resumes driving the first gear to rotate, causing the half gear to continue rotating with the second gear. Because one half of the half gear is smooth... Therefore, when the half gear continues to rotate a small angle under the drive of the second gear, the half gear will disengage from the rack. The spring, losing its force towards the ring axis, will retract to its natural state, causing the rack to slide back to its initial position within the mounting block. This also causes the pressure plate to return to its initial position, no longer abutting and fixing the bottle on the horizontal plate. Afterward, the bottle on the horizontal plate will continue to move under the push of the turntable and the limiting action of the ring, moving onto the upper conveyor belt that moves away from the ring axis. This not only facilitates the transfer of bottles by workers but also secures the bottles during transfer, making it easier for workers to process them.

[0007] Preferably, several connecting rods are provided on the bottom of the ring, and these connecting rods are equidistantly distributed along the circumference of the ring. The horizontal plate is fixed to the ring by the connecting rods. By providing several connecting rods on the bottom of the ring, equidistantly distributed along the circumference of the ring, and fixing the horizontal plate to the ring by the connecting rods, the stability of the device during use can be improved.

[0008] Preferably, the top of the second gear is provided with a rotating shaft extending vertically upward and passing through the horizontal plate. The rotating shaft is rotatably connected to the horizontal plate, and the second gear and the half gear are connected by a drive transmission through the rotating shaft. By providing a rotating shaft at the top of the second gear that extends vertically upward and passes through the horizontal plate, and the rotating shaft is rotatably connected to the horizontal plate, and the second gear and the half gear are connected by a drive transmission through the rotating shaft, the rotating shaft facilitates the second gear to drive the half gear to rotate during use.

[0009] Preferably, the upper surface of the conveyor belt is flush with the upper surface of the horizontal plate, and the end of the conveyor belt facing the annular axis is flush with the bottom of the first through groove. The left and right inner sidewalls of the first through groove are fitted against the left and right sidewalls of the conveyor belt. By aligning the upper surface of the conveyor belt with the upper surface of the horizontal plate, aligning the end of the conveyor belt facing the annular axis with the bottom of the first through groove, and fitting the left and right inner sidewalls of the first through groove against the left and right sidewalls of the conveyor belt, it is convenient to transfer the bottle from the conveyor belt to the horizontal plate or from the horizontal plate to the conveyor belt during use.

[0010] Preferably, the drive mechanism includes a rotary motor fixedly connected to the bottom of the horizontal plate, and the output shaft of the rotary motor is coaxially fixedly connected to the bottom of the first gear. The rotary motor allows the operator to easily drive the first gear to rotate.

[0011] Preferably, a support rod is fixedly connected to the bottom of the horizontal plate, and the lower end face of the rotating motor is higher than the lower end face of the support rod. By fixing a support rod to the bottom of the horizontal plate and ensuring that the lower end face of the rotating motor is higher than the lower end face of the support rod, the stability of the device during use can be improved.

[0012] Preferably, limiting plates extending laterally away from the axis of the ring are fixed to the left and right inner walls of the second channel. The end of the limiting plate away from the axis of the ring is aligned with the end of the conveyor belt away from the axis of the ring, and the end of the limiting plate facing the axis of the ring is aligned with the inner wall of the ring. The lateral distance between the two limiting plates forms a bottle conveying space. By fixing the limiting plates to the left and right inner walls of the second channel, extending laterally away from the axis of the ring, with the end of the limiting plate aligned with the end of the conveyor belt away from the axis of the ring, and the end of the limiting plate facing the axis of the ring aligned with the inner wall of the ring, the lateral distance between the two limiting plates forms a bottle conveying space. This bottle conveying space, formed by the lateral distance between the two limiting plates, can limit the movement of the bottle, preventing it from accidentally falling off the conveyor belt during movement.

[0013] Preferably, the pressure plate includes a connecting plate fixedly connected to the end of the rack away from the mounting block and a rubber pad installed on the side wall of the connecting plate away from the rack. The rubber pad not only provides cushioning protection when the pressure plate abuts and fixes the bottle, but also causes the pressure plate to contract as it moves towards the axis of the ring when the half-gear continues to rotate a small angle under the drive of the second gear, thus preventing damage to the bottle.

[0014] The beneficial effects of this utility model are as follows: A horizontal plate and a ring fixed above the horizontal plate by a connecting rod are provided. A turntable is coaxially arranged inside the ring. Two first through slots extending laterally towards the axis of the ring and down to the bottom of the turntable are provided on the outer wall of the horizontal plate. A second through slot, which is connected to the axis of the ring and matches the first through slots, is provided on the outer wall of the ring. A conveyor belt is provided inside the first through slot. A fixing through slot, which matches the bottle body, is provided on the outer wall of the turntable. The lateral distance between the bottom of the fixing through slot and the inner wall of the ring is the same as the diameter of the bottle body. A vertical rod passing through the horizontal plate and rotatably connected to the bottom of the turntable is coaxially fixed. A first gear is coaxially fixed to the bottom of the vertical rod, and a second gear meshes with the first gear. A transmission connection to the second gear is provided above the horizontal plate. The device consists of a half-gear and a mounting block fixed to the top of a horizontal plate. A first groove is formed on the side wall of the mounting block facing the axis of the circular ring. A rack extending laterally towards the axis of the circular ring and meshing with the half-gear slides within the first groove. A pressure plate is fixed to the end of the rack away from the mounting block on the outside of the circular ring. A spring fixed to the rack is located at the bottom of the first groove. A drive mechanism for rotating the first gear is located at the bottom of the horizontal plate. In operation, the device controls the forward and reverse rotation of the conveyor belts in the two first grooves, causing one upper conveyor belt to move towards the axis of the circular ring and the other away from it. The bottle to be processed is then placed on the upper conveyor belt moving towards the axis of the circular ring, allowing the bottle to... Driven by the conveyor belt, the bottle moves towards the center of the ring, passing through the second slot and abutting against the outer wall of the turntable. At this point, due to the limiting effect of the turntable, the bottle will no longer move towards the center of the ring with the conveyor belt, but will remain relatively stationary on the conveyor belt. Then, by activating the drive mechanism, the first gear rotates, driving the vertical rod to rotate on the horizontal plate, thereby causing the turntable to rotate with the vertical rod. This causes the fixed slot on the turntable to rotate with the vertical rod and move to the side of the bottle facing the center of the ring. At this point, since the bottle is no longer abutting against the outer wall of the turntable and is no longer limited by the turntable, the bottle will continue to move towards the center of the ring under the drive of the conveyor belt and enter the fixed slot. After entering the fixed slot, the bottle will again be affected by the turntable. The limiting effect of the ring prevents the bottle from moving towards the ring axis with the conveyor belt. Instead, it remains relatively stationary on the conveyor belt. The drive mechanism then continues to drive the first gear to rotate, causing the vertical rod and turntable to rotate on the horizontal plate. This allows the bottle to be transferred from the upper conveyor belt moving towards the ring axis to the horizontal plate under the push of the turntable. The bottle then moves on the horizontal plate under the push of the turntable and the limiting effect of the ring, moving towards the upper conveyor belt moving away from the ring axis. At this point, the bottle, no longer limited by the ring, moves away from the ring axis, passing through the second slot to the outside of the ring, driven by the upper conveyor belt moving away from the ring axis. During this process...The rotation of the first gear also drives the second gear to rotate, causing the half gear to rotate along with the second gear. This, in turn, drives the rack meshing with the half gear to slide towards the axis of the ring within the mounting block, and moves the pressure plate towards the axis of the ring. This abuts and fixes the bottle moving on the horizontal plate, and stretches the spring. Once the pressure plate is abutted and fixed to the bottle on the horizontal plate, the drive mechanism stops driving the first gear to rotate. The bottle is then processed by a processing device. After processing, the drive mechanism resumes driving the first gear to rotate, causing the half gear to continue rotating with the second gear. Because one half of the half gear is smooth... Therefore, when the half gear continues to rotate a small angle under the drive of the second gear, the half gear will disengage from the rack. The spring, losing its force towards the ring axis, will retract to its natural state, causing the rack to slide back to its initial position within the mounting block. This also causes the pressure plate to return to its initial position, no longer abutting and fixing the bottle on the horizontal plate. Afterward, the bottle on the horizontal plate will continue to move under the push of the turntable and the limiting action of the ring, moving onto the upper conveyor belt that moves away from the ring axis. This not only facilitates the transfer of bottles by workers but also secures the bottles during transfer, making it easier for workers to process them. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 for Figure 1 Schematic diagram of part A in the middle;

[0017] Figure 3 This is a top view of the structure of this utility model;

[0018] Figure 4 for Figure 3 Schematic diagram of Part B in the middle section;

[0019] Figure 5 for Figure 3 Structural perspective view;

[0020] As shown in the figure:

[0021] 1. Horizontal plate, 2. First gear, 3. Limiting plate, 4. Ring, 5. Vertical rod, 6. Connecting rod, 7. Rotating motor, 8. Second gear, 9. Rotating shaft, 10. Connecting plate, 11. Rubber pad, 12. Half gear, 13. Mounting block, 14. Rack, 15. Connecting rod, 16. Conveyor belt, 17. Second through groove, 18. Turntable, 19. Fixed through groove, 20. First slide groove, 21. Spring, 22. First through groove. Detailed Implementation

[0022] To clearly illustrate the technical features of this solution, the following detailed implementation method will be used to explain the solution.

[0023] like Figures 1-5 The rotary feeding bottle feeding platform of this utility model includes a horizontal plate 1 and a ring 4 fixed above the horizontal plate 1 by a connecting rod 6. A turntable 18 is coaxially arranged inside the ring 4. Two first through slots 22 are formed on the outer wall of the horizontal plate 1, extending laterally towards the axis of the ring 4 and below the turntable 18. A second through slot 17 is formed on the outer wall of the ring 4, extending through towards the axis of the ring 4 and matching the first through slots 22. A conveyor belt 16 is arranged in the first through slots 22. A fixing through slot 19 adapted to the bottle is formed on the outer wall of the turntable 18. The lateral distance between the bottom of the fixing through slot 19 and the inner wall of the ring 4 is the same as the diameter of the bottle. A through-plate is coaxially fixed to the bottom of the turntable 18. A vertical rod 5 is rotatably connected to the horizontal plate 1. A first gear 2 is coaxially fixed to the bottom of the vertical rod 5. A second gear 8 meshes with the first gear 2. A half gear 12, which is connected to the second gear 8, is provided above the horizontal plate 1. A mounting block 13 is fixed to the top of the horizontal plate 1. A first sliding groove 20 is provided on the side wall of the mounting block 13 facing the axis of the ring 4. A rack 14, which extends laterally towards the axis of the ring 4 and meshes with the half gear 12, is slidably arranged in the first sliding groove 20. A pressure plate is fixed to the end of the rack 14 away from the mounting block 13 on the outside of the ring 4. A spring 21, which is fixed to the rack 14, is provided at the bottom of the first sliding groove 20. A drive mechanism that rotates the first gear 2 is provided at the bottom of the horizontal plate 1.

[0024] By arranging several connecting rods 6 at the bottom of the ring 4, with these connecting rods 6 evenly distributed around the circumference of the ring 4, and fixing the horizontal plate 1 to the ring 4 via the connecting rods 6, the stability of the device during use can be improved. A rotating shaft 9 extending vertically upwards and passing through the horizontal plate 1 is provided at the top of the second gear 8. The rotating shaft 9 is rotatably connected to the horizontal plate 1, and the second gear 8 and the half gear 12 are connected via the rotating shaft 9. The rotating shaft 9 facilitates the second gear 8 driving the half gear 12 to rotate during use. By aligning the upper end face of the conveyor belt 16 with the upper end face of the horizontal plate 1, and aligning the end of the conveyor belt 16 facing the axis of the ring 4 with the bottom of the first through groove 22, and by fitting the left and right inner sidewalls of the first through groove 22 against the left and right sidewalls of the conveyor belt 16, it is convenient to transfer the bottle from the conveyor belt 16 to the horizontal plate 1 or vice versa during use. The drive mechanism includes a rotary motor 7 fixedly connected to the bottom of the horizontal plate 1. The output shaft of the rotary motor 7 is coaxially fixedly connected to the bottom of the first gear 2, allowing the operator to easily drive the first gear 2 to rotate. A support rod 23 is fixedly connected to the bottom of the horizontal plate 1, and the lower end face of the rotary motor 7 is higher than the lower end face of the support rod 23, improving the stability of the device during use. Limiting plates 3, extending laterally away from the axis of the ring 4, are fixedly connected to the left and right inner walls of the second through slot 17. The end of the limiting plate 3 away from the axis of the ring 4 is aligned with the end of the conveyor belt 16 away from the axis of the ring 4, and the end face of the limiting plate 3 facing the axis of the ring 4 is aligned with the inner wall of the ring 4. The lateral distance between the two limiting plates 3 forms a bottle conveying space, which limits the movement of the bottle and prevents it from accidentally falling off the conveyor belt 16 during movement. The pressure plate includes a connecting plate 10 fixedly connected to the end of the rack 14 away from the mounting block 13, and a rubber pad 11 installed on the side wall of the connecting plate 10 away from the rack 14. The rubber pad 11 not only provides cushioning protection when the pressure plate abuts and fixes the bottle, but also retracts when the pressure plate moves towards the axis of the ring 4 as the half gear 12 continues to rotate a small angle under the drive of the second gear 8, preventing damage to the bottle. The pressure plate is located between the horizontal plate 1 and the ring 4, and between two adjacent connecting rods 6, facilitating the pressure plate's abutment and fixation of the bottle on the horizontal plate 1. A connecting rod 15 extending laterally towards the axis of the ring 4 is provided at the end of the rack 14 away from the mounting block 13, and the connecting plate 10 is fixedly connected to the end of the rack 14 away from the mounting block 13 via the connecting rod 15, further facilitating the pressure plate's abutment and fixation of the bottle.

[0025] Combined with appendix Figure 1-5The method of using this utility model is as follows: By controlling the forward and reverse rotation of the conveyor belts 16 in the two first through slots 22 respectively, one of the upper belts of the conveyor belts 16 in the two first through slots 22 moves towards the axis of the ring 4, and the other moves away from the axis of the ring 4. The bottle to be processed is then placed on the upper belt of the conveyor belt 16 moving towards the axis of the ring 4, and is positioned within the bottle conveying space formed by the lateral distance between the two limiting plates 3. The bottle moves towards the axis of the ring 4 under the drive of the conveyor belt 16, and abuts against the outer wall of the turntable 18 after passing through the second through slot 17. At this time, the bottle will no longer move towards the axis of the ring 4 with the conveyor belt 16 due to the limiting effect of the turntable 18. The bottle will remain relatively stationary on the conveyor belt 16. Then, by starting the rotating motor 7, the first gear 2 rotates, causing the vertical rod 5 to rotate on the horizontal plate 1. This causes the turntable 18 to rotate with the vertical rod 5, and consequently, the fixed slot 19 on the turntable 18 also rotates with the vertical rod 5, moving to the side where the bottle faces the axis of the ring 4. At this point, because the bottle is no longer in contact with the outer wall of the turntable 18 and is no longer limited by the turntable 18, the bottle will continue to move towards the axis of the ring 4 under the drive of the conveyor belt 16 and enter the fixed slot 19. After entering the fixed slot 19, the bottle will again be limited by the turntable 18 and will no longer move towards the axis of the ring 4 with the conveyor belt 16, but will remain relatively stationary on the conveyor belt 16. The bottle is initially stationary on the ground. Then, the drive mechanism continues to rotate the first gear 2, causing the vertical rod 5 and the turntable 18 to rotate on the horizontal plate 1. This allows the bottle to be transferred from the upper belt of the conveyor belt 16, which moves towards the axis of the ring 4, to the horizontal plate 1 under the push of the turntable 18. The bottle then moves on the horizontal plate 1 under the push of the turntable 18 and the limiting action of the ring 4, eventually moving onto the upper belt of the conveyor belt 16, which moves away from the axis of the ring 4. At this point, the bottle, no longer limited by the ring 4, will be driven by the upper belt of the conveyor belt 16, moving away from the axis of the ring 4, through the second channel 17 to the outside of the ring 4, and into the conveyor belt moving away from the axis of the ring 4. Within the bottle conveying space on the upper belt of belt 16, during this process, the rotation of the first gear 2 also drives the second gear 8 to rotate, causing the half gear 12 to rotate along with the second gear 8. This, in turn, drives the rack 14, which meshes with the half gear 12, to slide within the mounting block 13 toward the axis of the ring 4, and drives the connecting plate 10 to move toward the axis of the ring 4. This causes the rubber pad 11 on the connecting plate 10 to abut and fix the bottle moving on the horizontal plate 1, stretching the spring 21. Once the rubber pad 11 on the connecting plate 10 is abutted and fixed to the bottle on the horizontal plate 1, the control motor 7 stops driving the first gear 2 to rotate. Then, the processing device processes the abutted and fixed bottle. After the bottle processing is completed...The control motor 7 continues to drive the first gear 2 to rotate, causing the half gear 12 to continue rotating with the second gear 8. This causes the connecting plate 10, pushed by the rack 14, to compress the rubber pad 11. Because one half of the half gear 12 is smooth, after the half gear 12 continues to rotate a small angle under the drive of the second gear 8, it will disengage from the rack 14. The spring 21, losing its force towards the axis of the ring 4, will retract to its natural state, causing the rack 14 to slide back to its initial position within the mounting block 13. This also causes the pressure plate to return to its initial position, no longer abutting and fixing the bottle on the horizontal plate 1. Afterward, the bottle on the horizontal plate 1 will continue to move on the horizontal plate 1 under the push of the turntable 18 and the limiting action of the ring 4, moving onto the upper belt of the conveyor belt 16, which is moving away from the axis of the ring 4.

[0026] Of course, the above description is not limited to the examples above. Technical features of this utility model not described can be implemented by or using existing technology, and will not be repeated here. The above embodiments and drawings are only used to illustrate the technical solution of this utility model and are not intended to limit this utility model. This utility model has been described in detail with reference to preferred embodiments. Those skilled in the art should understand that any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this utility model do not depart from the spirit of this utility model and should also fall within the protection scope of the claims of this utility model.

Claims

1. A rotary fed bottle supply platform characterized by: The utility model provides a bottle conveying device, including horizontal plate (1) and the circular ring (4) that is fixed above horizontal plate through connecting rod (6), coaxial setting has carousel (18) in circular ring, the outside wall of horizontal plate is equipped with two first through slot (22) that extends to carousel below towards circular ring axle center direction, the outside wall of circular ring is equipped with the second through slot (17) that is through and is matched with first through slot towards circular ring axle center direction, be provided with conveyer belt (16) in first through slot, the outside wall of carousel is equipped with fixed through slot (19) that is matched with bottle body, the horizontal distance between fixed through slot groove bottom and circular ring inside wall is same with the diameter of bottle body, carousel bottom coaxial fixedly connected with the vertical rod (5) that passes through horizontal plate and is rotatably connected with horizontal plate, vertical rod bottom coaxial fixedly connected with first gear (2), first gear is engaged with second gear (8), horizontal plate top is equipped with half gear (12) that is transmission connection with second gear, horizontal plate top is fixedly connected with mounting block (13), mounting block is equipped with first sliding slot (20) on the side wall of axle center side, first sliding slot is equipped with rack (14) that is slidably arranged and extends towards circular ring axle center direction and is engaged with half gear, circular ring outside is equipped with the pressing plate that is fixedly connected with rack far from mounting block one end, first sliding slot groove bottom is equipped with spring (21) that is fixedly connected with rack, horizontal plate bottom is equipped with drive mechanism that makes first gear rotate.

2. The rotary fed bottle platform of claim 1, wherein: The connecting rod is provided with a plurality of connecting rods on the bottom of the circular ring, and the plurality of connecting rods are equidistantly distributed along the circumference of the circular ring.

3. The rotary fed bottle supply platform of claim 1, wherein: The top of the second gear is provided with a rotating shaft (9) extending upward in the vertical direction and penetrating through the horizontal plate, the rotating shaft is rotatably connected with the horizontal plate, and the second gear and the half gear are transmissionally connected through the rotating shaft.

4. The rotary fed bottle platform of claim 1, wherein: The upper end surface of the conveyer belt is flush with the upper end surface of the horizontal plate, the end of the conveyer belt towards the axle center of the circular ring is flush with the bottom of the first through slot, and the left and right inner walls of the first through slot are arranged in close contact with the left and right side walls of the conveyer belt.

5. The rotary fed bottle platform of claim 4, wherein: The drive mechanism comprises a rotating motor (7) fixedly connected with the bottom of the horizontal plate, and the output shaft of the rotating motor is coaxially fixedly connected with the bottom of the first gear.

6. The rotary fed bottle platform of claim 5, wherein: The bottom of the horizontal plate is fixedly connected with a supporting rod, and the lower end surface of the rotating motor is higher than the lower end surface of the supporting rod.

7. The rotary fed bottle supply platform of claim 4, wherein: The left and right inner walls of the second through slot are fixedly connected with limiting plates (3) extending laterally towards the direction away from the axle center of the circular ring, the end of the limiting plate away from the axle center of the circular ring is flush with the end of the conveyer belt away from the axle center of the circular ring, the end surface of the limiting plate towards the axle center of the circular ring is flush with the inner wall of the circular ring, and the horizontal distance between the two limiting plates forms a bottle conveying space.

8. The rotary fed bottle platform of claim 4, wherein: The pressing plate comprises a connecting plate (10) fixedly connected with the end of the rack away from the mounting block and a rubber pad (11) mounted on the side wall of the connecting plate away from the rack.