Packaging bottle feeding device for plant plasma-based drinks
By introducing guide and limiting channels and elastic bands into the bottle feeding device, the problems of bottle retention and tipping in the previous process were solved, and smooth bottle feeding and continuous filling process were achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING TONGRENTANG HEALTH PHARM FUZHOU CO LTD
- Filing Date
- 2025-07-04
- Publication Date
- 2026-07-10
AI Technical Summary
In existing technologies, packaging bottles are prone to getting stuck or tipping over in the preceding process, making it difficult for them to smoothly enter the filling conveyor belt. In particular, when the quantity is insufficient, there is a lack of squeezing force, requiring manual intervention.
A bottle feeding device was designed, comprising a circular rotating disk, a guide limiting channel, and an elastic band. By adjusting the spacing of the limiting plates and using the elastic band to provide pre-extrusion thrust, the bottle is ensured to smoothly enter the filling conveyor belt.
It enables compatible feeding of different bottle models, avoids bottle retention and tipping, reduces manual intervention, and ensures the continuity and efficiency of the filling process.
Smart Images

Figure CN224477512U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a bottle feeding mechanism, and more particularly to a bottle feeding device for plant-based pulp beverages. Background Technology
[0002] Packaging bottles are widely used for holding beverages and other purposes. Before they are filled with syrup-type beverages, they need to be cleaned and dried, and then transported to the filling conveyor belt. Because packaging bottles of different weights and volumes cannot enter the filling conveyor belt well when they are transported from the previous process (such as the feeding turntable), the packaging bottles are prone to getting stuck in the previous process (such as the feeding turntable).
[0003] In addition, when the number of bottles conveyed to the feeding turntable in the current drying process is limited (due to a pause in the previous process or the last few bottles of the batch), the bottles will not be fully packed on the turntable. Therefore, there is no pushing force to push the bottles onto the conveyor belt (the bottles only have pushing force when they are fully packed on the turntable and the rotation of the turntable drives them onto the conveyor belt). When the turntable is not fully packed, the loss of this pushing force will cause a certain number of bottles to accumulate on the turntable and not be able to enter the conveyor belt. Furthermore, because the bottom of the bottles is relatively smooth, they are prone to tipping over when there are few bottles on the turntable. Or, when the production of the batch is about to end, the last quantity of bottles is also prone to tipping over. In the past, in such cases, manual pushing and righting of the tipped bottles were required. Utility Model Content
[0004] In view of the above-mentioned shortcomings of the prior art, the purpose of this utility model is to provide a feeding device for packaging bottles of plant pulp beverages. The feeding device for packaging bottles of plant pulp beverages is reasonably designed, can be adjusted according to different models of packaging bottles, and can pre-apply extrusion force to the packaging bottles to facilitate the smooth entry of the packaging bottles into the filling conveyor belt.
[0005] This utility model is achieved through the following technical solution:
[0006] This utility model relates to a bottle feeding device for plant-based pulp beverages. Its features include: a frame and a circular rotating disk mounted on the frame for holding the bottles; a surrounding plate on the frame to prevent bottles from detaching from the rotating disk; a bottle inlet and a bottle outlet on the surrounding plate; a filling conveyor belt on the frame next to the bottle outlet; a bottle guide and limiting channel suspended above the rotating disk; the inlet end of the guide and limiting channel being above the rotating disk and close to the surrounding plate; and the outlet end of the guide and limiting channel passing through the bottle outlet and connecting to the filling conveyor belt. The bottle guide and limiting channel includes two parallel limiting plates with adjustable spacing. An elastic band connects the limiting plates near the inlet end to the inlet of the rotating disk to provide a pushing force to the bottles entering the rotating disk.
[0007] Preferably, a vertical sleeve is fixedly connected to the outer wall of the above-mentioned enclosure, a first vertical rod is slidably connected to the vertical sleeve, a horizontal rod is horizontally connected to the upper part of the first vertical rod, a second vertical rod is vertically connected to the horizontal rod, and the lower part of the second vertical rod is connected to the limiting plate.
[0008] Preferably, the first end of the first limiting plate of the two limiting plates abuts against the inner wall surface of the circular rotating disk, and the second limiting plate is arranged parallel to the first limiting plate and the first end of the second limiting plate has a gap with the inner wall surface of the circular rotating disk to form the entrance of the guide limiting channel.
[0009] Preferably, the filling conveyor belt is tangent to the outer wall of the circular rotating disc, and a baffle fixed on the frame is provided on the outer side of the filling conveyor belt. The second end of the first limiting plate is close to the baffle, and the second end of the second limiting plate is spaced from the baffle to form the outlet of the guide limiting channel.
[0010] Preferably, two vertical sleeves are fixedly provided at intervals on the outer wall surface of the circular rotating disk. Each vertical sleeve is slidably connected to a first vertical rod. Screws are vertically inserted through the vertical sleeves to lock the first vertical rod at the corresponding height position.
[0011] Preferably, the upper part of the first vertical rod is connected to a first clamping block, a horizontal rod is transversely inserted through the first clamping block, and two second clamping blocks are sleeved on one horizontal rod, with the two second clamping blocks connected to the upper part of the second vertical rod.
[0012] Preferably, both the first clamping block and the second clamping block are cuboids. Both ends of the first clamping block and the second clamping block are provided with slits and through holes adjacent to the slits. The slits and through holes are aligned with the axis of the slits. The through holes of the first clamping block are used to pass through a first vertical rod or a horizontal rod, and the through holes of the second clamping block are used to pass through a horizontal rod or a second vertical rod. Screw holes are provided vertically on the slits to tighten the through holes by inserting screws.
[0013] Preferably, the lower part of the second vertical rod is welded and fixed to the limiting plate.
[0014] The working principle of this utility model for feeding bottles of plant-based pulp beverages is as follows: the bottle guide and limiting channel includes two parallel limiting plates with adjustable spacing, which can be adapted to feed different bottles. In addition, since an elastic band is connected between the limiting plate near the inlet end and the feed port of the circular rotating disk, a pre-squeezing force is given to the bottles entering the circular rotating disk. This ensures that even when the number of bottles in the rotating disk is small, there is still a squeezing force, which ensures that a larger number of bottles can smoothly enter the filling conveyor belt, and avoids the loss of squeezing force when the number of bottles in the rotating disk is small, preventing them from entering the filling conveyor belt. Attached Figure Description
[0015] Figure 1 This is a top view of the working state of this utility model (when the number of packaging bottles is large).
[0016] Figure 2 This is a top view of another working state of the present invention (when the number of packaging bottles is small).
[0017] Figure 3 yes Figure 2 Another embodiment of the top view (when the number of packaging bottles is small);
[0018] Figure 4 This is a schematic diagram of the construction of the guide and limiting channel and its control structure of this utility model;
[0019] Figure 5 This is a schematic diagram of the three-dimensional structure of the clamping block. Detailed Implementation
[0020] The present invention will be further explained below with reference to specific embodiments and accompanying drawings.
[0021] This utility model relates to a bottle feeding device for plant-based pulp beverages, comprising a frame 1 and a circular rotating disk 2 mounted on the frame for holding the bottles. The frame 1 has a surrounding plate 3 around the outer circumference of the rotating disk to prevent the bottles from detaching. The surrounding plate 3 has a bottle inlet 31 and a bottle outlet 32. A filling conveyor belt 4 is located beside the bottle outlet 32 on the frame 1. A bottle guide and limiting channel 5 is suspended above the rotating disk 2. The inlet end of the guide and limiting channel 5 is located above the rotating disk 2 and close to the inner wall of the surrounding plate 3. The outlet end passes through the bottle outlet and connects with the filling conveyor belt 4 (which can be a belt conveyor, chain conveyor, etc.). The packaging bottle guide limiting channel 5 includes two parallel limiting plates 51 with adjustable spacing. An elastic rubber band 6 is connected between the limiting plate 51 near the inlet end and the feed port of the circular rotating disk to give the packaging bottle entering the circular rotating disk a squeezing force. One end of the elastic rubber band 6 is fixed on a limiting plate 51, and the other end is fixed to the side of the bottle inlet 31 of the surrounding plate 3. One or two elastic rubber bands 6 are provided in the height direction of the surrounding plate 3.
[0022] The circular rotating disk 2 can be driven to rotate by a motor fixed on the frame. The circular rotating disk 2 can rotate relative to the frame, but the surrounding plate 3 is fixed relative to the frame.
[0023] When in use, when the circular rotating disk 2 is full of packaging bottles, the elastic rubber band 6 is pushed to the inner wall of the surrounding plate. When the number of packaging bottles in the circular rotating disk 2 decreases and it is not full, the elastic rubber band 6 pushes each packaging bottle towards the entrance end of the guide limiting channel 5. Since the packaging bottles (the packaging bottles of plant pulp beverages are all plastic bottles) are small in weight, the required pushing force is small.
[0024] Since the elastic band 6 is easily damaged, it can be replaced by a combination of cloth tape 61 (or nylon tape, steel wire, etc.) and coil spring 62 (the combination of cloth tape and coil spring can also be a commercially available coil spring reel, tape measure, etc.). One end of the cloth tape is fixed to a limiting plate 51, and the other end of the cloth tape passes through the wall of the enclosure 3 and is connected to the free end of the coil spring fixed on the outer wall of the enclosure 3. The inner end of the coil spring is fixed to the frame. When in use, when the circular rotating disk 2 is full of packaging bottles, the cloth tape is completely pulled out from the wound state and pushed to the inner wall of the enclosure. When the number of packaging bottles in the circular rotating disk 2 decreases and is not full, the cloth tape is gradually wound up by the coil spring. The winding force of the coil spring is the pushing force to push each packaging bottle to the entrance end of the guide limiting channel 5. Since the packaging bottles (the packaging bottles of plant pulp beverages are all plastic bottles) are small in weight, the required pushing force is small.
[0025] A vertical sleeve 7 is fixedly connected to the outer wall of the enclosure 3. A first vertical rod 8 is vertically slidably connected inside the vertical sleeve (the first vertical rod 8 can slide up and down relative to the vertical sleeve 7 and can also be locked with screws). A horizontal rod 9 is horizontally connected to the upper part of the first vertical rod, and a second vertical rod 10 is vertically connected to the horizontal rod. The lower part of the second vertical rod 10 is connected to the limiting plate 51. Specifically, two vertical sleeves 7 are fixedly provided at intervals on the outer wall of the circular rotating disk. The first vertical rod 8 is slidably connected to both vertical sleeves. Screws 14 are vertically inserted through the vertical sleeves to lock the first vertical rod at the corresponding height position.
[0026] The first end of the first limiting plate 511 of the two limiting plates 51 is close to the inner wall surface of the circular rotating disk, and the second limiting plate 512 is arranged parallel to the first limiting plate 511 and the first end of the second limiting plate is spaced from the inner wall surface of the circular rotating disk to form the entrance of the guide limiting channel (the distance is slightly larger than the diameter of the packaging bottle).
[0027] The filling conveyor belt 4 is tangent to the outer wall of the circular rotating disk 2, and a baffle 11 fixed on the frame is provided on the outside of the filling conveyor belt. The baffle 11 helps to prevent the packaging bottle from falling off the conveyor belt. The second end of the first limiting plate 511 is close to the baffle 11, and the second end of the second limiting plate has a gap with the baffle (and the second end of the second limiting plate extends into the top of the filling conveyor belt 4, and the gap is slightly larger than the diameter of the packaging bottle) to form the outlet of the guide limiting channel.
[0028] The upper part of the first vertical rod 8 is connected to the first clamping block 12, and a horizontal rod 9 is passed through the first clamping block. Two second clamping blocks 13 are sleeved on one horizontal rod. The two second clamping blocks are connected to the upper part of the second vertical rod, and the lower part of the second vertical rod is welded and fixed to the limiting plate.
[0029] Specifically, both the first clamping block 12 and the second clamping block 13 are cuboids. Both ends of the first clamping block and the second clamping block are provided with a slit 01 and a through hole 02 adjacent to the slit. The axis of the slit 01 and the through hole 02 are in the same direction. The through hole of the first clamping block is used to pass through a first vertical rod or a horizontal rod, and the through hole of the second clamping block is used to pass through a horizontal rod or a second vertical rod. The slit 01 is provided with a screw hole 03 vertically (that is, the clamping block is provided with a screw countersunk hole perpendicular to the axis of the through hole 02. The screw countersunk hole is a threaded hole on one side of the slit 01 and a through hole larger than the threaded hole on the other side of the slit 01) to tighten the through hole 02 by inserting a screw. After the screw is locked in the screw hole 03, the slit 01 and the through hole 02 are narrowed, so that the rod in the through hole 02 is clamped.
[0030] The working principle of this utility model for feeding bottles of plant-based pulp beverages is as follows: the bottle guide and limiting channel includes two parallel limiting plates with adjustable spacing, which can be adapted to feed different bottles. In addition, since an elastic band is connected between the limiting plate near the inlet end and the feed port of the circular rotating disk, a pre-squeezing force is given to the bottles entering the circular rotating disk. This ensures that even when the number of bottles in the rotating disk is small, there is still a squeezing force, which ensures that a larger number of bottles can smoothly enter the filling conveyor belt, and avoids the loss of squeezing force when the number of bottles in the rotating disk is small, preventing them from entering the filling conveyor belt.
[0031] The above description is only a preferred embodiment of the present utility model. Without departing from the principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A feeding device for packaging bottles of plant-based pulp beverages, characterized in that: The device includes a frame and a circular rotating disk mounted on the frame for holding packaging bottles. The frame has a surrounding plate around the circular rotating disk to prevent the bottles from detaching. The surrounding plate has a bottle inlet and a bottle outlet. A filling conveyor belt is located next to the bottle outlet on the frame. A bottle guide and limiting channel is suspended above the circular rotating disk. The inlet end of the guide and limiting channel is located above the circular rotating disk and close to the surrounding plate. The outlet end of the guide and limiting channel passes through the bottle outlet and connects to the filling conveyor belt. The bottle guide and limiting channel includes two parallel limiting plates with adjustable spacing. An elastic band is connected between the limiting plates near the inlet end and the inlet of the circular rotating disk to provide a pushing force to the packaging bottles entering the circular rotating disk.
2. The feeding device for packaging bottles of plant-based pulp beverages according to claim 1, characterized in that: A vertical sleeve is fixedly connected to the outer wall of the circular rotating disk. A first vertical rod is slidably connected to the vertical sleeve. A horizontal rod is horizontally connected to the upper part of the first vertical rod. A second vertical rod is vertically connected to the horizontal rod. The lower part of the second vertical rod is connected to the limiting plate.
3. The feeding device for packaging bottles of plant-based pulp beverages according to claim 2, characterized in that: The first end of the first limiting plate of the two limiting plates is close to the inner wall surface of the circular rotating disk, and the second limiting plate is arranged parallel to the first limiting plate and the first end of the second limiting plate is spaced from the inner wall surface of the circular rotating disk to form the entrance of the guide limiting channel.
4. The feeding device for packaging bottles of plant-based pulp beverages according to claim 3, characterized in that: The filling conveyor belt is tangent to the outer wall of the circular rotating disk, and a baffle fixed on the frame is provided on the outside of the filling conveyor belt. The second end of the first limiting plate is close to the baffle, and the second end of the second limiting plate is spaced from the baffle to form the outlet of the guide limiting channel.
5. The feeding device for packaging bottles of plant-based pulp beverages according to claim 4, characterized in that: Two vertical sleeves are fixedly provided at intervals on the outer wall surface of the enclosure. Each vertical sleeve is slidably connected to a first vertical rod. Screws are vertically inserted through the vertical sleeves to lock the first vertical rod at the corresponding height position.
6. The feeding device for packaging bottles of plant-based pulp beverages according to claim 5, characterized in that: The upper part of the first vertical rod is connected to a first clamping block, a horizontal rod is inserted through the first clamping block, and two second clamping blocks are sleeved on one horizontal rod. The two second clamping blocks are connected to the upper part of the second vertical rod.
7. The bottle feeding device for plant-based pulp beverages according to claim 6, characterized in that: Both the first clamping block and the second clamping block are cuboids. Both ends of the first clamping block and the second clamping block are provided with slits and through holes adjacent to the slits. The axis of the slits and the through holes are in the same direction. The through holes of the first clamping block are used to pass through a first vertical rod or a horizontal rod, and the through holes of the second clamping block are used to pass through a horizontal rod or a second vertical rod. Screw holes are provided vertically on the slits to tighten the through holes by inserting screws.
8. The bottle feeding device for plant-based pulp beverages according to claim 7, characterized in that: The lower part of the second vertical rod is welded and fixed to the limiting plate.