A bottle separating turntable device for a medicine packaging production line of shatterproof bottles

By setting up small conveyor belts moving in opposite directions on both sides of the turntable channel and an image acquisition device to correct the tilt of the medicine bottles in real time, the problem of missing bottles during turntable bottle separation is solved, and efficient correction of conical medicine bottles is achieved, improving the accuracy and adaptability of bottle separation.

CN120828976BActive Publication Date: 2025-12-26HUNAN FUXING FEIGE PHARMA
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Patent Information

Application Number
CN202511327512.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-12-26
Estimated Expiration
2045-09-17

AI Technical Summary

Technical Problem

Existing technology, when using a concave turntable for separating medicine bottles, is prone to bottle omissions, especially for conical medicine bottles, where the corrective force is insufficient, causing the medicine bottles to tilt and fail to fall smoothly into the channel.

Method used

Small conveyor belts moving in opposite directions are set on both sides of the through groove of the turntable. The friction effect corrects the tilt of the medicine bottle. Combined with the image acquisition device to detect the tilt of the medicine bottle in real time, the speed of the conveyor belt and the action of the correction unit are adjusted to ensure that the medicine bottle passes through the through groove smoothly.

Benefits of technology

It improves the accuracy and adaptability of bottle separation, ensuring that different bottle types can pass smoothly through the channel, and reducing the omission rate in bottle separation operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of anti-shatter bottle's medicine packaging production line bottle separating turntable device applied to the field of packaging transport equipment, including the conveyor belt one and conveyor belt two for conveying medicine bottle, the tail end of conveyor belt one is installed with supporting platform and is equipped with the guide rail on the top of supporting platform, the inside of supporting platform is equipped with through slot and strip slot, and the inside of two strip slots is equipped with correction component;Correction component includes small transport belt, the inside of each strip slot is fixedly installed with inclined bracing plate, the inner wall of two strip slots is equipped with one auxiliary groove and two auxiliary grooves, and the inside of one auxiliary groove and two auxiliary grooves is slidably connected with supplementary correction unit, for the possible inclination problem of medicine bottle, set the small transport belt of reverse motion on the both sides of through slot, medicine bottle is corrected by friction, effectively solve the problem of insufficient correction force of conical medicine bottle, improve the accuracy and adaptability of bottle separation.
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Description

TECHNICAL FIELD

[0001] The present application relates to a bottle separating turntable device for packaging production line, in particular to a bottle separating turntable device for packaging production line of medicine packaging which prevents the bottle from breaking. BACKGROUND

[0002] When the packaging production of medicine bottles is carried out, the production line combined with the turntable with recesses is usually used for bottle separating treatment. The medicine bottles in the recesses are rotated to the position of the through slot by the rotation of the turntable, so that the medicine bottles in the recesses can fall off, thereby realizing the bottle separating treatment.

[0003] Chinese invention patent CN117383217A discloses a medicine bottle sorting device, which solves the problems of high cost and low efficiency of the existing medicine bottle sorting device, effectively improves the bottle sorting efficiency, reduces the cost and improves the bottle sorting effect. In addition, Chinese invention patent CN110510343A discloses a bottle sorting machine. When the bottle sorting machine sorts bottles, the clamping effect of the clamping spring and the recess of the bottle body ensures the consistency of the bottle direction and avoids the inconvenience of manually adjusting the direction of the packaging bottle.

[0004] When the existing bottle sorting device performs bottle separating operation, an elastic soft pad is usually arranged in the recess of the turntable to reduce the impact, and a spring is used to constrain the medicine bottles in the corresponding recess, so that the medicine bottles can smoothly pass through the through slot when falling off. However, in the actual operation process, since the size of the medicine bottles is diversified, the shape of the recess is relatively fixed when the turntable deals with the bottle body with a conical design, and the fixing and restraining effect is limited. The medicine bottles may be in an inclined state when moving to the position of the through slot, which makes it difficult to fall off the through slot smoothly. Since the turntable is in a continuous motion state, the medicine bottles that do not fall off in time will be carried away from the through slot, which affects the bottle separating operation. SUMMARY

[0005] In view of the above prior art, the technical problem to be solved by the present application is that the existing technology is prone to bottle separating omission when using the turntable with recesses to separate the medicine bottles.

[0006] To solve the above problems, the present application provides a bottle separating turntable device for medicine packaging production line which prevents the bottle from breaking, comprising a conveying belt one for conveying medicine bottles and a conveying belt two with a conveying height lower than the conveying belt one, a support platform is arranged at the tail end of the conveying belt one, a guide rail is arranged on the top of the support platform, a through slot for falling off medicine bottles and a strip-shaped groove on both sides of the through slot are arranged in the inside of the support platform, and a correction assembly is arranged in the inside of the two strip-shaped grooves.

[0007] The correcting assembly comprises two small conveyors flush with the surfaces of the strip-shaped grooves, and a carrier roller is rotatably arranged in each small conveyor, and a slanted support plate is fixedly arranged in each strip-shaped groove, and a driving motor is arranged on the surface of each slanted support plate, and the output end of the driving motor drives the carrier roller to rotate through a gear assembly, and the inner walls of the two strip-shaped grooves are provided with a first auxiliary groove and a second auxiliary groove, and a correcting auxiliary unit is slidably connected in the first auxiliary groove and the second auxiliary groove.

[0008] In the above-mentioned bottle separating turntable device for medicine packaging production line of shatterproof bottles, in view of the possible inclination of the medicine bottles, small conveyors moving in opposite directions are arranged on both sides of the through groove, and the medicine bottles are corrected by friction, effectively solving the problem of insufficient correction force of the conical medicine bottles and improving the accuracy and adaptability of bottle separation.

[0009] As a further supplement to the present application, the gear assembly comprises a gear one, and the gear one is fixedly sleeved on the surface of one of the carrier rollers in each strip-shaped groove, and a gear two meshed with the gear one is rotatably arranged on the surface of each slanted support plate, the output end of the driving motor is connected with the gear two, the top end of the gear one has a vertical gap with the surface of the strip-shaped groove, and the running directions of the two small conveyors are opposite.

[0010] As a further supplement to the present application, the top surface of the supporting plate is provided with a rotating disc with a recess, the diameter of the arc-shaped guide rail is larger than the diameter of the rotating disc, the through groove is located above the conveying belt two, and the bottom of the rotating disc has a gap of 1-5 mm with the top surface of the supporting plate.

[0011] As a further supplement to the present application, the inside of the recess is connected with an elastic soft pad, and the top of the support platform is provided with an image collector above the rotating disc.

[0012] As a further supplement to the present application, the bottle cap end of the medicine bottle conveyed on the conveying belt one faces away from the conveying belt two at one end of the conveying belt one, and the surface of the conveying belt two is provided with a plurality of constraint members, each of which is composed of two elastic sheets, and the rotating speed of the driving motor in the strip-shaped groove close to the tail end of the guide rail is faster than that of the other driving motor.

[0013] As a further supplement to the present application, it further comprises a bottle separating control system, the bottle separating control system comprises an information acquisition module signal connected with the image collector, an execution correction module signal connected with the two driving motors, and a speed variation module for controlling the rotating speed of the driving motor, wherein the information acquisition module is used to collect the inclination posture of the medicine bottle in the recess, and the execution correction module is used to control the rotating direction of the two driving motors.

[0014] As a further supplement to the present application, the first auxiliary groove is close to the inner wall of the through groove, and the second auxiliary groove is away from the inner wall of the through groove, the correction unit includes two magnetic moving blocks, the mutually close surfaces of the two magnetic moving blocks are connected with movable rods through hinged balls, and the two movable rods are hinged through a movable ball, the surfaces of the two magnetic moving blocks are arranged with limiting arc rods located on the two sides of the hinged ball, and the inside of the second auxiliary groove is provided with an electromagnetic plate, and the two ends of the electromagnetic plate are connected with electromagnetic blocks which are mutually attracted with the magnetic moving blocks.

[0015] As a further supplement to the present application, the second auxiliary groove is in sliding contact with one of the magnetic moving blocks, and the top of the first auxiliary groove and the second auxiliary groove is lower than the top end of the supporting plate, and the correction unit is flush with the surface of the strip-shaped groove in the initial state and is tightly attached to the top surface of the small conveying belt.

[0016] As a further supplement to the present application, the initial state of the electromagnetic plate and the other magnetic moving block is in a close contact state, and after the electromagnetic plate is powered on, the two are in a mutually repelling state, and the surface of the magnetic moving block away from the electromagnetic plate and the side surface of the small conveying belt are arranged with friction protrusions.

[0017] In summary, the present application transports the medicine bottle to the recess of the rotating disc through the conveying belt I, and uses the rotation of the rotating disc to transfer the medicine bottle to the through groove position and then drop it onto the conveying belt II, to realize the bottle separation and transfer processing. In this process, for the possible inclination problem of the medicine bottle, a small conveying belt with reverse motion is arranged on both sides of the through groove, and the medicine bottle is corrected through friction. When the medicine bottle is designed as a tapered closing, the cap end may not contact the small conveying belt on one side. At this time, the correction unit driven by the electromagnet forms a protruding structure on the surface of the small conveying belt, which enhances the pushing effect of the cap end. The present application also has an image collector and a bottle separation control system, which can detect the inclination state of the medicine bottle in real time and adjust the rotating speed of the small conveying belt and the action of the correction unit, to ensure that medicine bottles of different types can smoothly pass through the through groove and drop into the restraining member of the conveying belt II. This design effectively solves the problem of insufficient correction force of tapered medicine bottles, and improves the bottle separation accuracy and adaptability. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the first embodiment of the present application;

[0019] Figure 2 It is an installation schematic diagram of the rotating disc, the arc-shaped guide rail and the supporting plate of the first embodiment of the present application;

[0020] Figure 3 It is a structural diagram of the supporting plate, the strip-shaped groove and the through groove of the first embodiment of the present application;

[0021] Figure 4 It is an enlarged schematic diagram of A in the first embodiment of the present application; Figure 3

[0022] ​Figure 5 The two small transport belts' deviation correction schematic diagram when the bottle cap end and the bottle bottom end diameter of the first embodiment of the application have little difference;

[0023] Figure 6 The two small transport belts' differential deviation correction schematic diagram when the bottle cap end and the bottle bottom end diameter of the first embodiment of the application have large difference;

[0024] Figure 7 The installation schematic diagram of the correction unit and the small transport belt of the second embodiment of the application;

[0025] Figure 8 The structure schematic diagram of the correction unit of the second embodiment of the application;

[0026] Figure 9 The installation schematic diagram of the magnetic moving block and the friction protrusion of the second embodiment of the application;

[0027] Figure 10 The state diagram of the correction unit of the second embodiment of the application following the small transport belt to move and forming protrusion to correct the deviation of the medicine bottle.

[0028] Explanation of the figure mark:

[0029] 1, the first conveying belt; 2, the second conveying belt; 3, the support platform; 4, the supporting plate; 5, the rotating disc; 51, the recess; 6, the guide rail; 7, the through slot; 8, the strip slot; 9, the correction assembly; 91, the small transport belt; 92, the supporting roller; 93, the driving motor; 94, the gear one; 95, the gear two; 10, the correction unit; 101, the magnetic moving block; 102, the limit arc rod; 103, the movable rod; 104, the friction protrusion; 11, the first auxiliary slot; 12, the electromagnetic plate; 13, the second auxiliary slot; 14, the electromagnetic block. DETAILED DESCRIPTION

[0030] The two embodiments of the application will be described in detail below with reference to the accompanying drawings.

[0031] The first embodiment:

[0032] Figures 1-4 A kind of medicine packaging production line for preventing broken bottle is shown, including the first conveying belt 1 for conveying medicine bottle and the second conveying belt 2 with lower conveying height than the first conveying belt 1, the tail end of the first conveying belt 1 is installed with supporting plate 4 by support platform 3, and the top of supporting plate 4 is arranged with guide rail 6, the inside of supporting plate 4 is provided with through slot 7 for falling medicine bottle and strip slot 8 located on both sides of through slot 7, and the inside of the two strip slots 8 is installed with correction assembly 9;

[0033] The correcting assembly 9 comprises two small conveyors 91 flush with the surface of the strip-shaped groove 8, and the inner part of each small conveyor 91 is rotatably provided with a supporting roller 92, the inner part of each strip-shaped groove 8 is fixedly provided with a slanted supporting plate, and the surface of each slanted supporting plate is provided with a driving motor 93, and the output end of the driving motor 93 drives the supporting roller 92 to rotate through a gear assembly, and the inner wall of each strip-shaped groove 8 is provided with a first auxiliary groove 11 and a second auxiliary groove 13, and the first auxiliary groove 11 and the second auxiliary groove 13 are slidably connected with a correcting unit 10 for assisting the correcting assembly 9.

[0034] The gear assembly comprises a gear one 94, and the gear one 94 is fixedly sleeved on the surface of one of the supporting rollers 92 in each strip-shaped groove 8, and the surface of each slanted supporting plate is rotatably provided with a gear two 95 engaged with the gear one 94, and the output end of the driving motor 93 is connected with the gear two 95, and the top end of the gear one 94 is provided with a vertical gap with the surface of the strip-shaped groove 8, and the running directions of the two small conveyors 91 are opposite.

[0035] Specifically, by using the gear assembly, when the driving motor 93 is below the supporting plate 4, it can still rotate and convey, indirectly driving the small conveyors 91 to rotate, and the running directions of the two small conveyors 91 are opposite, which can provide opposite friction effects for the cap end and the bottom end of the medicine bottle, thereby achieving better assisting correcting effect.

[0036] The top surface of the supporting plate 4 is provided with a rotating disc 5 with a recess 51, the diameter of the arc-shaped guide rail 6 is greater than the diameter of the rotating disc 5, the through groove 7 is located above the conveying belt two 2, and the bottom of the rotating disc 5 is provided with a gap of 1-5mm with the top surface of the supporting plate 4.

[0037] Specifically, the arc-shaped guide rail 6 is used to intercept the medicine bottles in the recess 51 from being separated due to centrifugal force when the rotating disc 5 rotates.

[0038] The recess 51 is connected with an elastic soft pad, and the top of the support platform 3 is provided with an image collector above the rotating disc 5.

[0039] The cap end of the medicine bottle conveyed on the conveying belt one 1 faces away from the conveying belt two 2 at one end of the conveying belt one 1, and the surface of the conveying belt two 2 is provided with a plurality of constraint members, each of which is composed of two elastic sheets, and the rotating speed of the driving motor 93 in the strip-shaped groove 8 close to the tail end of the guide rail 6 is faster than that of the other driving motor 93.

[0040] Specifically, by controlling the conveying direction of the bottle cap end, the medicine bottle entering the recess 51 is always in a state that the bottle bottom end is close to the innermost side of the recess 51 and the bottle cap end is close to the outermost side of the recess 51. When the image collector collects the tilt information of the medicine bottle, the tilt state of the medicine bottle is roughly divided into two types: one is that the bottle cap end is on the right and the bottle bottom end is on the left, and the other is that the bottle cap end is on the left and the bottle bottom end is on the right. This can reduce the processing time and quickly respond to the rotation direction adjustment of the driving motor 93.

[0041] The bottle separation control system further includes an information collection module connected with the image collector, an execution correction module connected with the two driving motors 93, and a speed change module for controlling the rotation speed of the driving motor 93. The information collection module is used to collect the tilt posture of the medicine bottle in the recess 51, and the execution correction module is used to control the rotation direction of the two driving motors 93.

[0042] Specifically, the rotation speed of the turntable 5 is controlled at a slow level, and the residence time of each recess 51 in the through slot 7 is controlled to be more than 10 milliseconds. When the bottle separation operation is performed, the bottle cap end of the medicine bottle is away from the direction of the conveying belt 1. Therefore, when the medicine bottle enters the recess 51 of the turntable 5 after entering the conveying belt 1, the medicine bottle switches position to the position of the through slot 7 following the rotation of the recess 51. If the position of the medicine bottle in the recess 51 is in a normal state, the medicine bottle can smoothly pass through the through slot 7 and fall between the two elastic pieces on the conveying belt 2 (the above-mentioned effect can be achieved by adjusting the rotation speeds of the conveying belt 1, the turntable 5, and the conveying belt 2). During the above-mentioned process, the bottle cap end of the medicine bottle (hereinafter referred to as the bottle cap end) is located on the small conveying belt 91 away from the tail end of the guide rail 6, and the bottle bottom end of the medicine bottle (hereinafter referred to as the bottle bottom end) is located on the small conveying belt 91 close to the tail end of the guide rail 6.

[0043] If the position of the medicine bottle is tilted when the medicine bottle enters the recess 51, the medicine bottle will continue to move on the surface of the supporting plate 4 and move out of the inside of the turntable 5 when it is transferred to the position of the through slot 7 following the rotation of the recess 51, although the diameter of the medicine bottle is not greater than the cross-sectional width of the through slot 7. Therefore, it is difficult for the medicine bottle to smoothly pass through the through slot 7 after tilting, and the bottle separation operation is disturbed.

[0044] In order to improve the above phenomenon, if the medicine bottle is placed in an inclined state, the image collector can obtain the inclined state of the medicine bottle before it moves to the through slot 7, and then the corresponding inclined information is transmitted to the position of the driving motor 93, so that the driving motor 93 can timely adjust the direction of the small conveying belt 91 when the medicine bottle at the inclined position reaches the through slot 7, and the medicine bottle is rectified.

[0045] Figure 5 It is shown that if the diameters of the bottle cap end and the bottle bottom end are the same or not much different, the bottle cap end and the bottle bottom end are in contact with the surfaces of the two small conveying belts 91 respectively, and the two small conveying belts 91 rotating in opposite directions have a rectifying effect on the inclined medicine bottle. For example, the bottle cap end is on the right and the bottle bottom end is on the left, so the small conveying belt 91 away from the tail end of the guide rail 6 moves to the right, and the other small conveying belt 91 moves to the left, so as to make the inclined medicine bottle normal, smoothly pass through the inside of the through slot 7, and fall into the restraint below.

[0046] Figure 6 It is shown that if the bottle cap end is designed to be closed, so that there is a large difference between the diameters of the bottle cap end and the bottle bottom end, in the lying state, the bottle cap end will not be in contact with the surface of the small conveying belt 91 away from the tail end of the guide rail 6, and then in the rectification process, only the other small conveying belt 91 can rely on the contact friction with the bottle bottom end, which may have the problem of insufficient rectification effect, because the time of each recess 51 passing through the through slot 7 is fixed, and the friction of one end is weakened, and the rectification effect is also weakened. The friction of the bottle bottom end can be strengthened by speeding up the movement of the other small conveying belt 91, so as to make up for the rectification, so that the medicine bottle placed in an inclined state can smoothly pass through the inside of the through slot 7 and fall into the two elastic sheets on the conveying belt 2.

[0047] Second embodiment:

[0048] Figures 7-8 It is shown that the inner walls of the two strip-shaped grooves 8 are respectively provided with a first auxiliary groove 11 and a second auxiliary groove 13, and the inside of the first auxiliary groove 11 and the second auxiliary groove 13 is slidably connected with a rectification unit 10.

[0049] The first auxiliary groove 11 is close to the inner wall of the through slot 7, and the second auxiliary groove 13 is away from the inner wall of the through slot 7. The rectification unit 10 includes two magnetic moving blocks 101, the surfaces of the two magnetic moving blocks 101 close to each other are connected with movable rods 103 through hinged balls, and the two movable rods 103 are hinged through a movable ball. The surfaces of the two magnetic moving blocks 101 are respectively arranged with limiting arc rods 102 located on both sides of the hinged ball. The inside of the second auxiliary groove 13 is provided with an electromagnetic plate 12, and the two ends of the electromagnetic plate 12 are connected with electromagnetic blocks 14 which are attracted to the magnetic moving blocks 101.

[0050] Figure 9The second auxiliary groove 13 is in sliding contact with one of the magnetic blocks 101, and the top of the first auxiliary groove 11 and the top of the second auxiliary groove 13 are both lower than the top end of the supporting plate 4. The correction unit 10 is flush with the surface of the strip-shaped groove 8 and tightly attached to the top surface of the small transport belt 91 in the initial state.

[0051] The electromagnetic plate 12 is in contact with the other magnetic block 101 in the initial state, and the two are in repulsion when the electromagnetic plate 12 is energized. The magnetic block 101 is arranged with friction protrusions 104 on the surface away from the electromagnetic plate 12 and the side surface of the small transport belt 91.

[0052] Unlike the first embodiment, when the bottle cap end is designed as a tapered closure, the first embodiment uses increased speed to strengthen the friction of the bottle bottom end to supplement the correction process. However, in actual operation, if the surface of the bottle bottom end is relatively smooth, the friction is limited, and the single acceleration can only have limited supplementary correction effect. Therefore, it needs to be improved.

[0053] Specifically, when the bottle cap end is designed as a tapered closure, the electromagnetic plate 12 is started, the magnetic block 101 in the first auxiliary groove 11 moves outward, and the movable rod 103 is lifted to form a small protruding structure on the surface of the small transport belt 91. Due to the presence of the friction protrusions 104, the magnetic block 101 can be engaged and extruded with the friction protrusions 104 on the side surface of the small transport belt 91 after moving away from the electromagnetic plate 12. In this way, a driving effect is formed, so that the small transport belt 91 can drive the correction unit 10 to move synchronously when moving, and effectively push and correct the bottle cap end and the bottle bottom end above the small transport belt 91 (as shown in Figure 10 Figure 10 The hollow arrow indicates the movement direction of the magnetic block 101, the dashed arrow indicates the movement direction of the correction unit 10, and the solid arrow indicates the correction direction of the medicine bottle).

[0054] ​After the correction is finished, with the rotation of the rotating disc 5, the bottom of the rotating disc 5 will push the convex movable rod 103 to be flattened (at this time, the pushing and flattening effect of the rotating disc 5 on the magnetic moving block 101 is stronger than the magnetic repulsion, so the magnetic moving block 101 has a tendency to approach the electromagnetic plate 12, and this tendency can be detected by means of the displacement sensor installed in the magnetic moving block 101, at this time, the electromagnetic plate 12 is powered off, so that the magnetic moving block 101 can be smoothly flattened, and the smooth rotation of the rotating disc 5 is not affected), so that the magnetic moving block 101 is reattached to the surface of the electromagnetic plate 12, and then is assisted to reset under the action of the electromagnetic block 14, the electromagnetic block 14 and the electromagnetic plate 12 form a C-shaped structure, the two electromagnetic blocks 14 arranged on the side wall of the first auxiliary groove 11 are selectively started according to the next inclined posture of the medicine bottle provided by the image collector and the rotation direction of the driving motor 93 after the movable rod 103 is flattened by the rotating disc 5, so that the magnetic moving block 101 can be reset to the corresponding position (if it needs to move to the left, it needs to be reset to the right, so that it can follow the small conveying belt 91 to move and push the correction in the future), and wait for the subsequent protrusion to perform the correction operation.

[0055] In actual operation, because the rotating disc 5 is always in a rotating state, the operation time of the correction unit 10 near the tail end of the guide rail 6 is longer than that of the correction unit 10 in the other strip-shaped groove 8, so according to the actual situation, it is selected whether to start two correction units 10 at the same time (at this time, the rotating speed of the rotating disc 5 is relatively slow, so that the operation time of the correction unit 10 in the other strip-shaped groove 8 is relatively sufficient) or to start only the correction unit 10 near the tail end of the guide rail 6 (when the rotating speed of the rotating disc 5 is slightly faster, the operation time of the correction unit 10 in the other strip-shaped groove 8 is not sufficient, so it will be flattened by the rotating disc 5, and only the correction unit 10 near the tail end of the guide rail 6 is started).

[0056] In the initial state, because the small conveying belt 91 is pressed by the correction unit 10 and is below the correction unit 10, it does not affect the normal operation of the small conveying belt 91, and because the magnetic moving block 101 is located in the first auxiliary groove 11 at this time, the friction convex 104 does not contact the side surface of the small conveying belt 91, so the correction unit 10 will not move with the small conveying belt 91.

[0057] In addition, the conveyor belt one 1, the conveyor belt two 2, the small conveying belt 91, the movable rod 103 and other related parts in the present application all adopt wear-resistant treatment to ensure the service life.

[0058] In combination with the current actual demand, the protection scope of the above-mentioned embodiments of the present application is not limited to this, various changes made within the knowledge range of those skilled in the art without departing from the concept of the present application still fall within the protection scope of the present application.

Claims

1. A bottle separating turntable device for a breakage-proof medicine packaging production line, comprising a first conveyor (1) for conveying medicine bottles and a second conveyor (2) having a lower conveying height than the first conveyor (1), characterized in that: The tail end of the conveying belt one (1) is provided with a supporting platform (3) and a supporting plate (4), the top of the supporting plate (4) is provided with an arc-shaped guide rail (6), the inside of the supporting plate (4) is provided with a through slot (7) for dropping medicine bottles and a strip-shaped slot (8) on both sides of the through slot (7), and the inside of the two strip-shaped slots (8) is provided with a correction assembly (9). The correction assembly (9) comprises two small-sized conveying belts (91) flush with the surface of the strip-shaped slot (8), and the inside of each small-sized conveying belt (91) is rotatably provided with a supporting roller (92), each strip-shaped slot (8) is fixedly provided with an inclined supporting plate, and the surface of each inclined supporting plate is provided with a driving motor (93), and the output end of the driving motor (93) drives the supporting roller (92) to rotate through a gear assembly, and the inner wall of each strip-shaped slot (8) is provided with a first auxiliary slot (11) and a second auxiliary slot (13), and the inside of the first auxiliary slot (11) and the second auxiliary slot (13) is slidably connected with a correction supplement unit (10) for assisting the correction assembly (9). The running directions of the two small-sized conveying belts (91) are opposite. The top surface of the supporting plate (4) is provided with a rotating disc (5) with a recess (51), and the diameter of the arc-shaped guide rail (6) is greater than the diameter of the rotating disc (5), the through slot (7) is located above the conveying belt two (2), and the bottom of the rotating disc (5) and the top surface of the supporting plate (4) have a gap of 1-5mm. The inside of the recess (51) is connected with an elastic soft pad, and the top of the supporting platform (3) is provided with an image collector above the rotating disc (5). It also comprises a bottle separation control system, the bottle separation control system comprises an information acquisition module connected with the image collector, an execution correction module connected with the two driving motors (93) and a speed change module for controlling the rotating speed of the driving motor (93), wherein the information acquisition module is used for collecting the inclination of the medicine bottle in the recess (51), and the execution correction module is used for controlling the rotating direction of the two driving motors (93).

2. The bottle separating turntable device for the medicine packaging production line of the anti-fragmentation bottle according to claim 1, characterized in that: The gear assembly comprises a gear one (94), and the gear one (94) is fixedly sleeved on the surface of one of the supporting rollers (92) in each strip-shaped slot (8), and the surface of each inclined supporting plate is rotatably provided with a gear two (95) meshed with the gear one (94), the output end of the driving motor (93) is connected with the gear two (95), and the top end of the gear one (94) and the surface of the strip-shaped slot (8) have a vertical gap.

3. The bottle separating turntable device for the medicine packaging production line of the anti-fragmentation bottle according to claim 2, characterized in that: The cap end of the medicine bottle conveyed on the conveying belt one (1) faces away from the conveying belt two (2) at one end of the conveying belt one (1), and the surface of the conveying belt two (2) is provided with a plurality of constraint members, each of which is composed of two elastic sheets, and the rotating speed of the driving motor (93) in the strip-shaped slot (8) close to the tail end of the arc-shaped guide rail (6) is faster than that of the other driving motor (93).

4. The bottle separating turntable device for the medicine packaging production line of the anti-fragmentation bottle according to claim 1, characterized in that: The first auxiliary groove (11) is close to the inner wall of the through groove (7), the second auxiliary groove (13) is away from the inner wall of the through groove (7), the correcting unit (10) comprises two magnetic moving blocks (101), the mutually close surfaces of the two magnetic moving blocks (101) are connected with movable rods (103) through hinged balls, the two movable rods (103) are hinged through movable balls, the surfaces of the two magnetic moving blocks (101) are arranged with limiting arc rods (102) located on the two sides of the hinged balls, the inside of the second auxiliary groove (13) is mounted with an electromagnetic plate (12), and the two ends of the electromagnetic plate (12) are connected with electromagnetic blocks (14) which are mutually attracted with the magnetic moving blocks (101).

5. The break-resistant bottle separating turntable device for a medicine packaging production line according to claim 4, characterized in that: The second auxiliary groove (13) is in sliding contact with one of the magnetic moving blocks (101), and the top of the first auxiliary groove (11) and the top of the second auxiliary groove (13) are lower than the top end of the supporting plate (4), and the correcting unit (10) is flush with the surface of the strip-shaped groove (8) in the initial state and is tightly attached to the top surface of the small-sized conveying belt (91).

6. The bottle separating turntable device for the medicine packaging production line of the anti-fragmentation bottle according to claim 5, characterized in that: In the initial state, the electromagnetic plate (12) is in contact with the other magnetic moving block (101), and after the electromagnetic plate (12) is powered on, the two are in a mutually repelling state, and the surface of the magnetic moving block (101) away from the electromagnetic plate (12) and the side surface of the small-sized conveying belt (91) are both arranged with friction protrusions (104).

Citation Information

Patent Citations

  • Bottle unscrambler

    CN110510343A

  • Medicine bottle arranging device

    CN117383217A

  • Positioning device used for industrial labelling equipment

    CN107792454A

  • Empty plastic bottle direction correcting device

    CN204489954U