Bottle distributing mechanism of automatic medicine boxing machine
By designing a conveyor groove with rotating rods and spiral blades, the problem of uneven spacing between medicine bottles was solved, achieving stable conveying and separate output of medicine bottles, and improving the efficiency of medicine packaging and the adaptability of automation.
Patent Information
- Application Number
- CN202520172422.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-24
AI Technical Summary
In the traditional medicine packaging process, the uneven spacing between medicine bottles makes them prone to collisions and squeezing, leading to breakage. Furthermore, the packaging process is not adaptable to different bottle sizes, affecting packaging efficiency and automation levels.
The bottle-separating mechanism utilizes a conveyor trough designed with rotating rods and spiral blades to gradually increase the distance between medicine bottles, and achieves stable conveying and separated output of medicine bottles through feeding and unloading components.
It enables uniform adjustment of the spacing between medicine bottles, avoids collisions and squeezing, improves packing efficiency and flexibility to adapt to different sizes of medicine bottles, and enhances the level of automation.
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Figure CN223736332U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of bottle separating mechanisms of medicine automatic boxing machine, belong to medicine boxing technical field. BACKGROUND
[0002] Traditional mode often relies on manual operation or simple mechanical structure, which is not only inefficient, but also difficult to ensure the uniformity of the distance between medicine bottles, which can easily lead to collision and extrusion of medicine bottles during transmission, and even cause damage, seriously affecting the quality of medicine and boxing efficiency. In addition, the traditional mode has poor adaptability to medicine bottles of different specifications, and it takes a lot of time and manpower to adjust the distance, which is not conducive to the flexibility and automation level of production. In order to solve the above problems, a bottle separating mechanism of medicine automatic boxing machine is proposed. SUMMARY
[0003] The utility model aims at providing a kind of bottle separating mechanism of medicine automatic boxing machine to solve the problems raised in the above background technology.
[0004] In order to achieve the above purpose, the utility model adopts the following technical scheme: a kind of bottle separating mechanism of medicine automatic boxing machine, comprising:
[0005] A rack is provided with a distribution chute inside;
[0006] A bottle separating assembly includes a rotating rod and a spiral blade, the rotating rod is rotatably connected inside the distribution chute, the spiral blade is fixed on the side wall of the rotating rod, and a conveying groove for conveying medicine bottles is provided between the spiral blades;
[0007] A feeding assembly is provided on the rack for conveying medicine bottles to the inside of the distribution chute;
[0008] A discharging assembly is provided on the rack for outputting separated medicine from the conveying groove;
[0009] Wherein, the conveying groove gradually increases from one end close to the feeding assembly to the other end away from the feeding assembly.
[0010] Preferably, the feeding assembly comprises:
[0011] An input rack is vertically arranged on the rack, and the input rack is fixedly connected to the rack;
[0012] An input belt is used to input medicine bottles on the input rack into the inside of the conveying groove, the input belt is rotatably connected inside the input rack, one end of the input belt extends to the inside of the distribution chute and is located below the rotating rod, and the upper surface of the input belt is flush with the groove bottom of the distribution chute.
[0013] Preferably, the discharging assembly comprises:
[0014] An output frame is vertically arranged on the frame and is slidingly connected to the frame along the length direction of the frame;
[0015] An output belt is arranged in the output frame and is used to output the medicine bottles in the conveying groove to the inside of the output frame, one end of the output belt extends to the inside of the distributing groove and is located below the rotating rod.
[0016] Preferably, one side of the output frame is provided with a slope used to guide the medicine bottles in the distributing groove to slide to the output belt.
[0017] Preferably, one end of the output frame is slidingly connected to the side wall of the frame, and a locking bolt is arranged on the side wall of the output frame, and the threaded end of the locking bolt is movably pressed against the side wall of the frame.
[0018] Preferably, a sliding groove is arranged on the side wall of the frame, and a sliding block is arranged on one end of the output frame and is slidingly connected to the inside of the sliding groove.
[0019] Preferably, a winding roller is rotatably connected to the frame at the connection between the frame and the input frame by a torsion spring, and a cloth is wound on the winding roller, and the outer end of the cloth is fixedly connected to the side wall of the output frame.
[0020] Preferably, a guide roller is arranged on the side wall of the frame and is used to guide the cloth.
[0021] Compared with the prior art, the present application has the following advantages:
[0022] The present application utilizes the feeding assembly to sequentially convey the medicine bottles to the distributing groove, and the rotating rod drives the spiral blade to rotate, thereby realizing the separation and conveying of the medicine bottles. In this process, the conveying groove gradually increases from the end close to the feeding assembly to the end away from the feeding assembly, thereby ensuring that the distance between the adjacent medicine bottles gradually increases. This helps to adjust the distance between the medicine bottles, and the pushing action of the spiral blade enables the medicine bottles to stably and continuously move forward along the conveying groove until reaching the position of the discharging assembly. The discharging assembly can accurately output the separated medicine bottles from the conveying groove one by one, thereby providing convenience for the subsequent boxing or other processing steps. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 The structure of the present application is shown in the figure;
[0024] Figure 2 The top view of the present application is shown in the figure;
[0025] Figure 3The explosion view of the rack and the output rack of the utility model;
[0026] Figure 4 The structural schematic view of the rack, the input rack and the output rack of the utility model.
[0027] In the drawing,
[0028] 1, rack, 101, distribution chute, 102, sliding groove;
[0029] 2, bottle distribution assembly, 201, rotating rod, 202, spiral blade;
[0030] 3, feeding assembly, 301, input rack, 302, input belt;
[0031] 4, discharging assembly, 401, output rack, 4011, sliding block, 402, output belt, 403, slope;
[0032] 5, locking bolt;
[0033] 6, torsional spring, 7, winding roller, 8, cloth stopper, 9, guide roller. DETAILED DESCRIPTION
[0034] The utility model will be described below with specific embodiments, but is not limited to the utility model.
[0035] Example one
[0036] As shown in the drawing, Figures 1-4 The utility model discloses a kind of bottle distribution mechanisms of automatic medicine packing machine, including rack 1 and bottle distribution assembly 2, distribution chute 101 is provided in rack 1, bottle distribution assembly 2 includes rotating rod 201 and spiral blade 202, rotating rod 201 is rotatably connected in the inside of distribution chute 101, spiral blade 202 is fixed on the side wall of rotating rod 201, conveying groove for conveying medicine bottle is provided between spiral blade 202;Rack 1 is provided with feeding assembly 3 for conveying medicine bottle into distribution chute 101;Rack 1 is provided with discharging assembly 4 for outputting separated medicine from conveying groove;Wherein, conveying groove gradually increases from the end close to feeding assembly 3 to the end far from feeding assembly 3.
[0037] Working process:
[0038] When working, feeding assembly 3 first conveys medicine bottle from medicine storage area or other conveying equipment into distribution chute 101 one by one. With the rotation of rotating rod 201, spiral blade 202 starts to move, and separates and conveys medicine bottle along distribution chute 101. Since conveying groove gradually increases from the end close to feeding assembly 3 to the end far from feeding assembly 3, the distance between adjacent medicine bottles gradually increases.
[0039] Driven by the spiral blades 202, the medicine bottles gradually move forward in the conveyor trough until they reach the feeding assembly 4. At this point, the feeding assembly 4 outputs the separated medicine bottles one by one from the conveyor trough for subsequent boxing or other processing steps.
[0040] Example 2
[0041] like Figures 1-4 As shown, based on Embodiment 1, in this embodiment, the feeding assembly 3 includes an input frame 301 and an input belt 302. The input frame 301 is set vertically to the frame 1 and is fixedly connected to the frame 1. The input belt 302 is used to input the medicine bottles on the input frame 301 into the interior of the conveying trough. The input belt 302 is rotatably connected to the interior of the input frame 301. The rotation direction of the input belt 302 is perpendicular to the axis of the rotating rod 201. One end of the input belt 302 extends into the interior of the distributing trough 101 and is located below the rotating rod 201. The upper surface of the input belt 302 is flush with the bottom of the distributing trough 101.
[0042] When the automatic medicine bottle cartoning machine's bottle-splitting mechanism is working, the input belt 302 of the feeding component 3 starts to rotate. One end of the input belt 302 extends to the medicine storage area or other conveying equipment, while the other end extends into the interior of the dispensing trough 101 and is located below the rotating rod 201. Since the rotation direction of the input belt 302 is perpendicular to the axis of the rotating rod 201, the medicine bottles can stably fall into the conveying trough under the drive of the input belt 302.
[0043] Example 3
[0044] like Figures 1-4 As shown, based on Embodiment 1 or 2, in this embodiment, the feeding assembly 4 includes an output frame 401 and an output belt 402. The output frame 401 is arranged vertically to the frame 1 and is slidably connected to the frame 1 along the length of the frame 1. The output belt 402 is used to output the medicine in the conveying trough to the inside of the output frame 401. The output belt 402 is rotatably connected to the inside of the output frame 401. The rotation direction of the output belt 402 is perpendicular to the axis of the rotating rod 201. One end of the output belt 402 extends into the inside of the dispensing trough 101 and is located below the rotating rod 201. A ramp 403 is provided on one side of the output frame 401 to guide the medicine bottle in the dispensing trough 101 onto the output belt 402.
[0045] One end of the output frame 401 is slidably connected to the side wall of the frame 1, and a locking bolt 5 is provided on the side wall of the output frame 401. The threaded end of the locking bolt 5 is movably pressed against the side wall of the frame 1.
[0046] like Figure 3As shown, a chute 102 is formed in the side wall of the rack 1, and one end of the output rack 401 is provided with a sliding block 4011 which is slidingly connected inside the chute 102.
[0047] Working process:
[0048] When the bottle separating mechanism of the automatic medicine boxing machine is working, the feeding assembly 3 first transports the medicine bottles from the medicine storage area or other conveying equipment one by one into the separating groove 101. With the rotation of the rotating rod 201, the spiral blade 202 starts to move, separating and conveying the medicine bottles along the separating groove 101. Since the conveying groove gradually increases from the end close to the feeding assembly 3 to the end away from the feeding assembly 3, the distance between adjacent medicine bottles gradually increases, which helps to adjust the distance between the medicine bottles.
[0049] Under the pushing of the spiral blade 202, the medicine bottles gradually move forward in the conveying groove until they reach the position of the slope 403. At this time, the medicine bottles smoothly slide down the slope 403 onto the output belt 402. The output belt 402 rotates to convey the medicine bottles from one end of the output rack 401 to the other end. Since the rotation direction of the output belt 402 is perpendicular to the axis direction of the rotating rod 201, the medicine bottles can smoothly transition from the conveying groove to the output belt 402 and continue to move forward.
[0050] When the medicine bottles reach the end of the output belt 402, they are output one by one to the subsequent boxing or other processing equipment. During the entire process, the position of the output rack 401 can be adjusted as needed to adjust the distance between the medicine bottles. The locking bolt 5 is used to fix the position of the output rack 401 to ensure its stability during the working process.
[0051] Example Four
[0052] As Figures 1-3 shown, based on example three, in this embodiment, the connection between the rack 1 and the input rack 301 is rotatingly connected with a winding roller 7 through a torsional spring 6, one end of the torsional spring 6 is fixedly connected to the rotating shaft of the winding roller 7, the other end of the torsional spring 6 is fixedly connected to the side wall of the rack 1, the winding roller 7 is wound with a cloth stopper 8, the outer end of the cloth stopper 8 is fixedly connected to the side wall of the output rack 401, the outer end of the cloth stopper 8 slides with the output rack 401, the setting of the torsional spring 6 can timely wind the excess cloth stopper 8 on the winding roller 7, the unfolded cloth stopper 8 stops at the mouth of the conveying groove, preventing the falling of the medicine bottles and external interference.
[0053] The side wall of the rack 1 is connected with a guide roller 9 for guiding the cloth stopper 8.
[0054] Finally, it should be noted that the above examples are intended to illustrate and not limit the technical solutions of the present application. Although the present application has been described in detail with reference to the above examples, those skilled in the art should understand that the present application can still be modified or equivalently replaced without departing from the spirit and scope of the present application, and any modification or partial replacement thereof should be covered in the scope of the claims of the present application.
Claims
1. A bottle separating mechanism of a medicine automatic cartoning machine, characterized by comprising: The utility model relates to a medicine bottle separating and conveying device, which comprises a rack (1) provided with a distributing groove (101) inside, a distributing bottle assembly (2) comprising a rotating rod (201) and spiral blades (202), the rotating rod (201) is rotatably connected inside the distributing groove (101), the spiral blades (202) are fixed on the side wall of the rotating rod (201), and conveying grooves for conveying medicine bottles are arranged between the spiral blades (202), a feeding assembly (3) arranged on the rack (1) for conveying medicine bottles to the inside of the distributing groove (101), and a discharging assembly (4) arranged on the rack (1) for discharging separated medicine from the conveying grooves. The conveying grooves gradually increase from one end close to the feeding assembly (3) to the other end away from the feeding assembly (3). The discharging assembly (4) comprises an output rack (401) arranged perpendicularly to the rack (1), the output rack (401) is slidably connected to the rack (1) along the length direction of the rack (1), and an output belt (402) for discharging medicine in the conveying grooves to the inside of the output rack (401), the output belt (402) is rotatably connected to the inside of the output rack (401), and one end of the output belt (402) extends to the inside of the distributing groove (101) and is located below the rotating rod (201). The feeding assembly (3) comprises an input rack (301) arranged perpendicularly to the rack (1), the input rack (301) is fixedly connected to the rack (1), and an input belt (302) for inputting medicine bottles on the input rack (301) to the inside of the conveying grooves, the input belt (302) is rotatably connected to the inside of the input rack (301), one end of the input belt (302) extends to the inside of the distributing groove (101) and is located below the rotating rod (201), and the upper surface of the input belt (302) is flush with the groove bottom of the distributing groove (101). One side of the output rack (401) is provided with a slope (403) for guiding and sliding medicine bottles in the distributing groove (101) to the output belt (402). One end of the output rack (401) is slidably connected to the side wall of the rack (1), a locking bolt (5) is arranged on the side wall of the output rack (401), and the threaded end of the locking bolt (5) is movably pressed on the side wall of the rack (1). A sliding groove (102) is formed in the side wall of the rack (1), one end of the output rack (401) is provided with a sliding block (4011), and the sliding block (4011) is slidably connected to the inside of the sliding groove (102). The connection between the rack (1) and the input rack (301) is rotatably connected with a winding roller (7) through a torsion spring (6), the winding roller (7) is wound with a cloth (8), and the outer end of the cloth (8) is fixedly connected to the side wall of the output rack (401). A guide roller (9) is connected to the side wall of the rack (1) for guiding the cloth (8).
2. The bottle separating mechanism of an automatic medicine cartoning machine according to claim 1, wherein, 3. The bottle separating mechanism of an automatic medicine cartoning machine according to claim 1, wherein, 4. The bottle separating mechanism of an automatic medicine cartoning machine according to claim 1, wherein 5. The bottle separating mechanism of an automatic medicine cartoning machine according to claim 4, wherein 6. The bottle separating mechanism of an automatic medicine cartoning machine according to claim 1, wherein, 7. The bottle separating mechanism of an automatic medicine cartoning machine according to claim 6, wherein,