A labeling and positioning device for pharmaceutical bottles
Patent Information
- Application Number
- CN202521932672.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-09
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-09
AI Technical Summary
[0005]为此,本实用新型所要解决的技术问题在于克服现有技术中不同的药瓶具有一定的瓶身直径误差,而机械固定只能对单一直径的瓶身进行挤压贴合,当瓶身与数据预定的瓶身产生误差时,就会导致瓶身与机械卡接装置之间留有一定细小缝隙,无法完全定位的药瓶会在贴标时产生小幅度晃动,进而导致标签出现倾斜甚至是标签出现褶皱的问题
[0015] The present invention discloses a labeling and positioning device for pharmaceutical bottles. In this device, the medicine bottles inside the sliding drainage channel are pulled into the processing tank by the tilt angle of the sliding drainage channel. The position of the medicine bottles is defined by the overlapping plate. At this time, the hydraulic rod presses down the conical horn cover and the overlapping support rod. The overlapping support rod squeezes the gap groove between the two sets of medicine bottles, thereby separating the two sets of medicine bottles. One set of medicine bottles is left in the gap inside the overlapping support rod. This achieves the goal of separating multiple medicine bottles that are squeezed together by using the overlapping support rod, reducing the situation where multiple medicine bottles will directly accumulate in the processing tank and cannot be effectively separated.
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Figure CN224767247U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medicine bottle positioning and labeling technology, and in particular to a medicine bottle labeling and positioning device. Background Technology
[0002] Pharmaceutical glass bottles are characterized by their smooth transparency, ease of sterilization, corrosion resistance, high temperature resistance, and good sealing performance. They are still the preferred packaging for ordinary infusions, antibiotics, powders, freeze-dried products, vaccines, blood, and biological agents. Most of them use pharmaceutical glass packaging, mainly controlled white and brown oral liquid bottles and molded brown pharmaceutical glass bottles.
[0003] A patent with publication number CN220682956U discloses a labeling device for pharmaceutical glass bottles. It includes a processing box with a glass bottle body, multiple casters at the bottom of the processing box, and a matching support plate inside the processing box. Mounting openings are provided on both sides of the support plate, and inclined clamping plates are rotatably connected to each mounting opening. The glass bottle body is positioned between the two clamping plates, and the bottom of the two clamping plates has an abutment mechanism for fixing the glass bottle body. A driving mechanism is located at the bottom of the support plate, and a drive shaft is rotatably connected to the top of the processing box. This invention has a reasonable structure. Through the positioning plates and abutment plates on both sides of the bottom of the processing box, when the support plate moves the glass bottle body upwards, it can drive the clamping plates and anti-slip layer on both sides to rotate, thereby conveniently fixing the position of the glass bottle body. This saves time and manpower from manually fixing the glass bottle body, making the labeling device more efficient at labeling pharmaceutical glass bottles.
[0004] When labeling medicines, a stamp is usually affixed to the body of the medicine glass bottle to achieve the labeling effect. However, in actual operation, the medicine glass bottle needs to be manually or mechanically fixed to the labeling device. Moreover, whether it is manual or mechanical labeling, the labeling machine and the medicine bottle will be slightly misaligned and squeezed due to the diameter error of different bottles, which will lead to the adhesion error. It is impossible to squeeze and position the medicine bottle before labeling. Utility Model Content
[0005] Therefore, the technical problem to be solved by this utility model is to overcome the fact that different medicine bottles have certain errors in bottle diameter in the prior art, and mechanical fixing can only squeeze and fit a bottle with a single diameter. When there is an error between the bottle body and the predetermined bottle body, a certain small gap will be left between the bottle body and the mechanical clamping device. Medicine bottles that cannot be fully positioned will wobble slightly when labeling, which will lead to the label being tilted or even wrinkled.
[0006] To solve the above-mentioned technical problems, this utility model provides a pharmaceutical bottle labeling and positioning device, including a pharmaceutical labeling device and a hydraulic rod fixedly installed on the inner wall of the top of the pharmaceutical labeling device. A pharmaceutical bottle is movably sleeved on the inner wall of the pharmaceutical labeling device. A processing groove is formed on the inner wall of the pharmaceutical labeling device. The hydraulic rod is positioned on the inner wall of the top of the processing groove. A downward flow channel and a pharmaceutical bottle discharge channel are respectively formed on the inner walls of both sides of the processing groove at the middle position. An overlapping plate is movably sleeved on the inner wall of the processing groove. A conical horn cover is fixedly connected to the output end of the hydraulic rod. An overlapping support rod that movably overlaps the top surface of the overlapping plate is fixedly connected to the bottom surface of the conical horn cover. A positioning extrusion plate is fixedly installed on the bottom surface of the conical horn cover and on the inner wall of the overlapping support rod.
[0007] In one embodiment of the present invention, an arc-shaped inclined groove is formed on the top surface of the conical horn cover, an overlapping extrusion block is fixedly installed on the inner wall of the positioning extrusion plate, and an arc-shaped fitting groove is formed on the bottom surface of the overlapping extrusion block.
[0008] In one embodiment of the present invention, four sets of limiting rollers are symmetrically installed at the four corners of the overlapping extrusion block, and a winding box and a feeding box are symmetrically installed on the top surface of the overlapping extrusion block.
[0009] In one embodiment of the present invention, an adhesive film is provided on the output end of the winding box and the conveying box, which is movably overlapped on the outer surface of the limiting roller, and a label is attached to the outer surface of the adhesive film.
[0010] In one embodiment of the present invention, a hydraulic push pump is fixedly installed on one side of the inner wall of the processing groove and at the bottom edge of the sliding guide groove, and an arc-shaped sleeve plate is fixedly connected to the output end of the hydraulic push pump.
[0011] In one embodiment of the present invention, a damping rod is fixedly installed at the bottom edge of the processing groove, and one end of the damping rod is fixedly connected to the bottom surface of the overlapping plate.
[0012] In one embodiment of this utility model, an elastic push wire is movably sleeved on the outer surface of the damping rod, and a circulating air pump is provided on the upper and lower surfaces of the sliding drainage groove. A dust collection box provided on the back of the medicine labeling device is fixedly connected to the output end of the circulating air pump.
[0013] In one embodiment of the present invention, the outer surface of the arc-shaped sleeve plate is movably overlapped with the top outer surface of the overlapping plate, and the outer surface of the overlapping support rod is slidably sleeved on the inner wall of the processing groove.
[0014] The above-mentioned technical solution of this utility model has the following advantages compared with the prior art:
[0015] The present invention discloses a labeling and positioning device for pharmaceutical bottles. In this device, the medicine bottles inside the sliding drainage channel are pulled into the processing tank by the tilt angle of the sliding drainage channel. The position of the medicine bottles is defined by the overlapping plate. At this time, the hydraulic rod presses down the conical horn cover and the overlapping support rod. The overlapping support rod squeezes the gap groove between the two sets of medicine bottles, thereby separating the two sets of medicine bottles. One set of medicine bottles is left in the gap inside the overlapping support rod. This achieves the goal of separating multiple medicine bottles that are squeezed together by using the overlapping support rod, reducing the situation where multiple medicine bottles will directly accumulate in the processing tank and cannot be effectively separated.
[0016] The present invention discloses a labeling and positioning device for pharmaceutical bottles. Before the hydraulic rod presses down on the conical horn cover, it works with the winding box and the conveying box to slide and pull the adhesive film, causing the adhesive film to slide on the surface of the medicine bottle. This moves the label on the surface of the adhesive film to the area on the surface of the medicine bottle that needs to be adhered. At this time, as the hydraulic rod drives the overlapping extrusion block to press down continuously, the label on the surface of the adhesive film adheres to the surface of the medicine bottle. At this time, the highest point of the medicine bottle will first contact the surface of the label. The adhesive film, after being extruded and deformed, will press the label towards the two sides of the medicine bottle and adhere it, so that the label is evenly attached to the surface of the medicine bottle.
[0017] The pharmaceutical bottle labeling and positioning device of this utility model involves pressing down the overlapping plate with the medicine bottle carried by the overlapping support rod on the bottom surface of the hydraulic rod. This vertically compresses the damping rod and the elastic push wire. When the height of the overlapping plate moves down to the entrance of the medicine bottle discharge slot, the hydraulic push pump pushes the arc-shaped sleeve plate. At this time, the arc-shaped sleeve plate pushes the medicine bottle on the bottom surface of the positioning extrusion plate. When the arc-shaped sleeve plate moves to the top surface of the overlapping plate, it limits the position of the overlapping plate. Then, the hydraulic rod moves back to the overlapping support rod, causing the medicine bottle to detach from the bottom surface of the positioning extrusion plate and push the medicine bottle into the medicine bottle discharge slot for recycling after labeling. Attached Figure Description
[0018] To make the content of this utility model easier to understand, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings.
[0019] Figure 1 This is a perspective view of the present invention;
[0020] Figure 2 This is a perspective view of the back of the medicine labeling device in this utility model;
[0021] Figure 3 This is a perspective view of the medicine labeling device in this utility model;
[0022] Figure 4 This is a perspective view of the arc-shaped shell plate in this utility model;
[0023] Figure 5 This is a three-dimensional cross-sectional view of the hydraulic rod in this utility model;
[0024] Figure 6 This is a perspective view of the overlapping extrusion block in this utility model;
[0025] Explanation of reference numerals in the accompanying drawings: 11. Medicine labeling device; 111. Processing tank; 112. Sliding drainage tank; 113. Medicine bottle discharge tank; 114. Circulating air pump; 115. Hydraulic push pump; 116. Arc-shaped casing plate; 117. Damping rod; 118. Elastic push wire; 119. Overlap plate; 1110. Dust collection box; 12. Hydraulic rod; 121. Conical horn cover; 122. Arc-shaped inclined groove; 123. Overlap support rod; 124. Positioning extrusion plate; 125. Overlap extrusion block; 126. Arc-shaped bonding groove; 127. Limiting roller; 128. Rewinding box; 129. Feeding box; 1210. Bonding film; 1211. Label; 13. Medicine bottle. Detailed Implementation
[0026] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand and implement the present invention. However, the embodiments are not intended to limit the present invention.
[0027] Reference Figure 1 - Figure 5 As shown, this utility model discloses a medicine bottle labeling and positioning device, including a medicine labeling device 11 and a hydraulic rod 12 fixedly installed on the inner wall of the top of the medicine labeling device 11, a medicine bottle 13 movably sleeved on the inner wall of the medicine labeling device 11, a processing groove 111 opened on the inner wall of the medicine labeling device 11, the hydraulic rod 12 being positioned on the inner wall of the top of the processing groove 111, a downward flow channel 112 and a medicine bottle discharge channel 113 respectively opened on the inner walls of both sides of the processing groove 111 at the middle position, an overlapping plate 119 movably sleeved on the inner wall of the processing groove 111; a conical horn cover 121 is fixedly connected to the output end of the hydraulic rod 12, an overlapping support rod 123 movably overlapping the top surface of the overlapping plate 119 is fixedly connected to the bottom surface of the conical horn cover 121, and a positioning extrusion plate 124 is fixedly installed on the bottom surface of the conical horn cover 121 and on the inner wall of the overlapping support rod 123;
[0028] At this time, the medicine bottle 13 inside the downward flow channel 112 will be pulled by the tilt angle of the downward flow channel 112, causing the medicine bottle 13 to slide into the processing tank 111. The position of the medicine bottle 13 is limited by the overlapping plate 119. At this time, the hydraulic rod 12 presses down the conical horn cover 121 and the overlapping support rod 123. The overlapping support rod 123 squeezes the gap between the two sets of medicine bottles 13, thereby separating the two sets of medicine bottles 13. One set of medicine bottles 13 is left in the gap inside the overlapping support rod 123. This achieves the goal of separating multiple medicine bottles 13 that are squeezed together by the overlapping support rod 123, reducing the situation where multiple medicine bottles 13 will directly accumulate inside the processing tank 111 and cannot be effectively separated.
[0029] As the conical horn cover 121 is continuously pressed down, it is pressed and adhered to the top surface of the medicine bottle 13 by the positioning compression plate 124 on the bottom surface of the overlapping support rod 123. The positioning compression plate 124 is used to compress and limit the position of the medicine bottle 13. If there is a slight deviation in the size of the medicine bottle 13, it will also adhere to the deepest part of the groove under the traction and limitation of the positioning compression plate 124, thus compressing and limiting some small-sized medicine bottles 13.
[0030] Reference Figure 5 - Figure 6 As shown, in one embodiment of the present invention, an arc-shaped groove 122 is provided on the top surface of the conical horn cover 121, an overlapping extrusion block 125 is fixedly installed on the inner wall of the positioning extrusion plate 124, an arc-shaped bonding groove 126 is provided on the bottom surface of the overlapping extrusion block 125, four sets of limiting rollers 127 are symmetrically installed on the four corners of the overlapping extrusion block 125, a winding box 128 and a feeding box 129 are symmetrically installed on the top surface of the overlapping extrusion block 125, and a bonding film 1210 is provided on the output end of the winding box 128 and the feeding box 129, which is movably overlapped on the outer surface of the limiting roller 127, and a label 1211 is attached to the outer surface of the bonding film 1210.
[0031] Before the hydraulic rod 12 presses down on the conical horn cover 121, it works with the winding box 128 and the conveying box 129 to slide and pull the adhesive film 1210, causing the adhesive film 1210 to slide on the surface of the medicine bottle 13. This moves the label 1211 on the surface of the adhesive film 1210 to the area on the surface of the medicine bottle 13 that needs to be adhered. At this time, as the hydraulic rod 12 drives the overlapping extrusion block 125 to press down continuously, the label 1211 on the surface of the adhesive film 1210 adheres to the surface of the medicine bottle 13. At this time, the highest point of the medicine bottle 13 will first contact the surface of the label 1211. The adhesive film 1210, after being extruded and deformed, will press and adhere the label 1211 to the two side edges of the medicine bottle 13, so that the label 1211 is evenly attached to the surface of the medicine bottle 13.
[0032] Reference Figure 1 and Figure 3 - Figure 4 As shown, in one embodiment of the present invention, a hydraulic push pump 115 is fixedly installed on one side inner wall of the processing groove 111 and at the bottom edge of the sliding guide groove 112. An arc-shaped sleeve plate 116 is fixedly connected to the output end of the hydraulic push pump 115. A damping rod 117 is fixedly installed at the bottom edge of the processing groove 111, and one end of the damping rod 117 is fixedly connected to the bottom surface of the overlapping plate 119.
[0033] As the overlapping support rod 123 on the bottom surface of the hydraulic rod 12 carries the medicine bottle 13 and presses down on the overlapping plate 119, it will vertically compress the damping rod 117 and the elastic push wire 118. When the height of the overlapping plate 119 moves down to the entrance of the medicine bottle discharge slot 113, it will push the arc-shaped sleeve plate 116 in conjunction with the hydraulic push pump 115. At this time, the arc-shaped sleeve plate 116 will push the medicine bottle 13 on the bottom surface of the positioning extrusion plate 124. When the arc-shaped sleeve plate 116 moves to the top surface of the overlapping plate 119, it will limit the position of the overlapping plate 119. At this time, it will move back the overlapping support rod 123 in conjunction with the hydraulic rod 12, causing the medicine bottle 13 to detach from the bottom surface of the positioning extrusion plate 124 and push the medicine bottle 13 into the interior of the medicine bottle discharge slot 113 for recycling after labeling.
[0034] Reference Figure 1 - Figure 4As shown, in one embodiment of this utility model, an elastic push wire 118 is movably sleeved on the outer surface of the damping rod 117, a circulating air pump 114 is provided on the upper and lower surfaces of the sliding drainage groove 112, a dust collection box 1110 is fixedly connected to the output end of the circulating air pump 114 and is provided on the back of the medicine labeling device 11, the outer surface of the arc-shaped shell plate 116 is movably overlapped on the top outer surface of the overlap plate 119, and the outer surface of the overlap support rod 123 is slidably sleeved on the inner wall of the processing groove 111.
[0035] After the medicine bottle 13 is removed, the hydraulic pump 115 moves the arc-shaped casing plate 116 away from the top surface of the overlapping plate 119. Without any obstruction, the overlapping plate 119 is pushed vertically upward by the spring push wire 118 and moves to the outlet of the downward flow channel 112. As the overlapping support rod 123 moves away from the outlet of the downward flow channel 112, the medicine bottle 13 moves into the processing groove 111 by sliding on the inclined surface of the downward flow channel 112 and is overlapped and bound by the overlapping plate 119 to facilitate subsequent labeling.
[0036] Working principle: When the medicine bottle 13 is placed inside the sliding drainage groove 112, the medicine bottle 13 inside the sliding drainage groove 112 will slide into the processing groove 111 under the traction of the inclined angle of the sliding drainage groove 112. The position of the medicine bottle 13 is limited by the overlapping plate 119. At this time, the hydraulic rod 12 presses down the conical horn cover 121 and the overlapping support rod 123. The overlapping support rod 123 squeezes the gap between the two sets of medicine bottles 13, thereby separating the two sets of medicine bottles 13. One set of medicine bottles 13 is left in the gap inside the overlapping support rod 123. This achieves the goal of separating multiple medicine bottles 13 that are squeezed together by using the overlapping support rod 123, reducing the situation where multiple medicine bottles 13 will directly accumulate inside the processing groove 111 and cannot be effectively separated.
[0037] Before the hydraulic rod 12 presses down on the conical horn cover 121, it works with the winding box 128 and the conveying box 129 to slide and pull the adhesive film 1210, causing the adhesive film 1210 to slide on the surface of the medicine bottle 13. This moves the label 1211 on the surface of the adhesive film 1210 to the place on the surface of the medicine bottle 13 that needs to be adhered. At this time, as the hydraulic rod 12 drives the overlapping extrusion block 125 to press down continuously, the label 1211 on the surface of the adhesive film 1210 adheres to the surface of the medicine bottle 13. At this time, the highest point of the medicine bottle 13 will first contact the surface of the label 1211. The adhesive film 1210, after being extruded and deformed, will extrude and adhere the label 1211 to the two sides of the medicine bottle 13, so that the label 1211 is evenly attached to the surface of the medicine bottle 13.
[0038] As the overlapping support rod 123 on the bottom surface of the hydraulic rod 12 carries the medicine bottle 13 and presses down on the overlapping plate 119, it will vertically compress the damping rod 117 and the elastic push wire 118. When the height of the overlapping plate 119 moves down to the entrance of the medicine bottle discharge slot 113, it will push the arc-shaped sleeve plate 116 in conjunction with the hydraulic push pump 115. At this time, the arc-shaped sleeve plate 116 will push the medicine bottle 13 on the bottom surface of the positioning extrusion plate 124. When the arc-shaped sleeve plate 116 moves to the top surface of the overlapping plate 119, it will limit the position of the overlapping plate 119. At this time, it will move back the overlapping support rod 123 in conjunction with the hydraulic rod 12, causing the medicine bottle 13 to detach from the bottom surface of the positioning extrusion plate 124 and push the medicine bottle 13 into the interior of the medicine bottle discharge slot 113 for recycling after labeling.
[0039] Obviously, the above embodiments are merely illustrative examples for clarity and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.
Claims
1. A pharmaceutical bottle labeling and positioning device, comprising a pharmaceutical labeling device (11) and a hydraulic rod (12) fixedly installed on the inner wall of the top of the pharmaceutical labeling device (11), and a pharmaceutical bottle (13) movably sleeved on the inner wall of the pharmaceutical labeling device (11), characterized in that: The inner wall of the drug labeling device (11) is provided with a processing groove (111). The hydraulic rod (12) is located on the inner wall of the top of the processing groove (111). The inner walls on both sides of the processing groove (111) and the middle position are respectively provided with a downward flow channel (112) and a medicine bottle discharge channel (113). The inner wall of the processing groove (111) is movably sleeved with an overlap plate (119). A conical horn cover (121) is fixedly connected to the output end of the hydraulic rod (12). An overlap support rod (123) is fixedly connected to the bottom surface of the conical horn cover (121) and is movably overlapped on the top surface of the overlap plate (119). A positioning extrusion plate (124) is fixedly installed on the bottom surface of the conical horn cover (121) and on the inner wall of the overlap support rod (123).
2. A labeling and positioning device for a pharmaceutical bottle according to claim 1, characterized in that: The top surface of the conical horn cover (121) is provided with an arc-shaped inclined groove (122), the inner wall of the positioning extrusion plate (124) is fixedly installed with an overlapping extrusion block (125), and the bottom surface of the overlapping extrusion block (125) is provided with an arc-shaped fitting groove (126).
3. A labeling and positioning device for a pharmaceutical bottle as defined in claim 2, wherein: Four sets of limiting rollers (127) are symmetrically installed at the four corners of the overlapping extrusion block (125), and a winding box (128) and a conveying box (129) are symmetrically installed on the top surface of the overlapping extrusion block (125).
4. A labeling and positioning device for a pharmaceutical bottle as defined in claim 3, wherein: The output ends of the winding box (128) and the conveying box (129) are provided with a bonding film (1210) that is movably overlapped on the outer surface of the limiting roller (127), and a label (1211) is attached to the outer surface of the bonding film (1210).
5. The labeling and positioning device for a pharmaceutical bottle according to claim 1, wherein: A hydraulic push pump (115) is fixedly installed on one side of the inner wall of the processing groove (111) and at the bottom edge of the sliding guide groove (112). An arc-shaped sleeve plate (116) is fixedly connected to the output end of the hydraulic push pump (115).
6. A labeling and positioning device for a pharmaceutical bottle as defined in claim 5, wherein: A damping rod (117) is fixedly installed at the bottom edge of the processing groove (111), and one end of the damping rod (117) is fixedly connected to the bottom surface of the overlapping plate (119).
7. A labeling and positioning device for a pharmaceutical bottle as defined in claim 6, wherein: An elastic push wire (118) is movably sleeved on the outer surface of the damping rod (117), and a circulating air pump (114) is provided on the upper and lower surfaces of the sliding drainage groove (112). A dust collection box (1110) is fixedly connected to the output end of the circulating air pump (114) on the back of the medicine labeling device (11).
8. A labeling and positioning device for a pharmaceutical bottle as defined in claim 5, wherein: The outer surface of the arc-shaped shell plate (116) is movably overlapped on the top outer surface of the overlapping plate (119), and the outer surface of the overlapping support rod (123) is slidably sleeved on the inner wall of the processing groove (111).
Citation Information
Patent Citations
Medicinal glass bottle classification label pasting device
CN220682956U