Batch transferring and feeding device for liquid bottled medicaments

By designing a batch transfer and loading device for liquid bottled medicines and utilizing the coordinated work of the feed transmission rack, turntable, limit assembly and upper cover assembly, the problems of high labor intensity, low efficiency and pollution risk in the transfer and cover operation of liquid bottled medicines are solved, and an automated and coherent production process is realized.

CN120646745APending Publication Date: 2025-09-16SUZHOU LINGYAO INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202510871089.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

In the existing technology, the transportation and capping operations of liquid bottled medicines are mostly carried out manually or semi-automatically, resulting in high labor intensity, low production efficiency, the risk of microbial contamination, inconsistent production line rhythm, and overall low efficiency.

Method used

A batch transfer and loading device for liquid bottled medicines is designed. Through the coordinated work of the feeding transmission frame, turntable, limit assembly, cover assembly and knob assembly, the automatic transmission and cover operation of the bottle body and bottle cap can be realized, avoiding work interference and improving production efficiency and quality.

Benefits of technology

It realizes the automated batch transfer and capping of liquid bottled medicines, reduces manual contact, improves production efficiency, reduces the risk of microbial contamination, and ensures the continuity and overall efficiency of the production line.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a batch transferring and feeding device for liquid bottled medicaments, and relates to the technical field of transferring and feeding. A transmission assembly is cooperatively mounted at the top of the box; the transmission assembly comprises a first turntable and a second turntable; a limiting assembly is arranged at the bottom of the box body; the limiting assembly comprises a limiting plate; the limiting plate is positioned between the edges of the first turntable and the second turntable; a carrier plate is arranged below the limiting plate; the limiting plate and the carrying plate are arranged in an opening mode, and a feeding conveying frame and a discharging conveying frame are installed at the bottoms of the two opening ends correspondingly; bottle bodies are conveyed to one side of a first rotating disc and one side of a second rotating disc through a feeding conveying frame, a driving motor is meshed with a first bevel gear through a driving bevel gear, so that the bottle bodies are synchronously conveyed to the position between a limiting plate and the rotating discs through semicircular grooves in the edges of the first rotating disc and the second rotating disc, and the stability of the bottle bodies is guaranteed; and the bottom of the bottle body is supported.
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Description

Technical Field

[0001] The present invention relates specifically to the technical field of transfer and loading, and in particular to a batch transfer and loading device for liquid bottled medicines. Background Art

[0002] In the pharmaceutical manufacturing industry, the production process for liquid bottled medicines (such as injections, oral liquids, and medicinal lotions) covers multiple steps, including filling, capping, and sealing. As the pharmaceutical industry continues to tighten its requirements for drug quality, production efficiency, and aseptic operations, the batch transfer and capping of liquid bottled medicines from filling to packaging has become a key node restricting the automation level and production efficiency of the production line. Currently, the traditional transfer and capping of liquid bottled medicines are mostly done manually or semi-automatically. In manual operations, workers need to cap the bottles one by one, which is not only labor-intensive and inefficient, making it difficult to meet large-scale production needs, but also the frequent manual contact increases the risk of microbial contamination of the medicines, making it impossible to effectively meet production needs. While semi-automated equipment has improved efficiency to a certain extent, it often uses a segmented operation mode, that is, first the bottles are transferred by conveyor belt, and then the capping operation is carried out at a separate station. This separate process leads to inconsistent production line rhythm, poor connection between transfer and capping, and reduced overall production efficiency. After searching, Chinese patent publication number CN202320313115.0 discloses a rotary bottle feeding mechanism; it includes a box body, a motor is installed on the bottom surface of the box body, a gear disk is installed on the inner wall of the box body, a first bearing is fixedly embedded in the upper surface of the box body, the inner ring of the first bearing is fixedly connected to a rotating rod, the top of the rotating rod is fixedly connected to a carrier, the bottom end of the rotating rod is fixedly connected to a first gear, the output end of the motor is fixedly connected to the bottom surface of the first gear, two groups of second gears are meshed on the outer surface of the first gear, the bottom surface of each second gear is fixedly connected to a rotating shaft, a group of second bearings is fixedly embedded in the inner bottom wall of the box body, and the bottom end of each rotating shaft is fixedly connected to the inner ring of the second bearing; Although the device in the above patent can effectively realize the bottle loading and transporting effect, during the operation in the above patent, the bottle body needs to be placed in the placement hole manually, which increases the workload of the staff; the device in the above patent can only realize the simple rotation transmission effect of the bottle body, and cannot effectively perform canning or capping operations on the bottle body. Summary of the Invention

[0003] The object of the present invention is to provide a batch transfer and loading device for liquid bottled medicines. In this device, the bottle body is automatically transferred between the transmission component and the limit component through the feed transmission frame. The semicircular groove opened on the turntable cooperates with the limit plate to effectively ensure the distance between two adjacent bottle bodies. When the drive component realizes the rotation of the turntable, the bevel gear and sprocket installed in the gear box respectively drive the upper cover component and the knob component to move in opposite directions. This effectively avoids work interference when installing the upper cover, thereby effectively improving production efficiency and work quality; so as to solve the problems of the above-mentioned background technology.

[0004] To achieve the above object, the present invention provides the following technical solutions: A batch transfer and loading device for liquid bottled medicines, comprising a box body; a transmission assembly is mounted on the top of the box body; the transmission assembly comprises a first turntable and a second turntable; the first turntable and the second turntable are fixed by welding with a support rod, and the edges of the first turntable and the second turntable are provided with a semicircular groove; the bottom of the second turntable is fixedly mounted to a rotating shaft, and the rotating shaft extends to the interior of the box body at one end away from the first turntable and is fixedly mounted with a first bevel gear; the two turntables effectively ensure the transmission of the bottle body, can effectively ensure the overall transmission of the bottle body, avoid the bottle body from tilting during the transmission process, and effectively ensure the quality of the upper cover installation; A limiting assembly is provided at the bottom of the box body; the limiting assembly includes a limiting plate; the limiting plate is located in the middle position of the edge of the first turntable and the second turntable; a carrying plate is provided below the limiting plate; the carrying plate is located at the bottom of the edge of the second turntable; the limiting plate and the carrying plate are both open-type, wherein the bottoms of the two open ends are respectively equipped with a feeding conveyor rack and a discharging conveyor rack; the bottoms of the feeding conveyor rack and the discharging conveyor rack are fixedly installed with the top of the box body; the bottles that need to be loaded are effectively transferred to the conveying assembly and the limiting assembly through the feeding conveyor rack and the discharging conveyor rack, and at the same time, the bottles with completed bottle caps are automatically transferred to the discharging conveyor rack through the rotation of the conveying assembly, so as to realize automatic transfer to the next process; As a further technical solution of the present invention, a vibrating loading tray is fixedly installed on the top of the box body through a support frame; the discharge end of the vibrating loading tray is fixedly installed on the discharge rack; the end of the discharge rack away from the vibrating loading tray is fixedly provided with a discharge pipe as an integral whole; a sliding rod is cooperatively installed on the side wall of the discharge pipe; the sliding rod passes through the side wall of the discharge pipe and extends to the inside; a spring is sleeved on the end of the sliding rod away from the discharge pipe; the spring effectively ensures that the sliding rod blocks the bottle caps in the discharge pipe to prevent the bottle caps from sliding off automatically. As a further technical solution of the present invention, an upper cover assembly is provided above the discharge tube; the upper cover assembly includes a pressure rod; the top of the pressure rod is fixedly mounted to the connecting rod through an L-shaped plate; the connecting rod extends through the box body to the inside of the box body and is cooperatingly mounted with a first roller; a compression spring is sleeved between the bottom of the connecting rod and the bottom of the top plate of the box body; when the pressure rod enters the inside of the discharge tube, the sliding rod is pressed downward, and the bottle cap is smoothly passed through the discharge tube and placed on the top of the bottle body; when the sliding rod is separated from the discharge tube upward, the sliding rod is extended to the inside of the discharge tube again by the spring to block the next bottle cap; As a further technical solution of the present invention, the bottom of the first roller is cooperatively connected with the first cam; the first cam is coaxially mounted with the first sprocket via the first rotating shaft; when the first sprocket drives the first rotating shaft to rotate, the first roller attached to the first cam synchronously drives the connecting rod to move up and down, thereby effectively realizing the loading of the bottle cap by the pressure rod; As a further technical solution of the present invention, a knob assembly is provided on the side of the vibrating feeding tray away from the upper cover assembly; the knob assembly includes two symmetrical clamping plates; the clamping plates are movably installed with the cylinder; the top of the cylinder is fixedly installed with a disc on the output shaft of the stepper motor; the stepper motor is fixedly installed on the top of one end of the fixed plate; the other end of the fixed plate is fixedly installed with the slide; the end of the slide away from the fixed plate is slidably installed with the slide rail; the slide rail is fixedly installed on the side wall of the vertical plate; when the bottle cap is rotated, the two clamping plates are clamped on the bottle cap by the cylinder, and then the cylinder drives the clamping plates to rotate by the stepper motor to ensure the firmness of the bottle cap; As a further technical solution of the present invention, the bottom of the slide is movably mounted on the lifting rod; the bottom of the lifting rod passes through the top of the box and extends into the interior of the box and is cooperatingly mounted with a second roller; the bottom of the second roller is in close contact with the second cam; the second cam is coaxially provided with a second sprocket via a second rotating shaft; the second cam is arranged 180 degrees to the first cam; during the driving process, the second cam and the first cam respectively realize the two structures to move in opposite directions up and down, thereby effectively avoiding the situation of interference in the transmission process; As a further technical solution of the present invention, a drive assembly is further fixedly installed inside the box; the drive assembly includes a gear box; a drive motor is fixedly installed on the side wall of one side of the gear box; the output shaft of the drive motor extends to the inner wall of the gear box and is fixedly installed with the active bevel gear; the top of the active bevel gear is meshed with the first bevel gear; the two turntables rotate synchronously, and the bottles on the feed transfer rack are transferred to the edge of the turntable and the side of the limit plate through the semicircular groove on the turntable; the stability of the bottles during the transfer process is ensured; As a further technical solution of the present invention, one side of the active bevel gear is meshed with the second bevel gear; the second bevel gear is coaxially provided with a fourth sprocket; the fourth sprocket is connected to the first sprocket through a first chain; the second bevel gear on one side of the active bevel gear is synchronously meshed with the third bevel gear, so that the driving assembly can synchronously realize the synchronous movement between the upper cover assembly and the knob assembly; As a further technical solution of the present invention, the second bevel gear is meshed with a third bevel gear away from the driving bevel gear; the third bevel gear is coaxially provided with a third sprocket; the third sprocket is connected to the second sprocket through a second chain; Compared with the prior art, the present invention has the following beneficial effects: When the present invention is in use, the bottle body is transferred to one side of the first turntable and the second turntable by the feeding transfer frame, and the driving motor realizes the engagement between the driving bevel gear and the first bevel gear, so that the semicircular grooves on the edges of the first turntable and the second turntable synchronously transfer the bottle body to between the limit plate and the turntable, thereby ensuring the stability of the bottle body. At the same time, the bottom of the bottle body is located on the carrier plate, thereby supporting the bottom of the bottle body. The present invention, when the active bevel gear drives the first bevel gear to rotate, the active bevel gear is synchronously meshed with the second bevel gear, and the fourth sprocket coaxially installed with the second bevel gear realizes the rotation of the first cam installed on the first rotating shaft through the first chain. When the first cam rotates downward, the first roller is effectively moved downward by the compression spring. At the same time, the top of the connecting rod drives the pressure rod to press down through the L-shaped plate, so that the bottle cap on the slide rod is transmitted to the top of the bottle body through the discharge pipe. When the pressure rod is pressed down, the end of the slide rod moves to the outside of the discharge pipe, so that the discharge pipe is unobstructed, thereby realizing the automatic feeding effect of the bottle cap. The present invention, at the same time, the second bevel gear is meshed with the third bevel gear on a side away from the active bevel gear to rotate synchronously, the third sprocket coaxially mounted on the third bevel gear is rotated with the second sprocket through the second chain, the second sprocket pushes the second roller upward through the second cam coaxially mounted on the second rotating shaft, the lifting rod installed in cooperation with the second roller pushes the slide upward along the slide rail on one side of the vertical plate, so that the fixed plate drives the cylinder and the clamping plate away from the knob to complete the bottle cap; In the present invention, during the transmission process of the transmission component, when the connecting rod in the upper cover assembly drives the pressure rod to move upward, the meshing between the second bevel gear and the third bevel gear inside the gear box is synchronously realized so that the third bevel gear mobilizes the clamping plate in the knob assembly to move downward. After the two clamping plates are moved into place, the clamping plate is clamped to the bottle cap by the cylinder, and the stepping motor drives the cylinder to rotate so that the bottle cap knob is firmly fixed. Through the cyclic transmission movement, the bottle body with the bottle body and the bottle cap sealed is transmitted to the discharge transmission rack, thereby realizing the automatic unloading effect of the bottle. BRIEF DESCRIPTION OF THE DRAWINGS

[0005] Figure 1It is a schematic diagram of the three-dimensional structure of the present invention.

[0006] Figure 2 In the present invention Figure 1 Schematic diagram of the internal structure.

[0007] Figure 3 In the present invention Figure 2 Schematic diagram of the rear structure.

[0008] Figure 4 In the present invention Figure 3 Another perspective structural diagram.

[0009] Figure 5 In the present invention Figure 4 Schematic diagram of the internal structure of the middle box.

[0010] Figure 6 In the present invention Figure 2 Schematic diagram of the splitting.

[0011] Figure 7 In the present invention Figure 5 Schematic diagram of the three-dimensional structure of the drive component.

[0012] Figure 8 In the present invention Figure 7 Schematic diagram of the internal structure of the gearbox.

[0013] Figure 9 In the present invention Figure 4 A magnified view of the local structure at point A.

[0014] Figure 10 In the present invention Figure 5 Enlarged view of the local structure at point B in the middle.

[0015] Figure 11 In the present invention Figure 5 Enlarged view of the local structure at point C in the middle.

[0016] Figure 12 In the present invention Figure 5 Enlarged view of the local structure at point D in the middle.

[0017] In the figure: 1-box, 2-feed transmission frame, 3-discharge transmission frame, 4-vibration loading tray, 5-discharge frame, 6-upper cover assembly, 60-connecting rod, 61-L-type plate, 62-pressure rod, 63-first roller, 64-first cam, 65-first rotating shaft, 66-compression spring, 67-first chain, 68-first sprocket, 7-knob assembly, 70-vertical plate, 71-L-type fixed plate, 72-lifting rod, 73-second roller, 74-second rotating shaft, 75-second cam, 76-second sprocket, 77-second chain, 78-slide Rail, 79-slide, 710-fixed plate, 711-stepping motor, 712-cylinder, 713-clamping plate, 8-transmission assembly, 80-first turntable, 81-second turntable, 82-first bevel gear, 9-limiting assembly, 90-limiting plate, 91-carrying plate, 10-unloading pipe, 11-driving assembly, 110-gear box, 111-driving motor, 112-third sprocket, 113-fourth sprocket, 114-second bevel gear, 115-third bevel gear, 116-driving bevel gear, 12-slide rod, 13-spring. DETAILED DESCRIPTION

[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0019] See also Figure 1-7 In an embodiment of the present invention, a batch transfer and loading device for liquid bottled medicines includes a housing 1; a transmission assembly 8 is mounted on the top of the housing 1; the transmission assembly 8 includes a first turntable 80 and a second turntable 81; the first turntable 80 and the second turntable 81 are fixed by welding with a support rod, and the edges of the first turntable 80 and the second turntable 81 are provided with a semicircular groove; the bottom of the second turntable 81 is fixedly mounted with a rotating shaft, and the end of the rotating shaft away from the first turntable 80 extends into the interior of the housing 1 and is fixedly mounted with a first bevel gear 82; A limiting assembly 9 is provided at the bottom of the box body 1; the limiting assembly 9 includes a limiting plate 90; the limiting plate 90 is located in the middle position between the edges of the first turntable 80 and the second turntable 81; a carrying plate 91 is provided below the limiting plate 90; the carrying plate 91 is located at the bottom edge of the second turntable 81; the limiting plate 90 and the carrying plate 91 are both open-type, wherein the bottoms of the two open ends are respectively installed with the feed transmission rack 2 and the discharge transmission rack 3; the bottoms of the feed transmission rack 2 and the discharge transmission rack 3 are fixedly installed with the top of the box body 1; A vibrating loading tray 4 is fixedly installed on the top of the box body 1 through a support frame; the discharge end of the vibrating loading tray 4 is fixedly installed on the discharge rack 5; the end of the discharge rack 5 away from the vibrating loading tray 4 is fixedly provided with a discharge pipe 10 as an integral whole; a sliding rod 12 is cooperatedly installed on the side wall of the discharge pipe 10; the sliding rod 12 passes through the side wall of the discharge pipe 10 and extends to the interior; a spring 13 is sleeved on the end of the sliding rod 12 away from the discharge pipe 10.

[0020] By adopting the above technical solution, when in use, the bottle body is transferred to one side of the first turntable 80 and the second turntable 81 through the feeding transfer frame 2, and the driving motor 111 is engaged with the first bevel gear 82 to realize the semicircular grooves on the edges of the first turntable 80 and the second turntable 81 to synchronously transfer the bottle body to between the limit plate 90 and the turntable, thereby ensuring the stability of the bottle body. At the same time, the bottom of the bottle body is located on the carrier plate 91, thereby supporting the bottom of the bottle body. See also Figure 1-12 In this embodiment, an upper cover assembly 6 is provided above the discharge pipe 10; the upper cover assembly 6 includes a pressure rod 62; the top of the pressure rod 62 is fixedly mounted to the connecting rod 60 via an L-shaped plate 61; the connecting rod 60 passes through the box body 1 and extends to the interior of the box body 1 and is cooperatingly mounted with a first roller 63; a compression spring 66 is sleeved between the bottom of the connecting rod 60 and the bottom of the top plate of the box body 1; In this embodiment, the bottom of the first roller 63 is connected to the first cam 64; the first cam 64 is coaxially mounted with the first sprocket 68 via the first rotating shaft 65; By adopting the above technical solution, the bottle caps are automatically transferred to the discharge rack 5 by vibrating the loading tray 4, and the slide bar 12 installed on the side wall of the discharge pipe 10 at the bottom of the discharge rack 5 effectively blocks the bottle caps, preventing the bottle caps from falling automatically. Furthermore, a knob assembly 7 is provided on the side of the vibrating loading tray 4 away from the upper cover assembly 6; the knob assembly 7 includes two symmetrical clamping plates 713; the clamping plates 713 are movably mounted on the cylinder 712; the top of the cylinder 712 is fixedly mounted to the disc on the output shaft of the stepper motor 711; the stepper motor 711 is fixedly mounted on the top of one end of the fixed plate 710; the other end of the fixed plate 710 is fixedly mounted to the slide 79; the end of the slide 79 away from the fixed plate 710 is slidably mounted to the slide rail 78; the slide rail 78 is fixedly mounted on the side wall of the vertical plate 70; In this embodiment, the bottom of the slide 79 is movably mounted on the lifting rod 72; the bottom of the lifting rod 72 extends through the top of the box body 1 into the interior of the box body 1 and is cooperatingly mounted with a second roller 73; the bottom of the second roller 73 is in close contact with the second cam 75; the second cam 75 is coaxially provided with a second sprocket 76 via a second rotating shaft 74; the second cam 75 is arranged at 180 degrees to the first cam 64; By adopting the above technical solution, when the active bevel gear 116 drives the first bevel gear 82 to rotate, the active bevel gear 116 is synchronously meshed with the second bevel gear 114, and the fourth sprocket 113 coaxially mounted on the second bevel gear 114 realizes the rotation of a cam 64 mounted on the first rotating shaft 65 through the first chain 67. When the first cam 64 rotates downward, the first roller 63 is effectively moved downward by the compression spring 66. At the same time, the top of the connecting rod 60 drives the pressure rod 62 to press down through the L-shaped plate 61, so that the bottle cap on the slide rod 12 is transferred to the top of the bottle body through the discharge pipe 10. When the pressure rod 62 is pressed down, the end of the slide rod 12 moves to the outside of the discharge pipe 10, so that the discharge pipe 10 is unobstructed, thereby achieving the automatic feeding effect of the bottle cap; In this embodiment, a drive assembly 11 is further fixedly mounted inside the housing 1. The drive assembly 11 includes a gear box 110. A drive motor 111 is fixedly mounted on a side wall of the gear box 110. The output shaft of the drive motor 111 extends to the inner wall of the gear box 110 and is fixedly mounted on a driving bevel gear 116. The top of the driving bevel gear 116 is meshed with the first bevel gear 82. One side of the driving bevel gear 116 is meshed with the second bevel gear 114; the second bevel gear 114 is coaxially provided with a fourth sprocket 113; the fourth sprocket 113 is connected to the first sprocket 68 through the first chain 67; By adopting the above technical solution, at the same time, the second bevel gear 114 is meshed and rotated synchronously with the third bevel gear 115 on the side away from the driving bevel gear 116. The third sprocket 112 coaxially mounted on the third bevel gear 115 rotates with the second sprocket 76 through the second chain 77. The second sprocket 76 pushes the second roller 73 upward through the second cam 75 coaxially mounted on the second rotating shaft 74. The lifting rod 72 installed in conjunction with the second roller 73 pushes the slide 79 upward to slide along the slide rail 78 on one side of the vertical plate 70, so that the fixed plate 710 drives the cylinder 712 and the clamping plate 713 away from the knob to complete the bottle cap. Furthermore, during the transmission process of the transmission component 8, when the connecting rod 60 in the upper cover component 6 drives the pressure rod 62 to move upward, the meshing between the second bevel gear 114 and the third bevel gear 115 inside the gear box 110 is synchronously realized, and the third bevel gear 115 mobilizes the clamping plate 713 in the knob assembly 7 to move downward. After the two clamping plates 713 move into place, the clamping plate 713 is clamped on the bottle cap by the cylinder 712, and the cylinder 712 is driven to rotate by the stepping motor 711 to ensure that the bottle cap knob is firmly fixed. Through the cyclic transmission movement, the bottle body with the bottle cap sealed is transmitted to the discharge transmission rack 3, and the automatic unloading effect of the bottle is achieved. The working principle of the present invention is as follows: when in use, the bottle body is transferred to one side of the first turntable 80 and the second turntable 81 through the feeding transfer frame 2, and the driving motor 111 is engaged with the first bevel gear 82 to realize the semicircular grooves on the edges of the first turntable 80 and the second turntable 81 to synchronously transfer the bottle body to between the limit plate 90 and the turntable, thereby ensuring the stability of the bottle body. At the same time, the bottom of the bottle body is located on the carrier plate 91, thereby supporting the bottom of the bottle body. The bottle caps are automatically transferred to the discharge rack 5 by vibrating the loading tray 4. The slide bar 12 installed on the side wall of the discharge pipe 10 at the bottom of the discharge rack 5 effectively blocks the bottle caps to prevent them from falling automatically. When the active bevel gear 116 drives the first bevel gear 82 to rotate, the active bevel gear 116 is synchronously meshed with the second bevel gear 114, and the fourth sprocket 113 coaxially mounted on the second bevel gear 114 realizes the rotation of the first cam 64 mounted on the first rotating shaft 65 through the first chain 67. When the first cam 64 rotates downward, the first roller 63 is effectively moved downward by the compression spring 66. At the same time, the top of the connecting rod 60 drives the pressure rod 62 to press down through the L-shaped plate 61, so that the bottle cap on the slide rod 12 is transferred to the top of the bottle body through the discharge pipe 10. When the pressure rod 62 is pressed down, the end of the slide rod 12 moves to the outside of the discharge pipe 10, so that the discharge pipe 10 is unobstructed, thereby achieving the automatic feeding effect of the bottle cap; At the same time, the second bevel gear 114 is meshed and rotated synchronously with the third bevel gear 115 on the side away from the active bevel gear 116. The third sprocket 112 coaxially mounted on the third bevel gear 115 rotates with the second sprocket 76 through the second chain 77. The second sprocket 76 pushes the second roller 73 upward through the second cam 75 coaxially mounted on the second rotating shaft 74. The lifting rod 72 installed in conjunction with the second roller 73 pushes the slide 79 upward to slide along the slide rail 78 on one side of the vertical plate 70, so that the fixed plate 710 drives the cylinder 712 and the clamping plate 713 away from the knob to complete the bottle cap. During the transmission process of the transmission component 8, when the connecting rod 60 in the upper cover assembly 6 drives the pressure rod 62 to move upward, the engagement between the second bevel gear 114 and the third bevel gear 115 inside the gear box 110 is synchronously realized, and the third bevel gear 115 mobilizes the clamping plate 713 in the knob assembly 7 to move downward. After the two clamping plates 713 move into place, the clamping plate 713 is used to support the bottle cap through the cylinder 712, and the cylinder 712 is driven to rotate by the stepping motor 711 to ensure that the bottle cap knob is firmly fixed; through the cyclic transmission movement, the bottle body with the bottle cap sealed is transmitted to the discharge transmission rack 3, and the automatic unloading effect of the bottle is achieved.

[0021] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0022] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A batch transfer and loading device for liquid bottled medicines, characterized by: The invention comprises a housing (1); a transmission assembly (8) is mounted on the top of the housing (1); the transmission assembly (8) comprises a first turntable (80) and a second turntable (81); the first turntable (80) and the second turntable (81) are fixed by welding with a support rod, and semicircular grooves are provided on the edges of the first turntable (80) and the second turntable (81); the bottom of the second turntable (81) is fixedly mounted with a rotating shaft, and the end of the rotating shaft away from the first turntable (80) extends to the interior of the housing (1) and is fixedly mounted with a first bevel gear (82); A limiting assembly (9) is provided at the bottom of the box body (1); the limiting assembly (9) includes a limiting plate (90); the limiting plate (90) is located in the middle position of the edges of the first turntable (80) and the second turntable (81); a carrier plate (91) is provided below the limiting plate (90); the carrier plate (91) is located at the bottom of the edge of the second turntable (81); the limiting plate (90) and the carrier plate (91) are both arranged in an open manner, wherein the bottoms of the two open ends are respectively installed with a feed transmission rack (2) and a discharge transmission rack (3); the bottoms of the feed transmission rack (2) and the discharge transmission rack (3) are fixedly installed with the top of the box body (1).

2. The batch transfer and loading device for liquid bottled medicine according to claim 1, characterized in that: A vibrating loading tray (4) is fixedly mounted on the top of the box body (1) via a support frame; the discharge end of the vibrating loading tray (4) is fixedly mounted on a discharge rack (5); a discharge pipe (10) is fixedly provided integrally at one end of the discharge rack (5) away from the vibrating loading tray (4); a sliding rod (12) is cooperatively mounted on the side wall of the discharge pipe (10); the sliding rod (12) passes through the side wall of the discharge pipe (10) and extends to the inside; a spring (13) is sleeved on one end of the sliding rod (12) away from the discharge pipe (10).

3. The batch transfer and loading device for liquid bottled medicine according to claim 1, characterized in that: An upper cover assembly (6) is provided above the discharge tube (10); the upper cover assembly (6) includes a pressure rod (62); the top of the pressure rod (62) is fixedly mounted to the connecting rod (60) via an L-shaped plate (61); the connecting rod (60) passes through the box body (1) and extends to the interior of the box body (1) and is cooperatingly mounted with a first roller (63); a compression spring (66) is sleeved between the bottom of the connecting rod (60) and the bottom of the top plate of the box body (1).

4. The batch transfer and loading device for liquid bottled medicine according to claim 3, characterized in that: The bottom of the first roller (63) is connected to the first cam (64); the first cam (64) is coaxially mounted with the first sprocket (68) via the first rotating shaft (65).

5. The batch transfer and loading device for liquid bottled medicine according to claim 4, characterized in that: A knob assembly (7) is provided on the side of the vibrating loading tray (4) away from the upper cover assembly (6); the knob assembly (7) includes two symmetrical clamping plates (713); the clamping plates (713) are movably mounted on the cylinder (712); the top of the cylinder (712) is fixedly mounted on the disc on the output shaft of the stepper motor (711); the stepper motor (711) is fixedly mounted on the top of one end of the fixed plate (710); the other end of the fixed plate (710) is fixedly mounted on the slide (79); the end of the slide (79) away from the fixed plate (710) is slidably mounted on the slide rail (78); the slide rail (78) is fixedly mounted on the side wall of the vertical plate (70).

6. The batch transfer and loading device for liquid bottled medicine according to claim 5, characterized in that: The bottom of the slide (79) is movably mounted on the lifting rod (72); the bottom of the lifting rod (72) passes through the top of the box body (1) and extends to the inside of the box body (1) and is co-installed with a second roller (73); the bottom of the second roller (73) is fitted and connected to the second cam (75); the second cam (75) is coaxially provided with a second sprocket (76) through a second rotating shaft (74); the second cam (75) is arranged at 180 degrees to the first cam (64).

7. The batch transfer and loading device for liquid bottled medicine according to claim 6, characterized in that: A drive assembly (11) is also fixedly installed inside the housing (1); the drive assembly (11) includes a gear box (110); a drive motor (111) is fixedly installed on a side wall of one side of the gear box (110); an output shaft of the drive motor (111) extends to the inner wall of the gear box (110) and is fixedly installed with a driving bevel gear (116); and the top of the driving bevel gear (116) is meshed with the first bevel gear (82).

8. The batch transfer and loading device for liquid bottled medicine according to claim 7, characterized in that: One side of the driving bevel gear (116) is meshedly connected to the second bevel gear (114); the second bevel gear (114) is coaxially provided with a fourth sprocket (113); the fourth sprocket (113) is connected to the first sprocket (68) through a first chain (67).

9. The batch transfer and loading device for liquid bottled medicine according to claim 8, characterized in that: The second bevel gear (114) is meshedly connected to a third bevel gear (115) away from the driving bevel gear (116); the third bevel gear (115) is coaxially provided with a third sprocket (112); the third sprocket (112) is cooperatively connected to the second sprocket (76) via a second chain (77).

Citation Information

Patent Citations

  • Rotary bottle feeding mechanism

    CN219448212U