Automatic medicine blanking device

By designing a limiting channel and a brush section for the automatic drug feeding device, the problem of impurities adhering to drug capsules during processing and transportation was solved, achieving clean and efficient capsule production.

CN223919698UActive Publication Date: 2026-02-17ZHONGSHAN BAOYUAN BIO-ENG CO LTD
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Patent Information

Application Number
CN202520837962.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-02-17
Estimated Expiration
2035-04-29

AI Technical Summary

Technical Problem

During processing and transportation, pharmaceutical capsules are prone to adhering to powder or other impurities, leading to a decline in appearance quality, adhesion, and blockage, which affects production efficiency and product quality.

Method used

An automatic drug feeding device was designed, comprising a limiting channel and a brush section, to ensure that only one capsule enters the feeding channel at a time, and to clean impurities around the capsules through the brush section. Combined with the adjustable channel size and positioning holes, it facilitates quick installation and cleaning.

Benefits of technology

It effectively removes powdery impurities from capsules, keeps capsules clean, improves production efficiency and product quality, and reduces cleaning and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic medicine blanking device which comprises a machine frame, a material bin arranged at the top of the machine frame, a first material storage cavity arranged in the material bin and a plurality of outlets arranged in the material bin. The multiple bearing pieces are arranged on the rack, all the bearing pieces are arranged below the outlet, protruding extension parts are arranged at the bottoms of the bearing pieces, and limiting channels and discharging openings are formed in the ends of the extension parts; the positioning support is arranged on the rack, and the positioning support is provided with a discharging opening facing downwards; the feeding plate is arranged in an open mode, a groove is formed in the feeding plate, a detachably-connected sealing plate is further arranged on the feeding plate, the groove can be divided into a plurality of independent material conveying channels through the sealing plate, a plurality of second discharging openings are further formed in the lower end of the sealing plate, and the second discharging openings face the discharging opening; the sealing plate is further provided with a plurality of brush parts arranged at intervals, and all the brush parts extend towards the material conveying channel. The utility model provides an automatic medicine blanking device capable of cleaning sundries such as medicine powder on medicine capsules.
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Description

Technical Field

[0001] This utility model relates to the field of pharmaceutical delivery technology, and in particular to an automatic pharmaceutical feeding device. Background Technology

[0002] During pharmaceutical manufacturing, drug capsules are prone to adhering to drug powder or other impurities during processing and transportation. This not only affects the appearance of the capsules but may also lead to powder accumulation in subsequent production processes, causing problems such as capsule sticking and clogging of the material feeding channel. Furthermore, capsules with adhering powder appear unclean, potentially leaving a negative impression on users and thus affecting the product's market acceptance. These problems not only increase cleaning and maintenance costs during production but also seriously impact production efficiency and product quality. Utility Model Content

[0003] The purpose of this invention is to overcome the problems of the prior art and provide an automatic medicine dispensing device that can clean medicine powder and other debris from medicine capsules.

[0004] To achieve the above objectives, the present invention adopts the following solution:

[0005] An automatic drug dispensing device includes:

[0006] The frame has a hopper on top, and the hopper has a first storage cavity and multiple outlets connected to the first storage cavity, with each outlet facing downwards.

[0007] Multiple receiving components are mounted on a frame. Each receiving component is located below the outlet, and each receiving component has a second storage cavity. The bottom of the receiving component is provided with a protruding extension, and the end of the extension is provided with a discharge port. The extension is also provided with a limiting channel that can connect the second storage cavity and the discharge port.

[0008] A positioning bracket is mounted on the machine frame, and a downward-facing material discharge port is provided in the middle of the positioning bracket;

[0009] The feeding plate is open-ended and has a groove. It also has a detachable sealing plate that divides the groove into multiple independent material conveying channels. The lower end of the sealing plate has multiple second discharge ports corresponding to the material conveying channels, each of which faces the discharge port. The sealing plate also has multiple positioning holes for each extension to engage, and multiple spaced-apart brush sections that extend toward the material conveying channels.

[0010] A locking device is provided between the feeding plate and the closing plate to lock the two together. The locking device includes a protrusion on one end of the feeding plate. The protrusion is provided with a first positioning groove that allows one side of the closing plate to be engaged. A connecting plate is provided on the other side of the feeding plate corresponding to the protrusion. A first driving member is provided on the connecting plate. A top plate that can move with the first driving member is connected to the output shaft of the first driving member. A slot is provided on the closing plate that allows the top plate to be engaged.

[0011] The lower end of the feeding plate is also provided with a support block that can abut against the bottom surface of the sealing plate. The support block is L-shaped so that the bottom surface of the sealing plate can be supported by the bottom surface of the support block.

[0012] The sealing plate includes a plate body, on which a plurality of protruding partitions are provided, with the partitions spaced apart from each other. A plurality of flexible adhesive plates are also attached to the plate body. The brush part includes a brush head extending outward along the flexible adhesive plate.

[0013] The hopper is designed to be larger at the top and smaller at the bottom, and the bottom of the hopper is arranged side by side with the multiple outlets spaced apart.

[0014] The automatic drug dispensing device also includes a limiting component, which is mounted on the frame and located below the outlet. The limiting component has multiple channels that can be enlarged or reduced, and the channels are located below the outlet and above the second storage cavity.

[0015] The limiting component includes a connecting frame connected to the bottom of the hopper, a sliding block that can slide relative to the connecting frame, a plurality of channels on the sliding block, a positioning plate connected to the frame, a second driving component connected to the positioning plate, and the output shaft of the second driving component connected to the sliding block.

[0016] The size of the limiting channel is set in a gradually changing manner.

[0017] Compared with existing technologies, this utility model has the following advantages: After processing, the medicine capsules are introduced into the first storage cavity of the hopper. The capsules fall from the outlet into the receiving part. Through the cooperation of the limiting channel and the discharge port, it is ensured that only one capsule enters the conveying channel from the discharge port at a time. During the process of the capsule moving along the conveying channel to the second discharge port, the brush part cleans the periphery of the capsule to remove adhering powder and other impurities, keeping the capsule clean and tidy. The cleaned capsules are transported to the packaging line through the discharge port, thereby improving the overall production efficiency. In addition, the positioning holes provided on the receiving part facilitate its quick positioning and installation docking. Attached Figure Description

[0018] Figure 1This is a schematic diagram of the automatic drug dispensing device of this utility model;

[0019] Figure 2 This is a cross-sectional view of the automatic drug dispensing device of this utility model;

[0020] Figure 3 for Figure 2 Enlarged view of region A in the middle;

[0021] Figure 4 This is one of the structural schematic diagrams of the limiting component of the automatic drug dispensing device of this utility model;

[0022] Figure 5 This is the second schematic diagram of the limiting component of the automatic drug feeding device of this utility model.

[0023] Labels: Frame 1, Base 11, Second Positioning Groove 12, Mounting Frame 13, Hopper 2, First Storage Chamber 21, Outlet 22, Receiving Component 3, Second Storage Chamber 31, Extension 32, Discharge Port 321, Limiting Channel 33, Positioning Bracket 4, Discharge Port 41, Feeding Plate 5, Groove 51, Material Transport Channel 511, Support Block 52, Sealing Plate 6, Second Discharge Port 61, Positioning Hole 62, Brush Part 63, Brush Head 631, Plate Body 64, Divider Part 641, Flexible Adhesive Plate 65, Locking Device 7, Protrusion 71, First Positioning Groove 711, Connecting Plate 72, First Driving Component 73, Top Plate 74, Slot 75, Limiting Component 8, Channel 81, Connecting Frame 82, Sliding Block 83, Positioning Plate 84, Second Driving Component 85. Detailed Implementation

[0024] The present invention will be further described in detail below with reference to embodiments:

[0025] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.

[0026] like Figures 1 to 5 As shown, an automatic drug dispensing device includes:

[0027] The frame 1 has a hopper 2 on its top. The hopper 2 has a first storage cavity 21 and multiple outlets 22 connected to the first storage cavity 21. Each outlet 22 is arranged facing downwards.

[0028] Multiple receiving parts 3 are disposed on the frame 1. Each receiving part 3 is disposed below the channel 81, and each receiving part 3 has a second storage cavity 31. The bottom of the receiving part 3 is provided with a protruding extension 32. The end of the extension 32 is provided with a discharge port 321. The extension 32 is also provided with a limiting channel 33 that can connect the second storage cavity 31 and the discharge port 321.

[0029] A positioning bracket 4 is mounted on the frame 1, and a material discharge port 41 facing downward is provided in the middle of the positioning bracket 4;

[0030] The feeding plate 5 is open-ended and has a groove 51. It is also equipped with a detachable sealing plate 6, which divides the groove 51 into multiple independent material conveying channels 511. The lower end of the sealing plate 6 is also provided with multiple second discharge ports 61 corresponding to the positions of the material conveying channels 511. Each of the second discharge ports 61 faces the discharge port 41. The sealing plate 6 is also provided with multiple positioning holes 62 for each extension 32 to be inserted into. The sealing plate 6 is also provided with multiple spaced brush parts 63, each of which extends toward the material conveying channel 511.

[0031] After processing, the medicine capsules are introduced into the first storage chamber 21 of the hopper 2. The capsules fall from the outlet 22 into the receiving part 3. Through the cooperation of the limiting channel 33 and the discharge port 321, it is ensured that only one capsule enters the conveying channel 511 from the discharge port 321 at a time. As the capsule moves along the conveying channel 511 to the second discharge port 61, the brush part 63 cleans the periphery of the capsule to remove adhering powder and other impurities, keeping the capsule clean and tidy. The cleaned capsules are transported to the packaging line through the drop port 41, thereby improving the overall production efficiency. In addition, the positioning hole 62 provided on the receiving part 3 facilitates its quick positioning and installation docking.

[0032] A locking device 7 is provided between the feeding plate 5 and the sealing plate 6 to lock them together. The locking device 7 includes a protrusion 71 protruding from one end of the feeding plate 5. The protrusion 71 is provided with a first positioning groove 711 into which one side of the sealing plate 6 can be engaged. A connecting plate 72 is provided on the other side of the sealing plate 6 corresponding to the protrusion 71. A first driving member 73 is provided on the connecting plate 72. A top plate 74 that can move with the first driving member 73 is connected to the output shaft of the first driving member 73. The sealing plate 6 is provided with a slot 75 into which the top plate 74 can be engaged. When it is necessary to install the sealing plate onto the feeding plate 5, one side of the sealing plate 6 is engaged into the first positioning groove 711, and then the other side of the sealing plate 6 is pressed against the feeding plate 5, so that the connecting plate 72 is pressed against the feeding plate 5. At this time, the first driving member 73 is activated, and the top plate 74 is pressed against the feeding plate 5 by the first driving member 73, thus locking the feeding plate 5 and the sealing plate 6. If the sealing plate 6 needs to be removed, simply activate the first drive component 73 to move the top plate 74 in the opposite direction and reset it into the slot 75 on the sealing plate 6 to release the lock.

[0033] The lower end of the feeding plate 5 is also provided with a support block 52 that can abut against the bottom surface of the sealing plate 6. The support block 52 is L-shaped so that the bottom surface of the sealing plate 6 can be supported by the bottom surface of the support block 52. The support block 52 is provided to support the bottom surface of the sealing plate 6, which facilitates installation and alignment, and makes the installation of the sealing plate 6 and the feeding plate 5 faster.

[0034] The enclosing plate 6 includes a plate body 64, on which multiple protruding partitions 641 are provided, spaced apart from each other. Multiple flexible adhesive plates 65 are also attached to the plate body 64. The brush part 63 includes brush heads 631 extending outward along the flexible adhesive plates 65. The partitions 641 are protruding partitions that can divide the grooves 51 of the feeding plate 5 into multiple independent material conveying channels 511. The brush part 63 is adhered to the plate body 64 by the flexible adhesive plates 65, facilitating replacement and making it more convenient to use.

[0035] The hopper 2 is designed to be wider at the top and narrower at the bottom, and the bottom of the hopper 2 is arranged side by side with intervals between the multiple outlets 22. This allows each outlet 22 to transport materials independently.

[0036] The automatic drug dispensing device also includes a limiting component 8, which is mounted on the frame 1 and located below the outlet 22. The limiting component 8 has multiple channels 81 that can be enlarged or reduced, and these channels 81 are located below the outlet 22 and above the second storage cavity 31. The speed at which the capsules fall is adjusted by regulating the positioning of the channels 81 relative to the outlet 22 using the limiting component 8.

[0037] The limiting component 8 includes a connecting frame 82 connected to the bottom of the hopper 2. The connecting frame 82 has a sliding block 83 that can slide relative to it. The sliding block 83 has multiple channels 81. A positioning plate 84 is connected to the frame 1, and a second driving component 85 is connected to the positioning plate 84. The output shaft of the second driving component 85 is connected to the sliding block 83. When the second driving component 85 is activated, it drives the sliding block 83 to move. The sliding block 83 slides along the connecting frame 82, gradually connecting each channel 81 with each outlet 22. When the channel 81 and outlet 22 are completely aligned, the rate of capsule drop reaches its maximum. The relative position of the channel 81 and outlet 22 can be controlled by controlling the position of the sliding block 83, thereby controlling the capsule drop rate.

[0038] The size of the limiting channel 33 is gradually changed, so that only one capsule can enter the conveying channel from the discharge port, which facilitates the subsequent cleaning of the capsule.

[0039] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A medicine automatic dosing device, characterized in that, The utility model provides a kind of material feeding device, including: Rack (1), top is provided with bunker (2), the first storage cavity (21) and multiple outlet (22) that are communicated with first storage cavity (21) are provided in the bunker (2), each outlet (22) is arranged downward; Multiple receiving members (3) are arranged on rack (1), each receiving member (3) is arranged below outlet (22), and the receiving member (3) has second storage cavity (31), the bottom of the receiving member (3) is provided with the protruding extension (32), the end of the extension (32) is provided with discharge port (321), the extension (32) is further provided with the limiting channel (33) that can be communicated with second storage cavity (31) and discharge port (321); Positioning bracket (4) is arranged on rack (1), and the middle part of the positioning bracket (4) is provided with downwardly arranged blanking port (41); Feeding plate (5) is arranged in an open manner, the feeding plate (5) is provided with a groove (51), and the feeding plate (5) is further provided with a detachably connected closure plate (6), the closure plate (6) can separate the groove (51) into multiple independent material conveying channels (511), the lower end of the closure plate (6) is further provided with multiple second discharge ports (61) corresponding to the positions of the material conveying channels (511), each second discharge port (61) is arranged towards the blanking port (41), the closure plate (6) is further provided with multiple positioning holes (62) for clamping each extension (32), and the closure plate (6) is further provided with multiple spaced brush parts (63), each brush part (63) extends towards the material conveying channel (511).

2. The automatic medicine dispensing device according to claim 1, wherein The locking device (7) is arranged between the feeding plate (5) and the closure plate (6) to lock them, the locking device (7) comprises a protruding block (71) arranged at one end of the feeding plate (5), the block (71) is provided with a first positioning groove (711) for clamping one side of the closure plate (6), the other side of the feeding plate (5) corresponding to the block (71) is provided with a connecting plate (72), the connecting plate (72) is provided with a first driving member (73), the output shaft of the first driving member (73) is connected with a top plate (74) capable of moving along with it, and the closure plate (6) is provided with a clamping groove (75) for clamping the top plate (74).

3. The automatic medicine dispensing device according to claim 1 or 2, wherein The lower end of the feeding plate (5) is further provided with a support block (52) capable of abutting against the lower bottom surface of the closure plate (6), the support block (52) is arranged in an L shape, so that the bottom surface of the closure plate (6) can be abutted by the bottom surface of the support block (52).

4. The automatic medicine dispensing device according to claim 1, wherein The closure plate (6) comprises a plate body (64), the plate body (64) is provided with multiple protruding partition parts (641), each partition part (641) is arranged at intervals, and the plate body (64) is further attached with multiple flexible adhesive plates (65), and the brush part (63) comprises a brush head (631) extending outward along the flexible adhesive plate (65).

5. The automatic medicine dispensing device of claim 1, wherein, The silo (2) is arranged in a large top and small bottom manner, and the bottoms of the silo (2) are arranged in parallel and spaced apart between the multiple outlets (22).

6. The automatic medicine dispensing device of claim 1, wherein, The automatic medicine dropping device further comprises a limiting assembly (8) arranged on the rack (1) and located below the outlet (22), wherein the limiting assembly (8) has multiple channels (81) capable of being enlarged or reduced, and the channels (81) are located below the outlet (22) and above the second storage cavity (31).

7. The automatic medicine dispensing device according to claim 6, wherein The limiting assembly (8) comprises a connecting frame (82) connected to the bottom of the silo (2), the connecting frame (82) is provided with a sliding block (83) capable of sliding relative to the connecting frame (82), the sliding block (83) is provided with multiple channels (81), the rack (1) is connected with a positioning plate (84), the positioning plate (84) is connected with a second driving member (85), and the output shaft of the second driving member (85) is connected with the sliding block (83).

8. The automatic medicine dispensing device of claim 1, wherein, The size of the limiting channel (33) is arranged in a gradient manner.