Automatic powder sampling and labeling system
By designing an automatic powder sampling and labeling system, the system achieves automated and precise positioning and operation of containers, solving the problem of time-consuming and labor-intensive manual operation in existing technologies, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202520593711.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-31
AI Technical Summary
On existing production lines, labeling and capping powder containers is time-consuming and labor-intensive, and manual operation makes it difficult to accurately position the containers, resulting in material spillage and substandard product quality.
An automated powder sampling and labeling system was designed, including a conveying device, a labeling device, a transfer device, a clamping device, and a capping device. The system achieves precise positioning and operation of containers through an automated process, reducing manual intervention.
It improves production efficiency, reduces labor costs, ensures precise positioning and operation of containers in the production process, avoids material spillage, and ensures product quality.
Smart Images

Figure CN223878850U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the automatic packaging technical field, concretely relates to a powder automatic sampling and labeling system. BACKGROUND
[0002] In industrial production and quality control, sampling and labeling of materials is a very important link; through sampling, the quality of the material can be detected to see if it meets the production standard, thereby ensuring the quality of the final product; and labeling provides a unique identification for each batch of materials, making it easy to trace the source and quickly locate the problem materials when problems occur;
[0003] In actual production, the container with the material is usually labeled first and then the cap is screwed on the container bottle opening. Because the worker needs to check the material inside the container before labeling, such as checking whether the material content meets the specified requirements, checking the color and clarity of the liquid, etc., once the bottle cap is screwed tightly, it will make the inspection and subsequent adjustment more difficult;
[0004] However, on some existing production lines, the labeled container needs to be manually transferred to the capping station by the worker. This method not only consumes time and effort, but also increases labor costs, and manual operation cannot ensure that the container can be accurately positioned below the capping station, which can easily cause the material in the container to spill during the transfer process and cause waste. In addition, if the positioning is not accurate or deviates, it will also affect the subsequent capping operation, ultimately resulting in unqualified products, so a powder automatic sampling and labeling system is needed to solve the above problems. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a powder automatic sampling and labeling system to solve the problems raised in the background.
[0006] To achieve the above purpose, the utility model provides the following technical scheme: a powder automatic sampling and labeling system, comprising:
[0007] The device main body comprises a workbench;
[0008] The conveying device comprises an inlet conveying belt and an outlet conveying belt, the inlet conveying belt and the outlet conveying belt are drivingly installed above the workbench at a predetermined distance, the inlet conveying belt has a first inlet end and a first outlet end, and the outlet conveying belt has a second inlet end and a second outlet end;
[0009] The labeling device is installed on the workbench, and the labeling device is close to the first outlet end;
[0010] A transfer device includes transfer components, a transfer conveyor belt, a transfer plate, and a transfer column. A pair of transfer components are provided, and the pair of transfer components are slidably disposed on the lower end face of the transfer plate. The lower end face of the transfer column is connected to the upper end face of the transfer plate. The transfer conveyor belt is tractably mounted above the worktable at a predetermined distance. The transfer conveyor belt has a third feed end and a third discharge end. The transfer plate is positioned at a predetermined distance above the third feed end.
[0011] A clamping device is mounted on the worktable;
[0012] A capping device is mounted on the worktable and is located near the second feed end.
[0013] As a preferred embodiment, the main body of the equipment further includes a lifting cylinder and a telescopic column. The lifting cylinder is installed on the workbench, the telescopic column is connected to the output shaft of the lifting cylinder, the labeling device is installed at the end of the telescopic column away from the lifting cylinder, and the end of the shifting column away from the shifting plate is installed on the labeling device.
[0014] As a preferred embodiment, the clamping device includes clamping members, a clamping cylinder, a push plate, and a connecting column. A pair of clamping members are provided, and the pair of clamping members are rotatably mounted on the push plate. One end of the connecting column is connected to the push plate, and the other end of the connecting column is connected to the output shaft of the clamping cylinder. The clamping members are positioned at a predetermined distance directly above the transfer conveyor belt.
[0015] As a preferred embodiment, the main body of the equipment further includes a material conveying rod, a connecting pipe, and a sampling hopper. The material conveying rod is rotatably mounted at a predetermined distance above the workbench. One end of the connecting pipe is connected to the material conveying rod, and the other end of the connecting pipe is connected to the sampling hopper, which is located near the third discharge end.
[0016] As a preferred embodiment, the transfer device further includes a weighing component, which is mounted on the transfer component.
[0017] As a preferred embodiment, the upper surface of the transfer conveyor belt is lower than the upper surface of the feeding conveyor belt by a predetermined distance, and the upper surface of the feeding conveyor belt is flush with the upper surface of the feeding conveyor belt.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] The utility model discloses, be provided with the removal and loading device, removal and loading device includes removal and loading spare, removal and loading conveying belt, with removal board and with removal column, and removal and loading spare sets up in with removal board, and with removal column lower end surface is connected on with removal board upper end surface, and removal and loading conveying belt has third feeding end and third discharge end, and lifting cylinder drives telescopic column further stretch, to make removal and loading spare drive container drop to removal and loading conveying belt upper end surface, make container transmit from third feeding end to the direction of third discharge end, need not manual operation of worker, not only reduce manpower cost, and through a pair of opposite removal and loading spare, make every container can be accurately placed in the same position of removal and loading conveying belt upper end surface, facilitate subsequent operation, ensure the smooth progress of whole production process,
[0020] The utility model discloses, be provided with material conveying rod, connecting pipe and sampling hopper, material conveying rod rotatablely installed in worktable upper predetermined distance, and one end of connecting pipe is connected to material conveying rod, and the other end of connecting pipe is connected to sampling hopper, and sampling hopper is close to third discharge end, wherein part container continues to be conveyed to sampling hopper below by removal and loading conveying belt, through the negative pressure effect, the material in container is sucked to connecting pipe by sampling hopper, and is conveyed to come out through material conveying rod, and it is convenient for worker to carry out subsequent detection. DRAWINGS
[0021] Figure 1 It is the three-dimensional schematic view of the utility model;
[0022] Figure 2 It is the plan view of the utility model;
[0023] Figure 3 It is the Figure 2 It is the local enlarged view of part A of the utility model;
[0024] Figure 4 It is the structure schematic view of removal and loading device of the utility model.
[0025] In the drawing: 1, equipment main body;11, worktable;12, lifting cylinder;13, telescopic column;14, material conveying rod;15, connecting pipe;16, sampling hopper;2, conveying device;21, feeding conveying belt;211, first feeding end;212, first discharge end;22, discharge conveying belt;221, second feeding end;222, second discharge end;3, labeling device;4, removal and loading device;41, removal and loading spare;42, removal and loading conveying belt;421, third feeding end;422, third discharge end;43, with removal board;44, with removal column;45, weighing spare;5, clamping device;51, clamping spare;52, clamping cylinder;53, push plate;54, connecting column;6, cap screwing device. SPECIFIC EMBODIMENT
[0026] The utility model will be further described in connection with examples.
[0027] The following examples are used to illustrate the present application, but cannot be used to limit the protection scope of the present application. The conditions in the examples can be further adjusted according to specific conditions, and simple improvements of the method of the present application under the concept of the present application all belong to the protection scope of the present application.
[0028] Please refer to Figures 1-4 The present application provides a kind of powder automatic sampling and labeling system, comprising:
[0029] Device main body 1, device main body 1 includes workbench 11;
[0030] Conveying device 2, conveying device 2 includes feed conveyor 21 and discharge conveyor 22, feed conveyor 21 and discharge conveyor 22 can be drivingly installed at the upper side of workbench 11 at a predetermined distance, feed conveyor 21 has first feed end 211 and first discharge end 212, and discharge conveyor 22 has second feed end 221 and second discharge end 222;
[0031] Labeling device 3, labeling device 3 is installed on workbench 11, and labeling device 3 is close to first discharge end 212;
[0032] Transfer device 4, transfer device 4 includes transfer piece 41, transfer conveyor 42, belt moving plate 43 and belt moving column 44, a pair of transfer pieces 41 are provided, a pair of transfer pieces 41 are slidably arranged at the lower end surface of belt moving plate 43, the lower end surface of belt moving column 44 is connected to the upper end surface of belt moving plate 43, transfer conveyor 42 is drivingly installed at the upper side of workbench 11 at a predetermined distance, and transfer conveyor 42 has third feed end 421 and third discharge end 422;Belt moving plate 43 is placed at a predetermined distance above third feed end 421;
[0033] Clamping device 5, clamping device 5 is installed on workbench 11;
[0034] Cap screwing device 6, cap screwing device 6 is installed on workbench 11, and cap screwing device 6 is close to second feed end 221;
[0035] Device main body 1 further includes lifting cylinder 12 and telescopic column 13, lifting cylinder 12 is installed on workbench 11, telescopic column 13 is connected to the output shaft of lifting cylinder 12, labeling device 3 is installed on the end of telescopic column 13 away from lifting cylinder 12, and the end of belt moving column 44 away from belt moving plate 43 is installed on labeling device 3;
[0036] The clamping device 5 comprises a clamping piece 51, a clamping cylinder 52, a pushing plate 53 and a connecting column 54, the clamping piece 51 is provided with a pair, the pair of clamping pieces 51 is rotatably installed on the pushing plate 53, one end of the connecting column 54 is connected to the pushing plate 53, the other end of the connecting column 54 is connected to the output shaft of the clamping cylinder 52, and the clamping piece 51 is placed at a predetermined distance above the transfer conveying belt 42.
[0037] The device body 1 further comprises a material conveying rod 14, a connecting pipe 15 and a sampling hopper 16, the material conveying rod 14 is rotatably installed above the workbench 11 at a predetermined distance, one end of the connecting pipe 15 is connected to the material conveying rod 14, the other end of the connecting pipe 15 is connected to the sampling hopper 16, and the sampling hopper 16 is close to the third discharge end 422.
[0038] The transfer device 4 further comprises a weighing piece 45, and the weighing piece 45 is installed on the transfer piece 41.
[0039] The upper end surface of the transfer conveying belt 42 is lower than the upper end surface of the feeding conveying belt 21 by a predetermined distance, and the upper end surface of the feeding conveying belt 21 is flush with the upper end surface of the feeding conveying belt 21.
[0040] The working principle and use process of the utility model are as follows:
[0041] Firstly, the containers filled with materials for labeling and sampling are conveyed from the first feeding end 211 on the feeding conveying belt 21 towards the first discharge end 212, after the feeding conveying belt 21 is conveyed below the transfer piece 41, the lifting cylinder 12 drives the telescopic column 13 to contract after being started, thereby driving the labeling device 3 and the belt transfer column 44 to move downwards, the belt transfer column 44 drives the belt transfer plate 43 and the transfer piece 41 to move downwards synchronously, until the containers are placed between the pair of transfer pieces 41.
[0042] Subsequently, the pair of transfer pieces 41 slide towards each other, thereby clamping the containers, the lifting cylinder 12 drives the telescopic column 13 to stretch, thereby driving the pair of transfer pieces 41 and the containers to move upwards synchronously, so that the weighing piece 45 weighs the containers, and the content of the materials in each container is consistent.
[0043] Then, the lifting cylinder 12 drives the telescopic column 13 to stretch further, so that the transfer piece 41 drives the containers to descend to the upper end surface of the transfer conveying belt 42, at this time, the transfer piece 41 slides and rises towards the direction away from each other and is separated from the containers, so that the containers are conveyed from the third feeding end 421 towards the third discharge end 422; the whole transfer process does not need manual operation of workers, not only reduces the labor cost, but also through the pair of oppositely arranged transfer pieces 41, each container can be accurately placed at the same position on the upper end surface of the transfer conveying belt 42, which is convenient for subsequent operation and ensures the smooth progress of the whole production process.
[0044] During the process of the containers being conveyed on the transfer conveyor 42, the clamping cylinders 52 after being started drive the connecting columns 54 to stretch, so as to drive the push plates 53 and the clamping members 51 placed on the push plates 53 to translate towards the containers, until the containers are placed between the clamping members 51, then the clamping members 51 are rotated to fix the containers, and the cap screwing device 6 screws the caps to the container mouths, so that the clamping device 5 and the cap screwing device 6 are arranged to seal part of the containers; finally, the containers with the screwed caps are transferred to the discharge conveyor 22 by the clamping members 51, and are conveyed from the second feeding end 221 towards the second discharge end 222.
[0045] In addition, part of the containers continue to be conveyed by the transfer conveyor 42 to below the sampling hopper 16, and the materials in the containers are sucked into the connecting pipe 15 by the sampling hopper 16 through negative pressure, and are conveyed out through the material conveying rod 14, so as to facilitate the subsequent detection by workers.
[0046] Although the embodiments of the present application have been shown and described, it is to be understood that for the purpose of the present application, the embodiments can be substantially changed without departing from the spirit and the scope of the present application, the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A powder automatic sampling and labeling system, characterized in that, The device comprises: a device body (1) comprising a workbench (11); a conveying device (2) comprising an infeed conveying belt (21) and an outfeed conveying belt (22), the infeed conveying belt (21) and the outfeed conveying belt (22) being drivably mounted above the workbench (11) by a predetermined distance, the infeed conveying belt (21) having a first infeed end (211) and a first outfeed end (212), the outfeed conveying belt (22) having a second infeed end (221) and a second outfeed end (222); a labeling device (3) mounted on the workbench (11), the labeling device (3) being close to the first outfeed end (212); a transfer device (4) comprising a transfer member (41), a transfer conveying belt (42), a belt-moving plate (43) and a belt-moving column (44), the transfer member (41) being provided in pairs, the pair of transfer members (41) being slidably arranged on the lower end face of the belt-moving plate (43), the lower end face of the belt-moving column (44) being connected to the upper end face of the belt-moving plate (43), the transfer conveying belt (42) being drivably mounted above the workbench (11) by a predetermined distance, the transfer conveying belt (42) having a third infeed end (421) and a third outfeed end (422), the belt-moving plate (43) being placed above the third infeed end (421) by a predetermined distance; a clamping device (5) mounted on the workbench (11); a cap screwing device (6) mounted on the workbench (11), the cap screwing device (6) being close to the second infeed end (221).
2. The automatic sampling and labeling system for powder according to claim 1, characterized in that: The device body (1) further comprises a lifting cylinder (12) mounted on the workbench (11) and a telescopic column (13) connected to the output shaft of the lifting cylinder (12), the labeling device (3) being mounted on the end of the telescopic column (13) away from the lifting cylinder (12), the end of the belt-moving column (44) away from the belt-moving plate (43) being mounted on the labeling device (3).
3. The automatic sampling and labeling system of claim 2, wherein: The clamping device (5) comprises a clamping member (51), a clamping cylinder (52), a push plate (53) and a connecting column (54), the clamping member (51) being provided in pairs, the pair of clamping members (51) being rotatably mounted on the push plate (53), one end of the connecting column (54) being connected to the push plate (53), the other end of the connecting column (54) being connected to the output shaft of the clamping cylinder (52), the clamping member (51) being placed above the transfer conveying belt (42) by a predetermined distance.
4. The automatic sampling and labeling system of claim 3, wherein: The device body (1) further comprises a material conveying rod (14), a connecting pipe (15) and a sampling hopper (16), the material conveying rod (14) is rotatably installed above the workbench (11) at a predetermined distance, one end of the connecting pipe (15) is connected to the material conveying rod (14), the other end of the connecting pipe (15) is connected to the sampling hopper (16), and the sampling hopper (16) is close to the third discharging end (422).
5. The automatic sampling and labeling system of claim 4, wherein: The transfer device (4) further comprises a weighing member (45), and the weighing member (45) is installed on the transfer member (41).
6. The automatic sampling and labeling system of claim 3, wherein: The upper end surface of the transfer conveying belt (42) is lower than the upper end surface of the feeding conveying belt (21) by a predetermined distance, and the upper end surface of the feeding conveying belt (21) is flush with the upper end surface of the feeding conveying belt (21).