Multifunctional material arranging mechanism of packaging machine

By designing a multi-functional material handling mechanism in the packaging machine, and using two sets of pusher components and lifting drive components to adjust the material width, the problem of mismatch between the material arrangement width and the packaging box is solved, thereby improving the flexibility and versatility of the packaging machine.

CN223494887UActive Publication Date: 2025-10-31RUIAN HUAPU MACHINERY
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Patent Information

Application Number
CN202522003405.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2025-10-31
Estimated Expiration
2035-09-18

AI Technical Summary

Technical Problem

When conveying quantitative materials, existing packaging machines require the material arrangement width to correspond to the packaging box width, which greatly limits the packaging box specifications and affects the flexibility and versatility of use.

Method used

Design a multi-functional material handling mechanism for a packaging machine, which adopts two sets of pushing components and a lifting drive assembly. The first pushing component pushes the material into the receiving box to adjust the width, and then pushes it into the hopper on the conveyor belt to meet the needs of packaging boxes of different specifications.

Benefits of technology

It improves the flexibility and versatility of the packaging machine, enabling it to meet the material filling needs of various packaging boxes without requiring modification of the feeding component structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multifunctional material arranging mechanism of a packaging machine, which comprises a feeding platform and a conveying belt arranged on one side of the feeding platform, and is characterized in that a first material pushing part and a second material pushing part are arranged corresponding to the feeding platform, the first material pushing part can push materials on the feeding platform to move and fall into a material receiving box, and the second material pushing part can push the materials on the feeding platform to fall into a material receiving box. The material receiving box is connected with the lifting driving assembly, a third material pushing part is arranged corresponding to the material receiving box, the third material pushing part can push materials in the material receiving box into a material bin on the conveying belt, and the second material pushing part can directly push materials on the feeding platform into the material bin on the conveying belt. The material arranging and pushing device is simple in structure, reasonable in design, capable of achieving orderly material pushing and disordered material arranging and pushing, and further suitable for packaging boxes of different specifications.
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Description

Technical Field

[0001] This utility model relates to packaging equipment, specifically to a multi-functional material handling mechanism for a packaging machine. Background Technology

[0002] Packaging machines are mainly used for packaging various materials. One type of packaging machine is used for batch packaging of a certain quantity of materials. Currently, the working principle of this type of packaging machine on the market is as follows: the material is first conveyed to the hopper on the conveyor belt through the feeding mechanism, and then the conveyor belt moves the hopper to the pushing station, where the pushing component pushes the material into the packaging box. The problem with this structure is that the width of the quantitative material when it is fed out of the feeding mechanism must be exactly corresponding to or less than the width of the packaging box; otherwise, the material group in a single conveying will not be able to be completely pushed into the packaging box. In other words, the equipment has significant limitations on boxing and the size of the packaging box, affecting its flexibility and versatility. Utility Model Content

[0003] In view of the deficiencies in the prior art, the technical problem to be solved by this utility model is to provide a multi-functional material handling mechanism for a packaging machine to solve the above-mentioned problems.

[0004] Therefore, this utility model is implemented using the following solution:

[0005] A multi-functional material handling mechanism for a packaging machine includes a feeding platform and a conveyor belt on one side of the feeding platform. The mechanism is characterized by: a first pusher and a second pusher corresponding to the feeding platform; the first pusher can move materials on the feeding platform and drop them into a receiving box; the receiving box is connected to a lifting drive assembly; a third pusher corresponding to the receiving box can push materials in the receiving box into a hopper on the conveyor belt; and the second pusher can directly push materials on the feeding platform into the hopper on the conveyor belt.

[0006] The device can be equipped with a first or a second hopper. The third pusher can push the material in the receiving box into the first hopper, and the second pusher can push the material on the feeding platform into the second hopper. The second hopper is larger than the first hopper.

[0007] The pusher is mounted on a transmission belt that passes over a transmission wheel. The transmission wheel is connected to a first motor. The second pusher is connected to the piston rod of a first cylinder. The cylinder body of the first cylinder is mounted on a movable frame. The movable frame is connected to a first synchronous belt that passes over a first synchronous pulley. The first synchronous pulley is connected to a second motor.

[0008] The drive assembly includes a second cylinder, the piston rod of which is connected to the receiving box.

[0009] The box has openings at the front and back, and baffles are installed on the frame to block the openings when the receiving box descends.

[0010] The pusher is connected to the piston rod of the third cylinder.

[0011] The above-mentioned technical solution provides a multi-functional material handling mechanism for a packaging machine. This mechanism features a simple structure and reasonable layout. By setting two different pushing structures, when the width of the material fed to the feeding platform is no greater than the width of the packaging box, the material can be directly pushed into the hopper on the conveyor belt by the second pushing component. When the width of the material fed to the feeding platform is greater than the width of the packaging box, the material can be first pushed into the receiving box by the first pushing component, reducing the overall width of the material to match the specifications of the packaging box. The material is then subsequently pushed into the hopper on the conveyor belt. This allows the packaging machine to handle more packaging boxes of different specifications without requiring modification to the feeding component structure, effectively improving the flexibility and versatility of the packaging machine. Attached Figure Description

[0012] The present invention includes the following figures:

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 for Figure 1 Another perspective. Detailed Implementation

[0015] As shown in the figure, the present invention discloses a multi-functional material handling mechanism for a packaging machine, including a feeding platform 2, a conveyor belt 1 on one side of the feeding platform 2, a first pusher 4 and a second pusher 15 corresponding to the feeding platform 2. The first pusher 4 can push the material on the feeding platform 2 to move and fall into the receiving box 11. The receiving box 11 is connected to a lifting drive assembly. A third pusher 10 is provided corresponding to the receiving box 11. The third pusher 10 can push the material in the receiving box 11 into the hopper on the conveyor belt 1. The second pusher 15 can directly push the material on the feeding platform 2 into the hopper on the conveyor belt 1.

[0016] Furthermore, the conveyor belt 1 can be equipped with a first hopper 20 or a second hopper 12. The third pusher 10 can push the material in the receiving box 11 into the first hopper 20, and the second pusher 15 can push the material on the feeding platform 2 into the second hopper 12. The second hopper 12 is larger than the first hopper 20. Using the above technical solution, hoppers of the required specifications can be set on the conveyor belt as needed. The first hopper 20 is used to accommodate the material conveying of small-sized packaging boxes, and the second hopper 12 is used to accommodate the material conveying of large-sized packaging boxes.

[0017] Furthermore, the first pusher 4 is mounted on the transmission belt 3, which passes over the transmission wheel 7. The transmission wheel 7 is connected to the first motor 5 via the synchronous belt transmission group 6. The second pusher 15 is connected to the piston rod of the first cylinder 14. The cylinder body of the first cylinder 14 is mounted on the movable frame 16, which is connected to the first synchronous belt 18. The first synchronous belt 18 passes over the first synchronous pulley 19, which is connected to the second motor 17. Using the above technical solution, by controlling the movement of the transmission belt 3, the first pusher 4 can be driven to move, pushing the material arranged on the feeding platform 2 into the receiving box 11. By controlling the first cylinder 14, the second pusher 15 can be driven to rise and fall. By controlling the second motor 17 to drive the first synchronous belt 18, the movable frame 16 and the second pusher 15 can be driven to move.

[0018] Furthermore, the lifting drive assembly includes a second cylinder 8, the piston rod of which is connected to the receiving box 11. The third pusher 10 is connected to the piston rod of the third cylinder 13. By controlling the second cylinder 8, the receiving box 11 can be lifted and lowered; by controlling the third cylinder 13, the third pusher 10 can be moved.

[0019] It should be noted that, in addition to the structures described above, the various lifting and moving drive components in this application can also employ common linear drive structures such as linear motors, gear racks, chains, and cam transmission structures.

[0020] Furthermore, the receiving box 11 has openings at the front and rear, and a baffle 9 is provided on the frame to block the openings at the front and rear when the receiving box 11 descends. With the above structure, the openings at the front and rear facilitate the third pusher 10 to push the material out of the receiving box 11, and the baffle 9 ensures that the material will not fall out of the opening after falling into the receiving box 11.

[0021] The working principle of this utility model is as follows: Materials are fed onto the feeding platform 2 via the feeding assembly. If the width of the arranged materials matches the width of the packaging box, and a second hopper 12 is provided on the conveyor belt 1, the moving frame 16 is controlled to move the second pusher 15 above the arranged materials. Then, the first cylinder 14 is controlled to lower the second pusher 15. Next, the moving frame 16 is controlled to push the second pusher 15 into the second hopper 12 on the conveyor belt 1. As the conveyor belt 1 continues to move, the second hopper 12... The material is moved to the feeding station. If the width of the material arranged on the feeding platform 2 is greater than the width of the packaging box, the first hopper 20 is set on the conveyor belt 1, and the first pusher 4 is controlled to push the material on the feeding platform 2 to move and fall into the receiving box 11, so that the material is stacked in the receiving box 11 in a disordered manner. Then the receiving box 11 is controlled to rise to be level with the first hopper 20, and the third pusher 10 is controlled to push the material in the receiving box 11 into the first hopper 20. Then, as the conveyor belt 1 continues to move, the first hopper 20 is moved to the feeding station.

[0022] This invention features a structure with two different pushing mechanisms. When the width of the material fed to the feeding platform is no greater than the width of the packaging box, the material can be directly pushed into the hopper on the conveyor belt by the second pushing component. When the width of the material fed to the feeding platform is greater than the width of the packaging box, the material can be pushed into the receiving box by the first pushing component, reducing the overall width of the material to match the specifications of the packaging box. The material is then pushed into the hopper on the conveyor belt. This allows the packaging machine to accommodate more packaging boxes of different specifications without requiring modifications to the structure of the feeding components, effectively improving the flexibility and versatility of the packaging machine.

Claims

1. A multi-functional material handling mechanism for a packaging machine, comprising a feeding platform (2), wherein a conveyor belt (1) is provided on one side of the feeding platform (2), characterized in that: The feeding platform (2) is provided with a first pusher (4) and a second pusher (15). The first pusher (4) can push the material on the feeding platform (2) to move and fall into the receiving box (11). The receiving box (11) is connected to the lifting drive assembly. The receiving box (11) is provided with a third pusher (10). The third pusher (10) can push the material in the receiving box (11) into the hopper on the conveyor belt (1). The second pusher (15) can directly push the material on the feeding platform (2) into the hopper on the conveyor belt (1).

2. The multi-functional material handling mechanism of a packaging machine according to claim 1, characterized in that: The conveyor belt (1) may be equipped with a first hopper (20) or a second hopper (12). The third pusher (10) can push the material in the receiving box (11) into the first hopper (20), and the second pusher (15) can push the material on the feeding platform (2) into the second hopper (12). The second hopper (12) is larger than the first hopper (20).

3. The multi-functional material handling mechanism of a packaging machine according to claim 1, characterized in that: The first pusher (4) is mounted on the transmission belt (3), which passes around the transmission wheel (7). The transmission wheel (7) is connected to the first motor (5). The second pusher (15) is connected to the piston rod of the first cylinder (14). The cylinder body of the first cylinder (14) is mounted on the moving frame (16). The moving frame (16) is connected to the first synchronous belt (18), which passes around the first synchronous wheel (19). The first synchronous wheel (19) is connected to the second motor (17).

4. The multi-functional material handling mechanism of a packaging machine according to claim 1, characterized in that: The lifting drive assembly includes a second cylinder (8), and the piston rod of the second cylinder (8) is connected to the receiving box (11).

5. The multi-functional material handling mechanism of a packaging machine according to claim 1, characterized in that: The receiving box (11) has openings at the front and back, and a baffle (9) is provided on the frame to block the openings at the front and back when the receiving box (11) descends.

6. The multi-functional material handling mechanism of a packaging machine according to claim 1, characterized in that: The third pusher (10) is connected to the piston rod of the third cylinder (13).