Continuous feeding type material transferring mechanism

By introducing a moving frame and synchronous belt system into the material transfer mechanism, the problem of frequent start-stop of material feeding was solved, continuous feeding was achieved, and the smoothness of equipment operation and production efficiency were improved.

CN223591078UActive Publication Date: 2025-11-25ZHEJIANG JIADE PACKING MASCH CO LTD
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Patent Information

Application Number
CN202423287686.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-25
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing material conveying mechanism requires frequent start-stop operations during material feeding, which affects the smoothness of equipment operation and production efficiency.

Method used

By setting up a moving frame and a synchronous belt system to control the movement of the chain and the speed of the feeding components, the feeding bin is kept relatively stationary during material pushing, thus achieving continuous feeding.

Benefits of technology

It improved the smoothness of equipment operation and production efficiency, and enabled continuous material feeding.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223591078U_ABST
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Abstract

The utility model discloses a continuous feeding type material transfer mechanism which is characterized in that a chain is arranged at the discharging end of a feeding assembly and bypasses a driving chain wheel and a driven chain wheel, the driving chain wheel and the driven chain wheel are rotationally arranged on a movable frame, the driving chain wheel is connected with a first motor, the movable frame is connected with a movable driving assembly, and feeding bins are arranged on the chain in an arrayed mode; a material pushing assembly is arranged on one side corresponding to the chain, when the material pushing assembly pushes materials out of the feeding bin, the movable driving assembly drives the movable frame to move, the feeding bin located at the material pushing station is kept static relative to the material pushing assembly, and at the moment, the moving speed of the chain is decreased and / or the feeding speed of the feeding assembly is increased; and the feeding assembly can still continuously feed the materials into the feeding bin one by one. According to the continuous feeding device, materials can be transferred in batches, subsequent transferring, pushing and feeding do not affect each other, continuous feeding is achieved, the smoothness of overall operation of equipment is guaranteed, and production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to packing equipment, concretely relates to a continuous feeding type material transfer mechanism. BACKGROUND

[0002] Material transfer mechanism is an important component of packing equipment. One kind of transfer mechanism, its structure mainly includes chain, arranges and sets the grid bin on the chain, and sets the feeding assembly on the side of the chain, through controlling the feeding assembly to send the material into each grid bin one by one, then with the chain drives the grid bin to the material pushing station, the material pushing assembly pushes out the material in the grid bin, realizes the transfer of material, this transfer mechanism, when pushing out the material, in order to avoid the collision between the material pushing assembly and the grid bin, usually need to control the chain to stop action, after waiting for pushing to be completed, the material is pushed out, at this time, the front feeding assembly must also stop feeding operation, this will affect the action of the front material conveying mechanism, frequent start and stop of part of the assembly, make the smoothness of equipment operation to be poor, and the production efficiency will also be influenced to a certain extent. SUMMARY

[0003] In view of the deficiencies of the background art, the technical problem to be solved by the utility model is to provide a continuous feeding type material transfer mechanism for solving the above problems.

[0004] Therefore, the utility model is realized by adopting the following scheme:

[0005] Continuous feeding type material transfer mechanism, including feeding assembly, its characterized in that: the discharge end of feeding assembly is provided with chain, the chain passes through driving sprocket and driven sprocket, and the driving sprocket and driven sprocket are rotationally arranged on the moving frame, the driving sprocket is in transmission connection with the first motor, the moving frame is connected with the moving drive assembly, the chain is arranged with feeding bin, and the pushing assembly is arranged on the side corresponding to the chain, when the pushing assembly pushes the material out of the feeding bin, the moving drive assembly drives the moving frame to move, so that the feeding bin at the material pushing station remains stationary relative to the pushing assembly, and at this time, the moving speed of the chain and / or the feeding speed of the feeding assembly are reduced, so that the feeding assembly can still continuously send the material into the feeding bin one by one.

[0006] The feeding assembly includes front feeding conveyor belt arranged on both sides, the front feeding conveyor belt passes through corresponding front conveyor pulley, the front conveyor pulley is in transmission connection with corresponding second motor, the discharge end of the front feeding conveyor belt is provided with rear feeding conveyor belt arranged on both sides, the rear feeding conveyor belt passes through corresponding rear conveyor pulley, the rear conveyor pulley is in transmission connection with corresponding third motor, and the discharge end of the rear feeding conveyor belt can be aligned with the feeding bin.

[0007] The moving driving assembly comprises a first synchronous belt, the first synchronous belt passes through a first synchronous pulley, the first synchronous pulley is in transmission connection with the fourth motor, the first synchronous belt is connected with a moving frame, the moving frame is provided with a sliding seat, and the rack is provided with a sliding rail matched with the sliding seat.

[0008] The pushing assembly comprises a second synchronous belt, the second synchronous belt passes through a second synchronous pulley, the second synchronous pulley is in transmission connection with the fifth motor, the second synchronous belt is connected with a pushing frame, the pushing frame is provided with a pushing head arranged in an array, the pushing frame is provided with a sliding seat, and the rack is provided with a sliding rail matched with the sliding seat.

[0009] A docking platform is arranged on one side of the pushing assembly, and the pushing assembly can push the material in the feeding bin to the docking platform.

[0010] The continuous feeding type material transfer mechanism has the advantages that the moving frame is additionally arranged, the chain is driven to move as a whole by controlling the moving frame, the feeding bin at the pushing station remains stationary relative to the pushing assembly during the pushing operation, the feeding speed of the feeding assembly is increased, and the feeding assembly can still continuously feed the materials into the feeding bin one by one, thereby realizing continuous feeding operation and effectively improving the smoothness of the overall operation of the equipment and the production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0011] The utility model discloses the following drawings:

[0012] Figure 1 It is the perspective view of the utility model;

[0013] Figure 2 It is the front view of the utility model;

[0014] Figure 3 It is the side view of the utility model. DETAILED DESCRIPTION

[0015] As shown in the figure, the utility model discloses a continuous feeding formula material transfer mechanism, including feeding subassembly, in this embodiment, feeding subassembly includes the front feeding conveyor belt 2 of two sides cooperation arrangement, and the front feeding conveyor belt 2 passes through corresponding front conveyor belt wheel, and the front conveyor belt wheel is connected with corresponding second motor 1 transmission, and the discharge end of front feeding conveyor belt 2 is provided with the rear feeding conveyor belt 3 of two sides cooperation, and the rear feeding conveyor belt 3 passes through corresponding rear conveyor belt wheel, and the rear conveyor belt wheel is connected with corresponding third motor 4 transmission, and the discharge end of rear feeding conveyor belt 3 can be aligned with feeding bin 5. The chain 6 is arranged at the discharge end of feeding subassembly, and the chain 6 passes through driving sprocket 7 and driven sprocket, and driving sprocket 7 and driven sprocket are rotatably arranged on moving frame 8, and driving sprocket 7 is connected with first motor 12 transmission, and moving frame 8 is connected with mobile drive assembly, and mobile drive assembly includes first synchronous belt 14, and first synchronous belt 14 passes through first synchronous pulley 13, and first synchronous pulley 13 is connected with fourth motor transmission, and first synchronous belt 14 is connected with moving frame 8, and moving frame 8 is provided with sliding seat, and the rack is provided with the slide rail matched with the sliding seat, and by controlling fourth motor, first synchronous belt 14 can be driven to move, and moving frame 8 can be driven to move. The feeding bin 5 is arranged on the chain 6, and the material pushing assembly is arranged on the side corresponding to the chain 6, and in this embodiment, the material pushing assembly includes second synchronous belt 15, and second synchronous belt 15 passes through second synchronous pulley 16, and second synchronous pulley 16 is connected with fifth motor 11 transmission, and second synchronous belt 15 is connected with pushing frame 17, and pushing frame 17 is arranged with pushing head 10, and pushing frame 17 is provided with sliding seat, and the rack is provided with the slide rail matched with the sliding seat, and by controlling fifth motor 11, second synchronous belt 16 can be driven to move, and pushing frame 17 and pushing head 10 can be driven to move to push material. When the material pushing assembly pushes the material from the feeding bin 5, the mobile drive assembly drives moving frame 8 to move, so that the feeding bin at the pushing station remains stationary relative to the material pushing assembly, and at this time, the moving speed of chain 6 is reduced and / or the feeding speed of feeding subassembly is improved, so that feeding subassembly can still continuously feed the material into the feeding bin. Further, the docking platform 9 is arranged on the side corresponding to the material pushing assembly, and the material pushing assembly can push the material in the feeding bin 5 to the docking platform 9, so as to place the pushed material.

[0016] The working principle of the utility model is: material first through both sides of the feeding conveyor 2 cooperation and send in, after again through the rear feeding conveyor 3 cooperation continues to deliver, material from the rear feeding conveyor 3 send out, will enter into the feeding bin 5 in the trend, and with chain 6 drive makes the material send to the push material station, when a certain number of material send to the push material station, and the push head 10 of arrangement and each feeding bin 5 with material alignment, mobile drive assembly drives the movement of the moving frame 8, the moving direction of moving frame 8 and the moving direction of the chain of push material station are opposite, make the feeding bin 5 in the push material station relative push material assembly keep stationary, facilitate push material assembly push the material in the feeding bin 5 to the docking platform 9, and because of the movement of moving frame 8, will cause the moving speed of the feeding bin 5 close to the feeding assembly side to accelerate, at this moment can downlink chain speed or promote the feeding speed of feeding assembly, make feeding assembly still can send material into the feeding bin 5 one by one, and then guarantee continuous feeding operation.

[0017] The utility model discloses this structure, through the additional setting of moving frame, through control moving frame drive chain whole movement, make the push material operation, the feeding bin in the push material station relative push material assembly keep stationary, in order to carry out the push material operation, and the moving speed of chain drops and / or the feeding speed of feeding assembly promotes at this moment, make feeding assembly still can continuously send material into the feeding bin one by one, and then realize continuous feeding operation, effectively promote the fluency of equipment whole operation and production efficiency.

Claims

1. A continuous feed material transfer mechanism comprising a feed assembly, characterised in that: A chain (6) is arranged at the discharge end of the feeding assembly, the chain (6) passes through a driving sprocket (7) and a driven sprocket, the driving sprocket (7) and the driven sprocket are arranged on a moving frame (8), the driving sprocket (7) is in transmission connection with a first motor (12), the moving frame (8) is connected with a moving drive assembly, a feeding bin (5) is arranged on the chain (6), a pushing assembly is arranged at the side corresponding to the chain (6), when the pushing assembly pushes the material out of the feeding bin (5), the moving drive assembly drives the moving frame (8) to move, so that the feeding bin at the pushing station keeps still relative to the pushing assembly, and at this time, the moving speed of the chain (6) is reduced and / or the feeding speed of the feeding assembly is increased, so that the feeding assembly can still continuously feed the material into the feeding bin one by one.

2. The continuous feed mass transfer mechanism of claim 1, wherein The feeding assembly comprises front feeding conveyors (2) arranged at two sides in cooperation, the front feeding conveyors (2) pass through corresponding front conveyor pulleys, the front conveyor pulleys are in transmission connection with corresponding second motors (1), rear feeding conveyors (3) are arranged at two sides in cooperation at the discharge end of the front feeding conveyors (2), the rear feeding conveyors (3) pass through corresponding rear conveyor pulleys, the rear conveyor pulleys are in transmission connection with corresponding third motors (4), and the discharge end of the rear feeding conveyors (3) can be aligned with the feeding bin (5).

3. The continuous feed mass transfer mechanism of claim 1, wherein The moving drive assembly comprises a first synchronous belt (14), the first synchronous belt (14) passes through a first synchronous pulley (13), the first synchronous pulley (13) is in transmission connection with a fourth motor, the first synchronous belt (14) is connected with the moving frame (8), a sliding seat is arranged on the moving frame (8), and a sliding rail matched with the sliding seat is arranged on the rack.

4. The continuous feed mass transfer mechanism of claim 1, wherein The pushing assembly comprises a second synchronous belt (15), the second synchronous belt (15) passes through a second synchronous pulley (16), the second synchronous pulley (16) is in transmission connection with a fifth motor (11), the second synchronous belt (15) is connected with a pushing frame (17), pushing heads (10) are arranged on the pushing frame (17) in an array, a sliding seat is arranged on the pushing frame (17), and a sliding rail matched with the sliding seat is arranged on the rack.

5. The continuous feed mass transfer mechanism of claim 1, wherein A docking platform (9) is arranged at the side corresponding to the pushing assembly, and the pushing assembly can push the material in the feeding bin (5) to the docking platform (9).