Paste making machine for recycling carton processing

By designing a detachable stirring shaft structure, the problem of the stirring shaft being difficult to clean thoroughly is solved, achieving efficient cleaning and simplified operation, and improving the production efficiency of the paste-making machine.

CN224141950UActive Publication Date: 2026-04-21ANHUI TAIHANG PACKAGING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI TAIHANG PACKAGING CO LTD
Filing Date
2025-02-20
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The stirring shaft in existing paste-making machines is difficult to clean thoroughly, resulting in low cleaning efficiency and affecting production efficiency.

Method used

The design incorporates a detachable stirring shaft structure, which, through components such as mounting brackets and pins, allows the stirring shaft to be detachably installed in the vessel body. During cleaning, it first undergoes self-cleaning and then is washed separately, simplifying the operation process.

Benefits of technology

It improves the cleaning effect of the agitator shaft, shortens the cleaning time, and increases production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224141950U_ABST
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Abstract

The utility model discloses a paste making machine for recycling paper box processing, and relates to the field of paste making machines, the paste making machine for recycling paper box processing comprises a kettle body, a motor is fixed at the center of the bottom surface of the kettle body, a rotating shaft is fixed at the output end of the motor, and the rotating shaft is rotatably connected with the kettle body through a bearing; according to the paste making machine for recycling carton processing, by arranging the mounting frame, the bolt rod, the grip and other structures, detachable mounting of the stirring shaft in the middle of the kettle body is achieved. During cleaning, the stirring shaft rotates to self-clean the inner wall of the kettle body, and then the stirring shaft is detached to be washed independently, so that compared with the traditional mode of guaranteeing the cleaning of the stirring shaft by prolonging the cleaning time, the cleaning effect is better, and the consumed time is shorter. Besides, the mounting rack and the stirring shaft are moved up and down by holding the grip, so that the mounting rack and the kettle body can be disassembled or assembled synchronously, the unlocking and locking of the bolt rod do not need to be operated independently, the operation steps are greatly reduced, and the disassembly and assembly process is more convenient and quicker.
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Description

Technical Field

[0001] This utility model relates to the field of glue-making machines, and in particular to a glue-making machine for recycling paper boxes. Background Technology

[0002] Recyclable cardboard boxes need to have a layer of paper pasted on the outer wall with glue, and glue applied to the corners on the inside of the box to increase its strength.

[0003] For the paste used in cardboard box gluing, the existing technology uses a paste-making system. The main part of the paste-making system is a mixing device. The raw materials for making paste are put into a mixing tank and stirred to ensure that the raw materials are mixed evenly to obtain the final product. However, the required paste ratio varies for different batches of cardboard boxes. Therefore, the mixing tank needs to be cleaned before preparing different batches of paste. The existing technology uses cleaning water to fill the mixing tank and the tank automatically stirs for self-cleaning. However, due to the high viscosity of the paste and the unusual shape of the mixing shaft, the paste is extremely difficult to clean off the mixing shaft. Therefore, it is necessary to extend the self-cleaning time to achieve the desired cleaning effect, which greatly reduces the cleaning efficiency. Utility Model Content

[0004] To overcome the shortcomings of existing technologies, the purpose of this utility model is to provide a paste-making machine for recycling paper boxes, which solves the problem of cleaning the stirring shaft in the prior art by setting the stirring shaft and the kettle body to be detachable.

[0005] To address the problems in the existing technology, the technical solution of this utility model is as follows:

[0006] A paste-making machine for recycling paper boxes includes a vessel body, and a rotating component is fixed to the bottom surface of the vessel body.

[0007] A mounting bracket is inserted into the top surface of the vessel body, and mounting seats are symmetrically fixed on the outer wall of the upper end of the vessel body. A cavity is formed on the side of the top surface of the two mounting seats that are close to each other. The two ends of the mounting bracket are respectively inserted into the two cavities. The inner wall of the upper end of the cavity is chamfered. A stirring shaft is rotatably connected to the middle of the mounting bracket through a bearing. The lower end of the stirring shaft is inserted into the output end of the rotating component. A snap-fit ​​component connecting the mounting bracket and the vessel body is installed on the mounting bracket.

[0008] Preferably, the rotating assembly includes a motor fixed at the center of the bottom surface of the vessel body, a rotating shaft fixed at the output end of the motor, the rotating shaft being rotatably connected to the vessel body through a bearing, the upper end of the rotating shaft extending through the vessel body to the inner side of the vessel body, a insertion groove being formed on the top surface of the rotating shaft, and an insertion part being formed at the bottom of the stirring shaft, the insertion part being inserted into the insertion groove, the cross-sections of the insertion part and the insertion groove being the same regular polygon, and the cross-sections of the insertion part and the insertion groove being the same regular hexagon.

[0009] Preferably, the buckle assembly includes sliding frames symmetrically slidably connected to both ends of the mounting frame. Each of the two sliding frames has a pin fixed on one side away from each other. The two pins are located inside the through grooves at the middle positions of both ends of the mounting frame. Each of the two cavities has a slot in the middle of the inner wall on the side away from each other, and the pins engage with the slots.

[0010] The top surface of the mounting bracket is symmetrically fixed with a sliding sleeve, and a sliding rod is slidably connected to the inner wall of the sliding sleeve. A handle is fixed to the top of the two sliding rods. A spring is provided inside the sliding sleeve, with one end of the spring fixed to the top surface of the mounting bracket and the other end fixed to the bottom of the sliding rod.

[0011] The handle has two diagonal pull bars that are symmetrically rotatably connected at both ends by a pivot pin. The end of the diagonal pull bar away from the handle is rotatably connected to the outer wall of the sliding frame by a pivot pin.

[0012] Compared with the prior art, the advantages of this utility model are as follows:

[0013] 1. This utility model, by setting up a mounting bracket and a pin rod, allows the stirring shaft to be detachably installed in the middle of the vessel body. During the cleaning process, the stirring shaft can be rotated first to self-clean the inner wall of the vessel. After a certain degree of cleaning, the stirring shaft can be disassembled for separate rinsing. Compared with traditional technology, which extends the cleaning time to ensure the stirring shaft is cleaned, disassembling the stirring shaft for separate cleaning can improve the cleaning effect and save cleaning time.

[0014] 2. The mounting bracket and handle provided by this utility model allow for simultaneous disassembly of the mounting bracket and the vessel body during the stroke of lifting the mounting bracket and stirring shaft while holding the handle. Similarly, installation can be completed simultaneously during the stroke of the stirring shaft below the handle. This eliminates the need for separate operation of unlocking and locking the pin rod, reducing operation steps and making the disassembly and assembly process more convenient and faster. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the cavity structure of this utility model;

[0017] Figure 3 This is a schematic diagram of the grip structure of this utility model;

[0018] Figure 4 This is a schematic diagram showing the position of the spring in this utility model;

[0019] Figure 5 This is a schematic diagram of the pivot position of this utility model;

[0020] Figure 6 This is a schematic diagram of the plug slot structure of this utility model.

[0021] Reference numerals: 1. Vessel body; 2. Motor; 3. Rotating shaft; 4. Mounting base; 401. Cavity; 5. Mounting bracket; 501. Inside the through groove; 6. Stirring shaft; 7. Insertion groove; 8. Insertion part; 9. Sliding frame; 10. Pin rod; 11. Slot; 12. Sliding sleeve; 13. Sliding rod; 14. Handle; 15. Spring; 16. Diagonal tie rod. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0023] Please see Figures 1 to 6 This embodiment provides a paste-making machine for recycling paper boxes, including a vessel body 1. A motor 2 is fixed at the center of the bottom surface of the vessel body 1. A rotating shaft 3 is fixed at the output end of the motor 2. The rotating shaft 3 is rotatably connected to the vessel body 1 through a bearing. The upper end of the rotating shaft 3 extends through the vessel body 1 to the inner side of the vessel body 1. The motor 2 drives the rotating shaft 3 to rotate.

[0024] In this embodiment, mounting bases 4 are symmetrically fixed on the outer wall of the upper end of the vessel body 1. A cavity 401 is formed on the side of the top surface of the two mounting bases 4 that are close to each other. A chamfer is opened on the inner wall of the upper end of the cavity 401. Mounting brackets 5 are inserted into the two cavities 401. A stirring shaft 6 is rotatably connected to the middle of the mounting bracket 5 through a bearing. The stirring shaft 6 is inserted into the vessel body 1.

[0025] In this embodiment, the top surface of the rotating shaft 3 is provided with a insertion groove 7, and the bottom of the stirring shaft 6 is provided with an insertion part 8. The insertion part 8 is inserted into the insertion groove 7, and the cross-sections of the insertion part 8 and the insertion groove 7 are both hexagonal.

[0026] In this embodiment, the rotating shaft 3 is driven to rotate, which in turn drives the stirring shaft 6 at its top to rotate synchronously. Since the mounting bracket 5 is inserted into the two mounting seats 4, the mounting bracket 5 is stable in the horizontal direction and will not rotate along with it, thereby allowing the stirring shaft 6 to rotate and perform stable stirring work.

[0027] When it is necessary to clean the stirring shaft 6, the stirring shaft 6 can be removed from the vessel body 1 by pulling the mounting bracket 5 upwards, thus completing the disassembly work. Then, the stirring shaft 6 can be cleaned independently and meticulously.

[0028] During installation, the stirring shaft 6 is placed inside the vessel body 1, and the two ends of the mounting bracket 5 are aligned with the two cavities 401 and inserted. The chamfer of the cavity 401 facilitates the insertion of the two ends of the mounting bracket 5. During the insertion process, the insertion part 8 at the lower end of the stirring shaft 6 is inserted into the insertion groove 7, so that the rotating shaft 3 is connected to the stirring shaft 6.

[0029] In this embodiment, the mounting frame 5 is symmetrically slidably connected to sliding frames 9 at both ends. Each of the two sliding frames 9 is fixed with a pin 10 on the opposite side. The two pins 10 are respectively located in the through grooves 501 at the middle position of both ends of the mounting frame 5. The inner wall of the opposite side of the two cavities 401 is provided with a slot 11, and the pin 10 is engaged with the slot 11.

[0030] In this embodiment, a sliding sleeve 12 is symmetrically fixed on the top surface of the mounting bracket 5, and a sliding rod 13 is slidably connected to the inner wall of the sliding sleeve 12. A handle 14 is fixed on the top of the two sliding rods 13, and a spring 15 is provided on the inner side of the sliding sleeve 12. One end of the spring 15 is fixed to the top surface of the mounting bracket 5, and the other end is fixed to the bottom of the sliding rod 13.

[0031] Two diagonal pull bars 16 are symmetrically connected at both ends of the grip 14 via a pivot pin. The end of the diagonal pull bar 16 away from the grip 14 is rotatably connected to the outer wall of the sliding frame 9 via a pivot pin.

[0032] Both installing and removing the stirring shaft 6 require holding the handle 14. When removing the stirring shaft 6, hold the handle 14 and lift it. The handle 14 pulls the diagonal bars 16 on both sides, causing the sliding frames 9 on both sides to move closer together. This pulls the two pins 10 on both sides closer together and away from the slots 11 until the two sliding frames 9 on both sides are pressed against the walls of the two through slots 501 at both ends and cannot move closer. This releases the connection between the mounting bracket 5 and the vessel body 1. Then, continue to pull the handle 14 to lift and remove the mounting bracket 5.

[0033] During installation, hold the handle 14 to pull the mounting bracket 5. At this time, the two sliding frames 9 are also in the state of pressing against the wall of the through groove 501. After inserting the mounting bracket 5 into the cavity 401, release the handle 14. Under the action of the spring 15, pull the handle 14 down and push the two pin rods 10 on both sides into the slots 11 at both ends to complete the snap-fit ​​work.

[0034] In summary, this utility model, through the installation of the mounting bracket 5, the pin rod 10, and the handle 14, enables the detachable installation of the stirring shaft 6 in the middle of the vessel body 1. During cleaning, the stirring shaft 6 is first rotated to self-clean the inner wall of the vessel body 1, and then the stirring shaft 6 is disassembled and rinsed separately. Compared with the traditional method of extending the cleaning time to ensure the cleaning of the stirring shaft 6, this method achieves better cleaning results and takes less time. Furthermore, by holding the handle 14 and moving the mounting bracket 5 and the stirring shaft 6 up and down, the mounting bracket 5 and the vessel body 1 can be disassembled or installed simultaneously without the need to separately operate the pin rod 10 to unlock and lock, greatly reducing the number of steps and making the disassembly and assembly process more convenient and faster.

[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A recycling paper box processing paste preparation machine comprising a kettle body, characterized in that, A rotating component is fixed to the bottom surface of the vessel body; A mounting bracket is inserted into the top surface of the vessel body. A stirring shaft is rotatably connected to the middle of the mounting bracket via a bearing. The lower end of the stirring shaft is inserted into the output end of the rotating component. A snap-fit ​​assembly connecting the mounting bracket and the vessel body is installed on the mounting bracket.

2. The recycling paper box processing paste preparation machine according to claim 1, characterized in that, The rotating assembly includes a motor fixed at the center of the bottom surface of the vessel body. The output end of the motor is fixed with a rotating shaft, which is rotatably connected to the vessel body through a bearing. The upper end of the rotating shaft extends through the vessel body to the inner side of the vessel body.

3. The recycling paper box processing paste preparation machine according to claim 2, characterized in that, The top surface of the rotating shaft is provided with a insertion groove, and the bottom of the stirring shaft is formed with an insertion part. The insertion part is inserted into the insertion groove, and the cross-sections of the insertion part and the insertion groove are both arranged in the same regular polygonal shape.

4. The recycling paper box processing paste making machine according to claim 3, characterized in that, Both the plug-in portion and the plug-in slot have a cross-section that is a regular hexagon.

5. The recycling paper box processing paste making machine according to claim 1, characterized in that, The upper outer wall of the vessel body is symmetrically fixed with mounting bases. The top surfaces of the two mounting bases that are close to each other are formed with cavities. The two ends of the mounting bracket are respectively inserted into the two cavities.

6. The recycling paper box processing paste making machine according to claim 5, characterized in that, The upper inner wall of the cavity is chamfered.

7. The recycling paper box processing paste making machine according to claim 5, characterized in that, The buckle assembly includes sliding frames symmetrically slidably connected to both ends of the mounting frame. Each of the two sliding frames is fixed with a pin on one side away from each other. The two pins are located inside the through grooves at the middle positions of both ends of the mounting frame. Each of the two cavities has a slot in the middle of the inner wall on the side away from each other, and the pins are engaged with the slots. The top surface of the mounting bracket is symmetrically fixed with a sliding sleeve, and a sliding rod is slidably connected to the inner wall of the sliding sleeve. A handle is fixed to the top of the two sliding rods. A spring is provided inside the sliding sleeve, with one end of the spring fixed to the top surface of the mounting bracket and the other end fixed to the bottom of the sliding rod. The handle has two diagonal pull bars that are symmetrically rotatably connected at both ends by a pivot pin. The end of the diagonal pull bar away from the handle is rotatably connected to the outer wall of the sliding frame by a pivot pin.