Efficient pencil core sticking processing device

Through the design of an efficient pencil lead processing device, the impurities on the surface of the pencil lead are cleaned by using a rotating column and a cleaning block, and the residual impurities are removed by combining a vibration component, which solves the clogging problem of the pencil lead adding device and realizes automatic loading and efficient processing.

CN223355260UActive Publication Date: 2025-09-19ZHEJIANG SONGYUAN STATIONERY
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Patent Information

Application Number
CN202422544448.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-09-19
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

The existing pencil lead adding device is easily blocked during the loading process, which affects efficiency and increases costs, and is labor-intensive.

Method used

An efficient pencil lead gluing processing device was designed, which includes a conveyor frame, a cleaning component and a vibration component. Impurities on the surface of the pencil lead are cleaned by a rotating column and a cleaning block, and residual impurities are removed by a vibrating screen using the vibration component, ensuring that the pencil lead feeding is carried out in an orderly and stable manner.

Benefits of technology

The invention realizes the automatic loading of the pen core, avoids blockage, improves the loading efficiency, reduces the labor intensity, and improves the practicability of the processing device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pencil processing, in particular to an efficient pencil core sticking processing device which comprises a conveying frame body, a fixing shell is arranged on the outer side of the conveying frame body, a hopper is arranged at the top of the fixing shell, a connecting shell is arranged at the bottom of the hopper, and a rotating column is arranged in the connecting shell. A cleaning assembly is arranged below the rotating column and located in the connecting shell, and a vibration assembly is arranged below the cleaning assembly and located in the connecting shell. The cleaning assembly is used for cleaning impurities on the surface of the refill, the cleaning assembly is composed of rotating rods, cleaning blocks and a screen, the multiple sets of rotating rods are rotationally connected to the interior of the connecting shell and located below the rotating column, and the multiple sets of cleaning blocks are located on the outer sides of the rotating rods. The screen is located in the connecting shell and located below the multiple sets of rotating rods. Compared with an existing machining device, the overall practicability of the machining device can be improved through the design.
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Description

Technical Field

[0001] The utility model relates to the technical field of pencil processing, in particular to a high-efficiency pencil lead-bonding processing device. Background Art

[0002] A pencil is a type of pen used for writing and drawing sketches. It has a history of more than 400 years. Among them, pencils for drawing sketches are divided into many types. It has three development stages, including graphite, wooden pen holder, and capped pencil. In addition, its colors include red and white, black and white, yellow and black stripes.

[0003] There are many problems in the pencil lead adding process. For example, some existing pencil lead adding devices may cause blockage between pencil leads during the pencil lead feeding process. In severe cases, the pencil lead may be blocked and broken, which affects the pencil lead feeding efficiency, increases costs, and affects the use. Therefore, it is particularly important to improve the existing processing device and design a new type of pencil lead high-efficiency gluing processing device to solve the above technical defects and improve the practicality of the overall processing device. Utility Model Content

[0004] The purpose of the utility model is to provide an efficient pencil lead gluing processing device to realize the automatic loading process of pencil leads, ensure that the loading is carried out in an orderly and stable manner, avoid pencil lead blockage, and at the same time improve the efficiency of pencil lead loading and reduce labor intensity, so as to solve the problems raised in the above-mentioned background technology.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A highly efficient pencil lead gluing device includes a conveyor frame body, a fixed shell disposed on the outside of the conveyor frame body, a hopper disposed on the top of the fixed shell, a connecting shell disposed at the bottom of the hopper, a rotating column disposed inside the connecting shell, a cleaning assembly disposed below the rotating column and located inside the connecting shell, and a vibrating assembly disposed below the cleaning assembly and located inside the connecting shell;

[0007] The cleaning assembly is used to clean impurities on the surface of the pen core, and the cleaning assembly consists of a rotating rod, a cleaning block and a screen. Multiple groups of the rotating rods are rotatably connected to the inside of the connecting shell and are located below the rotating column. Multiple groups of the cleaning blocks are located on the outside of the rotating rods. The screen is located inside the connecting shell and below the multiple groups of rotating rods.

[0008] The vibration component is used to perform vibration treatment on the screen.

[0009] As a preferred solution of the present invention, a rotation groove is provided inside the connecting shell and outside the rotation rod, and the internal structure size of the rotation groove is designed to correspond to the external structure size of the rotation rod.

[0010] As a preferred solution of the present invention, multiple groups of cleaning blocks are distributed at equal intervals on the outside of the rotating rod, and the cleaning blocks are connected to the rotating groove through the rotating rod.

[0011] As a preferred solution of the present invention, multiple groups of placement grooves are opened on the outer side of the rotating column, the placement grooves are designed in a semicircular structure, and the multiple groups of placement grooves are distributed at equal intervals on the outer side of the rotating column.

[0012] As a preferred solution of the present invention, a movable groove is provided inside the connecting shell and on the outside of the screen, a guide block is slidably connected inside the movable groove, and two sets of driving ends of telescopic cylinders are fixedly connected to the outside of the guide block and on the outside of the connecting shell, and a through groove is provided at one end of the connecting shell close to the movable groove.

[0013] As a preferred solution of the present invention, the vibration assembly consists of a transmission rod, a transmission block and a driving block. Multiple groups of the transmission rods are located inside the connecting shell and below the screen. The transmission block is rotatably connected to the outside of the transmission rod and close to one end of the screen. The driving block is rotatably connected to the end of the transmission rod away from the transmission block.

[0014] As a preferred solution of the present invention, the transmission block is slidably connected to the connecting shell, multiple groups of drive blocks are connected to each other, a drive motor is provided inside the connecting shell and close to one end of the drive block, the drive end of the drive motor is fixedly connected to the drive block, and multiple groups of compression springs are provided on the top of the screen.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] 1. In the utility model, the cleaning component is designed to cooperate with the rotating column, and the pen core is introduced into the interior of the connecting shell through the hopper, so that the pen core is moved into the interior of the placement groove. The rotation of the rotating column drives the placement groove to move, so that the pen core can be moved between the multiple groups of rotating rods. When the pen core is introduced into the interior of the connecting shell and contacts the rotating block, the cleaning block can contact the pen core. Due to the weight of the pen core itself, it falls downward, causing the cleaning block to move, driving the rotating rod to rotate, so that the remaining cleaning blocks are moved and contact the pen core. The design of multiple groups of rotating rods and multiple groups of cleaning blocks makes it possible to clean impurities on the surface of the pen core, prevent impurities on the surface of the pen core from accumulating and clogging, affecting the efficiency of the pen core feeding, and prevent affecting the installation of the pen core, thereby realizing the automatic feeding process of the pen core, ensuring that the feeding is carried out in an orderly and stable manner, avoiding the blockage of the pencil core, and at the same time improving the efficiency of the pen core feeding and reducing the labor intensity.

[0017] 2. In the present invention, through the design of the vibration component, when the pen core falls on the top of the screen, the vibration component drives the screen to vibrate, so that the pen core rotates, and the impurities remaining on the surface are shaken down, and further cleaned. At the same time, the cleaned impurities can be guided down from the top of the screen and introduced into the bottom end of the connecting shell for collection. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0019] Figure 2 This is a schematic diagram of the connection shell structure of the utility model;

[0020] Figure 3 This is a schematic diagram of the internal structure of the connecting shell of the utility model;

[0021] Figure 4 This is a schematic diagram of the cleaning component structure of the utility model;

[0022] Figure 5 This is a schematic diagram of the structure of the vibration component of the utility model.

[0023] In the figure: 1. Conveyor frame body; 2. Fixed shell; 3. Hopper; 4. Connecting shell; 5. Rotating column; 6. Cleaning assembly; 7. Vibrating assembly; 8. Rotating rod; 9. Cleaning block; 10. Screen; 11. Rotating trough; 12. Placement trough; 13. Moving trough; 14. Guide block; 15. Through slot; 16. Transmission rod; 17. Transmission block; 18. Drive block; 19. Compression spring. DETAILED DESCRIPTION

[0024] The following will combine the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0025] Example:

[0026] See also Figure 1-Figure 5 , the utility model provides a technical solution:

[0027] The invention relates to an efficient pencil lead gluing device, comprising a conveyor frame body 1, a fixed shell 2 being provided on the outside of the conveyor frame body 1, a hopper 3 being provided on the top of the fixed shell 2, a connecting shell 4 being provided on the bottom of the hopper 3, a rotating column 5 being provided inside the connecting shell 4, a cleaning assembly 6 being provided below the rotating column 5 and inside the connecting shell 4, and a vibrating assembly 7 being provided below the cleaning assembly 6 and inside the connecting shell 4;

[0028] The cleaning assembly 6 is used to clean impurities on the surface of the refill, and the cleaning assembly 6 consists of a rotating rod 8, a cleaning block 9 and a screen 10. The multiple sets of rotating rods 8 are rotatably connected to the inside of the connecting shell 4 and are located below the rotating column 5. The multiple sets of cleaning blocks 9 are located on the outside of the rotating rods 8. The screen 10 is located inside the connecting shell 4 and below the multiple sets of rotating rods 8.

[0029] The vibration assembly 7 is used to vibrate the screen 10 .

[0030] Furthermore, a rotation groove 11 is opened inside the connecting shell 4 and on the outside of the rotating rod 8. The internal structure and size of the rotation groove 11 are designed to correspond to the external structure and size of the rotating rod 8. The rotating rod 8 is rotatably connected to the rotation groove 11, so that the rotating rod 8 can rotate, and when the pen core is introduced into the interior of the connecting shell 4, it can contact the pen core through the rotation groove 11 and the rotating rod 8.

[0031] Among them, multiple groups of cleaning blocks 9 are distributed at equal intervals on the outside of the rotating rod 8, and the cleaning blocks 9 are connected to the rotating groove 11 through the rotating rod 8. When the pen core is introduced into the interior of the connecting shell 4 and contacts the rotating block, the cleaning block 9 can contact the pen core. Due to the weight of the pen core itself, it falls downward, causing the cleaning block 9 to displace, driving the rotating rod 8 to rotate, so that the remaining cleaning blocks 9 are displaced and contact the pen core. Through the design of multiple groups of rotating rods 8 and multiple groups of cleaning blocks 9, impurities on the surface of the pen core can be cleaned, preventing impurities on the surface of the pen core from accumulating and clogging, affecting the pen core feeding efficiency, and preventing the installation of the pen core from being affected.

[0032] Secondly, multiple groups of placement grooves 12 are opened on the outside of the rotating column 5. The placement grooves 12 are designed in a semicircular structure, and the multiple groups of placement grooves 12 are evenly spaced on the outside of the rotating column 5. The driving end of the servo motor is fixedly connected to the outside of the rotating column 5. The servo motor is started to drive the rotating column 5 to rotate, and the pen refill is placed inside the hopper 3. The pen refill is introduced into the interior of the connecting shell 4 through the hopper 3, so that the pen refill is moved to the inside of the placement groove 12. The rotation of the rotating column 5 drives the placement groove 12 to move, so that the pen refill can be moved between the multiple groups of rotating rods 8.

[0033] Furthermore, a movable groove 13 is provided inside the connecting shell 4 and on the outside of the screen 10, and a guide block 14 is slidably connected inside the movable groove 13. The outside of the guide block 14 and the outside of the connecting shell 4 are fixedly connected with the driving ends of two groups of telescopic cylinders. A through groove 15 is provided at one end of the connecting shell 4 close to the movable groove 13. When the pencil lead falls on the top of the screen 10 after being cleaned by multiple groups of cleaning blocks 9, the telescopic cylinder is started to drive the guide block 14 to move. The guide block 14 allows the pencil lead to be moved to the inside of the through groove 15, and the through groove 15 allows the pencil lead to be moved to the top of the conveyor body 1, and the pencil board is placed on the top of the conveyor body 1. The pencil board is displaced to the bottom of the through groove 15 through the conveyor body 1, so that the pencil lead can fall into the inside of the pencil board, completing the core sticking process.

[0034] Furthermore, the vibration assembly 7 is composed of a transmission rod 16, a transmission block 17 and a driving block 18. Multiple groups of transmission rods 16 are located inside the connecting shell 4 and below the screen 10. The transmission block 17 is rotatably connected to the outside of the transmission rod 16 and close to one end of the screen 10. The driving block 18 is rotatably connected to the end of the transmission rod 16 away from the transmission block 17. When the pen core falls on the top of the screen 10, the screen 10 is driven to vibrate through the vibration assembly 7, so that the pen core rotates, and the impurities remaining on the surface are shaken and further cleaned. At the same time, the cleaned impurities can be guided down from the top of the screen 10 and introduced into the bottom end of the connecting shell 4 for collection.

[0035] Furthermore, the transmission block 17 is slidably connected to the connecting shell 4, and multiple groups of drive blocks 18 are connected to each other. A drive motor is provided inside the connecting shell 4 and at one end close to the drive block 18. The drive end of the drive motor is fixedly connected to the drive block 18. Multiple groups of compression springs 19 are provided on the top of the screen 10. The drive motor is started to drive the drive block 18 to rotate. The rotation of one group of drive blocks 18 causes the remaining drive blocks 18 to rotate, driving multiple groups of transmission rods 16 to move, so that the transmission blocks 17 can move in sequence, impact the screen 10, and cooperate with the compression springs 19 to enable the screen 10 to shake.

[0036] The pencil board is placed on the top of the conveyor body 1, and the pencil board is moved to the bottom of the through slot 15 by the conveyor body 1, and the servo motor is started to drive the rotating column 5 to rotate, and the pen core is placed in the hopper 3, and the pen core is introduced into the interior of the connecting shell 4 through the hopper 3, so that the pen core is moved to the interior of the placement slot 12. The rotation of the rotating column 5 drives the placement slot 12 to move, so that the pen core can be moved between the multiple groups of rotating rods 8. When the pen core is introduced into the interior of the connecting shell 4 and contacts the rotating block, the cleaning block 9 can contact the pen core. Due to the weight of the pen core itself, it falls downward, causing the cleaning block 9 to move, driving the rotating rod 8 to rotate, thereby causing the remaining cleaning blocks 9 to move and contact the pen core. The design of the multiple groups of rotating rods 8 and the multiple groups of cleaning blocks 9 makes it possible to clean the impurities on the surface of the pen core, prevent the accumulation of impurities on the surface of the pen core from clogging, affecting the efficiency of the pen core feeding, and preventing the refill from being affected. Installation, when the pen core falls on the top of the screen 10, the driving motor is started, driving the driving block 18 to rotate, the rotation of one group of driving blocks 18 makes the other driving blocks 18 rotate, driving multiple groups of transmission rods 16 to move, so that the transmission blocks 17 can be displaced in sequence, impacting the screen 10, and cooperating with the compression spring 19 to make the screen 10 shake, so that the pen core rotates, and the impurities remaining on the surface are shaken, and further cleaned. At the same time, the cleaned impurities can be guided down from the top of the screen 10 and introduced into the bottom end of the connecting shell 4 for collection, and the telescopic cylinder is started to drive the guide block 14 to move, and the pen core can be displaced to the inside of the through groove 15 through the guide block 14. The pen core can be displaced to the top of the conveyor body 1 through the through groove 15, so that the pen core can fall into the interior of the pencil board, completing the core sticking process. Compared with the existing processing device, the utility model can improve the overall practicality of the processing device through design.

[0037] Although the 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A pencil high-efficiency lead-bonding processing device, comprising a conveyor frame body (1), characterized in that: A fixed shell (2) is provided on the outside of the conveying frame body (1), a hopper (3) is provided on the top of the fixed shell (2), a connecting shell (4) is provided on the bottom of the hopper (3), a rotating column (5) is provided inside the connecting shell (4), a cleaning component (6) is provided below the rotating column (5) and inside the connecting shell (4), and a vibration component (7) is provided below the cleaning component (6) and inside the connecting shell (4); The cleaning assembly (6) is used to clean impurities on the surface of the pen core, and the cleaning assembly (6) is composed of a rotating rod (8), a cleaning block (9) and a screen (10), multiple groups of the rotating rods (8) are rotatably connected to the inside of the connecting shell (4) and are located below the rotating column (5), multiple groups of the cleaning blocks (9) are located outside the rotating rods (8), and the screen (10) is located inside the connecting shell (4) and below the multiple groups of rotating rods (8); The vibration component (7) is used to perform vibration treatment on the screen (10).

2. The high-efficiency pencil lead gluing device according to claim 1, characterized in that: A rotation groove (11) is provided inside the connecting shell (4) and outside the rotation rod (8). The internal structure and size of the rotation groove (11) are designed to correspond to the external structure and size of the rotation rod (8).

3. The high-efficiency pencil lead gluing device according to claim 2, characterized in that: A plurality of groups of cleaning blocks (9) are distributed at equal intervals on the outside of the rotating rod (8), and the cleaning blocks (9) are connected to the rotating groove (11) through the rotating rod (8).

4. The high-efficiency pencil lead gluing device according to claim 1, characterized in that: The outer side of the rotating column (5) is provided with a plurality of placement grooves (12), the placement grooves (12) are designed in a semicircular structure, and the plurality of placement grooves (12) are distributed at equal intervals on the outer side of the rotating column (5).

5. The high-efficiency pencil lead gluing device according to claim 1, characterized in that: A movable groove (13) is provided inside the connecting shell (4) and outside the screen (10); a guide block (14) is slidably connected inside the movable groove (13); two sets of driving ends of telescopic cylinders are fixedly connected outside the guide block (14) and outside the connecting shell (4); and a through groove (15) is provided at one end of the connecting shell (4) close to the movable groove (13).

6. The high-efficiency pencil lead gluing device according to claim 1, characterized in that: The vibration assembly (7) is composed of a transmission rod (16), a transmission block (17) and a driving block (18). Multiple groups of the transmission rods (16) are located inside the connecting shell (4) and below the screen (10). The transmission block (17) is rotatably connected to the outside of the transmission rod (16) and one end close to the screen (10). The driving block (18) is rotatably connected to the end of the transmission rod (16) away from the transmission block (17).

7. The high-efficiency pencil lead gluing device according to claim 6, characterized in that: The transmission block (17) is slidably connected to the connecting shell (4), and multiple groups of the driving blocks (18) are connected to each other. A driving motor is provided inside the connecting shell (4) and at one end close to the driving block (18). The driving end of the driving motor is fixedly connected to the driving block (18). Multiple groups of compression springs (19) are provided on the top of the screen (10).