Convenient chip removal type binding machine
By integrating components such as guides, gatherers, and sensors into the binding machine, the problems of waste scattering and difficult cleaning and maintenance have been solved, achieving efficient waste collection and stable equipment operation, thus improving user experience and work efficiency.
Patent Information
- Application Number
- CN202520206513.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-10
AI Technical Summary
Existing binding machines still need improvement in punching and chip removal, resulting in waste spillage, difficulty in cleaning and maintenance, and the risk of mechanical failure.
A convenient chip-removing binding machine was designed, which adopts an inclined arrangement of the material guide and material collection components and integrates a chip removal module, including a material guide support plate, a dust collection component and a slag discharge component, to ensure orderly collection and efficient management of waste materials. Combined with sensors and central control components, it prevents over-limiting and improves the stability and reliability of the equipment.
It enables efficient management and orderly collection of waste, reduces cleaning and maintenance workload, lowers the risk of mechanical failure, improves equipment stability and user experience, optimizes workspace, and reduces environmental pollution.
Smart Images

Figure CN223790599U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of binding machine technology, and in particular discloses a convenient chip-discharging binding machine. Background Technology
[0002] A binding machine is a mechanical device (manual, automatic, or fully automatic) that uses binding staples, hot melt adhesive, nylon tubing, or other materials to bind paper, plastic, leather, etc. Depending on their application, they can be divided into industrial binding machines and consumer binding machines, commonly used in printing plants, corporate finance offices, and archives management. Currently, binding machines with cutters on the market still need improvement in their punching and chip removal efficiency; therefore, a convenient chip-removal binding machine is proposed. Utility Model Content
[0003] In order to overcome the shortcomings and deficiencies of the existing technology, the purpose of this utility model is to provide a convenient chip-discharging binding machine.
[0004] To achieve the above objectives, this utility model provides a convenient chip-removing binding machine, including a binding host and a chip removal module mounted on the binding host. The chip removal module includes a material gathering component mounted at the lower end of the binding host and a material guide component rotatably mounted at the upper end of the binding host. The upper end of the material guide component is rotatably engaged with the binding host, and the lower end of the material guide component abuts against the material gathering component. The material guide component is inclined and used to guide waste material to the material gathering component.
[0005] Preferably, the material guide has a main material guide and multiple material guide supports mounted on the main material guide. The multiple material guide supports are used to cooperate with multiple punching modules on the binding host. The waste discharged from the multiple punching modules flows to the main material guide via the multiple material guide supports, and is then guided to the material collection component by the main material guide. This can accurately cooperate with the multiple punching modules on the binding host, ensuring that the waste generated by each punching module can be effectively collected and guided. The multiple material guide supports correspond to multiple punching modules, converging the waste from various sources to the main material guide, and then guiding it to the material collection component. This not only improves the waste collection efficiency, but also avoids the cross-scattering of waste in the working area, further reducing the workload of cleaning and maintenance.
[0006] Preferably, the material collection component has an inclined plate and a conical cylinder disposed at the lower end of the inclined plate. The lower end of the material guide component is used to abut against the end of the inclined plate away from the conical cylinder. Waste material from the material guide component is guided by the inclined plate and collected in the conical cylinder into the external collection bucket. This ensures that the waste material discharged by the material guide component slides smoothly onto the inclined plate and is effectively guided along the direction of the inclined plate. The design of the inclined plate not only increases the smoothness of the waste sliding, but also allows the waste material to flow to the conical cylinder. The setting of the conical cylinder further collects the waste material and guides it into the external collection bucket, which not only improves the waste collection efficiency, but also facilitates the user to clean and dispose of the waste material regularly.
[0007] Preferably, a third plate is provided on the first plate, and the reverse thrust module also includes a fourth plate. The punch is provided on the fourth plate, and the second drive unit is provided on the third plate, driving the punch to reciprocate via the fourth plate. The third plate is also provided with two second columns. The fourth plate is slidably mounted on the second columns, ensuring the stability and guidance of the punch during reciprocating motion. The sliding arrangement of the fourth plate on the two second columns forms a stable sliding track, making the movement of the punch smoother and more accurate, reducing shaking and deviation during movement. This not only improves the accuracy of punching and chip removal but also extends the service life of the equipment, reducing malfunctions and damage caused by unstable movement. At the same time, this design also facilitates the adjustment and maintenance of the position and movement trajectory of the punch, improving the flexibility and maintainability of the equipment.
[0008] Preferably, the chip removal module also includes a hollow dust collection component with a locking mechanism. The dust collection component is connected to the punch component via the locking mechanism, and the dust collection component and the punch component are in communication. The dust collection component is also equipped with a slag discharge component, through which internal materials are discharged, improving the efficiency of chip collection and discharge during the binding process. The communication design between the dust collection component and the punch component allows chips generated during punching to be directly passed into the dust collection component, avoiding chip scattering and contamination of the work area. The locking mechanism ensures a tight connection between the dust collection component and the punch component, preventing chip leakage. The slag discharge component facilitates the discharge of chips accumulated inside the dust collection component, maintaining the cleanliness and efficient operation of the equipment. This not only improves the environmental hygiene of the binding operation but also reduces the risk of equipment failure due to chip accumulation, improving overall work efficiency and user experience.
[0009] Preferably, a second plate is provided on the dust collection component to limit multiple dust collection components. A first plate is provided on the second plate, and a second plate is also provided on the first plate. The first plate is slidably disposed on the second plate. A first driving component is disposed on the first plate to drive the first plate to move up and down. By limiting multiple dust collection components through the second plate, the stability and consistency of the dust collection components during arrangement and use are ensured, making the binding operation more efficient and convenient. At the same time, the frequency and difficulty of manual intervention are reduced, and the overall work efficiency and user experience are improved.
[0010] Preferably, the first plate is further provided with a first column, and at least two first columns are provided. The second plate is slidably disposed on the first column. The sliding support of the second plate by the at least two first columns forms a stable sliding track, which ensures the stability and accuracy of the second plate and the dust collection components installed on it during the movement process. This not only improves the overall stability of the dust collection system, but also reduces the risk of debris leakage or equipment damage caused by unstable movement.
[0011] Preferably, the first plate is provided with a material gathering component, and the second plate is provided with a material guide component that works in conjunction with the slag discharge component and the material gathering component. The material guide component is used to guide the waste discharged by the slag discharge component into the material gathering component. Through the close cooperation between the material guide component and the slag discharge component, and the receiving function of the material gathering component, a smooth waste discharge channel is formed, which ensures that the waste generated during the punching process can be discharged in a timely and accurate manner, avoids the accumulation and pollution of waste in the working area, simplifies the waste handling operation steps, reduces the frequency and difficulty of manual cleaning, and improves the overall work efficiency and the convenience of equipment maintenance.
[0012] Preferably, the pressing module includes a pressing plate movably disposed relative to the first plate and a third driving component for driving the pressing plate. The third driving component is disposed on the first plate to drive the pressing plate closer to or away from the external material to be bound. Through the driving action of the third driving component, the pressing plate can accurately move closer to or away from the material to be bound according to the needs of the binding operation, thereby ensuring that the material can maintain a flat and stable state during the binding process, avoiding binding errors caused by material movement or misalignment, and improving the automation and flexibility of the binding operation. It can be adjusted according to different materials and binding requirements, making the binding effect more accurate and beautiful.
[0013] Preferably, the pressure plate has clearance holes for the passage of punches, and a third column is also provided on the pressure plate. The third column is slidably disposed with the first plate. The clearance holes allow the punches to pass smoothly through the pressure plate during the punching process without obstruction, thus ensuring the accuracy and efficiency of binding. The sliding arrangement of the third column with the first plate provides a stable sliding track for the pressure plate, allowing it to remain stable and wobble-free as it approaches or moves away from the material to be bound. This not only improves the stability and reliability of the binding operation, but also reduces the risk of binding errors and equipment damage caused by pressure plate wobbling, thereby improving overall work efficiency and equipment performance.
[0014] Preferably, the pressure plate is also provided with an elastic element, and the free end of the elastic element is provided with a rotating wheel, which enhances the smoothness of the pressure plate during movement and its adaptability to materials. The elastic element allows the pressure plate to have a certain buffering effect when it comes into contact with the material to be bound, avoiding material damage or indentation caused by direct hard contact. The rotating wheel further reduces the frictional resistance when the pressure plate moves, allowing the pressure plate to slide more easily and smoothly on the material surface, improving the efficiency and smoothness of the binding operation.
[0015] Preferably, the third plate is equipped with a sensor, and the binding machine also includes a central control component. The sensor works in conjunction with the central control component to prevent the fourth plate from exceeding its limit. The sensor can monitor the position and movement status of the fourth plate in real time. When the fourth plate approaches or reaches its movement limit, the sensor will immediately send a signal to the central control component. After receiving the signal, the central control component can quickly take measures, such as stopping the operation of the second drive component, to prevent the fourth plate from continuing to move and causing it to exceed its limit, thereby avoiding equipment damage and safety accidents. This not only protects the key components of the binding machine, but also ensures the smooth progress of the binding operation, improving the overall work efficiency and safety.
[0016] Specifically, the central control unit is electrically connected to the various electrical components of the binding machine.
[0017] The beneficial effects of this invention are as follows: The integrated chip removal module enables efficient management and orderly collection of waste materials. The guide component is tilted and rotates in coordination with the binding host, its lower end abutting against the material collection component. This ensures that waste materials generated during binding can quickly slide into the material collection component, effectively preventing waste from scattering in the work area, reducing cleaning and maintenance workload, and optimizing the workspace for easier operation. Furthermore, it reduces the risk of mechanical failures caused by waste accumulation, such as paper jams and motor overload, improving the stability and reliability of the equipment. The material collection component is located at the lower end of the binding host, facilitating regular cleaning by the user and reducing maintenance difficulty and costs. This not only improves work efficiency and user experience but also reduces environmental pollution through centralized waste collection, demonstrating the rational use and conservation of resources. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the main body structure of this utility model;
[0019] Figure 2 This is a schematic diagram of the exploded structure of the main body of this utility model;
[0020] Figure 3 This is a schematic diagram of the punching module structure of this utility model;
[0021] Figure 4 This is a schematic diagram of the slag discharge component of this utility model;
[0022] Figure 5 This is a schematic diagram of the polymer component structure of this utility model;
[0023] Figure 6 This is a schematic diagram of the internal structure of the main body of this utility model;
[0024] Figure 7 This is a schematic diagram of the wheel structure of this utility model;
[0025] Figure 8 This is a schematic diagram of the reverse-propagation module structure of this utility model;
[0026] Figure 9 This is a schematic diagram of the pressure plate structure of this utility model;
[0027] Figure 10 This is a schematic diagram of the punch column structure of this utility model.
[0028] The reference numerals in the figures include:
[0029] 1. Housing; 2. Punching module; 3. Pressing module; 4. Reverse thrust module; 11. First plate; 12. Second plate; 13. Third plate; 14. First column; 21. First drive component; 22. First plate; 23. Second plate; 24. Dust collection component; 25. Punch component; 26. Locking component; 27. Slag discharge component; 28. Material guide component; 29. Material gathering component; 31. Third drive component; 32. Pressure plate; 33. Clearance hole; 34. Third plate; 35. Wheel; 36. Elastic component; 37. Third column; 41. Second drive component; 42. Fourth plate; 43. Second column; 44. Punch column; 45. Sensing component. Detailed Implementation
[0030] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.
[0031] Please see Figures 1 to 10 As shown, this utility model discloses a convenient chip-removing binding machine, including a binding host and a chip removal module disposed on the binding host. The chip removal module includes a material gathering component 29 disposed at the lower end of the binding host and a material guide component 28 rotatably disposed at the upper end of the binding host. The upper end of the material guide component 28 is rotatably engaged with the binding host, and the lower end of the material guide component 28 abuts against the material gathering component 29. The material guide component 28 is inclined and used to guide waste material to the material gathering component 29.
[0032] Specifically, the integrated chip removal module enables efficient management and orderly collection of waste materials. The guide component 28 is tilted and rotates in conjunction with the binding host, its lower end abutting against the material collection component 29. This ensures that waste materials generated during binding can quickly slide into the material collection component 29, effectively preventing waste from scattering in the work area, reducing cleaning and maintenance workload, and optimizing the workspace for easier operation. Furthermore, it reduces the risk of mechanical failures caused by waste accumulation, such as paper jams and motor overload, improving the stability and reliability of the equipment. The material collection component 29, located at the lower end of the binding host, facilitates regular cleaning by the user, reducing maintenance difficulty and costs. This not only improves work efficiency and user experience but also reduces environmental pollution through centralized waste collection, demonstrating the rational use and conservation of resources.
[0033] Specifically, the binding machine also includes a housing 1 used in conjunction with the board body. The housing 1 is also equipped with a display touch component, which is used to display the operating status of the binding machine and to operate it.
[0034] Specifically, the first plate 11 is also provided with a side limiting plate. The side limiting plate is used by the user to align the external materials to be bound. The side limiting plate is L-shaped and has a strip groove. It is limited on the first plate 11 by external bolts. By moving the side limiting plate and then locking it with bolts, the alignment and binding position of different external materials to be bound can be adjusted.
[0035] Specifically, the punching module 2, the pressing module 3, and the reverse pushing module 4 constitute the binding host.
[0036] Specifically, the guide component 28 has a guide main board and multiple guide support plates set on the guide main board. The multiple guide support plates are used to cooperate with multiple punching modules 2 on the binding host. The waste discharged from the multiple punching modules 2 flows to the guide main board through the multiple guide support plates, and is then guided to the material collection component 29 by the guide main board. It can accurately cooperate with the multiple punching modules 2 on the binding host, ensuring that the waste generated by each punching module can be effectively collected and guided. The multiple guide support plates correspond to the multiple punching modules, and the waste flows from each source to the guide main board, and is then uniformly guided to the material collection component 29 by the guide main board. This not only improves the waste collection efficiency, but also avoids the cross-scattering of waste in the working area, further reducing the workload of cleaning and maintenance.
[0037] Specifically, the material collection component 29 has an inclined plate and a conical cylinder disposed at the lower end of the inclined plate. The lower end of the material guide component 28 is used to abut against the end of the inclined plate away from the conical cylinder. The waste material discharged by the material guide component 28 is guided by the inclined plate and collected in the conical cylinder into the external collection bucket. This ensures that the waste material discharged by the material guide component 28 slides smoothly onto the inclined plate and is effectively guided along the direction of the inclined plate. The design of the inclined plate not only increases the smoothness of the waste material sliding, but also allows the waste material to flow to the conical cylinder. The setting of the conical cylinder further collects the waste material and guides it into the external collection bucket, which not only improves the waste material collection efficiency, but also makes it convenient for users to clean and dispose of the waste material regularly.
[0038] Specifically, the convenient chip-removing binding machine also includes a first plate 11 for carrying external materials to be bound. The first plate 11 is provided with a punching module 2 and a pressing module 3. The punching module 2 and the pressing module 3 are used for pressing and punching the external materials to be bound, respectively. The punching module 2 includes a hollow punch 25 and a first driving member 21 for driving the punch 25 to perform punching operations. The first plate 11 is provided with a chip-removing module for use with the punching module 2. The binding machine also includes a reverse push module 4 provided on the first plate 11. The reverse push module 4 includes a punch 44 for use with the punch 25 and a second driving member 41 for driving the punch 44 to reciprocate. The diameter of the punch 44 is not greater than the inner diameter of the punch 25. The movement path of the punch 44 driven by the second driving member 41 is collinear with the movement path of the punch 25 driven by the first driving member 21.
[0039] Specifically, a third plate 13 is provided on the first plate 11, and the reverse thrust module 4 also includes a fourth plate 42. The punch 44 is provided on the fourth plate 42, and the second drive unit 41 is provided on the third plate 13, driving the punch 44 to reciprocate via the fourth plate 42. The third plate 13 is also provided with two second columns 43. The fourth plate 42 is slidably provided on the second columns 43, ensuring the stability and guidance of the punch 44 during reciprocating motion. Through the sliding arrangement of the fourth plate 42 on the two second columns 43, a stable sliding track is formed, making the movement of the punch 44 more stable and accurate, reducing shaking and deviation during movement. This not only improves the accuracy of punching and chip removal, but also extends the service life of the equipment and reduces failures and damage caused by unstable movement. At the same time, this design also facilitates the adjustment and maintenance of the position and movement trajectory of the punch 44, improving the flexibility and maintainability of the equipment.
[0040] Specifically, the first plate 11 has through holes for the punch 44 and the punch 25 to pass through.
[0041] Specifically, the chip removal module also includes a hollow dust collection component 24, on which a locking component 26 is provided. The locking component 26 is existing technology and will not be described in detail here. The dust collection component 24 is connected to the punch component 25 via the locking component 26. The dust collection component 24 is also equipped with a slag discharge component 27, through which internal materials are discharged, improving the efficiency of chip collection and discharge during the binding process. The interconnected design between the dust collection component 24 and the punch component 25 allows... The debris generated during punching can be directly fed into the dust collection component 24, preventing debris from scattering and contaminating the work area. The locking component 26 ensures a tight connection between the dust collection component 24 and the punch component 25, preventing debris leakage. The slag discharge component 27 facilitates the discharge of debris accumulated inside the dust collection component 24, maintaining the cleanliness and efficient operation of the equipment. This not only improves the environmental hygiene of the binding operation but also reduces the risk of equipment failure due to debris accumulation, thereby enhancing overall work efficiency and user experience.
[0042] Specifically, in other embodiments, the dust collection component 24 is also provided with a blower that vents to the slag discharge component 27. The blower is used to connect to an external ventilator. The direction of the air blown out by the blower intersects with the length direction of the punch component 25 to achieve negative pressure to drive the waste debris upward.
[0043] Specifically, a second plate 23 is provided on the dust collection component 24, which is used to limit multiple dust collection components 24. A first plate 22 is provided on the second plate 23, and a second plate 12 is also provided on the first plate body 11. The first plate 22 is slidably disposed on the second plate body 12. A first driving component 21 is disposed on the first plate body 11 to drive the first plate 22 to move up and down. By limiting multiple dust collection components 24 through the second plate 23, the stability and consistency of the dust collection components during arrangement and use are ensured, making the binding operation more efficient and convenient. At the same time, the frequency and difficulty of manual intervention are reduced, and the overall work efficiency and user experience are improved.
[0044] Specifically, the first plate 11 is also provided with a first column 14, and there are at least two first columns 14. The second plate 23 is slidably mounted on the first column 14. Through the sliding support of the second plate 23 by at least two first columns 14, a stable sliding track is formed, which ensures the stability and accuracy of the second plate 23 and the dust collection components installed on it during the movement process. This not only improves the overall stability of the dust collection system, but also reduces the risk of debris leakage or equipment damage caused by unstable movement.
[0045] Specifically, the first plate 11 is provided with a material gathering component 29, and the second plate 23 is provided with a material guiding component 28 that works in conjunction with the slag discharge component 27 and the material gathering component 29. The material guiding component 28 is used to guide the waste discharged by the slag discharge component 27 into the material gathering component 29. Through the close cooperation between the material guiding component 28 and the slag discharge component 27, and the receiving function of the material gathering component 29, a smooth waste discharge channel is formed, ensuring that the waste generated during the punching process can be discharged in a timely and accurate manner, avoiding the accumulation and pollution of waste in the working area, simplifying the waste handling operation steps, reducing the frequency and difficulty of manual cleaning, and improving the overall work efficiency and the convenience of equipment maintenance.
[0046] Specifically, in this embodiment, the material collection component 29 leads to a large-capacity paper scrap collection box inside the cabinet.
[0047] Specifically, the holding module 3 includes a pressure plate 32 movably disposed relative to the first plate 11 and a third driving member 31 for driving the pressure plate 32 to move. The third driving member 31 is disposed on the first plate 11 to drive the pressure plate 32 to move closer to or away from the external material to be bound. Through the driving action of the third driving member 31, the pressure plate 32 can accurately move closer to or away from the material to be bound according to the needs of the binding operation, thereby ensuring that the material can maintain a flat and stable state during the binding process, avoiding binding errors caused by material movement or misalignment, and improving the automation and flexibility of the binding operation. It can be adjusted according to different materials and binding requirements, making the binding effect more accurate and beautiful.
[0048] Specifically, the pressure plate 32 has clearance holes 33 for the punch 25 to pass through. The pressure plate 32 also has a third column 37, which is slidably disposed with the first plate 11. The clearance holes 33 allow the punch 25 to pass smoothly through the pressure plate 32 during the punching process without obstruction, thus ensuring the accuracy and efficiency of binding. The sliding arrangement of the third column 37 with the first plate 11 provides a stable sliding track for the pressure plate 32, allowing the pressure plate 32 to remain stable and without shaking when approaching or moving away from the material to be bound. This not only improves the stability and reliability of the binding operation, but also reduces the risk of binding errors and equipment damage caused by pressure plate shaking, thereby improving the overall work efficiency and equipment performance.
[0049] Specifically, the pressure plate 32 is also provided with an elastic element 36, and the free end of the elastic element 36 is provided with a rotating wheel 35, which enhances the smoothness of the pressure plate 32 during movement and its adaptability to materials. The elastic element 36 provides a certain buffering effect when the pressure plate 32 comes into contact with the material to be bound, avoiding material damage or indentation caused by direct hard contact. The rotating wheel 35 further reduces the frictional resistance when the pressure plate 32 moves, allowing the pressure plate to slide more easily and smoothly on the material surface, improving the efficiency and smoothness of the binding operation.
[0050] Specifically, a sensor 45 is provided on the third plate 13. The binding machine also includes a central control component. The sensor 45 works in conjunction with the central control component to prevent the fourth plate from exceeding its limit. The sensor 45 can monitor the position and movement status of the fourth plate 42 in real time. When the fourth plate 42 approaches or reaches its movement limit, the sensor 45 will immediately send a signal to the central control component. After receiving the signal, the central control component can quickly take measures, such as stopping the operation of the second drive component 41, to prevent the fourth plate 42 from continuing to move and causing it to exceed its limit. This avoids equipment damage and safety accidents, protects the key components of the binding machine, ensures the smooth progress of the binding operation, and improves the overall work efficiency and safety.
[0051] Specifically, the first plate 11 is also provided with a first driving component, which is used to drive the external disk component to block the through hole.
[0052] Specifically, the diameter of the end of the punch 44 gradually decreases, and a U-shaped groove is provided at the free end of the punch 44.
[0053] Specifically, the central control unit is electrically connected to the various electrical components of the binding machine.
[0054] Specifically, the output end of the third drive unit 31 is provided with a gear, and the pressing module also includes a third plate 34, which is a toothed plate. The third drive unit 31 drives the pressing plate 32 to reciprocate via the third plate 34.
[0055] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. A convenient chip removal type bookbinding machine comprising a bookbinding main machine, a chip removal module provided on the bookbinding main machine, characterized in that: The waste material discharging module comprises a material collecting part (29) arranged at the lower end of the binding host, and a material guiding part (28) arranged at the upper end of the binding host and rotatingly matched with the binding host. The upper end of the material guiding part (28) is in abutment with the material collecting part (29), and the material guiding part (28) is arranged obliquely and used to guide the waste material to the material collecting part (29).
2. A convenient chip removal type bookbinding machine according to claim 1, characterized in that: The material guiding part (28) has a material guiding main plate and a plurality of material guiding branch plates arranged on the material guiding main plate. The plurality of material guiding branch plates are used to respectively match a plurality of punching modules (2) on the binding host. The waste material discharged by the plurality of punching modules (2) is respectively converged to the material guiding main plate through the plurality of material guiding branch plates, and is guided to the material collecting part (29) through the material guiding main plate.
3. A convenient chip removal type bookbinding machine according to claim 1, characterized in that: The material collecting part (29) has an inclined plate and a conical cylinder arranged at the lower end of the inclined plate. The lower end of the material guiding part (28) is used to abut on one end of the inclined plate away from the conical cylinder. The waste material at the lower end of the material guiding part (28) is guided through the inclined plate and converged to an external material collecting barrel through the conical cylinder.
4. A convenient chip removal type bookbinding machine according to claim 1, characterized in that: The convenient waste material discharging type binding machine further comprises a first plate body (11) used to carry external materials to be bound. The first plate body (11) is provided with the punching module (2) and the pressing module (3). The punching module (2) and the pressing module (3) are respectively used for pressing and punching operations of the external materials to be bound. The first plate body (11) is provided with a reverse pushing module (4). The punching module (2) comprises an internally hollow punch pin (25) and a first driving part (21) used to drive the punch pin (25) to perform a punching operation. The first plate body (11) is provided with a waste material discharging module used in cooperation with the punching module (2). The reverse pushing module (4) comprises a punch column (44) used in cooperation with the punch pin (25) and a second driving part (41) used to drive the punch column (44) to reciprocate. The diameter size of the punch column (44) is not greater than the inner wall diameter size of the punch pin (25). The moving path of the second driving part (41) driving the punch column (44) is collinear with the moving path of the first driving part (21) driving the punch pin (25).
5. A convenient chip removal type bookbinding machine according to claim 4, characterized in that: The first plate body (11) is provided with a third plate body (13). The reverse pushing module (4) further comprises a fourth plate part (42). The punch column (44) is arranged on the fourth plate part (42). The second driving part (41) is arranged on the third plate body (13) and drives the punch column (44) to reciprocate through the fourth plate part (42). The third plate body (13) is further provided with a second column body (43). The second column body (43) is provided with two fourth plate parts (42). The fourth plate part (42) is slidingly arranged on the second column body (43).
6. A convenient chip removal type bookbinding machine according to claim 4, characterized in that: The waste material discharging module further comprises an internally hollow dust collecting part (24). The dust collecting part (24) is provided with a locking part (26). The dust collecting part (24) is connected with the punch pin (25) through the locking part (26). The dust collecting part (24) is in communication with the punch pin (25). The dust collecting part (24) is further provided with a slag discharging part (27). The dust collecting part (24) is used to discharge the internal material through the slag discharging part (27).
7. A convenient chip removal type bookbinding machine according to claim 6, characterized in that: The second plate (23) is arranged on the dust collecting member (24) and is used for limiting the plurality of dust collecting members (24). The first plate (22) is arranged on the second plate (23). The second plate body (12) is further arranged on the first plate body (11). The first plate (22) is slidingly arranged on the second plate body (12). The first driving member (21) is arranged on the first plate body (11) and is used for driving the first plate (22) to move up and down.
8. A convenient chip removal type bookbinding machine according to claim 4, characterized in that: The first column body (14) is further arranged on the first plate body (11). The second plate (23) is slidingly arranged on the first column body (14). The first column body (14) is at least provided with two.
9. A convenient chip removal type bookbinding machine according to claim 4, characterized in that: The pressing module (3) comprises the pressing plate (32) which is movably arranged on the first plate body (11) and the third driving member (31) which is used for driving the pressing plate (32) to move. The third driving member (31) is arranged on the first plate body (11) and is used for driving the pressing plate (32) to move close to or away from the external material to be bound.
10. A convenient chip removal type bookbinding machine according to claim 7, characterized in that: The avoiding hole (33) is arranged on the pressing plate (32) and is used for the punch member (25) to pass through. The third column body (37) is further arranged on the pressing plate (32). The third column body (37) is slidingly arranged on the first plate body (11).