Loose-leaf ring binding machine capable of automatically arranging and collecting materials
Through the design of guide components and material collection components, the problems of loose-leaf skew and drop in the loose-leaf binding machine are solved, automatic organization and stable transmission are achieved, and binding efficiency is improved.
Patent Information
- Application Number
- CN202422131772.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-02
AI Technical Summary
During the transmission process of existing loose-leaf circle binding machines, loose-leaf is prone to be skewed or fallen, resulting in unstable transmission and affecting binding efficiency.
A loose leaf binding machine including a guide assembly and a material collection assembly is designed. The guide plate and photoelectric sensor are used to adjust the position of the guide plate to ensure that the loose leaf remains horizontal and vertical, and the pressure sensor is prompted in the material collection box to automatically organize and collect materials.
It effectively avoids the skew and fall of loose-leaf during the transmission process, improves binding efficiency and stability, and reduces manual intervention.
Smart Images

Figure CN223072187U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of loose-leaf binding, in particular to a loose-leaf ring binding machine for automatic sorting and material collection. Background Art
[0002] A loose-leaf ring binding machine is a device for binding loose-leaves. During operation, the loose-leaves to be bound are placed on a binding table and bound by the loose-leaf ring binding machine, and after binding, they enter a conveyor belt through the conduction of the binding table for transmission.
[0003] In the prior art, the patent with the publication number CN220662074U discloses a double-coil binding machine for automatic sorting and material collection, which includes a binding machine body. A double-coil reel is arranged on the left side of the binding machine body, and a discharging mechanism is arranged on the right side of the binding machine body. The discharging mechanism includes a conveyor belt, and a guiding mechanism is arranged on the conveyor belt. The guiding mechanism includes two oppositely arranged guiding plates. By arranging the guiding mechanism on the conveyor belt, the products on the conveyor belt are automatically sorted through the guiding plates, reducing the workload of workers.
[0004] This device guides the loose-leaves through the guiding plates. Since the loose-leaves enter the conveyor belt through the lateral conduction of the binding table after binding, the loose-leaves are prone to skew in the conveyor belt. On the one hand, the skewed loose-leaves will be blocked by the guiding plates, resulting in the problem that the loose-leaves cannot be conveyed. On the other hand, the skewed loose-leaves will cause part of the loose-leaves to extend beyond the outside of the conveyor belt, and the state of the loose-leaves is unstable during transmission and is prone to fall off the conveyor belt. Therefore, an automatic sorting and material collection loose-leaf ring binding machine is needed to meet the use requirements. Summary of the Utility Model
[0005] The purpose of the utility model is to provide an automatic sorting and material collection loose-leaf ring binding machine to solve the problems raised in the above background art.
[0006] To achieve the above purpose, the utility model provides the following technical solution: An automatic sorting and material collection loose-leaf ring binding machine, including a loose-leaf ring binding machine body;
[0007] A binding table, arranged on the loose-leaf ring binding machine body, for the binding operation and conduction of loose-leaves;
[0008] A conveying assembly, arranged on the loose-leaf ring binding machine body, for conveying loose-leaves;
[0009] A guiding assembly, arranged on the conveying assembly, for guiding loose-leaves;
[0010] A material collection assembly, arranged on the loose-leaf ring binding machine body, for collecting loose-leaves.
[0011] Further, the conveying component includes a mounting plate installed on the loose-leaf ring binding machine body. There is a support plate outside the loose-leaf ring binding machine body. A first driving wheel and a second driving wheel are rotatably installed in the mounting plate. A transmission belt is movably installed on the first driving wheel and the second driving wheel. A driving motor is installed on the support plate, and the first driving wheel is installed at the output end of the driving motor.
[0012] Further, the guiding component includes a first guiding plate installed on the support plate. A photoelectric emitter is arranged inside the first guiding plate. A second guiding plate is adjustably installed on the support plate. A discharge port is formed on the second guiding plate. A baffle is arranged on the discharge port. A photoelectric receiver is installed inside the baffle. An electric lifting rod is installed on the photoelectric receiver, and the other end of the electric lifting rod is installed on the second guiding plate.
[0013] Further, the guiding component further includes an adjusting block installed at the bottom of the second guiding plate. A retaining groove is formed on the support plate. A retaining plug is inserted into the adjusting block, and the end of the retaining plug is inserted into the retaining groove.
[0014] Further, the material receiving component includes a material receiving box installed on the loose-leaf ring binding machine body. The support plate is installed on the material receiving box. A pressing plate is slidably arranged inside the material receiving box. A pressure sensor is installed inside the material receiving box. A reminder and a control panel are installed on the outer wall of the material receiving box.
[0015] Further, the material receiving component further includes a guiding slider installed on the pressing plate. A guiding strip is installed inside the material receiving box, and the guiding slider is slidably installed inside the guiding strip.
[0016] Further, the material receiving component further includes a sealing plate arranged inside the material receiving box. A buckle is installed on the sealing plate, and the buckle is clamped on the material receiving box.
[0017] The beneficial effects of the present utility model are as follows:
[0018] In the present utility model, through the arrangement of the guiding component, the second guiding plate is moved on the support plate, and the retaining plug is inserted into the holes of the adjusting block and the corresponding retaining groove, so as to adjust and fix the position of the second guiding plate and adapt to loose-leafs of different sizes. Under the conduction of the binding table and the guiding action of the baffle and the second guiding plate, the loose-leaf will enter the transmission belt, ensuring that the loose-leaf remains horizontal when entering the transmission belt and preventing the loose-leaf from being skewed so that the edge of the loose-leaf is outside the transmission belt, resulting in the loose-leaf falling during transportation.
[0019] In the present utility model, through the arrangement of the material receiving component, under the action of the gravity of the loose-leaf, the pressing plate will be squeezed. The pressure sensor receives the pressure signal and transmits it to the control panel. At this time, the control panel will control the reminder to sound, prompting the staff to uniformly process the loose-leaf in the material receiving box. The sealing plate can be disassembled through the buckle. Under the guiding action of the guiding slider and the guiding strip, the pressing plate can be pulled out from the material receiving box, facilitating the uniform processing of the loose-leaf. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 FIG. 6 is a three-dimensional structural schematic diagram of a loose-leaf ring binding machine with automatic sorting and material receiving proposed by the present utility model;
[0021] Figure 2 FIG. 10 is another three-dimensional structural schematic diagram of a loose-leaf ring binding machine with automatic sorting and material receiving proposed by the present utility model;
[0022] Figure 3 FIG. 14 is a structural schematic diagram of a transmission belt, a driving motor, etc. of a loose-leaf ring binding machine with automatic sorting and material receiving proposed by the present utility model;
[0023] Figure 4 FIG. 18 is a structural schematic diagram of a first guiding plate and a photoelectric emitter of a loose-leaf ring binding machine with automatic sorting and material receiving proposed by the present utility model;
[0024] Figure 5 FIG. 22 is a structural schematic diagram of a second guiding plate, a baffle, etc. of a loose-leaf ring binding machine with automatic sorting and material receiving proposed by the present utility model;
[0025] Figure 6 FIG. 26 is a structural schematic diagram of a material receiving box, a sealing plate, etc. of a loose-leaf ring binding machine with automatic sorting and material receiving proposed by the present utility model;
[0026] Figure 7 FIG. 30 is a structural schematic diagram of a pressing plate, a guiding slider, etc. of a loose-leaf ring binding machine with automatic sorting and material receiving proposed by the present utility model.
[0027] In the figure: 1. Loose-leaf ring binding machine body; 2. Binding table; 3. Conveying component; 31. Mounting plate; 32. Support plate; 33. First driving wheel; 34. Second driving wheel; 35. Transmission belt; 36. Driving motor; 4. Guiding component; 41. First guiding plate; 42. Photoelectric emitter; 43. Second guiding plate; 44. Baffle; 45. Photoelectric receiver; 46. Discharge port; 47. Electric lifting rod; 48. Adjusting block; 49. Retaining groove; 410. Retaining plug; 5. Material receiving component; 51. Material receiving box; 52. Pressing plate; 53. Pressure sensor; 54. Reminder; 55. Control panel; 56. Guiding slider; 57. Guiding strip; 58. Sealing plate; 59. Buckle. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0029] Embodiment:
[0030] As Figure 1-7 shown, this embodiment provides a loose-leaf ring binding machine for automatic sorting and material collection, including a loose-leaf ring binding machine body 1; a binding table 2, which is arranged on the loose-leaf ring binding machine body 1 and is used for the binding operation of loose-leaves and the conduction of loose-leaves; a conveying assembly 3, which is arranged on the loose-leaf ring binding machine body 1 and is used for conveying loose-leaves; a guiding assembly 4, which is arranged on the conveying assembly 3 and is used for guiding loose-leaves; a material collection assembly 5, which is arranged on the loose-leaf ring binding machine body 1 and is used for collecting loose-leaves.
[0031] Place the loose-leaf on the binding table 2 and bind it by the loose-leaf ring binding machine body 1. After binding, the loose-leaf will enter the conveying assembly 3 for transmission under the conduction of the binding table 2. During this period, the loose-leaf will be guided by the guiding assembly 4 to ensure that the loose-leaf remains horizontal and straight when entering the conveying assembly 3, avoiding the loose-leaf from being skewed and the edge of the loose-leaf being located outside the conveying assembly 3, resulting in the loose-leaf falling during conveying. Under the conduction of the conveying assembly 3, the loose-leaf will enter the material collection assembly 5 for collection. When the collection of loose-leaves in the material collection assembly 5 is completed, it will prompt the staff to conduct unified processing.
[0032] In one embodiment, specifically, the conveying assembly 3 includes a mounting plate 31 installed on the loose-leaf ring binding machine body 1. A support plate 32 is arranged outside the loose-leaf ring binding machine body 1. A first driving wheel 33 and a second driving wheel 34 are rotatably installed in the mounting plate 31. A transmission belt 35 is movably installed on the first driving wheel 33 and the second driving wheel 34. A driving motor 36 is installed on the support plate 32, and the first driving wheel 33 is installed at the output end of the driving motor 36.
[0033] When it is necessary to convey the loose-leaf, the driving motor 36 can be started. The rotation of the driving motor 36 will drive the first driving wheel 33 to rotate. The rotation of the first driving wheel 33 will drive the transmission belt 35 to drive. At this time, the second driving wheel 34 will also rotate, and the transmission of the transmission belt 35 can convey the loose-leaf.
[0034] In one embodiment, specifically, the guiding component 4 includes a first guiding plate 41 installed on the support plate 32. An optoelectronic emitter 42 is arranged inside the first guiding plate 41. A second guiding plate 43 is adjustably arranged on the support plate 32. A discharge port 46 is formed on the second guiding plate 43. A baffle 44 is arranged on the discharge port 46. An optoelectronic receiver 45 is installed inside the baffle 44. An electric lifting rod 47 is installed on the optoelectronic receiver 45. The other end of the electric lifting rod 47 is installed on the second guiding plate 43;
[0035] When it is necessary to guide the loose-leaf, the position of the second guiding plate 43 on the support plate 32 can be adjusted according to the size of the loose-leaf. Under the conduction of the binding table 2 and the guiding action of the baffle 44 and the second guiding plate 43, the loose-leaf will enter the conveyor belt 35. At this time, the optoelectronic signal emitted by the optoelectronic emitter 42 will be blocked by the loose-leaf, and the optoelectronic receiver 45 cannot receive the optoelectronic signal. The optoelectronic receiver 45 will feedback the information to the control panel 55. At this time, the control panel 55 will control the electric lifting rod 47 to lift the baffle 44, and the discharge port 46 on the second guiding plate 43 will be exposed. At this time, the loose-leaf will be transported by the conveyor belt 35 through the discharge port 46.
[0036] In one embodiment, specifically, the guiding component 4 further includes an adjusting block 48 installed at the bottom of the second guiding plate 43. A retaining groove 49 is formed on the support plate 32. A retaining plug 410 is inserted into the adjusting block 48. The end of the retaining plug 410 is inserted into the retaining groove 49;
[0037] When it is necessary to adjust the position of the second guiding plate 43 on the support plate 32, move the second guiding plate 43 on the support plate 32, and insert the retaining plug 410 into the holes in the adjusting block 48 and the corresponding retaining groove 49, so as to adjust and fix the position of the second guiding plate 43 and adapt to loose-leaves of different sizes.
[0038] In one embodiment, specifically, the material receiving component 5 includes a material receiving box 51 installed on the loose-leaf ring binding machine body 1. The support plate 32 is installed on the material receiving box 51. A pressing plate 52 is slidably arranged inside the material receiving box 51. A pressure sensor 53 is installed inside the material receiving box 51. A reminder 54 and a control panel 55 are installed on the outer wall of the material receiving box 51;
[0039] The loose-leaf will enter the material receiving box 51 for collection under the transmission of the conveyor belt 35. When the material receiving box 51 is full of loose-leaves, the pressing plate 52 will be squeezed under the action of the gravity of the loose-leaves. The pressure sensor 53 receives the pressure signal and transmits it to the control panel 55. At this time, the control panel 55 will control the reminder 54 to sound, reminding the staff to uniformly process the loose-leaves in the material receiving box 51.
[0040] In one embodiment, specifically, the material receiving assembly 5 further includes a guiding slider 56 mounted on the pressing plate 52, and a guiding strip 57 is installed in the material receiving box 51. The guiding slider 56 is slidably mounted in the guiding strip 57;
[0041] When it is necessary to uniformly process the loose-leaf sheets in the material receiving box 51, under the guiding action of the guiding slider 56 and the guiding strip 57, the pressing plate 52 can be pulled out of the material receiving box 51, facilitating the uniform processing of the loose-leaf sheets.
[0042] In one embodiment, specifically, the material receiving assembly 5 further includes a sealing plate 58 disposed in the material receiving box 51. A buckle 59 is mounted on the sealing plate 58, and the buckle 59 is snap-fitted on the material receiving box 51;
[0043] The sealing plate 58 can be disassembled and assembled through the buckle 59, facilitating the pulling out of the pressing plate 52 from the material receiving box 51.
[0044] Working principle: During use, the loose-leaf sheets are placed on the binding table 2 and bound by the loose-leaf ring binding machine body 1. After binding, the loose-leaf sheets will be guided by the guiding assembly 4 under the conduction of the binding table 2. The position of the second guiding plate 43 on the support plate 32 can be adjusted in advance according to the size of the loose-leaf sheets. The second guiding plate 43 can be moved on the support plate 32, and the fixing insertion frame 410 can be inserted into the holes in the adjusting block 48 and the corresponding fixing slots 49 to adjust and fix the position of the second guiding plate 43 and adapt to loose-leaf sheets of different sizes. Under the conduction of the binding table 2 and the guiding action of the baffle 44 and the second guiding plate 43, the loose-leaf sheets will enter the transmission belt 35. At this time, the photoelectric signal emitted by the photoelectric emitter 42 will be blocked by the loose-leaf sheets, and the photoelectric receiver 45 will not receive the photoelectric signal. The photoelectric receiver 45 will feedback the information to the control panel 55. At this time, the control panel 55 will control the electric lifting rod 47 to lift the baffle 44, and the discharge port 46 on the second guiding plate 43 will be exposed. At this time, the loose-leaf sheets will enter the transmission belt 35 through the discharge port 46. The rotation of the drive motor 36 will drive the first transmission wheel 33 to rotate. The rotation of the first transmission wheel 33 will drive the transmission belt 35 to transmit. At this time, the second transmission wheel 34 will also rotate. The transmission of the transmission belt 35 can transmit the loose-leaf sheets. The loose-leaf sheets will enter the material receiving box 51 for collection under the transmission of the transmission belt 35. When the material receiving box 51 is filled with loose-leaf sheets, the pressing plate 52 will be squeezed under the action of the gravity of the loose-leaf sheets. The pressure sensor 53 receives the pressure signal and transmits it to the control panel 55. At this time, the control panel 55 will control the reminder 54 to sound, prompting the staff to uniformly process the loose-leaf sheets in the material receiving box 51. The sealing plate 58 can be disassembled through the buckle 59. Under the guiding action of the guiding slider 56 and the guiding strip 57, the pressing plate 52 can be pulled out of the material receiving box 51, facilitating the uniform processing of the loose-leaf sheets.
[0045] As described above, it is only the preferred specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present utility model.
Claims
1. An automatic collating and collecting loose-leaf ring binding machine, comprising, characterized in that: The loose-leaf ring binding machine body (1); A binding table (2), arranged on the loose-leaf ring binding machine body (1), for the binding operation and conduction of loose-leaves; A conveying component (3), arranged on the loose-leaf ring binding machine body (1), for conveying loose-leaves; A guiding component (4), arranged on the conveying component (3), for guiding loose-leaves; A collecting component (5), arranged on the loose-leaf ring binding machine body (1), for collecting loose-leaves.
2. The loose-leaf ring binding machine for automatic sorting and material collection according to claim 1, wherein: The conveying component (3) includes a mounting plate (31) mounted on the loose-leaf ring binding machine body (1). There is a support plate (32) arranged outside the loose-leaf ring binding machine body (1). A first driving wheel (33) and a second driving wheel (34) are rotatably mounted in the mounting plate (31). A transmission belt (35) is movably mounted on the first driving wheel (33) and the second driving wheel (34). A driving motor (36) is mounted on the support plate (32), and the first driving wheel (33) is mounted on the output end of the driving motor (36).
3. The loose-leaf ring binding machine for automatic sorting and material collection according to claim 1, characterized in that: The guiding component (4) includes a first guiding plate (41) mounted on the support plate (32). A photoelectric emitter (42) is arranged inside the first guiding plate (41). A second guiding plate (43) is adjustably arranged on the support plate (32). A discharge port (46) is formed on the second guiding plate (43). A baffle (44) is arranged on the discharge port (46). A photoelectric receiver (45) is mounted inside the baffle (44). An electric lifting rod (47) is mounted on the photoelectric receiver (45), and the other end of the electric lifting rod (47) is mounted on the second guiding plate (43).
4. An expanding ring binding machine for automatic sorting and material collection according to claim 3, characterized in that: The guiding component (4) further includes an adjusting block (48) mounted at the bottom of the second guiding plate (43). A retaining groove (49) is formed on the support plate (32). A retaining plug (410) is inserted into the adjusting block (48), and the end of the retaining plug (410) is inserted into the retaining groove (49).
5. An expanding coil binding machine for automatically sorting and collecting materials according to claim 2, characterized in that: The collecting component (5) includes a collecting box (51) mounted on the loose-leaf ring binding machine body (1). The support plate (32) is mounted on the collecting box (51). A pressing plate (52) is slidably arranged inside the collecting box (51). A pressure sensor (53) is mounted inside the collecting box (51). A reminder (54) and a control panel (55) are mounted on the outer wall of the collecting box (51).
6. The loose-leaf ring binding machine for automatic sorting and material collection according to claim 5, characterized in that: The collecting component (5) further includes a guiding slider (56) mounted on the pressing plate (52). A guiding strip (57) is mounted inside the collecting box (51), and the guiding slider (56) is slidably mounted inside the guiding strip (57).
7. An all-in-one ring binder for automatically sorting and collecting materials according to claim 6, characterized in that: The collecting component (5) further includes a sealing plate (58) arranged inside the collecting box (51). A buckle (59) is mounted on the sealing plate (58), and the buckle (59) is clamped on the collecting box (51).