A binding machine for producing mushroom-shaped notebooks
By designing a binding machine for mushroom-shaped notebooks, and utilizing an automatic feeding system for the hopper and feeding components, the problems of complex structure and high manual intervention in existing devices were solved, achieving semi-automatic and rapid binding production and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WENZHOU ZHIXIN MACHINERY EQUIPMENT CO LTD
- Filing Date
- 2025-09-04
- Publication Date
- 2026-05-26
AI Technical Summary
The existing mushroom-shaped notebook production equipment has a complex structure and requires too much manual intervention, resulting in low production efficiency.
A binding machine for producing mushroom-shaped notebooks was designed, comprising a binding desktop, a binding component, and a material hopper. The automatic feeding of mushroom-shaped notebooks is achieved by using a material rail and a feeding component in the material hopper. The automatic feeding and semi-automatic binding of mushroom-shaped notebooks are achieved by the agitation of the feeding rod and the design of the feeding trough.
The simplified device structure, reduced manual intervention, improved production efficiency, and enabled semi-automatic rapid nailing production.
Smart Images

Figure CN224276672U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of binding machine technology, specifically to a binding machine for producing mushroom-shaped notebooks. Background Technology
[0002] In the production of mushroom-shaped notebooks, binding individual sheets of paper into a book is an indispensable part. Binding machines replace manual labor by mechanically binding the paper to the mushroom-shaped covers. Therefore, binding machines are one of the essential production tools in notebook manufacturing. Existing technologies have the following problems: existing devices are complex in structure, require excessive manual intervention, consume a lot of manpower, and have a slow work progress, thus affecting production efficiency. Utility Model Content
[0003] In view of the existing technology, the purpose of this utility model is to provide a binding machine for producing mushroom-shaped notebooks. The machine has a simple and practical structure and can automatically feed materials to achieve semi-automatic and rapid binding of notebooks.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a binding machine for producing mushroom-shaped notebooks, comprising a binding desktop, a binding assembly, and a material bin. The material bin includes a material rail, a feeding port, a hopper, and a material feeding assembly. The material rail includes several parallel cylindrical tubes, and a material groove larger than the thickness of the mushroom-shaped notebook is provided between two adjacent cylindrical tubes. The upper end of the material rail is located inside the hopper, and the material feeding assembly includes a power component and a material feeding rod. The material feeding rod extends into the hopper and is used to stir the mushroom-shaped notebooks inside the hopper so that they are engaged in the material groove.
[0005] As a further provision of the above scheme, the hopper is provided with a matching column with the same structural dimensions as the cylindrical cylinder. The matching column is arranged opposite to the cylindrical cylinder, the material troughs between the two are opposite to each other, and the two are staggered at the lower end of the hopper.
[0006] As a further feature of the above solution, the size of the material trough is greater than the thickness of one layer of mushroom-shaped buckle, but less than the size of two layers of mushroom-shaped buckle.
[0007] As a further feature of the above solution, the mounting table is also provided with a cup groove, which is directly opposite the material groove of the material rail, and the width of the cup groove is greater than the thickness of the mushroom buckle.
[0008] As a further feature of the above solution, the mounting table is provided with a mold groove, which is used to lock the specification fixture for mounting the laptop.
[0009] As a further feature of the above solution, the binding assembly includes a power cylinder and a pressure plate, wherein the power cylinder is used to drive the pressure plate to press the notebook paper sheets together with the mushroom clips.
[0010] Beneficial effects: The binding machine of this utility model sets up a binding component and a material bin. The material rail set in the material bin forms a material trough for feeding single-layer mushroom-shaped buttons. The material feeding component fixed on the material bin drives the feeding rod to scatter the mushroom-shaped buttons in the material bin, so that they are guided into the material trough along the arc funnel formed by two cylindrical tubes. The material is fed along the material trough and automatically feeds the mushroom-shaped buttons, realizing semi-automatic binding production of notebook products. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the binding machine structure of this utility model.
[0012] Figure 2 This is a schematic diagram of the internal structure of the binding machine in this embodiment.
[0013] Figure 3 This is a schematic diagram of the material feeding assembly structure in this embodiment.
[0014] Figure 4 This is a schematic diagram of the internal cross-sectional structure of the silo in this embodiment.
[0015] Figure 5 This is an example. Figure 4 A magnified schematic diagram of the central part of the structure.
[0016] Figure 6 This is a schematic diagram of the cylindrical tube and trough structure in this embodiment.
[0017] Reference numerals: 1. Mounting tabletop; 11. Mold groove; 12. Cup groove; 2. Mounting assembly; 21. Power cylinder; 22. Pressure plate; 3. Material bin; 31. Material rail; 32. Discharge port; 33. Hopper; 34. Cylindrical tube; 35. Material trough; 38. Matching column; 4. Material feeding assembly; 41. Power component; 42. Material feeding rod. Detailed Implementation
[0018] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, where there is no conflict, the embodiments and features described in these embodiments can be combined with each other.
[0019] like Figure 1-6The illustrated binding machine for producing mushroom-shaped notebooks includes a binding desktop 1, a binding assembly 2, and a material bin 3. The material bin 3 includes a material rail 31, a feeding port 32, a hopper 33, and a material feeding assembly 4. The material rail 31 includes several parallel cylindrical tubes 34, and a material groove 35 larger than the thickness of the mushroom-shaped notebook is provided between two adjacent cylindrical tubes 34. The upper end of the material rail 31 is located inside the hopper 33. The material feeding assembly 4 includes a power component 41 and a material feeding rod 42. The material feeding rod 42 extends into the hopper 33 and is used to agitate the mushroom-shaped notebooks inside the hopper 33 so that they are engaged in the material groove 35.
[0020] As a further provision of the above scheme, the hopper 33 is provided with a matching column 38 having the same structural dimensions as the cylindrical tube 34. The matching column 38 and the cylindrical tube 34 are arranged opposite to each other, with the material troughs 35 between them facing each other, and the two are staggered at the lower end of the hopper 33.
[0021] As a further feature of the above solution, the size of the material trough 35 is greater than the thickness of one layer of mushroom buckle, but less than the size of two layers of mushroom buckle, to prevent the mushroom buckle from getting stuck at the opening of the material trough 35.
[0022] As a further feature of the above solution, the mounting table 1 is also provided with a cup holder groove 12, which is directly opposite to the material groove 35 of the material rail 31, and the width of the cup holder groove 12 is greater than the thickness of the mushroom buckle.
[0023] As a further feature of the above solution, the mounting table 1 is provided with a mold groove 11, which is used to lock the specification fixture for mounting the laptop and to adjust and adapt to the production of laptops of various sizes and specifications.
[0024] As a further feature of the above solution, the mounting assembly 2 includes a power cylinder 21 and a pressure plate 22. The power cylinder 21 is used to drive the pressure plate 22 to press the notebook paper with the mushroom clip.
[0025] As described above, the binding machine structure of this utility model is referenced. Figure 1 and Figure 2 The binding machine shown in this embodiment includes a binding table 1, a binding assembly 2, and a material bin 3. A material feeding assembly 4 is also provided on the material bin 3. The material feeding assembly 4 includes a power component 41 and a material feeding rod 42 extending into the material bin 3. The material feeding rod 42 is driven by the power component 41 to perform reciprocating motion relative to the material bin 3. The purpose of the motion is to stir the mushroom-shaped buttons located in the material bin 3, so that the mushroom-shaped buttons continuously adjust their orientation and flipping position within the material bin 3.
[0026] Furthermore, as described above, the hopper 3 also includes a material rail 31 and a hopper 33. The material rail 31 extends from below the hopper 33 and has a discharge port 32 at its end. Notably, the discharge port 32 is directly opposite the cup holder groove 12 located on the mounting table 1. The material rail 31 includes several parallel cylindrical tubes 34, and a material groove 35 larger than the thickness of the mushroom cap is provided between two adjacent cylindrical tubes 34. The upper end of the material rail 31 is located inside the hopper 33. As mentioned above, the material pusher 42 extends into the hopper 33 of the hopper 3 and, driven by the power component 41, agitates the mushrooms inside the hopper 33. Under continuous agitation, the mushroom-shaped plug can slide into the material groove 35 between the two cylindrical tubes 34 through continuous flipping and pushing, and smoothly fall into the obliquely downward cup groove 12. Furthermore, the hopper 33 is provided with a matching column 38 with the same structural dimensions as the cylindrical tube 34. The matching column 38 and the cylindrical tube 34 are arranged opposite each other, with the material groove 35 between them facing each other, and the two are staggered at the lower end of the hopper 33. The cross-arranged matching column 38 and cylindrical tube 34 make it easier for the mushroom plug to be inserted and slide in, making the supply of mushroom plugs smoother and facilitating production material supply.
[0027] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of this utility model and its equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A binding machine for producing mushroom-shaped notebooks, comprising a binding desktop (1), a binding assembly (2), and a material hopper (3), characterized in that: The hopper (3) includes a material rail (31), a discharge port (32), a hopper (33), and a material feeding assembly (4). The material rail (31) includes several parallel cylindrical tubes (34), and a material groove (35) with a thickness greater than that of the mushroom-shaped buckle is provided between two adjacent cylindrical tubes (34). The upper end of the material rail (31) is located inside the hopper (33), and the material feeding assembly (4) includes a power component (41) and a material feeding rod (42). The material feeding rod (42) extends into the hopper (33) and is used to stir the mushroom-shaped buckle in the hopper (33) so that it is stuck into the material groove (35).
2. The binding machine for producing mushroom-shaped notebooks according to claim 1, characterized in that: The hopper (33) is provided with a matching column (38) with the same structural dimensions as the cylindrical tube (34). The matching column (38) and the cylindrical tube (34) are arranged opposite to each other, and the material troughs (35) between them are opposite to each other, and the two are staggered at the lower end of the hopper (33).
3. The binding machine for producing mushroom-shaped notebooks according to claim 1, characterized in that: The size of the material trough (35) is greater than the thickness of one layer of mushroom buckle, but less than the size of two layers of mushroom buckle.
4. The binding machine for producing mushroom-shaped notebooks according to claim 1, characterized in that: The mounting table (1) is also provided with a cup holder groove (12), which is directly opposite to the material groove (35) of the material rail (31). The width of the cup holder groove (12) is greater than the thickness of the mushroom buckle.
5. The binding machine for producing mushroom-shaped notebooks according to claim 1, characterized in that: The mounting table (1) is provided with a mold groove (11), which is used to lock the specification tooling for mounting the laptop.
6. The binding machine for producing mushroom-shaped notebooks according to claim 1, characterized in that: The mounting assembly (2) includes a power cylinder (21) and a pressure plate (22), wherein the power cylinder (21) is used to drive the pressure plate (22) to press the notebook paper with the mushroom clip.