Preset hole site adjusting workbench and binding machine
By designing a preset hole position adjustment worktable and using a motor-driven transmission belt to move the moving plate step by step, the problem of poor binding quality and low efficiency caused by the single hole position in the existing technology is solved, and automated and precise binding with multiple holes is realized.
Patent Information
- Application Number
- CN202520114494.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Existing drilling or riveting equipment can only operate in one position at a time, resulting in poor binding quality and low work efficiency.
It adopts a preset hole position adjustment worktable, and the moving plate and the binding material are driven by a motor to move along the guide rail to realize automatic drilling or riveting of multiple holes. The overall structure is simple and the motor controls the hole spacing precisely.
It has enabled automated operation of multiple hole positions, ensuring the accuracy of drilling or riveting quality and improving binding efficiency.
Smart Images

Figure CN223533233U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of binding machine equipment, and in particular relates to a binding machine equipped with a preset hole position adjustment worktable. Background Technology
[0002] Due to design flaws in the existing workbench structure, drilling or riveting can only be performed at one location at a time. The second or third location requires manual repositioning and alignment before drilling or riveting can proceed. This type of workbench not only produces poor binding quality but also results in low work efficiency. Summary of the Invention
[0003] This application provides a preset hole position adjustment worktable, which solves the technical problem that the existing technology can only drill or rivet one position at a time, resulting in poor binding quality and low work efficiency.
[0004] To solve at least one of the above-mentioned technical problems, the technical solution adopted in this application is:
[0005] A preset hole position adjustment worktable, comprising:
[0006] A movable board with binding materials on it;
[0007] A frame is located below the movable plate, and a guide rail is provided on it, with a slider mounted on the guide rail;
[0008] A drive assembly, fixed to the frame, includes a motor and a transmission belt connected to the motor via a synchronous pulley; the transmission belt runs parallel to the guide rail and is also equipped with a pressure plate thereon;
[0009] The movable plate is connected to the slider and the pressure plate respectively;
[0010] Based on the preset hole positions, the motor can drive the conveyor belt through the pressure plate to move the moving plate and the binding material together along the guide rail to complete the drilling or riveting of the corresponding hole positions.
[0011] Furthermore, the movable plate is constructed as an L-shaped structure, with one end of one section connected to the slider, and the other section having several elongated holes parallel to the guide rail.
[0012] Furthermore, the elongated hole is located in a section of the moving plate on the side away from the guide rail; and the width of the section of the moving plate with the elongated hole is smaller than the width of the section connected to the slider.
[0013] Furthermore, a strip-shaped guide groove adapted to the elongated hole structure is provided on the lower bottom surface of the movable plate.
[0014] Furthermore, a positioning block is provided on the movable plate to slide with the elongated hole. The positioning block has a folded plate structure, is set perpendicular to the elongated hole, and is connected to the guide groove through an adjustable component.
[0015] Furthermore, the guide rail is configured along the length of the frame and is located near the top of the frame height; the slider has a U-shaped cross-section, with its open side secured to the guide rail and facing the conveyor belt.
[0016] Furthermore, a fixing plate is provided between the frame and the movable plate. The fixing plate is constructed as a platform surface, and the frame is fixed to its lower surface.
[0017] Furthermore, the movable plate passes through the fixed plate and connects to the top of the slider and the pressure plate; the outer extension of the movable plate is also provided with an extension section that passes through the fixed plate and connects to the vertical side of the slider;
[0018] An initial photoelectric switch is also provided on the lower side of the frame near the guide rail.
[0019] Furthermore, the conveyor belt is a toothed belt located inside the guide rail, and the motor is located on the side of the conveyor belt away from the guide rail.
[0020] A binding machine, equipped with the worktable described above.
[0021] This application discloses a preset hole adjustment worktable. Based on a preset binding pattern, the number and spacing of corresponding holes can be determined, allowing for automatic drilling or riveting of the bound material in stages. The overall structure is simple and rationally designed. The stepping hole spacing is directly controlled by a motor, eliminating the need for manual adjustment and ensuring the accuracy of drilling or riveting quality, while also achieving high binding efficiency. This application also proposes a binding machine equipped with this worktable. Attached Figure Description
[0022] Figure 1 This is a perspective view of the workbench in this application;
[0023] Figure 2 This is a perspective view of the worktable from another angle in this application;
[0024] Figure 3 This is a three-dimensional view of the framework and driver components working together in this application;
[0025] Figure 4 This is a schematic diagram of the cooperation between the movable plate and the positioning block in this application.
[0026] In the picture:
[0027] 10. Frame; 11. Guide rail; 12. Slider
[0028] 20. Fixing plate; 30. Drive assembly; 31. Motor
[0029] 32. Conveyor belt; 33. Pressure plate; 40. Moving plate
[0030] 41. Extension section 50, Positioning block 60, Initial photoelectric switch Detailed Implementation
[0031] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.
[0032] This embodiment proposes a preset hole position adjustment worktable, such as Figure 1-3 As shown, the system includes a frame 10, a fixed plate 20 and a movable plate 40 positioned above the frame 10, and a drive assembly 30 located inside the frame 10. The item being bound is placed on the movable plate 40. The frame 10 has a guide rail 11 and a slider 12 that cooperates with the guide rail 11 along its length. The drive assembly 30 includes a motor 31 and a transmission belt 32 connected to the motor 31 via a synchronous pulley. The transmission belt 32 runs parallel to the guide rail 11 and has a pressure plate 33 mounted on it. The fixed plate 20 is fixedly mounted on the frame 10, and the movable plate 40 is placed on the fixed plate 20. The movable plate 40 passes through the fixed plate 20 and connects to the top surface of the pressure plate 33, the top surface of the slider 12, and the side wall surface, respectively. Based on preset hole positions in the system, the motor 31 drives the transmission belt 32 to move the movable plate 40 and the item being bound along the length of the guide rail 11 via the pressure plate 33, thereby completing the drilling or riveting operation at the corresponding hole positions.
[0033] like Figure 2 As shown, the frame 10 is a support structure welded together from several iron frames. Its head is located near the guide rail 11, and its tail is an open structure. The guide rail 11 is located at the top of the frame 10. The cross-section of the slider 12 is constructed as a U-shape, and its open side is fixed to the guide rail 11 and faces the conveyor belt 32.
[0034] like Figure 2 and Figure 4 As shown, in the tabletop unit 20, the fixing plate 20 is a flat surface for placing the binding material. It is positioned between the frame 10 and the movable plate 40 and is fixed to the top surface of the frame 10. The top of the fixing plate 20 has several parallel elongated circular holes arranged along the length of the guide rail 11, and the side closest to the guide rail 11 is mainly used to install the movable plate 40 and allow the movable plate 40 to move horizontally along the length of the elongated circular holes. The movable plate 40 passes through these elongated circular holes and is directly connected to the top of the pressure plate 33 and the top of the slider 12. The fixing plate 20 is constructed as a platform surface and is horizontally fixed to the top of the frame 10.
[0035] like Figure 4 As shown, the movable plate 40 is constructed as a planar L-shaped structure. One end of one section is connected to the top of the slider 12, and the other section has several elongated holes parallel to the guide rail 11. These elongated holes are located near the drilling or riveting side. The elongated holes and elongated circular holes are respectively placed on both sides of the width of the fixed plate 20. At the same time, the fixed plate 20 is provided with strip-shaped guide grooves that are adapted to the elongated holes. The driven movable plate 40 can slide horizontally along the length of the strip-shaped guide grooves through the connecting piece.
[0036] Based on the characteristics of the platform structure, the width of the section with the elongated hole in the movable plate 40 is required to be smaller than the width of the section connected to the slider 12. In the section of the movable plate 40 where the elongated hole is located away from the guide rail 11, a strip-shaped guide groove adapted to the structure of the elongated hole is also provided on the lower surface of the movable plate 40. A positioning block 50, which slides with the elongated hole, is constructed on the movable plate 40. The positioning block 50 has a folded plate structure, is perpendicular to the elongated hole, and is connected to the guide groove via an adjustable component. The guide groove allows the movable plate 40 to protrude from the fixed plate 20, so that the positioning block 50 and the movable plate 40 can move the binding material horizontally without obstruction on the fixed plate 11.
[0037] Preferably, on the side of the movable plate 40 near the slider 12, it has a downwardly curved extension section 41. This extension section 41 passes through the fixed plate 20 and is directly connected to the vertical side of the movable plate 12, and the width of the extension section 41 is smaller than the width of the unidirectional section of the movable plate 40. An initial photoelectric switch 60 is also provided on the lower side of the frame 10 near the guide rail 11. The extension section 41 matches the initial photoelectric switch 60 to trigger a photoelectric signal at the initial position.
[0038] like Figure 3 As shown, in the drive assembly 30, the motor 31 is placed at one end of the frame 10 away from the initial photoelectric switch 60; the conveyor belt 32 is a toothed belt located inside the guide rail 11, and the motor 31 is located on the side of the conveyor belt 32 away from the guide rail 11 and is fixed to the top of the frame 10.
[0039] The main synchronous pulley is connected to the output end of the motor 31, while the driven synchronous pulley is located away from the motor 31. Both the main and driven synchronous pulleys are positioned towards the guide rail 11. The conveyor belt 32 is driven to rotate by the main and driven synchronous pulleys. The diameter of the main synchronous pulley is larger than that of the driven synchronous pulley, which further reduces its installation area and increases the internal space occupied by the frame 10. The pressure plate 33 is fixed to one side of the conveyor belt 32. When the motor 31 rotates, it drives the conveyor belt 32 through the pressure plate 33 and the slider 12, thereby causing the moving plate 40 to reciprocate along the length of the guide rail 11.
[0040] When powering on, press the movable plate reset button on the operation panel (attached image omitted), which is the initial photoelectric switch 60 at the initial position. The movable plate 40 will then automatically reset to the initial position. Place the binding material onto the movable plate 40, determine the positions where drilling or riveting is required, adjust the positioning block 23, and lock it in place.
[0041] In practice, binding modes are pre-set in the program. Each binding mode corresponds to a set of hole positions and adjacent hole spacing, such as single-hole, double-hole, or triple-hole. Multiple binding modes can be pre-set in the same system, but only one set of preset modes can be used each time binding is performed. Regardless of the binding mode, the position of adjacent hole spacing is pre-set and cannot be changed during the binding process; however, it can be preset and modified in the system beforehand.
[0042] If the system is preset to a single-hole binding mode, meaning there is only one position on the binding material to be drilled or riveted, then there is no need to move the binding material and the moving plate. Drilling or riveting can be done directly on the binding material. After binding is completed, drilling or riveting can be done on the next binding material.
[0043] If the system is preset to a dual-hole binding mode, it means that there are two locations on the bound item where holes are drilled or riveted. Specifically, after pressing the start button on the control panel, the drilling or riveting will proceed directly to the first location.
[0044] After the first position is punched or riveted, the motor 31 starts to work automatically and drives the conveyor belt 32 to rotate. The moving plate 40 continues to move to the right through the pressure plate 33 until it moves to the second position of the binding. The motor stops working, the binding stops, and the punching or riveting operation of the second position begins.
[0045] After the second position is completed, the moving plate 40 is driven by the motor 31 through the pressure plate 33 to move to the left and back to its initial position, stopping after triggering the initial photoelectric switch 60 signal. It then waits in standby mode for the next assembly of items to be bound or riveted.
[0046] If the system is preset to a three-hole binding mode, it means that there are three positions on the bound item for drilling or riveting. Specifically, after pressing the start button on the control panel, drilling or riveting will be performed directly at the first position.
[0047] After the first position is punched or riveted, the motor 31 starts to work automatically and drives the conveyor belt 32 to rotate. The moving plate 40 continues to move to the right through the pressure plate 33 until it moves to the second position of the binding. The motor stops working, the binding stops, and the punching or riveting operation of the second position begins.
[0048] After the second position of drilling or riveting is completed, the motor 31 will start working automatically and rotate through the conveyor belt 32. The moving plate 40 will continue to move to the right through the pressure plate 33 until it moves to the third position of the binding. The motor will stop working, the binding will stop, and the drilling or riveting operation at the third position will begin.
[0049] After the third position is completed, the moving plate 40 is driven by the motor 31 through the pressure plate 33 to move to the left and back to its initial position, triggering the initial photoelectric switch 60 signal and stopping. It then waits for the next assembly of items to be bound or riveted.
[0050] A binding machine, equipped with the worktable described above.
[0051] This application discloses a preset hole adjustment worktable. Based on a preset binding pattern, the number and spacing of corresponding holes can be determined, allowing for automatic drilling or riveting of the bound material in stages. The overall structure is simple and rationally designed. The stepping hole spacing is directly controlled by a motor, eliminating the need for manual adjustment and ensuring the accuracy of drilling or riveting quality, while also achieving high binding efficiency. This application also proposes a binding machine equipped with this worktable.
[0052] The embodiments of this application have been described in detail above. These descriptions are merely preferred embodiments and should not be construed as limiting the scope of this application. All equivalent variations and modifications made within the scope of this application should still fall within the patent coverage of this application.
Claims
1. A preset hole position adjustment worktable, characterized in that, include: A movable board with binding materials on it; A frame is located below the movable plate, and a guide rail is provided on it, with a slider mounted on the guide rail; a drive assembly is fixed on the frame, including a motor and a transmission belt connected to the motor via a synchronous pulley; the transmission belt runs parallel to the guide rail, and a pressure plate is also mounted on it; The movable plate is connected to the slider and the pressure plate respectively; Based on the preset hole positions, the motor can drive the conveyor belt through the pressure plate to move the moving plate and the binding material together along the guide rail to complete the drilling or riveting of the corresponding hole positions.
2. The preset hole position adjustment worktable according to claim 1, characterized in that, The movable plate is constructed in an L-shape, with one end of one section connected to the slider, and the other section having several elongated holes parallel to the guide rail.
3. The preset hole position adjustment worktable according to claim 2, characterized in that, The elongated hole is located in a section of the moving plate on the side away from the guide rail; and the width of the section of the moving plate with the elongated hole is smaller than the width of the section connected to the slider.
4. A preset hole position adjustment worktable according to claim 2 or 3, characterized in that, A strip-shaped guide groove adapted to the elongated hole structure is also provided on the bottom surface of the moving plate.
5. A preset hole position adjustment worktable according to claim 4, characterized in that, A positioning block is provided on the movable plate to slide with the elongated hole. The positioning block is a folded plate structure, which is set perpendicular to the elongated hole and is connected to the guide groove through an adjustable component.
6. A preset hole position adjustment worktable according to any one of claims 1-3 and 5, characterized in that, The guide rail is configured along the length of the frame and is located near the top of the frame height; the slider has a U-shaped cross-section, with its open side secured to the guide rail and facing the conveyor belt.
7. A preset hole position adjustment worktable according to claim 6, characterized in that, A fixing plate is also provided between the frame and the movable plate. The fixing plate is constructed as a platform surface, and the frame is fixed to its bottom surface.
8. A preset hole position adjustment worktable according to claim 7, characterized in that, The movable plate passes through the fixed plate and is connected to the top of the slider and the pressure plate; the outer extension of the movable plate is also provided with an extension section that passes through the fixed plate and is connected to the vertical side of the slider; An initial photoelectric switch is also provided on the lower side of the frame near the guide rail.
9. A preset hole position adjustment worktable according to any one of claims 1-3, 5, and 7-8, characterized in that, The conveyor belt is a toothed belt, located inside the guide rail, and the motor is located on the side of the conveyor belt away from the guide rail.
10. A binding machine, characterized in that, It is equipped with a worktable as described in any one of claims 1-9.