Electric gluing mechanism

CN224392217UActive Publication Date: 2026-06-23CHONGQING KEEN OFFICE EQUIP CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGQING KEEN OFFICE EQUIP CO LTD
Filing Date
2025-07-31
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

In existing technologies, when applying glue manually, the unstable speed leads to inconsistent glue thickness on the inner pages, making it easy for the glue to come unglued.

Method used

An electric gluing mechanism is adopted, which drives the walking frame to move on the slide rail through a mobile driver, causing the glue roller to rotate at a constant speed. Combined with the comb blade to open the inner pages, the glue is applied evenly.

Benefits of technology

It achieves uniform glue coating, improves the quality of glued application, reduces the risk of glue coming undone, and lowers costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of electric gluing mechanism.The electric gluing mechanism includes slide rail, walking frame being slid on slide rail, glue box for accommodating glue, glue roller for coating glue on inner page, rotating shaft for driving glue roller rotation, passive rolling member being moved by walking frame to drive itself rotation and drive rotating shaft rotation and for moving power supply to walking frame Mobile driver, the mobile driver is installed on the walking frame, the output shaft of the mobile driver is equipped with driving rolling member, the mobile driver drives driving rolling member to move on slide rail, the glue box is installed on the walking frame.The electric gluing mechanism of the utility model adopts electric gluing, need not manual gluing, easy to operate.
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Description

Technical Field

[0001] This utility model relates to the field of adhesive binding technology, and in particular to an electric adhesive application mechanism. Background Technology

[0002] Currently, desktop binding is usually done manually. When applying glue, the glue tray is manually moved back and forth along the spine of the inner pages to coat them with molten hot glue. However, the speed of manually moving the glue tray is unstable, easily fluctuating between fast and slow, resulting in inconsistent glue thickness on the inner pages, which can easily lead to the glue coming unglued after long-term use. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide an electric glue application mechanism that can apply glue evenly.

[0004] To solve the above problems, this utility model provides an electric gluing mechanism, which includes a slide rail, a traveling frame slidably mounted on the slide rail, a glue box for holding glue, a glue roller for applying glue to the inner pages, a rotating shaft for driving the glue roller to rotate, a passive rolling element that is driven to rotate by the movement of the traveling frame and drives the rotating shaft to rotate, and a moving driver for providing power for the movement of the traveling frame. The moving driver is mounted on the traveling frame, and an active rolling element is mounted on the output shaft of the moving driver. The moving driver drives the active rolling element to move on the slide rail, and the glue box is mounted on the traveling frame.

[0005] Furthermore, the rubber roller is provided with a combing blade for combing out the inner pages, and the combing blade is fixed to the rubber roller by fasteners.

[0006] Furthermore, the rubber roller is provided with an installation slot, the comb blade is provided in the installation slot, the comb blade is provided with a positioning notch, the positioning notch is located in the installation slot, the rubber roller is provided with a fastening hole, the fastening hole is provided corresponding to the positioning notch, the fastener is screwed in the fastening hole, and the fastener is inserted into the positioning notch.

[0007] Furthermore, the bottom of the slide rail is provided with teeth, the active rolling element is a gear, and the passive rolling element is a gear.

[0008] Furthermore, the plastic box is also equipped with a handle, which can be pulled along the direction of the slide rail.

[0009] Furthermore, the handle includes a gripping portion for holding and a mounting portion for mounting to the plastic box, the gripping portion being vertically disposed on the mounting portion.

[0010] Furthermore, sliding components are installed at both ends of the walking frame. The walking frame moves on the slide rail via the sliding components. The sliding components include side sliding members, top sliding members, and a sliding frame. The sliding frame is installed on the walking frame. The side sliding members and the top sliding members are both installed on the sliding frame. The side sliding members slide on the side wall of the slide rail, and the top sliding members slide on the top surface of the slide rail.

[0011] Furthermore, the passive rolling element is located below the slide rail and rolls on the bottom surface of the slide rail.

[0012] Furthermore, the active rolling element and the passive rolling element are rollers with anti-slip parts, which are made of rubber.

[0013] Furthermore, the sliding frame is in the shape of a U-shaped inverted position, and the width of the sliding frame is greater than the width of the slide rail.

[0014] This utility model's electric gluing mechanism uses a mobile driver to drive the walking frame to move at a uniform speed on the slide rail. The uniform movement of the walking frame drives the glue roller to rotate at a uniform speed, so that the glue can be evenly applied to the inner pages, resulting in good gluing quality and less likelihood of glue coming unglued after the binding is completed. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of a preferred embodiment of the electric gluing mechanism of this utility model.

[0016] Figure 2 This is a top view of the electric gluing mechanism of this utility model.

[0017] Figure 3 This is a schematic diagram of the internal structure of the traveling frame.

[0018] Figure 4 This is a schematic diagram of the structure of the rubber roller and the comb blade.

[0019] Figure 5 It is a cross-sectional view of the rubber roller and the comb blade.

[0020] Figure 6 This is a schematic diagram of the rubber roller structure.

[0021] Figure 7 This is a schematic diagram of the comb blade structure.

[0022] The meanings of the labels in the attached diagram are as follows:

[0023] 1. Glue box, 11. Handle, 111. Holding part, 112. Mounting part, 2. Glue roller, 201. Mounting slot, 202. Fastening hole, 21. Comb blade, 211. Positioning notch, 22. Fastener, 3. Rotating shaft, 4. Passive rolling element, 5. Walking frame, 51. First connecting plate, 52. Second connecting plate, 53. Side sliding element, 54. Top sliding element, 55. Sliding frame, 6. Moving drive, 7. Active rolling element, 8. Slide rail, 81. Gear, 9. Base. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings.

[0025] like Figures 1 to 3 As shown, a preferred embodiment of the electric gluing mechanism of this utility model includes a glue box 1, a glue roller 2, a rotating shaft 3, a passive rolling element 4, a traveling frame 5, a moving driver 6, an active rolling element 7, and a slide rail 8. The slide rail 8 is mounted on the base 9 of the binding machine, and the traveling frame 5 is slidably mounted on the slide rail 8, allowing it to move along the slide rail 8. The glue box 1 is used to hold glue and is mounted on the traveling frame 5. The glue roller 2 is used to apply glue to the inner pages and is mounted on the rotating shaft 3. The rotating shaft 3 is rotatably mounted on the glue box 1, and its rotation drives the glue roller 2 to rotate, thus applying the glue from the glue box 1 to the inner pages. One end of the rotating shaft 3 of the gluing mechanism extends outside the glue box 1, and the passive rolling element 4 is mounted on the rotating shaft 3. When the traveling frame 5 moves on the slide rail 8, the passive rolling element 4 moves along the slide rail 8 while rotating, thereby driving the glue roller 2 to rotate, and thus applying glue to the inner pages. The moving driver 6 is mounted on the traveling frame 5, and the active rolling element 7 is mounted on the output end of the moving driver 6. The moving driver 6 is used to drive the active rolling element 7 to rotate, and the rotation of the active rolling element 7 drives the traveling frame 5 to move on the slide rail 8. The moving driver 6 is usually a motor. When glue needs to be applied, the moving driver 6 drives the active roller 7 to rotate. The rotation of the active roller 7 causes the walking frame 5 to move on the slide rail 8. When the walking frame 5 moves on the slide rail 8, it causes the passive roller 4 to rotate. The rotation of the passive roller 4 causes the rotating shaft 3 to rotate. The rotation of the rotating shaft 3 in turn causes the glue roller 2 to rotate. The rotation of the glue roller 2 applies the glue in the glue box 1 to the inner pages. The glue is applied while moving, and only one power drive is needed to complete the process, which is low in cost.

[0026] To ensure that the glue box 1 does not tip over, the passive rolling element 4 is located below the slide rail 8 and rolls on the bottom surface of the slide rail 8.

[0027] The glue box 1 is also equipped with a handle 11. Pulling the handle 11 along the slide rail 8 can move the traveling frame 5, thereby enabling the application of glue to the inner pages. This avoids the inability to apply glue when there is no power. The handle 11 includes a gripping part 111 and a mounting part 112. The gripping part 111 is used for gripping, and the mounting part 112 is used for mounting to the glue box 1. The gripping part 111 is vertically arranged on the mounting part 112, increasing the gripping area and making it easier to grip the handle 11. The gripping part 111 and the mounting part 112 are integrally formed, which is convenient for processing and manufacturing.

[0028] like Figures 4 to 7 As shown, the glue roller 2 is equipped with a comb blade 21 for combing the inner pages, and the comb blade 21 is mounted on the glue roller 2. The rotation of the glue roller 2 drives the comb blade 21 to rotate, and the comb blade 21, when rotating, pushes the inner pages apart one by one. This allows the glue to penetrate better into the gaps between the inner pages, resulting in more glue between the inner pages, a better adhesive effect, and a more stable bond. The glue roller 2 is provided with two mounting slots 201, each of which is equipped with a comb blade 21. The comb blade 21 is fixed to the glue roller 2 by fasteners 22. The comb blade 21 has a positioning notch 211 located within the mounting slot 201. The fastener 22 is a bolt. The rubber roller 2 has a fastening hole 202 corresponding to the positioning notch 211. The fastener 22 is screwed into the fastening hole 202 and inserted into the positioning notch 211, thus fixing the comb blade 21 onto the rubber roller 2. The fastening hole 202 is located on the end face of the rubber roller 2, ensuring the rubber roller 2 remains flat on the adhesive surface and guaranteeing a good adhesive application effect.

[0029] The walking frame 5 includes a first connecting plate 51 and a second connecting plate 52. The first connecting plate 51 is used to fix the plastic box 1, and the second connecting plate 52 is used to install the mobile driver 6. The second connecting plate 52 is mounted on the first connecting plate 51. The first connecting plate 51 is U-shaped when viewed from above. Perforations are provided on both sides of the first connecting plate 51 for the slide rail 8 to pass through, ensuring that the walking frame 5 can move on the slide rail 8.

[0030] The slide rail 8 has a toothed portion 81 at its bottom. The active rolling element 7 and the passive rolling element 4 are both gears. Both the active and passive rolling elements 7 and 4 are located below the slide rail 8 and mesh with the toothed portion 81. This allows the active and passive rolling elements 7 and 4 to cooperate with the toothed portion 81, ensuring stable movement on the slide rail 8. Alternatively, in other embodiments, the active and passive rolling elements 7 and 4 can be other rolling elements with anti-slip functions, such as rollers with anti-slip parts made of rubber, where the toothed portion 81 of the slide rail 8 serves as the anti-slip tooth.

[0031] To facilitate smoother sliding of the traveling frame 5 on the slide rail 8, sliding components are installed at both ends of the traveling frame 5. The traveling frame 5 moves on the slide rail 8 via these sliding components. The sliding components include side sliding members 53, top sliding members 54, and a sliding frame 55. The sliding frame 55 is mounted on the traveling frame 5, and both the side sliding members 53 and the top sliding member 54 are mounted on the sliding frame 55. There are two side sliding members 53, located on the front and rear sides of the slide rail 8. This ensures that the weight distribution on both sides of the traveling frame 5 is different, allowing the traveling frame 5 to maintain stability. The side sliding members 53 are typically pulleys, forming line contact with the slide rail 8, which reduces friction. The sliding friction between the side sliding members 53 and the slide rail 8 further reduces friction. Alternatively, in other embodiments, positioning ball bearings or components with curved surfaces can be used, forming point or line contact between the curved surface of the side sliding member 53 and the slide rail 8, which also reduces friction. The top slider 54 is located on top of the slide rail 8. The top slider 54 allows the walking frame 5 to make sliding contact with the slide rail 8, enabling it to move better on the slide rail 8. The top slider 54 uses positioning balls, but pulleys can also be used. Using existing conventional components can reduce costs.

[0032] The sliding bracket 55 is U-shaped when laid down, which facilitates the installation of the side sliding member 53 and the top sliding member 54. The width of the sliding bracket 55 is greater than the width of the slide rail 8, thus ensuring that the two side sliding members 53 can be located on both sides of the slide rail 8.

[0033] When glue application is required, the moving driver 6 drives the active roller 7 to rotate. The rotation of the active roller 7 causes the traveling frame 5 to move on the slide rail 8. As the traveling frame 5 moves on the slide rail 8, it causes the passive roller 4 to rotate. The rotation of the passive roller 4 causes the rotating shaft 3 to rotate, which in turn causes the glue roller 2 to rotate. The rotation of the glue roller 2 applies the glue from the glue box 1 to the inner pages. The glue is applied while moving, and one cycle can apply glue twice to the inner pages that need to be glued. Only one power drive is needed to complete the electric glue application, which is low in cost.

[0034] The above are merely embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structure made using the contents of this utility model specification and drawings, whether directly or indirectly applied to other related technical fields, shall also be within the patent protection scope of this utility model.

Claims

1. An electric gluing mechanism, characterized by: The device includes a slide rail, a traveling frame slidably mounted on the slide rail, a glue box for holding glue, a glue roller for applying glue to the inner pages, a rotating shaft for driving the glue roller to rotate, a passive rolling element that is driven to rotate by the movement of the traveling frame and drives the rotating shaft to rotate, and a moving drive for providing power for the movement of the traveling frame. The moving drive is mounted on the traveling frame, and an active rolling element is mounted on the output shaft of the moving drive. The moving drive drives the active rolling element to move on the slide rail, and the glue box is mounted on the traveling frame.

2. The motorized gluing mechanism of claim 1, wherein: The rubber roller is provided with a combing blade for combing out the inner pages, and the combing blade is fixed to the rubber roller by fasteners.

3. The motorized gluing mechanism of claim 2, wherein: The rubber roller is provided with an installation slot, the comb blade is provided in the installation slot, the comb blade is provided with a positioning notch, the positioning notch is located in the installation slot, the rubber roller is provided with a fastening hole, the fastening hole is provided corresponding to the positioning notch, the fastener is screwed in the fastening hole, and the fastener is inserted into the positioning notch.

4. The motorized gluing mechanism of claim 1, wherein: The bottom of the slide rail is provided with teeth, the active rolling element is a gear, and the passive rolling element is a gear.

5. The motorized gluing mechanism of claim 1, wherein: The plastic box is also equipped with a handle, which is pulled along the direction of the slide rail.

6. The motorized gluing mechanism of claim 5, wherein: The handle includes a gripping part for holding and a mounting part for mounting to a plastic box, the gripping part being vertically mounted on the mounting part.

7. The motorized gluing mechanism of claim 1, wherein: The walking frame is equipped with sliding components at both ends. The walking frame moves on the slide rail via the sliding components. The sliding components include side sliding members, top sliding members, and a sliding frame. The sliding frame is installed on the walking frame. The side sliding members and the top sliding members are both installed on the sliding frame. The side sliding members slide on the side wall of the slide rail, and the top sliding members slide on the top surface of the slide rail.

8. The motorized gluing mechanism of claim 1, wherein: The passive rolling element is located below the slide rail and rolls on the bottom surface of the slide rail.

9. The motorized gluing mechanism of claim 1, wherein: The active and passive rolling elements are rollers with anti-slip parts, which are made of rubber.

10. The motorized gluing mechanism of claim 7, wherein: The sliding frame is in the shape of an inverted U, and the width of the sliding frame is greater than the width of the slide rail.