Sticker adsorption structure
By setting a sticker adsorption structure on the rotary drilling machine with a cavity component connected to the air intake, the sticker is adsorbed by negative pressure, which solves the problem of stickers being difficult to peel off, and improves peeling efficiency and structural strength.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG FUZHIYUAN MASCH EQUIP CO LTD
- Filing Date
- 2025-02-10
- Publication Date
- 2026-05-12
AI Technical Summary
The stickers on existing rotary drilling machines are difficult to remove, making the bonding process inconvenient.
采用包括两块移动板和空腔件的贴纸吸附结构,空腔件底部设有气孔并连接吸气源,通过启动吸气源产生负压以吸附贴纸。
It makes it easier to attach and peel off stickers, prevents stickers from coming off, and enhances structural strength.
Smart Images

Figure CN224227538U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a sticker adsorption structure and belongs to the technical field of adsorption mechanisms. Background Technology
[0002] A rhinestone machine is a processing device for clothing and accessories. It can quickly and accurately arrange rhinestones according to a preset pattern and firmly adhere them to fabric, adhesive tape, or other materials. Through subsequent processing of the fabric, adhesive tape, or other materials, clothing with various exquisite patterns and designs can be created.
[0003] Regarding the aforementioned technologies, the inventors believe that once the sticker on the drilling machine has adhered to the decorative rhinestones on the template, the sticker is not easy to peel off. Utility Model Content
[0004] To facilitate the removal of stickers from templates, this application provides a sticker adsorption structure and a rotary drill.
[0005] The first technical objective of this application provides a sticker adsorption structure using the following technical solution: including...
[0006] Two movable boards,
[0007] A cavity component is disposed between two movable plates. The bottom of the cavity component has several air holes, and the cavity component is also connected to an air intake source.
[0008] By adopting the above technical solution, the air intake source is activated to extract the air from the cavity, thereby creating negative pressure at the air hole to adsorb the sticker. Compared with the existing technology, it is easier to adsorb the sticker and peel it off from the template.
[0009] Optionally: The cavity component includes multiple interconnected cavity tubes, one of which is connected to an air intake source.
[0010] By adopting the above technical solution, the cavity component composed of multiple cavity tubes is easy to assemble. Since the cavity tubes are all interconnected, only one cavity tube needs to be connected to the air intake source to extract the air from all the cavity tubes, thereby generating negative pressure at the air hole.
[0011] Optionally, the hollow tube includes, from bottom to top, a lower layer fitting, a middle layer fitting, and an upper layer fitting.
[0012] The lower tube includes several parallel lower cavity tubes, both ends of which are fixedly connected to and sealed with a movable plate, and the air hole is located at the lower part of the lower cavity tube.
[0013] The middle layer tube includes several parallel hollow tubes, which are arranged perpendicularly to the lower hollow tube, and both ends of the hollow tube are closed.
[0014] The upper tube includes an upper hollow tube with both ends closed. The upper hollow tube is perpendicular to the middle hollow tube and is located in the middle of the hollow tube. The middle of the upper hollow tube is connected to the air intake source.
[0015] By adopting the above technical solution, the three-layer hollow tube presents a symmetrical design. Therefore, by connecting the air intake source to the middle of the upper hollow tube, a negative pressure can be uniformly generated on the air pores of the lower hollow tube. The three-layer hollow tube design gives the hollow component itself strong structural strength.
[0016] Optionally: the hollow tube includes a lower layer fitting and a middle layer fitting from bottom to top.
[0017] The lower tube includes several parallel lower cavity tubes, both ends of which are fixedly connected to and sealed with a movable plate, and the air hole is located at the lower part of the lower cavity tube.
[0018] The middle layer tube includes a hollow tube connected to the middle of the lower hollow tube and arranged perpendicularly to the lower hollow tube. Both ends of the hollow tube are closed, and the air intake source is connected to the middle of the hollow tube.
[0019] Optionally: the cavity component has a longitudinal cavity tube and spaced transverse cavity tubes, the two ends of the transverse cavity tubes are closed and fixed to the two side moving plates, the longitudinal cavity tubes are arranged between adjacent transverse cavity tubes and the two ends of the longitudinal cavity tubes are connected to the two adjacent transverse cavity tubes, the air holes are arranged at least on the lower surface of the transverse cavity tubes, and the longitudinal cavity tube located in the middle is connected to the air intake source.
[0020] Optionally, the lower surface of the cavity component with air holes is higher than the lower surfaces of the two moving plates.
[0021] By adopting the above technical solution, the movable plates on both sides can serve as guide components for the sticker, preventing the sticker from falling out between the two movable plates.
[0022] Optionally, a crossbeam is also provided above the two movable plates, with both ends of the crossbeam connected to the movable plates.
[0023] By adopting the above technical solution and setting the crossbeam, the overall structural strength of the sticker adsorption structure is enhanced.
[0024] The second technical objective of this application is to provide a rotary drilling machine that includes a sticker adsorption structure for adsorbing stickers.
[0025] In summary, this application has the following beneficial effects:
[0026] 1. Activate the air suction source to extract the air from the cavity, thereby creating negative pressure at the air hole to adsorb the sticker. Compared with existing technologies, it is easier to adsorb the sticker and peel it off from the template.
[0027] 2. The lower end of the movable plate protrudes more than the lower surface of the cavity part, so that the movable plates on both sides can serve as guide parts for the sticker and prevent the sticker from falling out between the two movable plates. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of the overall structure of the sticker adsorption structure of this application;
[0029] Figure 2 This is a schematic diagram of the three-layer pipe fitting structure of this application;
[0030] Figure 3 This is a schematic diagram of the two-layer pipe structure of this application;
[0031] Figure 4 This is a schematic diagram of a single-layer pipe fitting structure according to this application;
[0032] Figure 5 This is a schematic diagram of the drilling machine structure equipped with a sticker adsorption mechanism according to this application.
[0033] Explanation of reference numerals in the attached figures:
[0034] 1. Moving plate; 2. Hollow component; 3. Air intake source; 4. Crossbeam; 5. Lower hollow tube; 6. Middle hollow tube; 7. Upper hollow tube; 8. Longitudinal hollow tube; 9. Transverse hollow tube; 10. Drilling machine; 11. Air hole. Detailed Implementation
[0035] The following is in conjunction with the appendix Figures 1-5 This application will be described in further detail.
[0036] like Figure 1 As shown, the sticker adsorption structure disclosed in this application includes two movable plates 1 and a cavity 2 disposed between the movable plates 1 for adsorbing stickers. The bottom of the cavity 2 is provided with a plurality of air holes 11, and the cavity 2 is connected to an air suction source 3. By activating the air suction source 3, air is extracted from the cavity 2, thereby generating negative pressure at the air holes 11 for adsorbing stickers.
[0037] Specifically, several crossbeams 4 are arranged between the upper parts of the two movable plates 1, with the crossbeams 4 spaced apart and their two ends fixedly connected to the movable plates 1. A cavity component 2 is arranged between the lower parts of the two movable plates 1. The lower surface of the cavity component 2, which has air holes 11, is higher than the lower surfaces of the two movable plates 1, meaning the lower part of the movable plates 1 extends beyond the lower part of the cavity component 2. In actual use of the sticker adsorption structure, the movable plates 1 on both sides can act as guide components for the sticker, preventing the sticker from detaching between the two movable plates 1.
[0038] Example 1:
[0039] like Figure 2 As shown, the cavity component 2 includes a lower layer pipe, a middle layer pipe, and an upper layer pipe from bottom to top.
[0040] Specifically, the lower-level pipe includes several parallel lower cavity pipes 5, the number of which can be, for example, three, four, five, etc., and in this embodiment, four are shown. The two ends of the lower cavity pipe 5 are respectively fixedly connected to the movable plate 1 by screws and are sealed, and the air hole 11 is opened in the lower part of the lower cavity pipe 5.
[0041] The middle layer pipe includes several parallel hollow tubes 6, the number of which can be, for example, three, four, five, etc., but in this embodiment, two are shown. The hollow tubes 6 are arranged perpendicularly to the lower hollow tube 5, and the hollow tubes 6 are located in the middle of the lower hollow tube 5, with both ends of the hollow tubes 6 being closed.
[0042] The upper tube includes an upper hollow tube 7, which is closed at both ends. The upper hollow tube 7 is perpendicular to the hollow tube 6 and is located in the middle of the hollow tube. The middle of the upper hollow tube 7 is connected to the air intake source 3.
[0043] The cavities inside the lower cavity tube 5, the middle cavity tube 6, and the upper cavity tube 7 are all interconnected, and the cavity components 2 are arranged symmetrically as a whole.
[0044] With this configuration, the cavity component 2, composed of multiple cavity tubes, is easy to assemble. Since the cavity tubes are all interconnected, only one cavity tube needs to be connected to the air intake 3 to extract the air from all the cavity tubes, thereby generating negative pressure at the air hole 11.
[0045] Furthermore, the cavity component 2 features a symmetrical design, so by connecting the air intake source 3 to the middle of the upper cavity tube 7, a uniform negative pressure can be generated on the air hole 11 of the lower cavity tube 5. The three-layer cavity tube design gives the cavity component 2 itself strong structural strength.
[0046] Example 2:
[0047] like Figure 3 As shown, the cavity component 2 includes a lower layer pipe and a middle layer pipe from bottom to top.
[0048] The lower-level pipe fitting includes several parallel lower cavity pipes 5, the number of which can be, for example, three, four, five, etc., and in this embodiment, four are shown. The two ends of the lower cavity pipe 5 are respectively fixedly connected to and sealed to the movable plate 1 by screws, and the air hole 11 is opened in the lower part of the lower cavity pipe 5.
[0049] The middle layer pipe includes a hollow tube 6 that is connected to all the lower hollow tubes 5. The hollow tube 6 is connected to the middle of the lower hollow tubes 5 and is arranged perpendicular to the lower hollow tubes 5. Both ends of the hollow tube 6 are closed. The air intake 3 is connected to the middle of the hollow tube 6.
[0050] Similarly, the cavity component 2 has a symmetrical design, so by connecting the air intake source 3 through the middle of the hollow cavity tube 6, negative pressure can be uniformly generated on the air hole 11 of the lower cavity tube 5.
[0051] Example 3:
[0052] like Figure 4 As shown, the cavity component 2 has a longitudinal cavity tube 8 and transverse cavity tubes 9 spaced apart. The two ends of the transverse cavity tubes 9 are closed and fixed to the two side moving plates 1 by screws. The longitudinal cavity tubes 8 are arranged between adjacent transverse cavity tubes 9, and the two ends of the longitudinal cavity tubes 8 are connected to the two adjacent transverse cavity tubes 9. The air hole 11 is at least arranged on the lower surface of the transverse cavity tubes 9. Of course, the air hole 11 can also be arranged on the lower surface of the longitudinal cavity tubes 8. The longitudinal cavity tube 8 located in the middle is connected to the air intake source 3.
[0053] Similarly, the cavity component 2 has a symmetrical design, so by connecting the middle of a longitudinal cavity tube 8 located in the middle to the air source 3, negative pressure can be uniformly generated on the air hole 11 of the lower cavity tube 5.
[0054] In addition, it should be noted that the air intake 3 can be a suction fan installed on the crossbeam 4, or it can be an external suction fan or air pump, which is connected to the cavity component 2 via a key.
[0055] like Figure 5 As shown, this application discloses a rotary drilling machine equipped with the aforementioned sticker adsorption structure.
[0056] The implementation principle of this embodiment is as follows: During the operation of the drilling machine 10, stickers are needed to adsorb the decorative rhinestones already arranged on the template of the drilling machine. The adsorption structure can be installed on the drilling machine 10 and can be raised and lowered by a drive. When the adsorption structure is needed, it is lowered to the surface of the template by driving the adsorption structure. Then, by activating the suction source 3, a negative pressure is generated on the lower surface of the cavity 2 to adsorb the sticker pasted on the template surface. Then, by driving the adsorption structure to rise, the sticker can be peeled off from the template.
[0057] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A sticker adsorption structure, characterized in that: include Two movable plates (1), A cavity component (2) is disposed between two movable plates (1). The cavity component (2) has several air holes (11) at its bottom. The cavity component (2) is also connected to an air intake source (3). The cavity component (2) is used to peel off the stickers adhered to the template by applying negative pressure. The cavity component (2) includes multiple interconnected cavity tubes, one of which is connected to the air intake source (3); When the cavity component (2) is composed of a lower layer pipe, a middle layer pipe, and an upper layer pipe from bottom to top, The lower layer pipe includes several parallel lower hollow tubes (5), the two ends of which are fixedly connected to and closed by the moving plate (1), and the air hole (11) is located at the lower part of the lower hollow tube (5); the middle layer pipe includes several parallel hollow tubes (6), the hollow tubes (6) are arranged perpendicularly to the lower hollow tubes (5), and the two ends of the hollow tubes (6) are closed; the upper layer pipe includes an upper hollow tube (7), the two ends of the upper hollow tube (7) are closed, the upper hollow tube (7) is arranged perpendicularly to the hollow tubes (6) and is located in the middle of the hollow tubes, and the middle of the upper hollow tube (7) is connected to the air intake source (3); Or, when the cavity component (2) is composed of a lower layer pipe and a middle layer pipe from bottom to top, The lower layer pipe includes several parallel lower hollow tubes (5), the two ends of which are fixedly connected to and closed by the moving plate (1), and the air hole (11) is located at the lower part of the lower hollow tube (5); the middle layer pipe includes a hollow tube (6), which is connected to the middle part of the lower hollow tube (5) and is arranged perpendicular to the lower hollow tube (5). The two ends of the hollow tube (6) are closed, and the air intake source (3) is connected to the middle part of the hollow tube (6); Or, when the cavity component (2) is composed of a longitudinal cavity tube (8) and spaced-apart transverse cavity tubes (9), The two ends of the transverse cavity tube (9) are closed and fixed to the two side moving plates (1). The longitudinal cavity tube (8) is arranged between adjacent transverse cavity tubes (9), and the two ends of the longitudinal cavity tube (8) are connected to the two adjacent transverse cavity tubes (9). The air hole (11) is at least arranged on the lower surface of the transverse cavity tube (9). The longitudinal cavity tube (8) located in the middle is connected to the air intake source (3).
2. The sticker adsorption structure according to claim 1, characterized in that: The lower surface of the cavity component (2) with air holes (11) is higher than the lower surface of the two movable plates (1).
3. The sticker adsorption structure according to claim 1, characterized in that: A crossbeam (4) is also provided on the upper part between the two movable plates (1), and both ends of the crossbeam (4) are connected to the movable plates (1).