Positioning structure of intelligent film detection machine
By introducing an anti-reflective coating and a guide rail slider combination into the positioning structure of the intelligent film-applying inspection machine, the problem of external light interference is solved, achieving high-precision and stable film-applying inspection, and improving the applicability and ease of maintenance of the equipment.
Patent Information
- Application Number
- CN202522122162.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-09
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-10-09
AI Technical Summary
Conventional intelligent film application testing machines lack effective anti-interference measures in their positioning structure. External light interference causes fluctuations in the test data, which cannot accurately reflect the actual situation of the film application.
An anti-reflective coating is applied to the positioning seat component, and flexible adjustment is achieved through a combination structure of guide rails, damping sliders, and limit bolts. Combined with the movable connection design between the base and the positioning seat, the applicability and stability are enhanced. The limit pressure is adjusted using an electric telescopic rod to ensure detection accuracy and stability.
It effectively reduces interference from external light, improves the accuracy and applicability of testing, ensures the reliability and precision of test results, enhances the versatility and ease of maintenance of the equipment, and avoids testing errors.
Smart Images

Figure CN224682083U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of intelligent film-applying inspection machines, specifically to a positioning structure for an intelligent film-applying inspection machine. Background Technology
[0002] The intelligent film-applying inspection machine is a device that combines visual recognition and automation technology. It is mainly used to detect defects, positioning accuracy and bonding quality during the film-applying process. It is typically used for the inspection and protective film application of cameras and semiconductor chips in the 3C industry. The equipment includes high-precision intelligent inspection equipment, high-precision intelligent visual guidance system, high-precision transfer and application equipment and high-efficiency roll film and label peeling mechanism.
[0003] Conventional intelligent film application testing machines often lack effective anti-interference measures in their positioning structures. External factors such as light can easily interfere with the testing process, causing fluctuations in the test data and failing to accurately reflect the actual situation of the film application. Utility Model Content
[0004] The purpose of this invention is to provide a positioning structure for an intelligent film-applying detection machine to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a positioning structure for an intelligent film-applying inspection machine, comprising a base component and a positioning seat component. The positioning seat component is installed in the middle of the top of the base component, and adjustment components are horizontally arranged on both the left and right sides of the positioning seat component. Limiting components are connected to the top two ends of the adjustment components. The positioning seat component includes a positioning seat body, a detection groove, and an anti-reflective coating. A detection groove is opened in the middle of the top surface of the positioning seat body, and the surface of the detection groove is sprayed with an anti-reflective coating.
[0006] Furthermore, the base component includes a base, an assembly groove, and a protective coating. The assembly groove is located in the middle of the top of the base, and the base has a protective coating on its surface.
[0007] Furthermore, the inner surface structure of the assembly groove matches the bottom surface structure of the positioning seat body, and holes for bolt installation are perpendicularly opened at the four opposite corners of the assembly groove and the four opposite corners of the positioning seat body.
[0008] Furthermore, the base has holes for bolt installation at each of the four opposite corners, and the positioning seat body is movably connected to the base.
[0009] Furthermore, the adjusting structure includes a guide rail, a damping slider, a limiting bolt, and a stabilizing seat. Both ends of the guide rail are connected and installed with damping sliders, and a limiting bolt is installed on one side of the damping slider. A stabilizing seat is provided on the top of the damping slider.
[0010] Furthermore, the limiting bolt and the damping slider are connected to each other by a slotted embedded structure, and the limiting bolt and the damping slider are connected by a thread, while the stabilizing seat and the damping slider are connected by a weld.
[0011] Furthermore, the limiting component includes a support column, a stabilizing frame, an electric telescopic rod, and a limiting block. The upper end of the support column is horizontally connected to the stabilizing frame, and the end of the stabilizing frame away from the support column is vertically installed with the electric telescopic rod. The bottom of the electric telescopic rod is installed with a limiting block.
[0012] Furthermore, the support column and the stabilizer are fixedly connected, and the top four corners of the stabilizer and the four corners of the support column are vertically provided with holes for bolt installation.
[0013] This utility model provides a positioning structure for an intelligent film-applying detection machine, which has the following beneficial effects: 1. This utility model features a positioning seat component at the top center of the base component. The anti-reflective coating effectively reduces interference from external light on the detection environment within the detection slot, improving the accuracy of the visual recognition system in detecting film defects, positioning precision, and bonding quality, thus ensuring the reliability of the detection results. Furthermore, by horizontally adjusting components on both sides of the positioning seat component, the cooperation of guide rails, damping sliders, and limit bolts allows the limit component to be flexibly adjusted horizontally along the surface of the guide rails according to actual detection needs. This adapts to film detection of different sizes and shapes within a certain range, enhancing the applicability and flexibility of the positioning structure. The above structural design allows the entire positioning structure to better meet the high precision and efficiency requirements of the 3C industry for camera and semiconductor chip detection and protective film application. Simultaneously, the stable seat and support column in the adjusting component are securely connected via bolt-installed holes, ensuring the stability and reliability of the limit component during operation and avoiding detection errors caused by structural loosening.
[0014] 2. This utility model, through the structural combination of the base component and the positioning seat component, utilizes the matching design of the assembly groove on the base and the bottom structure of the positioning seat body, as well as the movable connection method achieved by the bolt mounting holes, to facilitate the quick disassembly and replacement of the base component and the positioning seat component, thereby improving the versatility and maintenance convenience of the equipment. In addition, the protective coating on the surface of the base effectively extends the service life of the equipment and reduces the risk of structural corrosion caused by environmental factors, thus ensuring the stability and accuracy of the positioning structure during long-term use. Furthermore, through the cooperative design of the electric telescopic rod and the limiting pressure block in the limiting component, the downward pressure of the limiting pressure block can be precisely adjusted according to the thickness and material requirements of different films, ensuring that the film remains stable and undamaged during the inspection process, further improving the accuracy of the inspection and the protective effect of the film. This refined limiting control mechanism enables the positioning structure to exhibit higher adaptability and stability when dealing with complex and ever-changing film inspection tasks. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the positioning structure of the intelligent film-applying detection machine of this utility model from the side axial view. Figure 2 This is a schematic diagram of the base component structure of the positioning structure of an intelligent film-applying detection machine according to the present invention; Figure 3 This is a three-dimensional structural diagram of the positioning seat component of the positioning structure of an intelligent film-applying inspection machine according to the present invention; Figure 4 This is a three-dimensional structural diagram of the adjusting component of the positioning structure of an intelligent film-applying detection machine according to the present invention; Figure 5 This is a three-dimensional structural diagram of the positioning component of an intelligent film-applying inspection machine according to the present invention.
[0016] In the diagram: 1. Base component; 101. Base; 102. Assembly slot; 103. Protective coating; 2. Positioning seat component; 201. Positioning seat body; 202. Detection slot; 203. Anti-reflective coating; 3. Adjustment component; 301. Guide rail; 302. Damping slider; 303. Limiting bolt; 304. Stabilizing seat; 4. Limiting component; 401. Support column; 402. Stabilizing frame; 403. Electric telescopic rod; 404. Limiting pressure block. Detailed Implementation
[0017] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0018] like Figures 1 to 5As shown, a positioning structure for an intelligent film-applying inspection machine includes a base component 1 and a positioning seat component 2. The positioning seat component 2 is installed in the middle of the top of the base component 1, and adjustment components 3 are horizontally arranged on both the left and right sides of the positioning seat component 2. Limiting components 4 are connected to the top two ends of the adjustment components 3. The positioning seat component 2 includes a positioning seat body 201, a detection groove 202, and an anti-reflective coating 203. The detection groove 202 is opened in the middle of the top surface of the positioning seat body 201, and the surface of the detection groove 202 is coated with an anti-reflective coating 203. The adjustment components 3 include a guide rail 301, a damping slider 302, a limit bolt 303, and a stabilizing seat 304. Both ends of the guide rail 301 are connected to... The damping slider 302 is installed, and a limiting bolt 303 is provided on one side of the damping slider 302. A stabilizing seat 304 is provided on the top of the damping slider 302. The limiting bolt 303 and the damping slider 302 are connected to each other by a slotted embedded structure. The limiting bolt 303 and the damping slider 302 are connected by threads, and the stabilizing seat 304 and the damping slider 302 are connected by welding. By utilizing the cooperation of the guide rail 301, the damping slider 302 and the limiting bolt 303, the limiting component 4 can be flexibly adjusted horizontally along the surface of the guide rail 301 according to the actual detection requirements, thereby adapting to film detection of different sizes and shapes within a certain range.
[0019] like Figures 1 to 5 As shown, the base component 1 includes a base 101, an assembly groove 102, and a protective coating 103. The assembly groove 102 is located in the center of the top of the base 101, and the protective coating 103 covers the surface of the base 101. The inner surface structure of the assembly groove 102 matches the bottom surface structure of the positioning seat body 201. Holes for bolt installation are perpendicularly formed at the four opposite corners of the assembly groove 102 and the four opposite corners of the positioning seat body 201. Holes for bolt installation are also perpendicularly formed at the four opposite corners of the base 101. The positioning seat body 201 and the base 101 are movably connected. The limiting component 4 includes a support column 401, a stabilizer 402, an electric telescopic rod 403, and a limiting pressure block 404. The support column 401... The upper end of the base 101 is horizontally connected to a stabilizing frame 402, and an electric telescopic rod 403 is vertically installed at the end of the stabilizing frame 402 away from the support column 401. A limit block 404 is installed at the bottom of the electric telescopic rod 403. The support column 401 and the stabilizing frame 402 are fixedly connected. The top four corners of the stabilizing seat 304 and the four corners of the support column 401 are vertically provided with holes for bolt installation. The matching design of the mounting groove 102 on the base 101 and the bottom structure of the positioning seat body 201, as well as the movable connection between the two through the bolt installation holes, facilitates the quick disassembly and replacement of the base component 1 and the positioning seat component 2, thereby improving the versatility and maintenance convenience of the equipment.
[0020] In summary, as Figures 1 to 5 As shown, the positioning structure of the intelligent film-applying inspection machine is such that, during use, the base component 1 is first placed stably on the worktable to ensure that the base 101 is in a horizontal state. The base component 1 is then fixed to the worktable by bolts through the bolt mounting holes at the four opposite corners of the base 101 to prevent displacement during the inspection process and thus avoid affecting the inspection accuracy. Next, the positioning seat component 2 is placed in the assembly groove 102 of the base 101. Since the inner surface structure of the assembly groove 102 matches the bottom surface structure of the positioning seat body 201, the positioning seat component 2 can be accurately placed in the appropriate position. Then, the positioning seat component 2 is movably connected to the base 101 by bolts through the bolt mounting holes at the four opposite corners of the assembly groove 102 and the four opposite corners of the positioning seat body 201. This movable connection method not only ensures the stability of the connection, but also facilitates the subsequent disassembly, assembly and replacement of the positioning seat component 2. Then, according to the actual testing requirements, adjust the position of the damping slider 302 on the guide rail 301 on the adjusting component 3. By rotating the limiting bolt 303, the damping slider 302 is fixed in a suitable position by utilizing the slotted embedded structure and threaded connection between it and the damping slider 302, so as to ensure that the adjusting component 3 can adapt to film testing of different sizes and shapes. Subsequently, the limiting component 4 is securely installed at both ends of the top of the adjusting component 3 through the bolt mounting holes at the four opposite corners of the top of the stabilizing seat 304 and the four opposite corners of the supporting column 401, ensuring the stability of the limiting component 4 during operation. Finally, based on the thickness and material requirements of the film to be tested, the electric telescopic rod 403 is operated to precisely adjust the downward pressure of the limiting pressure block 404 so that the limiting pressure block 404 can just press down on the film, ensuring that the film remains stable and undamaged during the testing process. Then, the film to be tested can be placed in the testing slot 202, and the visual recognition system of the intelligent film testing machine is used to test the film for defects, positioning accuracy and bonding quality.
[0021] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A positioning structure for an intelligent film-applying inspection machine, comprising a base component (1) and a positioning seat component (2), characterized in that: The base component (1) has a positioning seat component (2) installed in the middle of its top, and the positioning seat component (2) has horizontal adjustment components (3) on both the left and right sides. The adjustment components (3) have limit components (4) connected to the top two ends. The positioning seat component (2) includes a positioning seat body (201), a detection groove (202) and an anti-reflective coating (203). The top surface of the positioning seat body (201) has a detection groove (202) in the middle, and the surface of the detection groove (202) is coated with an anti-reflective coating (203).
2. The positioning structure of the intelligent film-applying detection machine according to claim 1, characterized in that, The base component (1) includes a base (101), an assembly groove (102) and a protective coating (103). The assembly groove (102) is provided in the middle of the top of the base (101), and the base (101) has a protective coating (103) on its surface.
3. The positioning structure of the intelligent film-applying detection machine according to claim 2, characterized in that, The inner surface structure of the assembly groove (102) matches the bottom surface structure of the positioning seat body (201), and holes for bolt installation are perpendicularly opened at the four opposite corners of the assembly groove (102) and the four opposite corners of the positioning seat body (201).
4. The positioning structure of the intelligent film-applying detection machine according to claim 2, characterized in that, The base (101) has holes for bolt installation at its four opposite corners, and the positioning seat body (201) is movably connected to the base (101).
5. The positioning structure of the intelligent film-applying detection machine according to claim 1, characterized in that, The adjusting component (3) includes a guide rail (301), a damping slider (302), a limit bolt (303), and a stabilizing seat (304). The guide rail (301) is connected to and installed with damping sliders (302) at both ends, and a limit bolt (303) is provided on one side of the damping slider (302). The top of the damping slider (302) is provided with a stabilizing seat (304).
6. The positioning structure of the intelligent film-applying detection machine according to claim 5, characterized in that, The limiting bolt (303) and the damping slider (302) are connected to each other by a slotted embedded structure, and the limiting bolt (303) and the damping slider (302) are connected by a thread, and the stabilizing seat (304) and the damping slider (302) are connected by a weld.
7. The positioning structure of the intelligent film-applying detection machine according to claim 5, characterized in that, The limiting component (4) includes a support column (401), a stabilizer (402), an electric telescopic rod (403), and a limiting block (404). The upper end of the support column (401) is horizontally connected to the stabilizer (402), and the end of the stabilizer (402) away from the support column (401) is vertically installed with the electric telescopic rod (403). The bottom of the electric telescopic rod (403) is installed with the limiting block (404).
8. The positioning structure of the intelligent film-applying detection machine according to claim 7, characterized in that, The support column (401) and the stabilizer (402) are fixedly connected, and the top four corners of the stabilizer (304) and the four corners of the support column (401) are vertically provided with holes for bolt installation.